TECHNICAL FIELD
[0001] The present invention relates to the technical field of household refrigeration electrical
appliance, and specifically to a handle for a refrigerator and a refrigerator having
the handle.
BACKGROUND
[0002] In modern life, refrigerators are applied more and more widely, and almost become
requisite household electrical appliance. The refrigerator is such an apparatus that
it stores various food in a refrigerated state or a frozen state for a period of time
in a preserved manner.
[0003] As technologies develop, functions of refrigerators become richer and richer, and
the volume of refrigerators becomes bigger and bigger, so that door bodies of refrigerators
become bigger and a large force usually needs to be applied on the handles on the
door bodies of the refrigerators. Hence, the user's comfort in use is undesirable.
On this basis, an assist handle disposed on the door body of the refrigerator is developed,
enables the door body of the refrigerator to be opened with less force, and improves
the user's comfort in use. Currently, the assist handles used have the following defects:
1) the assists handle is mounted on a side surface of a lateral edge of the door body,
and the door body needs to be narrower than the width of the cabinet, which affects
the appearance of the refrigerator; 2) the handle is mounted on the front of the door
body, and the door body needs to be perforated, which causes problems such as leakage
of cold and frosting.
SUMMARY
[0004] The invention provides an assist handle suitable for refrigerators, which does not
affect the appearance of the refrigerators, and meanwhile can provide better comfort
in use.
[0005] The present invention provides an assist handle mounted on a front side of a door
body of a refrigerator, wherein the assist handle comprises:
a handle bar disposed on the front side of the door body;
a rotation shaft pivoted to the handle bar;
a guide groove disposed in the door body and running through the door body;
a push rod running through the guide groove, a distal end of the push rod being close
to a cabinet of the refrigerator, and a proximal end of the push rod being close to
a front end of the handle bar; and
a resistance structure disposed on a side of the push rod and comprising a first tooth-like
structure and a second tooth-like structure that mesh with each other, the first tooth-like
structure being engaged with the push rod;
wherein, the handle bar rotates about the rotation shaft, the front end of the handle
bar pushes against the proximal end of the push rod, the push rod slides in the guide
groove, the distal end of the push rod pushes against the cabinet of the refrigerator,
and the push rod drives the first tooth-like structure to move relative to the second
tooth-like structure.
[0006] As an optional embodiment of the present invention, one of the first tooth-like structure
and the second tooth-like structure is a gear, and the other of the first tooth-like
structure and the second tooth-like structure is a rack.
[0007] As an optional embodiment of the present invention, the resistance structure is disposed
on the front side of the door body.
[0008] As an optional embodiment of the present invention, the assist handle further comprises
an elastic member disposed in the push rod to provide an elastic force for returning
the push rod, where the push rod comprises a first rod body and a second rod body,
the elastic member is disposed between the first rod body and the second rod body,
and both ends of the elastic member are respectively connected to the first rod body
and the second rod body.
[0009] As an optional embodiment of the present invention, the elastic member is a spring.
[0010] As an optional embodiment of the present invention, the handle bar includes a handle
portion and a lever portion, the handle portion and the lever portion are distributed
on both sides of the rotation shaft, wherein a length of the handle portion is greater
than a length of the lever portion, the handle portion is pulled to allow the handle
bar to rotate about the rotation shaft as a whole, the lever portion pushes the first
rod body, the first rod body compresses the elastic member, and the elastic member
pushes against the second rod body to slide, to push against the cabinet of the refrigerator
to thereby open the door.
[0011] As an optional embodiment of the present invention, the assist handle further comprises
a base, the base is fitted on the front side of the door body, and the elastic member,
the first rod body, the lever portion and the resistance structure are respectively
received in the base.
[0012] As an optional embodiment of the present invention, the base is a box with an end
open, and the opening of the box is attached to the front side of the door body.
[0013] As an optional embodiment of the present invention, the assist handle further comprises
a guide sleeve and bellows, the guide sleeve is disposed in the guide groove and sleeved
on the push rod, and the bellows are disposed between the guide sleeve and the push
rod.
