CROSS-REFERENCE TO RELATED APPLICATIONS
TECHNICAL FIELD
[0002] The present application relates to the technical field of air conditioners, and particularly
to a mounting bracket assembly and an air conditioner.
BACKGROUND
[0003] In the related art, split-type air conditioners that facilitate user self-installation
use flexible refrigerant pipes to connect an indoor-side heat exchanger of an indoor
unit and an outdoor-side heat exchanger of an outdoor unit, and refrigerant is injected
into the refrigerant circuit before the equipment leaves the factory. Thus, when users
install the equipment themselves, they only need to fix the indoor unit and the outdoor
unit separately, without assembling refrigerant pipes and adding refrigerant, thereby
reducing installation difficulty and enabling user self-installation.
[0004] Mounting brackets used for installing outdoor units are typically mounted on a window
frame at one end, and extend out of the window at the other end to support the outdoor
unit. After the outdoor unit is placed on the mounting bracket, tools such as screwdrivers
are required to lock screws between the outdoor unit and the mounting bracket. This
installation method is obviously not convenient enough.
SUMMARY
[0005] The main purpose of the present application is to provide a mounting bracket assembly,
aiming to improve the installation convenience of an outdoor unit of an air conditioner.
[0006] In order to achieve the above purpose, the present application provides a mounting
bracket assembly for mounting an outdoor unit of an air conditioner, including:
a mounting bracket, the mounting bracket including a main bracket, the main bracket
including a window-mounting bracket and a load-bearing bracket connected to the window-mounting
bracket, the window-mounting bracket being mounted on a window frame, the load-bearing
bracket extending along a first direction to an outside of a window, the outdoor unit
being provided on an upper surface of the load-bearing bracket; and
a first bracket connected to the outdoor unit, one of the load-bearing bracket and
the first bracket is provided with a first limiting portion capable of elastic deformation,
and another of the load-bearing bracket and the first bracket is provided with a second
limiting portion, and when the outdoor unit moves along the first direction on the
load-bearing bracket, the first limiting portion is capable of engaging with the second
limiting portion.
[0007] In an embodiment, a lower surface of the first bracket is provided with a first through-slot
extending along the first direction, when the outdoor unit is placed on the load-bearing
bracket from top to bottom, the first bracket is sleeved on an upper side of the load-bearing
bracket through the first through-slot, the load-bearing bracket is movable within
the first through-slot, the second limiting portion is provided in the first through-slot,
and the first limiting portion is provided on the load-bearing bracket.
[0008] In an embodiment, the load-bearing bracket is provided with a first mounting groove
and a first through-hole communicating with the first mounting groove, the first limiting
portion is disposed in the first mounting groove and is provided with a first engaging
protrusion corresponding to the first through-hole, and a portion of the first engaging
protrusion protruding out of the first through-hole is capable of engaging with the
second limiting portion.
[0009] In an embodiment, the second limiting portion is provided on a side wall of the first
through-slot, a slot opening of the first mounting groove is provided on a lower surface
of the load-bearing bracket, and the first through-hole is provided on a side wall
of the first mounting groove.
[0010] In an embodiment, the first through-slot is further provided with a guide portion
on the side wall where the first through-hole is disposed, and along the first direction
and in a direction away from the window-mounting bracket, the second limiting portion
and the guide portion are sequentially distributed, and the guide portion extends
obliquely in a direction away from the load-bearing bracket.
[0011] In an embodiment, the first limiting portion includes two first segments and two
second segments, the two first segments are opposite to each other and spaced apart
from each other, and are connected by the two second segments, the two second segments
are opposite to each other and intersect each other, one of the first segments is
provided with the first engaging protrusion and elastically abuts against one side
wall of the first mounting groove, and the other first segment elastically abuts against
the other side wall of the first mounting groove.
[0012] In an embodiment, a bottom wall of the first mounting groove is provided with a mounting
through-hole, the first through-slot is provided with a stop portion corresponding
to the mounting through-hole, the stop portion is capable of passing through the mounting
through-hole following the placement of the outdoor unit, and is capable of moving
along the first direction following the outdoor unit to be limitingly connected with
a hole edge of the mounting through-hole.
[0013] In an embodiment, the mounting through-hole includes a clearance hole section and
a limiting hole section that communicate with each other, the clearance hole section
is provided on a side of the limiting hole section close to the window-mounting bracket;
in a width direction of the first through-slot, a width of the limiting hole section
is smaller than a width of the clearance hole section, and after the stop portion
passes through the clearance hole section from top to bottom, the stop portion is
capable of moving along the first direction to below the limiting hole section and
abutting against a lower side surface of a hole edge of the limiting hole section.
[0014] In an embodiment, a bottom wall of the first through-slot is provided with a bent
opening, a side edge of the bent opening close to the window-mounting bracket is folded
downward to form a first flange, the first flange is folded in a direction away from
the window-mounting bracket to form a second flange, and the stop portion is formed
on the second flange.
[0015] In an embodiment, the first through-slot includes two opposite first plate segments,
two second plate segments, two opposite third plate segments, and a fourth plate segment
connecting the two third plate segments, the side wall of the first through-slot is
the first plate segment, the third plate segment is opposite to the first plate segment,
the second plate segment connects the first plate segment and the third plate segment,
a bottom wall of the first through-slot is the second plate segment, the third plate
segment is provided with a limiting notch at an end away from the window-mounting
bracket, and the stop portion is formed on a lower side edge of the limiting notch.
[0016] In an embodiment, the first bracket is provided at an end of the load-bearing bracket
close to the window-mounting bracket, the main bracket further includes a limiting
bracket, the limiting bracket is provided at an end of the load-bearing bracket away
from the window-mounting bracket, and is configured to limitingly connect the outdoor
unit.
[0017] In an embodiment, the mounting bracket assembly further includes a second bracket,
the second bracket is provided on a lower surface of the outdoor unit, when the outdoor
unit moves along the first direction on the load-bearing bracket, at least a portion
of the limiting bracket moves to above the second bracket and abuts against an upper
surface of the second bracket.
[0018] In an embodiment, the second limiting portion is configured as a limiting hole or
limiting notch groove adapted to the first engaging protrusion.
[0019] In an embodiment, the mounting bracket further includes a support bracket provided
on the load-bearing bracket, the support bracket adjusts a connection position along
the first direction on the load-bearing bracket, and abuts against an outer wall surface
and/or a window sill.
[0020] In an embodiment, the first limiting portion is provided on the load-bearing bracket,
the second limiting portion is provided on the first bracket, and when the outdoor
unit is placed on the load-bearing bracket from top to bottom and moves along the
first direction, the first bracket is capable of urging the first limiting portion
to elastically deform in a direction intersecting with a vertical direction, so as
to be elastically engaged in the second limiting portion.
[0021] In an embodiment, the first bracket includes a pin extending along the vertical direction,
and the second limiting portion is provided on a side surface of the pin.
[0022] In an embodiment, a lower end surface of the pin is provided with a guide surface,
an axial cross-sectional diameter of the guide surface is gradually reduced in a top-to-bottom
direction, and the second limiting portion is disposed above the guide surface; and/or
the second limiting portion is a stop groove provided on the side surface of the pin;
and/or
the first bracket further includes a bridge bracket, the bridge bracket is provided
on a side of the outdoor unit close to the window-mounting bracket, and the pin is
provided on a lower side surface of the bridge bracket.
[0023] In an embodiment, the mounting bracket assembly further includes a mounting base
provided on the load-bearing bracket, wherein the mounting base includes a guide tube
portion, the guide tube portion is provided with a tube inner cavity for the pin to
be inserted into and a clearance opening communicating with a side surface of the
tube inner cavity, the first limiting portion includes an engaging portion, and the
engaging portion is capable of being inserted into the tube inner cavity from the
clearance opening and engaging with the second limiting portion.
[0024] In an embodiment, the first limiting portion further includes a fixing portion connected
to the engaging portion, the mounting base further includes a mounting plate connected
to the guide tube portion, and the fixing portion is clamped between the mounting
plate and the load-bearing bracket.
[0025] In an embodiment, a lower surface of the mounting plate is provided with an accommodating
groove, a bottom of the accommodating groove is provided with an annular stop rib,
the fixing portion is suitably sleeved on an outer peripheral surface of the annular
stop rib, and is clamped between a bottom surface of the accommodating groove and
an upper surface of the load-bearing bracket.
[0026] In an embodiment, an upper surface of the mounting plate is convexly provided with
a first stop protrusion, when the engaging portion is engaged with the second limiting
portion, the first stop protrusion is located on a side of the engaging portion away
from the second limiting portion; the first limiting portion is capable of elastic
deformation to enable the engaging portion to be engaged on a side of the first stop
protrusion away from the second limiting portion; and/or
the first limiting portion further includes an operating portion connected to the
fixing portion, the operating portion is exposed above the load-bearing bracket, and
is configured for applying an operating force.
[0027] In an embodiment, the first limiting portion further includes an operating portion
connected to the engaging portion and the fixing portion, the load-bearing bracket
is provided with a first through-hole corresponding to the operating portion, the
operating portion passes through the first through-hole and is exposed below the load-bearing
bracket, and the operating portion is drivable to deform along an extension direction
of the first through-hole, so as to engage the engaging portion with the second limiting
portion or disengage the engaging portion from the second limiting portion.
[0028] In an embodiment, a bottom of the first mounting groove is provided with a second
through-hole corresponding to the guide tube portion, the guide tube portion is disposed
in the second through-hole, and both the engaging portion and the fixing portion are
provided on an upper surface of the load-bearing bracket.
[0029] In an embodiment, the first limiting portion further includes a fixing portion intersecting
with the engaging portion, the load-bearing bracket is provided with a mounting portion
corresponding to the fixing portion, and the fixing portion is connected to the mounting
portion.
[0030] In an embodiment, the mounting portion is provided on an upper surface of the load-bearing
bracket, the upper surface of the load-bearing bracket is further provided with a
first stop protrusion, when the engaging portion is engaged with the second limiting
portion, the first stop protrusion is located on a side of the engaging portion away
from the second limiting portion; the first limiting portion is capable of elastic
deformation to enable the engaging portion to be engaged on a side of the first stop
protrusion away from the second limiting portion.
[0031] In an embodiment, the upper surface of the load-bearing bracket is further provided
with a second stop protrusion, and the second stop protrusion abuts against a side
of the engaging portion close to the second limiting portion.
[0032] In an embodiment, the second limiting portion extends along a circumferential direction
of the pin, the first limiting portion includes a first rod segment and a second rod
segment connected to each other, the first rod segment is sleeved on a circumferential
side surface of the guide tube portion, and the second rod segment extends into the
tube inner cavity and is configured as the engaging portion.
