TECHNICAL FIELD
[0002] The present application relates to the technical field of architectural decoration
and fitting-out, for example, a hardware mounting structure.
BACKGROUND
[0003] In the existing door or window structure, a frame body profile and a leaf body profile
are both provided with a groove structure in which a hardware transmission assembly
is installed so that a transmission structure of the frame body and the leaf body
is formed and thus the leaf body and the frame body can be opened or locked. The hardware
transmission assembly includes transmission rods, conversion transmission parts, and
multiple hardware parts.
[0004] However, a mounting operation of the existing hardware transmission assembly in the
groove of the profiles generally adopts a slot-through mounting method, which has
a complicated structure, a cumbersome operation, long mounting time, and low mounting
efficiency.
SUMMARY
[0005] The present application provides a hardware mounting structure, which has a simple
structure and is convenient for mounting.
[0006] The present application adopts the technical solutions described below.
[0007] Provided is a hardware mounting structure, including a base, a rotation part, and
an elastic piece.
[0008] The base is provided with an accommodation groove and a first boss.
[0009] The rotation part is disposed in the accommodation groove and rotatably connected
to the base, where the rotation part includes a locking piece, and two ends of the
locking piece are capable of protruding out of the accommodation groove when the rotation
part rotates.
[0010] A first end of the elastic piece is installed on the first boss, and a second end
of the elastic piece is capable of abutting against a side surface of the locking
piece, so as to limit rotation of the locking piece.
BRIEF DESCRIPTION OF DRAWINGS
[0011] The drawings used in description of embodiments of the present invention will be
briefly described below. Apparently, the drawings described below merely illustrate
some embodiments of the present application, and those of ordinary skill in the art
may obtain other drawings based on the contents of the embodiments of the present
invention and these drawings on the premise that no creative work is done.
FIG. 1 is a first axonometric view of a hardware mounting structure according to an
embodiment of the present application;
FIG. 2 is a second axonometric view of a hardware mounting structure according to
an embodiment of the present application;
FIG. 3 is an exploded view of a hardware mounting structure according to an embodiment
of the present application;
FIG. 4 is a structure view of a rotation part according to an embodiment of the present
application;
FIG. 5 is a first axonometric view of a hardware mounting structure according to an
embodiment of the present application after mounting is completed;
FIG. 6 is a second axonometric view of a hardware mounting structure according to
an embodiment of the present application after mounting is completed;
FIG. 7 is a structure view of a hardware mounting structure according to an embodiment
of the present application before being mounted in a groove of a profile; and
FIG. 8 is a structure view of a hardware mounting structure according to an embodiment
of the present application after being mounted in a groove of a profile.
Reference list
[0012]
- 1
- base
- 2
- rotation part
- 3
- elastic piece
- 11
- accommodation groove
- 12
- first boss
- 121
- clamping protrusion
- 13
- first connection hole
- 14
- through hole
- 21
- locking piece
- 211
- second boss
- 22
- connection shaft
- 221
- second connection hole
- 31
- connection plate
- 311
- third connection hole
- 100
- profile
DETAILED DESCRIPTION
[0013] Technical solutions in embodiments of the present invention will be further described
below in detail in conjunction with the drawings. Apparently, the embodiments described
below are merely part, not all of embodiments of the present application.
[0014] In the description of the present application, it is to be noted that the orientations
or position relations indicated by terms such as "center", "above", "below", "left",
"right", "vertical", "horizontal", "inside", "outside", and the like are based on
orientations or position relations shown in the drawings. These orientations or position
relations are intended only to facilitate and simplify the description of the present
application and not to indicate or imply that a device or element referred to must
have such specific orientations or must be configured or operated in such specific
orientations. Thus, these orientations or position relations are not to be construed
as limiting the present application. In addition, terms such as "first" and "second"
are used merely for the purpose of description and are not to be construed as indicating
or implying relative importance. For example, the terms "first position" and "second
position" are two different positions.
[0015] In the description of the present application, it is to be noted that terms such
as "mounted", "joined", and "connected" are to be understood in a broad sense unless
otherwise expressly specified and limited. For example, the term "connected" may refer
to "securely connected" or "detachably connected"; may refer to "mechanically connected"
or "electrically connected"; or may refer to "connected directly", "connected indirectly
through an intermediary", or "connected in two components". For those of ordinary
skill in the art, the specific meanings of the preceding terms in the present application
may be understood based on specific situations.
[0016] This embodiment provides a hardware mounting structure configured to mount a hardware
transmission assembly in a groove of a profile. As shown in FIGS. 1 to 3, the hardware
mounting structure includes a base 1, a rotation part 2, and an elastic piece 3. It
is to be noted that the base 1 is only an exemplary structure in this embodiment,
and the base 1 may be a part of a lock rod on a door and window, a transmission rod
on a transmission casing, or a rod-like transmission part on a hinge, or a part connected
to it.