[0033] In an embodiment, the first limiting portion further includes a third rod segment
connected to the second rod segment, the third rod segment extends from the second
rod segment in a direction away from the second limiting portion, and is at least
partially exposed to a side of the load-bearing bracket for being toggled.
[0034] In an embodiment, a central axis of the second rod segment extends along an arc,
the second rod segment is formed with an anti-detachment recess on a side away from
the second limiting portion, the mounting base is provided with an anti-detachment
protruding column corresponding to the anti-detachment recess, and the anti-detachment
protruding column is provided on a side of the anti-detachment recess away from the
second limiting portion.
[0035] In an embodiment, a lower surface of the load-bearing bracket is provided with a
first mounting groove, the main bracket further includes a reinforcing bracket, and
the reinforcing bracket is provided on a bottom surface of the first mounting groove.
[0036] In an embodiment, opposite sides of the reinforcing bracket are folded downward to
form first flanges, the first flanges are provided with serrated portions extending
along the first direction, and the support bracket slidingly abuts against the serrated
portions when moving along the first direction.
[0037] The present application further provides an air conditioner, including an outdoor
unit and the mounting bracket assembly as described above, and the mounting bracket
assembly is configured to mount the outdoor unit to an outside of a window.
[0038] In the technical solution of the present application, the outdoor unit is first placed
on the load-bearing bracket, and then the outdoor unit is pushed or pulled along the
first direction, so that the first limiting portion can engage with the second limiting
portion, thereby relatively fixing the outdoor unit on the load-bearing bracket, i.e.,
completing the installation and fixation of the outdoor unit. In this way, through
the cooperative structure of the first limiting portion and the second limiting portion,
the installation and fixation of the outdoor unit do not require screws and corresponding
tools such as screwdrivers. This operation is more convenient, thereby improving the
user experience.
BRIEF DESCRIPTION OF THE DRAWINGS
[0039] In order to more clearly illustrate the technical solutions in the embodiments of
the present application or in the related art, the drawings required for the description
of the embodiments or the related art will be briefly introduced below. Obviously,
the drawings described below are only some embodiments of the present application.
For those of ordinary skill in the art, other drawings can also be obtained based
on these drawings without creative labor.
FIG. 1 is a schematic structural view of a mounting bracket assembly according to
an embodiment of the present application from one perspective.
FIG. 2 is a side view of the embodiment shown in FIG. 1 with an outdoor unit installed.
FIG. 3 is a top view of the structure shown in FIG. 2.
FIG. 4 is a schematic view of the structure shown in FIG. 2 installed at a window.
FIG. 5 is an exploded view of some components of the first bracket and the main bracket
in the embodiment shown in FIG. 1.
FIG. 6 is a schematic view of the assembly relationship of the structure shown in
FIG. 5.
FIG. 7 is a schematic structural view of the first bracket in FIG. 6.
FIG. 8 is a partial cross-sectional view taken along line B-B in FIG. 3.
FIG. 9 is a partial cross-sectional view taken along line C-C in FIG. 3.
FIG. 10 is a schematic structural view of another embodiment of the mounting bracket
assembly according to the present application.
FIG.11 is an exploded view of some components of the first bracket and the main bracket
in the embodiment shown in FIG. 10.
FIG. 12 is a schematic structural view of the first bracket in FIG. 11.
FIG. 13 is a schematic structural view of some components of the embodiment shown
in FIG. 1 from another perspective.
FIG. 14 is a schematic view of the assembly relationship between the load-bearing
bracket and the support bracket in FIG. 13.
FIG. 15 is a partial cross-sectional view taken along line A-A in FIG. 2.
FIG. 16 is a schematic structural view of another embodiment of the mounting bracket
assembly according to the present application.
FIG. 17 is a schematic assembly view of the embodiment shown in FIG. 16.
FIG. 18 is a partial enlarged view of area A in FIG. 17.
FIG. 19 is a side view of the embodiment shown in FIG. 16 after the outdoor unit is
installed.
FIG. 20 is a partial structural view of the cross-sectional view taken along line
B-B in FIG. 19.
FIG. 21 is an exploded view of the components of the mounting base and the first limiting
portion in FIG. 20.
FIG. 22 is a schematic view of the embodiment shown in FIG. 16 installed at a window
together with the outdoor unit.
FIG. 23 is another schematic structural view of the embodiment shown in FIG. 16.
FIG. 24 is a partial enlarged view of area C in FIG. 23.
FIG. 25 is a schematic structural view of another embodiment of the mounting bracket
assembly according to the present application.
FIG. 26 is a partial enlarged view of area D in FIG. 25.
FIG. 27 is a side view of another embodiment of the mounting bracket assembly according
to the present application.
FIG. 28 is an exploded view of the components of the embodiment shown in FIG. 27.
FIG. 29 is an exploded view of the components of the first limiting portion, the mounting
base, and the first bracket in FIG. 28.
FIG. 30 is a side view of a fourth embodiment of the mounting bracket assembly according
to the present application.
FIG. 31 is an exploded view of the components of the embodiment shown in FIG. 30.
FIG. 32 is an exploded view of some components in FIG. 31.
Description of reference signs
[0040]
| reference sign |
name |
reference sign |
name |
| 101 |
mounting bracket |
23 |
guide portion |
| 102 |
outdoor unit of air conditioner |
24 |
stop portion |
| 103 |
window |
25 |
pin |
| 10 |
main bracket |
251 |
stop portion |
| 11 |
window-mounting bracket |
252 |
guide surface |
| 12 |
load-bearing bracket |
26 |
bridge bracket |
| 121 |
first mounting groove |
261 |
mounting through-hole |
| 121a |
fifth flange |
30 |
second bracket |
| 122 |
first through-hole |
31 |
engaging portion |
| 123 |
mounting through-hole |
32 |
fixing portion |
| 123a |
clearance hole section |
33 |
operating portion |
| 123b |
limiting hole section |
34 |
anti-detachment recess |
| 124 |
limiting rib |
41 |
third limiting portion |
| 125 |
limiting interval |
411 |
second engaging protrusion |
| 126 |
mounting portion |
412 |
third segment |
| 127 |
second flange |
42 |
sliding portion |
| 128 |
clearance opening |
421 |
pin shaft |
| 129 |
first stop protrusion |
43 |
second mounting groove |
| 130 |
second stop protrusion |
44 |
second through-hole |
| 13 |
first limiting portion |
45 |
folded opening |
| 131 |
first engaging protrusion |
46 |
sixth flange |
| 132 |
first segment |
47 |
seventh flange |
| 133 |
second segment |
40 |
support bracket |
| 14 |
limiting bracket |
51 |
second mounting groove |
| 141 |
pin hole |
52 |
limiting shaft |
| 15 |
reinforcing bracket |
53 |
sliding portion |
| 151 |
third flange |
54 |
limiting protrusion |
| 152 |
fourth flange |
60 |
reinforcing bracket |
| 20 |
first bracket |
61 |
first flange |
| 21 |
second limiting portion |
62 |
serrated portion |
| 211 |
first rod segment |
63 |
guide channel |
| 212 |
second rod segment |
71 |
hand-tightening bolt |
| 213 |
third rod segment |
72 |
second bracket |
| 22 |
first through-slot |
80 |
mounting base |
| 221 |
bent opening |
81 |
guide tube portion |
| 222 |
first flange |
811 |
tube inner cavity |
| 223 |
second flange |
812 |
clearance opening |
| 224 |
first plate segment |
813 |
anti-detachment engaging protrusion |
| 225 |
second plate segment |
82 |
mounting plate |
| 226 |
third plate segment |
821 |
accommodating groove |
| 227 |
fourth plate segment |
822 |
annular stop rib |
| 228 |
limiting notch |
825 |
anti-detachment protruding column |
| 229 |
anti-slip portion |
|
|
[0041] The realization of the purpose, functional features, and advantages of the present
application will be further described in conjunction with the embodiments and with
reference to the accompanying drawings.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0042] The technical solutions in the embodiments of the present application will be clearly
and completely described below in conjunction with the accompanying drawings in the
embodiments of the present application. Obviously, the described embodiments are only
a part of the embodiments of the present application, rather than all the embodiments.
Based on the embodiments in the present application, all other embodiments obtained
by those of ordinary skill in the art without creative work fall within the protection
scope of the present application.
[0043] It should be noted that all directional indications such as up, down, left, right,
front, back, etc., in the embodiments of the present application are only used to
explain the relative positional relationship, movement status, etc., between components
under a specific posture as shown in the accompanying drawings. If the specific posture
changes, the directional indication will also change accordingly.
[0044] In the present application, unless otherwise explicitly specified and limited, terms
such as "connected" and "fixed" should be understood in a broad sense. For example,
"fixed" can be a fixed connection, a detachable connection, or an integrated connection;
it can be a mechanical connection or an electrical connection; it can be directly
connected or indirectly connected through an intermediate medium; it can be the internal
communication of two components or the interaction relationship between two components,
unless otherwise explicitly limited. For those of ordinary skill in the art, the specific
meanings of the above terms in the present application can be understood according
to specific circumstances.
[0045] In addition, if the embodiments of the present application involve descriptions such
as "first", "second", etc., these descriptions are only for descriptive purposes and
cannot be understood as indicating or implying their relative importance or implicitly
indicating the number of indicated technical features. Therefore, features defined
with "first" and "second" may explicitly or implicitly include at least one of these
features. In addition, the meaning of "and/or" appearing throughout the text includes
three parallel schemes. Taking "A and/or B" as an example, it includes scheme A, or
scheme B, or a scheme that satisfies both A and B simultaneously. In addition, the
technical solutions between the various embodiments can be combined with each other,
but must be based on the ability of those of ordinary skill in the art to implement
them. When the combination of technical solutions is contradictory or cannot be implemented,
it should be considered that such a combination of technical solutions does not exist
and is not within the protection scope claimed by the present application.
[0046] The present application proposes a mounting bracket assembly for mounting an outdoor
unit of an air conditioner. Specifically, the air conditioner of the present application
can be a split-type air conditioner that facilitates user self-installation, which
uses flexible refrigerant pipes to connect an indoor-side heat exchanger of an indoor
unit and an outdoor-side heat exchanger of an outdoor unit, and refrigerant is injected
into the refrigerant circuit before the equipment leaves the factory. Thus, when users
install the equipment themselves, they only need to fix the indoor unit and the outdoor
unit separately, without assembling refrigerant pipes and adding refrigerant, thereby
reducing installation difficulty and enabling user self-installation. However, the
present design is not limited to this. In other embodiments, the air conditioner of
the present application can also be a conventional split-type air conditioner, or
an integrated air conditioner, such as a window-type air conditioner. In this case,
the outdoor unit refers to the portion of the window-type air conditioner that extends
to the outdoor side.
[0047] The present application proposes a mounting bracket assembly. Referring to FIG. 1
to FIG. 8, in an embodiment of the present application, the mounting bracket assembly
includes a mounting bracket 101 and a first bracket 20.
[0048] The mounting bracket 101 includes a main bracket 10, the main bracket 10 includes
a window-mounting bracket 11 and a load-bearing bracket 12 connected to each other,
the window-mounting bracket 11 is mounted on a window frame, the load-bearing bracket
12 extends along a first direction to the outside of a window 103, and an outdoor
unit 102 is provided on an upper surface of the load-bearing bracket 12.
[0049] The first bracket 20 is connected to the outdoor unit 102, one of the load-bearing
bracket 12 and the first bracket 20 is provided with a first limiting portion 13 capable
of elastic deformation, and the other of the load-bearing bracket 12 and the first
bracket 20 is provided with a second limiting portion 21, and when the outdoor unit
102 moves along the first direction on the load-bearing bracket 12, the first limiting
portion 13 is capable of engaging with the second limiting portion 21.
[0050] Specifically, in the embodiment of the present application, the inner side of the
window 103 is defined as the rear, and the outer side of the window 103 is defined
as the front. Thus, the front-rear direction is the first direction, the upper side
of the outdoor unit 102 is the upper side, and the lower side of the outdoor unit
102 is the lower side. In an embodiment, the outdoor unit 102 is first placed from
top to bottom on the end of the load-bearing bracket 12 close to the window, and then
pushed forward to a fixed position. That is, after being pushed in a direction away
from the window to the fixed position, the first limiting portion 13 engages with
the second limiting portion 21.
[0051] In other embodiments, the outdoor unit 102 can also be first placed from top to bottom
on the end of the load-bearing bracket 12 away from the window, and then pulled backward
to a fixed position. That is, after being pulled in a direction close to the window
to the fixed position, the first limiting portion 13 engages with the second limiting
portion 21.
[0052] In the technical solution of the present application, the outdoor unit 102 is first
placed on the load-bearing bracket 12, and then the outdoor unit 102 is pushed or
pulled along the first direction, so that the first limiting portion 13 can engage
with the second limiting portion 21, thereby relatively fixing the outdoor unit 102
on the load-bearing bracket 12, i.e., completing the installation and fixation of
the outdoor unit 102. In this way, through the cooperative structure of the first
limiting portion 13 and the second limiting portion 21, the installation and fixation
of the outdoor unit 102 do not require screws and corresponding tools such as screwdrivers.
This operation is more convenient, thereby improving the user experience.
[0053] Referring to FIG. 5 to FIG. 8, in some embodiments, a lower surface of the first
bracket 20 is provided with a first through-slot 22 extending along the first direction.
When the outdoor unit 102 is placed on the load-bearing bracket 12 from top to bottom,
the first bracket 20 is sleeved on an upper side of the load-bearing bracket 12 through
the first through-slot 22. The load-bearing bracket 12 is movable within the first
through-slot 22. The second limiting portion 21 is disposed in the first through-slot
22, and the first limiting portion 13 is provided on the load-bearing bracket 12.
In this way, through the cooperation of the first through-slot 22 and the load-bearing
bracket 12, it is beneficial for the outdoor unit 102 to move more smoothly along
the first direction on the load-bearing bracket 12, and enables the first engaging
protrusion 131 to engage with or disengage from the second limiting portion 21 more
smoothly. In other embodiments, the second limiting portion 21 can also be provided
on the load-bearing bracket 12, and the first limiting portion 13 can be disposed
in the first through-slot 22. In other embodiments, the first through-slot 22 may
also be omitted.
[0054] Referring to FIG. 5 to FIG. 7, in some embodiments, the load-bearing bracket 12 is
provided with a first mounting groove 121 and a first through-hole 122 communicating
with the first mounting groove 121. The first limiting portion 13 is disposed in the
first mounting groove 121 and is provided with a first engaging protrusion 131 corresponding
to the first through-hole 122. A portion of the first engaging protrusion 131 protruding
out of the first through-hole 122 is capable of engaging with the second limiting
portion 21. In this way, the first limiting portion 13 can elastically deform within
the first mounting groove 121, and the first through-hole 122 can limit and guide
the first engaging protrusion 131, thereby enabling the first engaging protrusion
131 to engage with or disengage from the second limiting portion 21 more smoothly.
Of course, in other embodiments, the first mounting groove 121 and the first through-hole
122 may also be omitted, and the first limiting portion 13 can be directly formed
on a side wall of the load-bearing bracket 12.
[0055] In some embodiments, the second limiting portion 21 is provided on a first side wall
of the first through-slot 22, a slot opening of the first mounting groove 121 is provided
on a lower surface of the load-bearing bracket 12, and the first through-hole 122
is provided on the first side wall of the first mounting groove 121. In this way,
the lateral space of the load-bearing bracket 12 can be utilized to provide an operating
space for the user to press the first engaging protrusion 131, facilitating the user
to manually release the engagement between the first engaging protrusion 131 and the
second limiting portion 21, thereby achieving the purpose of disassembling the outdoor
unit 102 from the load-bearing bracket 12. Of course, in other embodiments, the second
limiting portion 21 can also be provided on a bottom wall of the first through-slot
22.
[0056] Referring to FIG. 5 to FIG. 7, in some embodiments, a guide portion 23 is further
provided on the first side wall of the first through-slot 22. Along the first direction
and in a direction away from the window-mounting bracket 11, the second limiting portion
21 and the guide portion 23 are sequentially distributed, and the guide portion 23
extends obliquely in a direction away from the load-bearing bracket 12. Specifically,
in the present application, when the outdoor unit 102 is placed on the load-bearing
bracket 12 and pushed backward for fixation, during this pushing process, the first
engaging protrusion 131 contacts and is acted upon by the guide portion 23, which
urges the first limiting portion 13 to elastically deform and causes the first engaging
protrusion 131 to automatically retract. Finally, after the first engaging protrusion
131 aligns with the second limiting portion 21, it automatically pops out and engages
with the second limiting portion 21. In this way, through the guiding action of the
guide portion 23, the first engaging protrusion 131 can engage with the second limiting
portion 21 more smoothly. Of course, in other embodiments, the guide portion 23 may
also be omitted. It can be understood that in an embodiment where the outdoor unit
102 is placed on the load-bearing bracket 12 and pulled inward for fixation, the guide
portion 23 extends obliquely in a direction away from the load-bearing bracket 12
in a direction close to the window-mounting bracket 11.
[0057] It should be noted that in the embodiments of the present application, the relative
positional relationship between different components defaults to the state after the
outdoor unit 102 is installed in place on the main bracket 10. Special circumstances
will be specifically explained.
[0058] Referring to FIG. 5, in some embodiments, the first limiting portion 13 includes
two first segments 132 and two second segments 133. The two first segments 132 are
opposite to each other and spaced apart from each other, and are connected by the
two second segments 133. The two second segments 133 are opposite to each other and
intersect each other. One of the first segments 132 is provided with the first engaging
protrusion 131 and elastically abuts against one side wall of the first mounting groove
121, and the other first segment 132 elastically abuts against the other side wall
of the first mounting groove 121. In this way, the first limiting portion 13 has a
simple structure and is easy to implement, and can stably elastically deform within
the first mounting groove 121 to provide a good driving action for the first engaging
protrusion 131. Of course, in other embodiments, the first limiting portion 13 can
also be directly formed on a side wall of the first mounting groove 121.
[0059] Referring to FIG. 5 to FIG. 7, in some embodiments, a bottom wall of the first mounting
groove 121 is provided with a mounting through-hole 123, and the first through-slot
22 is provided with a stop portion 24 corresponding to the mounting through-hole 123.
The stop portion 24 is capable of passing through the mounting through-hole 123 following
the placement of the outdoor unit 102, and is capable of moving along the first direction
following the outdoor unit 102 to be limitingly connected with a hole edge of the
mounting through-hole 123. In this way, through the cooperation of the stop portion
24 and the mounting through-hole 123, the load-bearing bracket can further restrict
the first bracket, thereby improving the installation reliability of the outdoor unit.
[0060] In an embodiment, the mounting through-hole 123 includes a clearance hole section
123a and a limiting hole section 123b that communicate with each other. The clearance
hole section 123a is provided on a side of the limiting hole section close to the
window-mounting bracket 11. In a width direction of the first through-slot 22, a width
of the limiting hole section 123b is smaller than a width of the clearance hole section
123a. After the stop portion 24 passes through the clearance hole section 123a from
top to bottom, the stop portion 24 is capable of moving along a direction away from
the window-mounting bracket 11 to below the limiting hole section 123b, and abutting
against a lower side surface of a hole edge of the limiting hole section 123b. In
this way, the vertical restriction of the outdoor unit 102 can be quickly and easily
achieved, thereby facilitating the user to install and disassemble the outdoor unit
102.
[0061] Referring to FIG. 5 to FIG. 7, in an embodiment, the first through-slot 22 includes
two opposite first plate segments 224, two second plate segments 225, two opposite
third plate segments 226, and a fourth plate segment 227 connecting the two third
plate segments 226. A side wall of the first through-slot 22 is the first plate segment
224. The third plate segment 226 is opposite to the first plate segment 224. The second
plate segment 225 connects the first plate segment 224 and the third plate segment
226. A bottom wall of the first through-slot 22 is the second plate segment 225. The
third plate segment 226 is provided with a limiting notch 228 at an end away from
the window-mounting bracket 11, and the stop portion 24 is formed on a lower side
edge of the limiting notch 228. In this way, the structure is simple and easy to implement.
[0062] Of course, the stop portion 24 can also have other structural forms. For example,
referring to FIG. 10 to FIG. 12, in another embodiment, a bottom wall of the first
through-slot 22 is provided with a bent opening 221. A side edge of the bent opening
221 close to the window-mounting bracket 11 is folded downward to form a first flange
222. The first flange 222 is folded in a direction away from the window-mounting bracket
11 to form a second flange 223. The stop portion 24 is formed on the second flange
223. In this way, the structure is simple and easy to implement.
[0063] It can be understood that the structural form of the second limiting portion 21 has
various options. For example, referring to FIG. 6 and FIG. 7, the second limiting
portion 21 is configured as a limiting hole adapted to the first engaging protrusion
131. In another embodiment, the second limiting portion 21 can also be configured
as a limiting notch groove adapted to the first engaging protrusion 131. Specifically,
the contour of the limiting notch groove matches the first engaging protrusion 131.
For example, in an embodiment where the first engaging protrusion 131 is configured
as a cylinder, the limiting notch groove is configured as a cylindrical surface segment,
as shown in FIG. 12. Of course, in other embodiments, a flat end surface of the first
bracket 20 can also be directly used as the second limiting portion 21, without the
need to additionally provide a hole structure or a notch structure.