[0017] In some examples, the base 1 is provided with an accommodation groove 11 and a first
boss 12. The rotation part 2 is disposed in the accommodation groove 11 and rotatably
connected to the base 1. The rotation part 2 includes a locking piece 21 (as shown
in FIG. 4). Two ends of the locking piece 21 can protrude out of the accommodation
groove 11 when the rotation part 2 rotates. A first end of the elastic piece 3 is
installed on the first boss 12, and a second end of the elastic piece 3 can abut against
a side surface of the locking piece 21, so as to limit rotation of the locking piece
21.
[0018] In some examples, the elastic piece 3 is configured to limit the rotation of the
locking piece 21 when the two ends of the locking piece 21 protrude out of the accommodation
groove 11.
[0019] In some examples, the locking piece 21 has an initial state and a protruding state.
When the locking piece 21 is in the initial state, the locking piece 21 is completely
disposed in the accommodation groove 11 and does not protrude out of the accommodation
groove 11. When the locking piece 21 is in the protruding state, the two ends of the
locking piece 21 protrude out of the accommodation groove 11.
[0020] As shown in FIG. 3, in this embodiment, the first boss 12 protrudes from a bottom
surface of the base 1. The bottom surface of the base 1 and one side surface of the
first boss 12 define the accommodation groove 11, and the bottom surface of the base
1 and the one side surface of the first boss 12 are inner walls of the accommodation
groove 11.
[0021] It is to be understood that the two ends of the locking piece 21 capable of protruding
out of the accommodation groove 11 means that the two ends of the locking piece 21
can protrude outward relative to circumferential side surfaces adjacent to the bottom
surface of the base 1.
[0022] As shown in FIGS. 1 to 8, during mounting, the hardware mounting structure is placed
in a groove of a frame body profile 100 or a leaf body profile 100, the rotation part
2 is rotated on the base 1, the rotation part 2 drives the locking piece 21 to rotate
together, and the two ends of the locking piece 21 protrude out of the accommodation
groove 11 to be engaged with the groove of the profile 100, so as to complete the
mounting. Moreover, one end of the elastic piece 3 is pressed upon the locking piece
21, where the elastic piece 3 is installed on the first boss 12; during the rotation
of the locking piece 21, under an elastic force of the elastic piece 3, the one end
of the elastic piece 3 gradually switches to abut against the side surface of the
locking piece 21, so as to limit the rotation of the locking piece 21. This structure
has a self-locking function.
[0023] To ensure that the locking piece 21 in the initial state is completely disposed in
the accommodation groove 11, optionally, the width of the locking piece 21 is less
than or equal to the width of the accommodation groove 11. To facilitate the mounting
and cooperation of the locking piece 21 and the elastic piece 3, optionally, the accommodation
groove 11 and the first boss 12 are both disposed on the bottom surface of the base
1. To reduce the overall weight of the hardware mounting structure, optionally, the
base 1 is provided with a through hole 14 configured to reduce the weight of the base
1.
[0024] To achieve the rotational connection between the rotation part 2 and the base 1,
optionally, the base 1 is provided with a first connection hole 13, the rotation part
2 further includes a connection shaft 22 fitting with the first connection hole 13,
and the locking piece 21 is disposed on one end of the connection shaft 22. To facilitate
the rotation of the connection shaft 22 through a mounting tool, optionally, a second
connection hole 221 is disposed in the connection shaft 22. Optionally, a cross section
of the second connection hole 221 is a regular hexagon, which is convenient for use
with the existing mounting tool. Optionally, a second boss 211 is disposed on one
side of the locking piece 21 facing away from the connection shaft 22, and a side
surface of the second boss 211 is used for abutting against the elastic piece 3. In
this embodiment, the second boss 211 may be integrally formed with the connection
shaft 22, and the locking piece 21 is sleeved on the connection shaft 22.
[0025] As shown in FIG. 2, in this embodiment, the first connection hole 13 is disposed
on a bottom of the accommodation groove 11.
[0026] As shown in FIGS. 2 and 5, in this embodiment, the locking piece 21 has two opposite
sides that do not protrude out of an outer edge of the second boss 211 when the locking
piece 21 is in the protruding state and also has two opposite ends protrude out of
the outer edge of the second boss 211 when the locking piece 21 is in the protruding
state. In some examples, the orientation of the two opposite sides of the locking
piece 21 is substantially perpendicular to the orientation of the two opposite ends
of the locking piece 21.