[0064] To facilitate operation and avoid the risk of the user slipping when pushing or pulling
the first bracket 20, an anti-slip portion 229 is provided on a side of the first
bracket 20 away from the second limiting portion 21. The anti-slip portion 229 is
configured as an anti-slip grid hole or an anti-slip grid rib.
[0065] Referring to FIG. 7, in some embodiments, the first bracket 20 is provided at an
end of the load-bearing bracket 12 close to the window-mounting bracket 11. The main
bracket 10 further includes a limiting bracket 14. The limiting bracket 14 is provided
at an end of the load-bearing bracket 12 away from the window-mounting bracket 11,
and is configured to limitingly connect the outdoor unit 102. In this way, through
the joint restriction of the front and rear ends of the outdoor unit 102 by the first
bracket 20 and the limiting bracket 14, the installation stability of the outdoor
unit 102 can be further improved. Of course, in other embodiments, the limiting bracket
14 may also be omitted.
[0066] Referring to FIG. 1 and FIG. 9, in some embodiments, the mounting bracket assembly
further includes a second bracket 30. The second bracket 30 is provided on a lower
surface of the outdoor unit 102. When the outdoor unit 102 moves along the first direction
on the load-bearing bracket 12, at least a portion of the limiting bracket 14 moves
to above the second bracket 30 and abuts against an upper surface of the second bracket
30. In this way, the vertical restriction of the outdoor unit 102 by the limiting
bracket 14 can be quickly achieved. When the user installs the outdoor unit 102, they
only need to place the outdoor unit 102 on the pre-installed main bracket 10, and
then push it forward to the fixed position, without requiring additional operations
or auxiliary tools.
[0067] Referring to FIG. 1, FIG. 13 to FIG. 15, in some embodiments, the mounting bracket
101 further includes a support bracket 40 provided on the load-bearing bracket 12.
The support bracket 40 adjusts a connection position along the first direction on
the load-bearing bracket 12 to abut against an outer wall surface and/or a window
sill. In this way, the support bracket 40 can adjust its installation position on
the main bracket 10 along the first direction, making the position of the abutting
end surface of the support bracket 40 (used for abutting against the outer wall surface
and/or window sill) relative to the window-mounting bracket 11 adjustable. That is,
the distance between the abutting end surface of the support bracket 40 and the window-mounting
bracket 11 is adjustable. This adjustable distance can adapt to window sills of different
widths. Thus, it is convenient for the user to independently adjust the installation
position of the support bracket 40 on the main bracket 10, so that the support bracket
40 can properly abut against the outer wall surface and/or window sill, and the mounting
bracket 101 can properly adapt to different window sill widths.
[0068] Referring to FIG. 13 to FIG. 15, in some embodiments, a lower surface of the load-bearing
bracket 12 is provided with a first mounting groove 121. A plurality of limiting ribs
124 are convexly provided on a side surface of the first mounting groove 121. The
plurality of limiting ribs 124 are spaced apart along the first direction, and adjacent
two limiting ribs 124 form a limiting interval 125. An upper end of the support bracket
40 is provided with a third limiting portion 41. The third limiting portion 41 is
provided with a second engaging protrusion 411 corresponding to the limiting interval
125. Under the elastic deformation of the third limiting portion 41, the second engaging
protrusion 411 can engage with the limiting interval 125, and the second engaging
protrusion 411 can be selectively installed in one of the plurality of limiting intervals
125.
[0069] In the present application, the limiting interval 125 is formed by limiting the limiting
ribs 124 on the inner wall surface of the first mounting groove 121, without opening
holes on the side wall of the first mounting groove 121. Therefore, it can avoid the
problem of weakened structural strength of the first mounting groove 121 due to hole
structures, thereby improving the structural strength of the load-bearing bracket
12, which is beneficial to the installation reliability of the outdoor unit 102. Of
course, in other embodiments, a limiting hole can also be opened on a side wall or
a bottom wall of the first mounting groove 121, and the first engaging protrusion
131 can engage with the limiting hole.
[0070] In some embodiments, the load-bearing bracket 12 is integrally stamped to form the
limiting ribs 124. In this way, the structure is simple and easy to implement, and
can reduce the manufacturing cost of the load-bearing bracket 12. Of course, in other
embodiments, the limiting ribs 124 can also be separately provided from the load-bearing
bracket 12, and fixed to the load-bearing bracket 12 by welding; or the load-bearing
bracket 12 can be machined to form the limiting ribs 124 together with the first mounting
groove 121, or the load-bearing bracket 12 can be die-cast to form the first mounting
groove 121 and the limiting ribs 124.
[0071] Referring to FIG. 5, FIG. 8, FIG. 14, and FIG. 15, in some embodiments, the main
bracket 10 further includes a reinforcing bracket 15. The reinforcing bracket 15 is
provided on a bottom surface of the first mounting groove 121. In this way, the local
structural strength of the load-bearing bracket 12 can be enhanced, which is beneficial
to improving its service life and the installation reliability of the outdoor unit
102. Of course, in other embodiments, the reinforcing bracket 15 may also be omitted.
[0072] Referring to FIG. 5, FIG. 14, and FIG. 15, in some embodiments, opposite sides of
the reinforcing bracket 15 are folded downward to form third flanges 151. An upper
end of the support bracket 40 is provided with a sliding portion 42. An upper end
of the sliding portion 42 slidingly abuts between the two third flanges 151. In this
way, the reinforcing bracket 15 also serves to restrict the movement of the support
bracket 40 in the left-right direction. That is, the support bracket 40 slides smoothly
along the first direction (i.e., the front-rear direction) on the first mounting groove
121 without left-right shaking. Of course, in other embodiments, the reinforcing bracket
15 may not be provided with the third flanges 151, and only serves to reinforce the
load-bearing bracket 12.
[0073] Referring to FIG. 5 and FIG. 15, in some embodiments, opposite sides of the reinforcing
bracket 15 are further folded downward to form fourth flanges 152. The fourth flanges
152 abut against a side surface of the first mounting groove 121 and are located above
the limiting ribs 124. In this way, through the fourth flanges 152, the reinforcing
bracket 15 can be conveniently positioned within the first mounting groove 121, achieving
better installation and fixation between the two. Of course, in other embodiments,
the fourth flanges 152 may also be omitted.
[0074] Referring to FIG. 5 and FIG. 15, in some embodiments, both sides of a slot opening
of the first mounting groove 121 are folded inward to form fifth flanges 121a. A lower
end of the sliding portion 42 slidingly abuts between the two fifth flanges 121a.
A side surface of the sliding portion 42 is convexly provided with a limiting protrusion,
which slidingly abuts against an inner side surface of the fifth flanges 121a. In
this way, through the simultaneous restriction of the upper and lower ends of the
sliding portion 42 by the third flanges 151 and the fifth flanges 121a, the risk of
left-right shaking of the load-bearing bracket 12 can be further avoided. Of course,
in other embodiments, the fifth flanges 121a may also be omitted.
[0075] Referring to FIG. 14 and FIG. 15, in some embodiments, the support bracket 40 further
includes a pin shaft 421. The sliding portion 42 is provided with a pin hole corresponding
to the pin shaft 421. A portion of the pin shaft 421 protruding out of the pin hole
is configured as the limiting protrusion. In this way, the structure is simple and
easy to implement, and facilitates the assembly between the support bracket 40 and
the load-bearing bracket 12. Of course, in other embodiments, the limiting protrusion
can also be a protruding column welded and fixed to an outer side surface of the sliding
portion 42.
[0076] Referring to FIG. 14 and FIG. 15, in some embodiments, the support bracket 40 is
provided with a second mounting groove 43 and a second through-hole 44 communicating
with the second mounting groove 43 and corresponding to the limiting interval 125.
The third limiting portion 41 is disposed in the second mounting groove 43, and the
second engaging protrusion 411 at least partially protrudes out of the second through-hole
44. In this way, the third limiting portion 41 can elastically deform smoothly and
stably within the second mounting groove 43, and the second through-hole provides
positioning and guiding for the second engaging protrusion 411, thereby enabling the
second engaging protrusion 411 to more stably engage into or disengage from the limiting
interval 125. Of course, in other embodiments, the second mounting groove 43 and the
second through-hole 44 may also be omitted, and the support bracket 40 can directly
form the third limiting portion 41 and the second engaging protrusion 411.
[0077] Referring to FIG. 14, in some embodiments, both side surfaces of the first mounting
groove 121 are provided with limiting ribs 124. Two second engaging protrusions 411
and two second through-holes 44 are correspondingly provided, and the two second engaging
protrusions 411 are installed in one-to-one correspondence with the two side surfaces
of the first mounting groove 121. In this way, both left and right sides of the support
bracket 40 are subjected to forces applied by the second mounting groove 43, which
can improve the sliding smoothness and installation stability of the support bracket
40. Of course, in other embodiments, only one side of the limiting rib and the second
engaging protrusion 411 may be provided.
[0078] Referring to FIG. 14 and FIG. 15, in some embodiments, a bottom wall of the second
mounting groove 43 is provided with a folded opening 45. A side edge of the folded
opening 45 close to the load-bearing bracket 12 is folded toward a slot opening of
the second mounting groove 43 to form a sixth flange 46. The sixth flange 46 is folded
downward to form a seventh flange 47. The side edge of the folded opening 45, the
sixth flange 46, and the seventh flange 47 jointly define an installation space. The
third limiting portion 41 includes two intersecting third segments 412. First ends
of the two third segments 412 are connected and disposed in the installation space.
Second ends of the third segments 412 are provided with the second engaging protrusion
411. In this way, the sixth flange 46 and the seventh flange 47 can position and restrict
the third limiting portion 41, enabling the third limiting portion 41 to be stably
installed within the second mounting groove 43 and to elastically deform smoothly
within the second mounting groove 43. Of course, in other embodiments, the sixth flange
46 and the seventh flange 47 may also be omitted.
[0079] Referring to FIG. 16 to FIG. 24, in another embodiment of the present application,
the mounting bracket assembly includes: a mounting bracket 101 and a first bracket
20.
[0080] The mounting bracket 101 includes a main bracket 10. The main bracket 10 includes
a window-mounting bracket 11 and a load-bearing bracket 12 connected to each other,
the window-mounting bracket 11 is mounted on a window frame, the load-bearing bracket
12 extends along a first direction to the outside of a window 103, and an outdoor
unit 102 is provided on an upper surface of the load-bearing bracket 12.
[0081] The first bracket 20 is connected to the outdoor unit 102, one of the load-bearing
bracket 12 and the first bracket 20 is provided with a first limiting portion 13 capable
of elastic deformation, and the other of the load-bearing bracket 12 and the first
bracket 20 is provided with a second limiting portion 21. During the process of the
outdoor unit 102 moving relative to the load-bearing bracket 12 to an installation
position, the first limiting portion 13 can be elastically engaged with the second
limiting portion 21.
[0082] In the technical solution of the present application, after the outdoor unit 102
is installed on the load-bearing bracket 12 and is at the installation position, the
first limiting portion 13 can be elastically engaged with the second limiting portion
21, achieving a limiting connection with the second limiting portion 21, thereby restricting
the outdoor unit 102 at the installation position, i.e., completing the installation
and fixation of the outdoor unit 102. In this way, through the cooperative structure
of the first limiting portion 13 and the second limiting portion 21, the installation
and fixation of the outdoor unit 102 do not require screws and corresponding tools
such as screwdrivers. This operation is more convenient, thereby improving the user
experience.
[0083] Referring to FIG. 16 to FIG. 32, in some embodiments, optionally, the first limiting
portion 13 is provided on the load-bearing bracket 12, and the second limiting portion
21 is provided on the first bracket 20. During the process of the outdoor unit 102
being placed on the load-bearing bracket 12 from top to bottom and reaching the installation
position, the first bracket 20 can urge the first limiting portion 13 to elastically
deform in a direction intersecting with a vertical direction, so as to be elastically
engaged with the second limiting portion 21.
[0084] Specifically, in the embodiment of the present application, the inner side of the
window 103 is defined as the rear, and the outer side of the window 103 is defined
as the front. Thus, the front-rear direction is the first direction, the upper side
of the outdoor unit 102 is the upper side, and the lower side of the outdoor unit
102 is the lower side. When facing forward, the left side of the outdoor unit 102
is the left side, and the right side of the outdoor unit 102 is the right side.
[0085] In the present application, during the process of the outdoor unit 102 being placed
on the load-bearing bracket 12 from top to bottom, the first bracket 20 extending
along the vertical direction can push against the first limiting portion 13, causing
the first limiting portion 13 to elastically deform in a direction intersecting with
the vertical direction. That is, the first limiting portion 13 elastically deforms
in a substantially horizontal plane. When the first bracket 20 falls to a preset position
following the outdoor unit 102 (i.e., when the outdoor unit 102 is at the installation
position), the elastic potential energy of the first limiting portion 13 decreases
and it engages with the second limiting portion 21, thereby completing the restriction
of the first bracket 20 by the load-bearing bracket 12. In this way, only this single
installation operation of placing from top to bottom is required to complete the drop-in
fixation of the outdoor unit 102 on the mounting bracket 101. The operation is more
convenient, thereby further improving the user experience.
[0086] Of course, in other embodiments, the first limiting portion 13 can also be provided
on the first bracket 20, and the second limiting portion 21 can be provided on the
load-bearing bracket 12. In this case, the first limiting portion 13 can fall to a
preset position following the outdoor unit 102, while the second limiting portion
21 remains in its original position. During the falling process, the first limiting
portion 13 will be urged by the first bracket 20 to elastically deform, and finally
engage with the second limiting portion 21, thereby completing the restriction of
the first bracket 20 by the load-bearing bracket 12.
[0087] It should be noted that the installation method of the outdoor unit 102 is not limited
to the aforementioned direct drop-in scheme from top to bottom. In other embodiments,
the outdoor unit 102 is first placed on the load-bearing bracket 12 from top to bottom,
and then the outdoor unit 102 is pushed or pulled to enable it to move along the first
direction on the load-bearing bracket 12 to the installation position. At this time,
the first limiting portion 13 elastically deforms and restricts the second limiting
portion 21. That is, in the present application, two installation operations are required
to place the outdoor unit 102 at the installation position.
[0088] Specifically and optionally, the outdoor unit 102 is first placed from top to bottom
on the end of the load-bearing bracket 12 close to the window, and then pushed forward
to the installation position. That is, after being pushed in a direction away from
the window to the installation position, the first limiting portion 13 can limitingly
connect the second limiting portion 21. Alternatively, the outdoor unit 102 is first
placed from top to bottom on the end of the load-bearing bracket 12 away from the
window, and then pulled backward to the installation position. That is, after being
pulled in a direction close to the window to the installation position, the first
limiting portion 13 can limitingly connect the second limiting portion 21.
[0089] Referring to FIGS. 20, 26, 29, and 32, in some embodiments, the first bracket 20
includes a pin 25 extending along the vertical direction, and the second limiting
portion 21 is provided on a side surface of the pin 25. In this way, the structure
is simple and easy to implement. Of course, in other embodiments, such as in an embodiment
where the outdoor unit 102 is first placed from top to bottom and then moved along
the first direction to the installation position, the first bracket 20 can also extend
along the front-rear direction, and the first bracket 20 is not limited to the pin
form. For example, the first bracket 20 can be configured as a tubular structure.
[0090] In some embodiments, a lower end surface of the pin 25 is provided with a guide surface
212. An axial cross-sectional diameter of the guide surface 212 is gradually reduced
in a top-to-bottom direction, and the second limiting portion 21 is disposed above
the guide surface 212. It should be noted that the axial cross-section of the guide
surface 212 refers to the cross-section obtained by cutting it with a plane perpendicular
to the axis of the pin 25. In this way, the guide surface 212 can provide a good guiding
action, enabling the pin 25 to more smoothly contact and push against the first limiting
portion 13. Of course, in other embodiments, the guide surface 212 may also be omitted,
or the guide surface 212 can be provided on the first limiting portion 13.
[0091] In some embodiments, the second limiting portion 21 is a stop groove provided on
the side surface of the pin 25. In this way, both the upper side surface and the lower
side surface of the stop groove can restrict the first limiting portion 13, thereby
improving the connection reliability between the first limiting portion 13 and the
first bracket 20. In other embodiments, the second limiting portion 21 can also be
a stop step convexly provided on a side surface of the first bracket 20, and the first
limiting portion 13 can engage with an upper surface of the stop step.
[0092] Referring to FIGS. 20, 21, 26, 29, and 32, in some embodiments, the mounting bracket
assembly further includes a mounting base 80 provided on the load-bearing bracket
12. The mounting base 80 includes a guide tube portion 81. The guide tube portion
81 is provided with a tube inner cavity 811 for the pin 25 to be inserted into, and
a clearance opening 812 communicating with a side surface of the tube inner cavity
811. The first limiting portion 13 includes an engaging portion 31. The engaging portion
31 is capable of being inserted into the tube inner cavity 811 from the clearance
opening 812 and engaging with the second limiting portion 21. In this way, the guide
tube portion 81 can guide and limit the pin 25, which is not only beneficial for the
pin 25 to smoothly insert into the tube inner cavity 811, but also can prevent the
first bracket 20 from shaking front-back or left-right on the load-bearing bracket
12. Of course, in other embodiments, the mounting base 80 may also be omitted. For
example, the load-bearing bracket 12 is provided with a pin hole corresponding to
the pin 25, the first limiting portion 13 is provided on a lower surface of the load-bearing
bracket 12, and a portion of the pin 25 passing through the pin hole is provided with
the second limiting portion 21.
[0093] Referring to FIGS. 16, 17, 25, 27, 28, 30, and 31, in some embodiments, in an embodiment
where the outdoor unit 102 can be placed on the load-bearing bracket 12 from top to
bottom and reach the installation position, the mounting bracket assembly further
includes a second bracket 72 provided on an end of the outdoor unit 102 away from
the window-mounting bracket 11. The second bracket 72 includes a pin shaft extending
along the vertical direction, and the main bracket 10 is provided with a pin hole
141 for the pin shaft to be adaptively inserted. In this way, during the process of
the outdoor unit 102 being drop-installed on the load-bearing bracket 12 from top
to bottom, the cooperation between the pin shaft and the pin hole 141 can provide
a guiding action, so that the pin 25 can more easily align with the tube inner cavity
811, thereby facilitating the drop-in operation. Of course, in other embodiments,
the second bracket 72 may also be omitted.
[0094] Referring to FIGS. 16, 17, 25, 27, 28, 30, and 31, in some embodiments, the main
bracket 10 further includes a limiting bracket 14. The limiting bracket 14 is provided
at an end of the load-bearing bracket 12 away from the window-mounting bracket 11,
and at least partially protrudes from an upper surface of the load-bearing bracket
12. In this way, the portion of the limiting bracket 14 protruding from the upper
surface of the load-bearing bracket 12 can restrict a front side surface of the outdoor
unit 102, preventing the outdoor unit 102 from moving excessively forward and falling
out of the load-bearing bracket 12. Of course, in other embodiments, the limiting
bracket 14 may also be omitted.
[0095] In some embodiments, two load-bearing brackets 12 and two first limiting portions
13 are provided and installed in one-to-one correspondence. The two load-bearing brackets
12 are respectively provided at opposite ends of the limiting bracket 14. The pin
hole 141 is disposed in a middle portion of the limiting bracket 14, and the second
bracket 72 is convexly provided on a lower surface of the outdoor unit 102. In this
way, the pin hole 141 located on the limiting bracket 14 and the two guide tube portions
81 located on the load-bearing brackets 12 jointly form a triangular positioning arrangement,
which can better restrict the outdoor unit 102, thereby improving the installation
reliability of the outdoor unit 102. In other embodiments, the pin hole 141 can also
be provided on the load-bearing bracket 12. For example, the pin shaft is provided
at an end of the load-bearing bracket 12 away from the window-mounting bracket 11,
and both the pin shaft and the pin hole 141 are provided in pairs, corresponding one-to-one
with the two load-bearing brackets 12.
[0096] Referring to FIGS. 16 to 21, 30 to 32, in some embodiments, the first limiting portion
13 further includes a fixing portion 32 connected to the engaging portion 31. The
mounting base 80 further includes a mounting plate 82 connected to the guide tube
portion 81. The fixing portion 32 is clamped between the mounting plate 82 and the
load-bearing bracket 12. In this way, by pressing the fixing portion 32 against the
load-bearing bracket 12 through the mounting plate 82, the fixing portion 32 is fixed
relative to the load-bearing bracket 12. The structure is simple and easy to implement.
Specifically and optionally, the mounting plate 82 is locked to the load-bearing bracket
12 by screws. Of course, in other embodiments, the mounting plate 82 can also be fixed
to the load-bearing bracket 12 by riveting, welding, or bonding.
[0097] Referring to FIGS. 16 to 21, 30 to 32, in some embodiments, a lower surface of the
mounting plate 82 is provided with an accommodating groove 821. A bottom of the accommodating
groove 821 is provided with an annular stop rib 822. The fixing portion 32 is suitably
sleeved on an outer peripheral surface of the annular stop rib 822, and is clamped
between a bottom surface of the accommodating groove 821 and an upper surface of the
load-bearing bracket 12. In this way, through the mutual restriction of the annular
stop rib 822 and the fixing portion 32, and utilizing the clamping force jointly applied
by the mounting plate 82 and the load-bearing bracket 12, the fixing portion 32 can
be reliably restricted within the accommodating groove 821, which is beneficial to
the displacement stability of the engaging portion 31. Of course, in other embodiments,
the accommodating groove 821 and the annular stop rib 822 may also be omitted. The
fixing portion 32 can be directly fixed to a lower surface of the mounting plate 82
by welding, riveting, or bonding, and then the mounting plate 82 is fixed to the load-bearing
bracket 12.