[0027] To facilitate the mounting of the elastic piece 3, optionally, the elastic piece
3 is installed on the first boss 12 through a connection plate 31. To facilitate the
mounting of the connection plate 31, optionally, the first boss 12 is provided with
a clamping protrusion 121, and the connection plate 31 is provided with a third connection
hole 311 fitting with the clamping protrusion 121. The structure is stable and easy
to disassemble and assemble.
[0028] In the hardware mounting structure provided in this embodiment, during mounting,
the following steps are included: the hardware mounting structure is placed vertically
in the groove of the profile 100. The rotation part 2 is rotated on the base 1 through
the mounting tool inserted into the second connection hole 221 of the connection shaft
22, the rotation part 2 drives the locking piece 21 to rotate together, and the two
ends of the locking piece 21 protrude out of the accommodation groove 11 to be engaged
with the groove of the profile 100. The one end of the elastic piece 3 is pressed
upon the locking piece 21, where the elastic piece 3 is installed on the first boss
12. During the rotation of the locking piece 21, under the elastic force of the elastic
piece 3, the one end of the elastic piece 3 gradually switches to abut against the
side surface of the locking piece 21, so as to limit the rotation of the locking piece
21. This structure has a self-locking function.
[0029] It is to be understood that the hardware mounting structure may be configured to
install a component in the groove of the profile 100. For example, the base 1 may
be fixed on a component, and the locking piece 21 is disposed on one side of the hardware
mounting structure facing away from the component. The bottom surface of the base
1 faces to the groove of the profile 100, and the locking piece 21 protrudes into
the groove of the profile 100. Through the rotation of the locking piece 21, the hardware
mounting structure is clamped in the groove of the profile 100. In this manner, the
connection between the assembly and the profile 100 is achieved.
[0030] The hardware mounting structure provided in this embodiment is convenient to operate,
simple in structure, high in mounting efficiency, stable in structure, and has a self-locking
function.
[0031] In the hardware mounting structure provided in the present application, during mounting,
the hardware mounting structure is placed in the groove of the frame body profile
or the leaf body profile, the rotation part is rotated on the base, the rotation part
drives the locking piece to rotate together, and the two ends of the locking piece
protrude out of the accommodation groove to be engaged with the groove of the profile,
so as to complete the mounting. Moreover, the one end of the elastic piece is pressed
upon the locking piece, where the elastic piece is installed on the first boss. During
the rotation of the locking piece, under the elastic force of the elastic piece, the
one end of the elastic piece gradually switches to abut against the side surface of
the locking piece, so as to limit the rotation of the locking piece. This structure
has a self-locking function. The hardware mounting structure provided in the present
embodiment is convenient to operate, simple in structure, high in mounting efficiency,
stable in structure, and has a self-locking function.
1. A hardware mounting structure, comprising:
a base (1) provided with an accommodation groove (11) and a first boss (12);
a rotation part (2) disposed in the accommodation groove (11) and rotatably connected
to the base (1), wherein the rotation part (2) comprises a locking piece (21), and
two ends of the locking piece (21) are capable of protruding out of the accommodation
groove (11) when the rotation part (2) rotates; and
an elastic piece (3), wherein a first end of the elastic piece (3) is installed on
the first boss (12), and a second end of the elastic piece (3) is capable of abutting
against a side surface of the locking piece (21), so as to limit rotation of the locking
piece (21).
2. The hardware mounting structure of claim 1, wherein the base (1) is provided with
a first connection hole (13), the rotation part (2) further comprises a connection
shaft (22) fitting with the first connection hole (13), and the locking piece (21)
is disposed at one end of the connection shaft (22).
3. The hardware mounting structure of claim 2, wherein a second boss (211) is disposed
on one side of the locking piece (21) facing away from the connection shaft (22),
and a side surface of the second boss (211) is capable of abutting against the elastic
piece (3).
4. The hardware mounting structure of claim 2, wherein a second connection hole (221)
is disposed in the connection shaft (22).
5. The hardware mounting structure of claim 4, wherein a cross section of the second
connection hole (221) is a regular hexagon.
6. The hardware mounting structure of claim 1, wherein the elastic piece (3) is installed
on the first boss (12) through a connection plate (31).
7. The hardware mounting structure of claim 6, wherein the first boss (12) is provided
with a clamping protrusion (121), and the connection plate (31) is provided with a
third connection hole (311) fitting with the clamping protrusion (121).
8. The hardware mounting structure of claim 1, wherein a width of the locking piece (21)
is less than or equal to a width of the accommodation groove (11).
9. The hardware mounting structure of claim 1, wherein the base (1) is provided with
a through hole (14) configured to reduce a weight of the base (1).
10. The hardware mounting structure of any one of claims 1 to 9, wherein the accommodation
groove (11) and the first boss (12) are both disposed on a bottom surface of the base
(1).