[0098] It should be noted that the annular structure in the present application, such as
the annular stop rib 822, does not specifically refer to a complete circular ring
structure, but includes non-complete circular ring structures. That is, it includes
embodiments where the annular stop rib 822 is broken at one point to form two opposite
ends, as shown in FIG. 6 and FIG. 17. For example, a plurality of stop ribs spaced
apart along the circumferential direction of the pin 25, where the plurality of stop
ribs jointly form a substantially complete annular structure.
[0099] Referring to FIGS. 16 to 20, 25, and 26, in some embodiments, the first bracket 20
further includes a bridge bracket 26. The bridge bracket 26 is provided on a side
of the outdoor unit 102 close to the window-mounting bracket 11. The pin 25 is provided
on a lower side surface of the bridge bracket 26. In this way, the cooperative structure
of the first limiting portion 13 and the first bracket 20 can be exposed behind the
outdoor unit 102, facilitating the user to observe and operate the first limiting
portion 13, and providing a larger operating space, thereby improving the user experience.
Of course, in other embodiments, the first bracket 20 can also be provided on a lower
surface of the outdoor unit 102, such as the structures shown in the third and fourth
embodiments.
[0100] Referring to FIGS. 17, 19, and 25, in some embodiments, the bridge bracket 26 is
provided with a mounting through-hole 261. The outdoor unit 102 is provided with a
threaded hole. The mounting bracket assembly further includes a hand-tightening bolt
71. The mounting through-hole 261 is installed on the threaded hole through the hand-tightening
bolt 71. In this way, it is convenient for the user to independently assemble and
disassemble the bridge bracket 26, providing another operation method for assembling
and disassembling the outdoor unit 102 for the user to choose, thereby improving the
flexibility and convenience of assembling and disassembling the outdoor unit 102.
Specifically, in addition to the operation method of installing or disassembling the
bridge bracket 26 and the outdoor unit 102 together, the user can also, during the
installation operation, first place the outdoor unit 102 alone onto the load-bearing
bracket 12, then align the pin 25 on the bridge bracket 26 with the guide tube portion
81 of the mounting base 80. After the pin 25 is inserted into the guide tube portion
81, the mounting through-hole 261 of the bridge bracket 26 can align with the threaded
hole. Finally, the hand-tightening bolt 71 is used to lock the mounting through-hole
261 and the threaded hole together. Similarly, during the disassembly operation, first
release the connection between the mounting through-hole 261 and the threaded hole
by the hand-tightening bolt 71, then remove the pin 25 and the bridge bracket 26,
and finally lift the outdoor unit 102 alone away from the load-bearing bracket 12.
[0101] Referring to FIGS. 18, 20, and 21, in an embodiment, an upper surface of the mounting
plate 82 is convexly provided with a first stop protrusion 129. When the engaging
portion 31 is engaged with the second limiting portion 21, the first stop protrusion
129 is located on a side of the engaging portion 31 away from the second limiting
portion 21. The first limiting portion 13 is capable of elastic deformation to enable
the engaging portion 31 to be engaged on a side of the first stop protrusion 129 away
from the second limiting portion 21. In this way, through the first stop protrusion
129, the engaging portion 31 can be restricted in a released state disengaged from
the second limiting portion 21, so that the user can more easily lift the outdoor
unit 102 away from the load-bearing bracket 12 and complete the disassembly of the
outdoor unit 102. Of course, in other embodiments, the first stop protrusion 129 may
also be omitted. The user can toggle the first limiting portion 13 to disengage the
engaging portion 31 from the second limiting portion 21 while simultaneously lifting
the outdoor unit 102, which can also achieve the disassembly of the outdoor unit 102.
[0102] Referring to FIGS. 18, 20, and 21, in an embodiment, the first limiting portion 13
further includes an operating portion 33 connected to the fixing portion 32. The operating
portion 33 is exposed above the load-bearing bracket 12 and is configured for applying
an operating force. In this way, the operating portion 33 can facilitate the user
to toggle the first limiting portion 13 to engage the engaging portion 31 with the
first stop protrusion 129. Specifically and optionally, the operating portion 33 includes
two intersecting straight rod segments. A first straight rod segment is arranged opposite
to the engaging portion 31, and a second straight rod segment connects the first straight
rod segment and the engaging portion 31. Of course, in other embodiments, the operating
portion 33 can also be configured as a pull ring, or the operating portion 33 may
be omitted.
[0103] Referring to FIG. 25 and FIG. 26, in an embodiment, the first limiting portion 13
further includes a fixing portion 32 intersecting with the engaging portion 31. The
load-bearing bracket 12 is provided with a mounting portion 126 corresponding to the
fixing portion 32. The fixing portion 32 is connected to the mounting portion 126.
In this way, the load-bearing bracket 12 is directly provided with the mounting portion
126 for installing the first limiting portion 13, which can simplify the structure
of the mounting bracket assembly.
[0104] It should be noted that the first stop protrusion 129 is not limited to being provided
on the mounting base 80, and can also be provided on the load-bearing bracket 12.
For example, referring to FIG. 25 and FIG. 26, in an embodiment, the mounting portion
126 is provided on an upper surface of the load-bearing bracket 12. The upper surface
of the load-bearing bracket 12 is further provided with a first stop protrusion 129.
When the engaging portion 31 is engaged with the second limiting portion 21, the first
stop protrusion 129 is located on a side of the engaging portion 31 away from the
second limiting portion 21. The first limiting portion 13 is capable of elastic deformation
to enable the engaging portion 31 to be engaged on a side of the first stop protrusion
129 away from the second limiting portion 21. In this way, through the first stop
protrusion 129, the engaging portion 31 can be restricted in a released state disengaged
from the second limiting portion 21, so that the user can more easily lift the outdoor
unit 102 away from the load-bearing bracket 12 and complete the disassembly of the
outdoor unit 102.
[0105] Referring to FIG. 25 and FIG. 26, in an embodiment, optionally, an upper surface
of the load-bearing bracket 12 is further provided with a second stop protrusion 130.
The second stop protrusion 130 is provided on a side of the engaging portion 31 close
to the second limiting portion 21, and the engaging portion 31 abuts against the second
stop protrusion 130. In this way, the second stop protrusion 130 can prevent the engaging
portion 31 of the first limiting portion 13 from excessively inserting into the tube
inner cavity 811, which is beneficial to the insertion of the pin 25 into the tube
inner cavity 811. Further optionally, the second stop protrusion 130 is provided at
an end of the engaging portion 31 close to the fixing portion 32. That is, the second
stop protrusion 130 is disposed close to a rotation axis of the engaging portion 31.
Of course, in other embodiments, the second stop protrusion 130 may also be omitted.
[0106] In an embodiment, the mounting portion 126 is provided on a side of the engaging
portion 31 away from the second stop protrusion 130, and includes two installation
protruding ribs spaced apart and opposite to each other. The installation protruding
ribs are provided with insertion holes, and the fixing portion 32 can be inserted
into the two insertion holes. In this way, the structure is simple and facilitates
the installation and fixation of the fixing portion 32. Of course, in other embodiments,
the mounting portion 126 can also adopt other structural forms, such as an annular
protruding rib, where the fixing portion 32 is suitably sleeved on an outer peripheral
surface of the annular protruding rib. The present application does not specifically
limit this.
[0107] In an embodiment, the load-bearing bracket 12 integrally forms the first stop protrusion
129, the second stop protrusion 130, and the installation protruding ribs by stamping.
In this way, the production steps of the structure of the load-bearing bracket 12
can be simplified, thereby reducing the manufacturing cost of the load-bearing bracket
12. Of course, in other embodiments, the first stop protrusion 129, the second stop
protrusion 130, and the installation protruding ribs can also be separately provided
from the load-bearing bracket 12, and fixed to the load-bearing bracket 12 by welding
or screwing.
[0108] Referring to FIG. 27 to FIG. 29, in an embodiment, the second limiting portion 21
extends along a circumferential direction of the pin 25. The first limiting portion
13 includes a first rod segment 30a and a second rod segment 30b connected to each
other. The first rod segment 30a is sleeved on a circumferential side surface of the
guide tube portion 81. The second rod segment 30b extends into the tube inner cavity
811 and is configured as the engaging portion 31. In this way, through the elastic
deformation of the first rod segment 30a on the guide tube portion 81, the second
rod segment 30b can be urged to engage with or disengage from the second limiting
portion 21. The structure is simple and easy to implement.
[0109] Referring to FIG. 27 to FIG. 29, in an embodiment, the first limiting portion 13
further includes a third rod segment 30c connected to the second rod segment 30b.
The third rod segment 30c extends from the second rod segment 30b in a direction away
from the second limiting portion 21, and is at least partially exposed to a side of
the load-bearing bracket 12 for being toggled. In this way, the portion of the third
rod segment 30c exposed to the side of the load-bearing bracket 12 can be toggled
by the user to urge the first rod segment 30a and the second rod segment 30b to elastically
deform, thereby releasing the engagement of the second rod segment 30b with the second
limiting portion 21. The operating space is large and the operation is labor-saving,
thereby improving the user experience. Of course, in other embodiments, the third
rod segment 30c may also be omitted.
[0110] In an embodiment, a central axis of the second rod segment 30b extends along an arc.
The second rod segment 30b is formed with an anti-detachment recess 34 on a side away
from the second limiting portion 21. The mounting base 80 is provided with an anti-detachment
protruding column 825 corresponding to the anti-detachment recess 34. The anti-detachment
protruding column 825 is provided on a side of the anti-detachment recess 34 away
from the second limiting portion 21. In this way, the anti-detachment protruding column
825 can prevent the first rod segment 30a from excessively deforming and detaching
from the guide tube portion 81, thereby improving the operational stability of the
first limiting portion 13. Of course, in other embodiments, the anti-detachment protruding
column 825 may also be omitted. Furthermore, the central axis of the second rod segment
30b can also extend along a bent multi-segment straight line, or along an S-shaped
curve, etc.
[0111] Referring to FIG. 29, in an embodiment, the mounting base 80 further includes a mounting
plate 82 connected to a side surface of the guide tube portion 81. At least two anti-detachment
engaging protrusions 813 are convexly provided on a circumferential side surface of
the guide tube portion 81. The at least two anti-detachment engaging protrusions 813
are spaced apart along the circumferential direction of the guide tube portion 81.
The anti-detachment engaging protrusions 813 and a lower surface of the mounting plate
82 jointly define an anti-detachment annular groove. The first rod segment 30a is
embedded in the anti-detachment annular groove. In this way, the first rod segment
30a can stably deform on the guide tube portion 81, preventing the first rod segment
30a from detaching from the guide tube portion 81, which would cause the second rod
segment 30b to be unable to insert into the tube inner cavity 811. This improves the
reliability of state switching between engagement and disengagement of the engaging
portion 31 with the second limiting portion 21. Of course, in other embodiments, the
anti-detachment engaging protrusions 813 may also be omitted, and an anti-detachment
annular groove can be directly opened on the circumferential side surface of the guide
tube portion 81.
[0112] Referring to FIG. 28 and FIG. 29, in an embodiment, a lower side surface of the load-bearing
bracket 12 is provided with a first mounting groove 121. The mounting plate 82 is
disposed in the first mounting groove 121. A bottom of the first mounting groove 121
is provided with a first through-hole 122. The guide tube portion 81 is inserted into
the first through-hole 122. A slot side of the first mounting groove 121 is provided
with a clearance opening 128. One end of the third rod segment 30c passes out of the
clearance opening 128 and can swing along an extension direction of the clearance
opening 128. In this way, the structural form of the first mounting groove 121 can
improve the structural strength of the load-bearing bracket 12, and can hide most
of the structures of the mounting base 80 and the first limiting portion 13 within
the first mounting groove 121. This not only provides protection for them but also
improves the neatness and aesthetics of the air conditioner. Of course, in other embodiments,
the load-bearing bracket 12 may also not be provided with the first mounting groove
121.
[0113] Referring to FIG. 29, in an embodiment, an end of the third rod segment 30c passing
out of the clearance opening 128 is provided with an operating portion 33. The operating
portion 33 is configured for applying an operating force. In this way, the operating
portion 33 can facilitate the user to toggle the first limiting portion 13 to disengage
the engaging portion 31 from the second limiting portion 21. Specifically and optionally,
the operating portion 33 is configured as a pull ring structure. Of course, in other
embodiments, the operating portion 33 can also include two intersecting straight rod
segments. A first straight rod segment is arranged opposite to the engaging portion
31, and a second straight rod segment connects the first straight rod segment and
the engaging portion 31. Of course, the operating portion 33 may also be omitted.
[0114] Referring to FIG 30 to FIG. 32, in an embodiment, the first limiting portion 13 further
includes an operating portion 33 connected to the engaging portion 31 and the fixing
portion 32. The load-bearing bracket 12 is provided with a second through-hole 123
corresponding to the operating portion 33. The operating portion 33 passes through
the second through-hole 123 and is exposed below the load-bearing bracket 12. The
operating portion 33 is drivable to deform along an extension direction of the second
through-hole 123, so as to engage or disengage the engaging portion 31 with/from the
second limiting portion 21. In this way, through the guiding and limiting action of
the second through-hole 123 on the operating portion 33, when the user applies an
operating force to the operating portion 33, the engaging portion 31 can timely and
effectively disengage from the second limiting portion 21.
[0115] Referring to FIG. 30 to FIG. 32, in an embodiment, a bottom of the first mounting
groove 121 is provided with a first through-hole 122 corresponding to the guide tube
portion 81. The guide tube portion 81 is disposed in the first through-hole 122, and
the clearance opening 812, the engaging portion 31, and the fixing portion 32 are
all provided on an upper surface of the load-bearing bracket 12. In this way, it is
convenient for the user to observe whether the engaging portion 31 and the second
limiting portion 21 are engaged in place. Further optionally, the second through-hole
123 communicates with the first through-hole 122, facilitating the processing of the
first through-hole 122 and the second through-hole 123 on the load-bearing bracket
12. Of course, in other embodiments, the first through-hole 122 and the second through-hole
123 can also be separated, or the clearance opening 812, the engaging portion 31,
and the fixing portion 32 can be provided on a lower surface of the load-bearing bracket
12.
[0116] Referring to FIGS. 16, 17, 19, 20, 23 to 25, 27, 28, 30, and 31, in some embodiments,
the mounting bracket 101 further includes a support bracket 40 provided on the load-bearing
bracket 12. The support bracket 40 is adjustably connected in position along the first
direction on the load-bearing bracket 12, and abuts against an outer wall surface
and/or a window sill. In this way, the support bracket 40 can adjust its installation
position on the main bracket 10 along the first direction, making the position of
the abutting end surface of the support bracket 40 (used for abutting against the
outer wall surface and/or window sill) relative to the window-mounting bracket 11
adjustable. That is, the distance between the abutting end surface of the support
bracket 40 and the window-mounting bracket 11 is adjustable. This adjustable distance
can adapt to window sills of different widths. Thus, it is convenient for the user
to independently adjust the installation position of the support bracket 40 on the
main bracket 10, so that the support bracket 40 can properly abut against the outer
wall surface and/or window sill, and the mounting bracket 101 can properly adapt to
different window sill widths. Of course, in other embodiments, the support bracket
40 can also be fixedly disposed below the load-bearing bracket 12.
[0117] Referring to FIGS. 20, 23, 24, and 32, in some embodiments, a lower surface of the
load-bearing bracket 12 is provided with a first mounting groove 121. The main bracket
10 further includes a reinforcing bracket 60. The reinforcing bracket 60 is provided
on a bottom surface of the first mounting groove 121. In this way, the local structural
strength of the load-bearing bracket 12 can be enhanced, which is beneficial to improving
its service life and the installation reliability of the outdoor unit 102. Of course,
in other embodiments, the reinforcing bracket 60 may also be omitted.
[0118] In some embodiments, opposite sides of the reinforcing bracket 60 are folded downward
to form first flanges 61. The first flanges 61 are provided with serrated portions
62 extending along the first direction. The support bracket 40 slidingly abuts against
the serrated portions 62 when moving along the first direction. In this way, through
the serrated portions 62 providing support force and resistance to the support bracket
40, the support bracket 40 can both move along the first direction under a relatively
large external force and stably support between the load-bearing bracket 12 and the
outer wall surface.
[0119] Of course, in other embodiments, the mounting bracket 101 can also include an embedded
bracket. The embedded bracket includes an embedded portion provided on an upper end
of the support bracket 40. The embedded portion includes two opposite first plate
portions and a second plate portion connecting the two first plate portions. The embedded
portion is adaptively embedded in the first mounting groove 121. Specifically, the
first plate portions and the second plate portion are interference-fitted with the
first mounting groove 121. Both the first plate portions and the second plate portion
abut against an inner surface and/or a slot opening side edge of the first mounting
groove 121. The static friction generated by the tight fit can achieve relative fixation
of the upper end of the support bracket 40 within the first mounting groove 121. When
it is necessary to adjust the installation position of the support bracket 40 along
the first direction within the first mounting groove 121, a tool such as a hammer
can be used to strike the support bracket 40. In this way, the structure of the mounting
bracket 101 can be simplified. Furthermore, through the additionally provided embedded
bracket, the contact area between the embedded portion and the first mounting groove
121 can be increased, thereby increasing the friction between the two, and reducing
the risk of the support bracket 40 moving along the first direction on its own.
[0120] Referring to FIGS. 20, 23, and 24, in an embodiment, the serrated portion 62 is provided
on a lower surface of the first flange 61, and an upper end surface of the support
bracket 40 abuts against the serrated portion 62. In this way, the structure is simple
and easy to implement. Further optionally, both sides of a slot opening of the first
mounting groove 121 are folded inward to form second flanges 127. Opposite sides of
the support bracket 40 are convexly provided with sliding portions 53 and limiting
protrusions 54. The two sliding portions 53 slidingly abut between the two second
flanges 127, and the limiting protrusions 54 slidingly abut against upper side surfaces
of the second flanges 127. In this way, the installation stability of the support
bracket 40 on the load-bearing bracket 12 can be improved. Of course, in other embodiments,
the second flanges 127 may also be omitted.
[0121] Referring to FIG. 32, in another embodiment, the first flange 61 is provided with
a guide channel 63 extending along the first direction. A lower side surface of the
guide channel 63 is provided with a serrated portion 62. An outer side surface of
the support bracket 40 is provided with a limiting protrusion 54 corresponding to
the serrated portion 62. The limiting protrusion 54 is adaptively installed on the
serrated portion 62.
[0122] In another embodiment, both sides of a slot opening of the first mounting groove
121 are folded inward to form second flanges 127. A lower side surface of the first
flange 61 abuts against an upper side surface of the second flanges 127. Opposite
sides of the support bracket 40 are convexly provided with sliding portions 53 and
limiting protrusions 54. The two sliding portions 53 slidingly abut between the two
first flanges 61. In this way, the installation stability of the support bracket 40
on the load-bearing bracket 12 can be improved. Of course, in other embodiments, the
second flanges 127 may also be omitted.
[0123] Referring to FIGS. 20, 24, and 32, in some embodiments, a side of the support bracket
40 facing the window-mounting bracket 11 is provided with a second mounting groove
51. The support bracket 40 further includes a limiting shaft 52 passing through two
side walls of the second mounting groove 51. A portion of the limiting shaft 52 protruding
out of the second mounting groove 51 is configured as the limiting protrusion 54.
In this way, the structure is simple and easy to implement, and facilitates the assembly
between the support bracket 40 and the load-bearing bracket 12. Of course, in other
embodiments, the limiting protrusion 54 can also be a protruding column welded and
fixed to an outer side surface of the sliding portion 53.
[0124] The present application further proposes an air conditioner, including an outdoor
unit and the aforementioned mounting bracket assembly. For the specific structure
of the mounting bracket assembly, reference is made to the above embodiments. Since
the present air conditioner adopts all the technical solutions of the above embodiments,
it at least has all the beneficial effects brought by the technical solutions of the
above embodiments, which will not be repeated here. The mounting bracket assembly
is configured to mount the outdoor unit to an outside of a window.
[0125] The above descriptions are only some embodiments of the present application, and
are not intended to limit the scope of the present application. All equivalent structural
transformations made using the contents of the specification and drawings of the present
application under the inventive concept of the present application, or direct/indirect
applications in other related technical fields, are included in the scope of the present
application.
1. A mounting bracket assembly for mounting an outdoor unit of an air conditioner,
characterized by comprising:
a mounting bracket comprising a main bracket, wherein the main bracket comprises a
window-mounting bracket and a load-bearing bracket connected to the window-mounting
bracket, wherein the window-mounting bracket is mounted on a window frame, the load-bearing
bracket extends along a first direction to an outside of a window, and the outdoor
unit is provided on an upper surface of the load-bearing bracket; and
a first bracket connected to the outdoor unit,
wherein one of the load-bearing bracket and the first bracket is provided with a first
limiting portion capable of elastic deformation, and the other of the load-bearing
bracket and the first bracket is provided with a second limiting portion, wherein
when the outdoor unit moves along the first direction on the load-bearing bracket,
the first limiting portion is capable of engaging with the second limiting portion.
2. The mounting bracket assembly according to claim 1, wherein a lower surface of the
first bracket is provided with a first through-slot extending along the first direction,
wherein:
when the outdoor unit is placed on the load-bearing bracket from top to bottom, the
first bracket is sleeved on an upper side of the load-bearing bracket through the
first through-slot, and the load-bearing bracket is movable within the first through-slot;
and
the second limiting portion is provided in the first through-slot, and the first limiting
portion is provided on the load-bearing bracket.
3. The mounting bracket assembly according to claim 2, wherein the load-bearing bracket
is provided with a first mounting groove and a first through-hole communicating with
the first mounting groove, wherein the first limiting portion is disposed in the first
mounting groove and is provided with a first engaging protrusion corresponding to
the first through-hole, and a portion of the first engaging protrusion protruding
out of the first through-hole is capable of engaging with the second limiting portion.
4. The mounting bracket assembly according to claim 3, wherein the second limiting portion
is provided on a side wall of the first through-slot, a slot opening of the first
mounting groove is provided on a lower surface of the load-bearing bracket, and the
first through-hole is provided on a side wall of the first mounting groove.
5. The mounting bracket assembly according to claim 4, wherein:
the first through-slot is further provided with a guide portion on the side wall where
the first through-hole is disposed, wherein along the first direction and in a direction
away from the window-mounting bracket, the second limiting portion and the guide portion
are sequentially distributed, and the guide portion extends obliquely in a direction
away from the load-bearing bracket; and/or
the first limiting portion comprises two first segments and two second segments, wherein:
the two first segments are opposite to each other and spaced apart from each other,
and are connected by the two second segments, and the two second segments are opposite
to each other and intersect each other; and
one of the first segments is provided with the first engaging protrusion and elastically
abuts against one side wall of the first mounting groove, and the other first segment
elastically abuts against the other side wall of the first mounting groove.
6. The mounting bracket assembly according to claim 4, wherein a bottom wall of the first
mounting groove is provided with a mounting through-hole, and the first through-slot
is provided with a stop portion corresponding to the mounting through-hole, wherein
the stop portion is capable of passing through the mounting through-hole following
the placement of the outdoor unit, and is capable of moving along the first direction
following the outdoor unit to be limitingly connected with a hole edge of the mounting
through-hole.
7. The mounting bracket assembly according to claim 6, wherein:
the mounting through-hole comprises a clearance hole section and a limiting hole section
that communicate with each other, wherein the clearance hole section is provided on
a side of the limiting hole section close to the window-mounting bracket, and wherein
in a width direction of the first through-slot, a width of the limiting hole section
is smaller than a width of the clearance hole section; and
after the stop portion passes through the clearance hole section from top to bottom,
the stop portion is capable of moving along the first direction to below the limiting
hole section and abutting against a lower side surface of a hole edge of the limiting
hole section.
8. The mounting bracket assembly according to claim 6, wherein a bottom wall of the first
through-slot is provided with a bent opening, a side edge of the bent opening close
to the window-mounting bracket being folded downward to form a first flange, wherein
the first flange is folded in a direction away from the window-mounting bracket to
form a second flange, and the stop portion is formed on the second flange.
9. The mounting bracket assembly according to claim 6, wherein the first through-slot
comprises two opposite first plate segments, two second plate segments, two opposite
third plate segments, and a fourth plate segment connecting the two third plate segments,
wherein:
the side wall of the first through-slot is the first plate segment;
the third plate segment is opposite to the first plate segment;
the second plate segment connects the first plate segment and the third plate segment;
a bottom wall of the first through-slot is the second plate segment; and
the third plate segment is provided with a limiting notch at an end away from the
window-mounting bracket, and the stop portion is formed on a lower side edge of the
limiting notch.
10. The mounting bracket assembly according to claim 1, wherein the first bracket is provided
at an end of the load-bearing bracket close to the window-mounting bracket, and the
main bracket further comprises a limiting bracket, wherein the limiting bracket is
provided at an end of the load-bearing bracket away from the window-mounting bracket,
and is configured to limitingly connect the outdoor unit.
11. The mounting bracket assembly according to claim 10, further comprising:
a second bracket provided on a lower surface of the outdoor unit, wherein when the
outdoor unit moves along the first direction on the load-bearing bracket, at least
a portion of the limiting bracket moves to above the second bracket and abuts against
an upper surface of the second bracket.
12. The mounting bracket assembly according to claim 1, wherein the mounting bracket further
comprises a support bracket provided on the load-bearing bracket, wherein the support
bracket adjusts a connection position along the first direction on the load-bearing
bracket, and abuts against an outer wall surface and/or a window sill.
13. The mounting bracket assembly according to claim 1, wherein the first limiting portion
is provided on the load-bearing bracket, the second limiting portion is provided on
the first bracket, and when the outdoor unit is placed on the load-bearing bracket
from top to bottom and moves along the first direction, the first bracket is capable
of urging the first limiting portion to elastically deform in a direction intersecting
with a vertical direction, so as to be elastically engaged in the second limiting
portion.
14. The mounting bracket assembly according to claim 13, wherein the first bracket comprises
a pin extending along the vertical direction, and the second limiting portion is provided
on a side surface of the pin.
15. The mounting bracket assembly according to claim 14, wherein:
a lower end surface of the pin is provided with a guide surface, wherein an axial
cross-sectional diameter of the guide surface is gradually reduced in a top-to-bottom
direction, and the second limiting portion is disposed above the guide surface; and/or
the second limiting portion is a stop groove provided on the side surface of the pin;
and/or
the first bracket further comprises a bridge bracket, wherein the bridge bracket is
provided on a side of the outdoor unit close to the window-mounting bracket, and the
pin is provided on a lower side surface of the bridge bracket.
16. The mounting bracket assembly according to claim 14, further comprising a mounting
base provided on the load-bearing bracket, wherein:
the mounting base comprises a guide tube portion, wherein the guide tube portion is
provided with a tube inner cavity for the pin to be inserted into and a clearance
opening communicating with a side surface of the tube inner cavity; and
the first limiting portion comprises an engaging portion, wherein the engaging portion
is capable of being inserted into the tube inner cavity from the clearance opening
and engaging with the second limiting portion.
17. The mounting bracket assembly according to claim 16, wherein the first limiting portion
further comprises a fixing portion connected to the engaging portion, and the mounting
base further comprises a mounting plate connected to the guide tube portion, wherein
the fixing portion is clamped between the mounting plate and the load-bearing bracket.
18. The mounting bracket assembly according to claim 17, wherein a lower surface of the
mounting plate is provided with an accommodating groove, a bottom of the accommodating
groove being provided with an annular stop rib, wherein the fixing portion is suitably
sleeved on an outer peripheral surface of the annular stop rib, and is clamped between
a bottom surface of the accommodating groove and an upper surface of the load-bearing
bracket.
19. The mounting bracket assembly according to claim 17, wherein:
an upper surface of the mounting plate is provided with a first stop protrusion, wherein:
when the engaging portion is engaged with the second limiting portion, the first stop
protrusion is located on a side of the engaging portion away from the second limiting
portion; and
the first limiting portion is capable of elastic deformation to enable the engaging
portion to be engaged on a side of the first stop protrusion away from the second
limiting portion;
and/or
the first limiting portion further comprises an operating portion connected to the
fixing portion, wherein the operating portion is exposed above the load-bearing bracket,
and is configured for applying an operating force.
20. The mounting bracket assembly according to claim 16, wherein the first limiting portion
further comprises an operating portion connected to the engaging portion and the fixing
portion, and the load-bearing bracket is provided with a first through-hole corresponding
to the operating portion, wherein the operating portion passes through the first through-hole
and is exposed below the load-bearing bracket, and the operating portion is drivable
to deform along an extension direction of the first through-hole, so as to engage
the engaging portion with the second limiting portion or disengage the engaging portion
from the second limiting portion.
21. The mounting bracket assembly according to claim 20, wherein:
a bottom of the first mounting groove is provided with a second through-hole corresponding
to the guide tube portion, wherein the guide tube portion is disposed in the second
through-hole; and
both the engaging portion and the fixing portion are provided on an upper surface
of the load-bearing bracket.
22. The mounting bracket assembly according to claim 16, wherein the first limiting portion
further comprises a fixing portion intersecting with the engaging portion, and the
load-bearing bracket is provided with a mounting portion corresponding to the fixing
portion, wherein the fixing portion is connected to the mounting portion.
23. The mounting bracket assembly according to claim 22, wherein the mounting portion
is provided on an upper surface of the load-bearing bracket, and the upper surface
of the load-bearing bracket is further provided with a first stop protrusion, wherein:
when the engaging portion is engaged with the second limiting portion, the first stop
protrusion is located on a side of the engaging portion away from the second limiting
portion; and
the first limiting portion is capable of elastic deformation to enable the engaging
portion to be engaged on a side of the first stop protrusion away from the second
limiting portion.
24. The mounting bracket assembly according to claim 23, wherein the upper surface of
the load-bearing bracket is further provided with a second stop protrusion, and the
second stop protrusion abuts against a side of the engaging portion close to the second
limiting portion.
25. The mounting bracket assembly according to claim 16, wherein the second limiting portion
extends along a circumferential direction of the pin, and the first limiting portion
comprises a first rod segment and a second rod segment connected to each other, wherein
the first rod segment is sleeved on a circumferential side surface of the guide tube
portion, and the second rod segment extends into the tube inner cavity and is configured
as the engaging portion.
26. The mounting bracket assembly according to claim 25, wherein the first limiting portion
further comprises a third rod segment connected to the second rod segment, wherein
the third rod segment extends from the second rod segment in a direction away from
the second limiting portion, and is at least partially exposed to a side of the load-bearing
bracket for being toggled.
27. The mounting bracket assembly according to claim 26, wherein a central axis of the
second rod segment extends along an arc, the second rod segment is formed with an
anti-detachment recess on a side thereof away from the second limiting portion, and
the mounting base is provided with an anti-detachment protruding column corresponding
to the anti-detachment recess, wherein the anti-detachment protruding column is provided
on a side of the anti-detachment recess away from the second limiting portion.
28. The mounting bracket assembly according to claim 12, wherein a lower surface of the
load-bearing bracket is provided with a first mounting groove, and the main bracket
further comprises a reinforcing bracket, wherein the reinforcing bracket is provided
on a bottom surface of the first mounting groove.
29. The mounting bracket assembly according to claim 28, wherein opposite sides of the
reinforcing bracket are folded downward to form first flanges, the first flanges being
provided with serrated portions extending along the first direction, wherein the support
bracket slidingly abuts against the serrated portions when moving along the first
direction.
30. An air conditioner, comprising an outdoor unit and the mounting bracket assembly according
to any one of claims 1 to 29, wherein the mounting bracket assembly is configured
to mount the outdoor unit to an outside of a window.