[0014] The present invention further provides a refrigerator comprising a door body, a cabinet
and an assist handle, wherein the assist handle is disposed on a front side of the
door body, and the assist handle is the assist handle as described above.
[0015] As compared with the prior art, the present invention provides the assist handle
and the refrigerator, the assist handle comprises the resistance structure, and the
resistance structure moves along with the push rod and generates a rotation resistance;
when the user pulls the handle bar to open the door body, the rotation resistance
enhances the door-opening comfort; when the handle bar returns, the rotation resistance
reduces the noise caused by the return of the handle bar.
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
FIG. 1 is a cross-sectional view of a refrigerator mounted with an assist handle according
to the present invention.
FIG. 2 is an enlarged schematic view of a region A in FIG. 1.
FIG. 3 is a top view of the refrigerator mounted with an assist handle according to
the present invention with a top structure being removed.
DETAILED DESCRIPTION
[0017] The present invention will be described in detail in conjunction with embodiments
shown in the figures. However, these embodiments are not intended to limit the present
invention. Structural, methodological or functional variations made by those having
ordinary skill in the art according to these embodiments are all comprised in the
extent of protection of the present invention.
[0018] FIG. 1 is a cross-sectional view of a refrigerator mounted with an assist handle
according to the present invention; FIG. 2 is an enlarged schematic view of a region
A in FIG. 1; FIG. 3 is a top view of the refrigerator mounted with an assist handle
according to the present invention with a top structure being removed.
[0019] As shown in FIG. 1 through FIG. 3, a refrigerator 100 comprises a door body 101 and
a cabinet 102. The door body 101 is pivoted to a lateral edge of the cabinet 102 and
may pivot relative to the cabinet 102 to close the cabinet 102, or the door body may
open relative to the cabinet 102. The cabinet 102 comprises a plurality of compartments
for storing items.
[0020] A front side of the door body 101 is provided with an assist handle. The assist handle
comprises a handle bar, a rotation shaft 20, a guide groove 90, a push rod 50, and
a resistance structure 60. The handle bar is pivoted to the rotation shaft 20, the
guide groove 90 run through the door body 101, the push rod 50 is slidably disposed
in the guide groove 90, and the resistance structure 60 is located on one side of
the push rod 50; when the handle bar pivots about the rotation shaft 20 and pushes
against a proximal end of the push rod 50 to make the push rod 50 to slide in the
guide groove 90, a distal end of the push rod 50 pushes against the cabinet 102 to
open the door body 101. The resistance structure 60 comprises a first tooth-like structure
61 and a second tooth-like structure 62 that mesh with each other. The first tooth-like
structure 61 engages one side of the push rod 50 and may move along with the push
rod 50, so that the first tooth-like structure 61 moves relative to the second tooth-like
structure 62 to form a certain rotation resistance which is used to improve the comfort
of the user pulling the handle bar to open the door and reduce the noise caused by
the return of the handle bar.
[0021] In the present invention, a side of the door body 101 close to the user is defined
as "a front side", and the other side away from the user is defined as "a rear side";
an end of the push rod 50 close to the user is defined as a proximal end, and the
end far away from the user is defined as a distal end.
[0022] As shown in FIG. 1 and FIG. 2, the handle bar is disposed on the front side of the
door body 101 and pivoted to the rotation shaft 20 so that the handle bar can pivot
about the rotation shaft 20. The handle bar comprises an integrally formed handle
portion 10 and a lever portion 11. The handle portion 10 and the lever portion 11
are respectively located on both sides of the rotation shaft 20. In other words, a
rotation shaft hole (not shown) provided on the handle bar divides the handle bar
into the handle portion 10 and the lever portion 11, and the rotation engages in the
rotation shaft hole, wherein a length of the handle portion 10 is greater than the
length of the lever portion 11. When the user pulls the handle portion 10 to turn
the handle bar, the handle portion 10 has a larger moment arm, thereby ensuring that
the user may turn the handle bar with a smaller force, and achieving a force-saving
effect. A protrusion 12 is disposed at a top of the level portion 11 and abuts against
the front end of the push rod 50.
[0023] In the present embodiment, the rotation shaft 20 is for example fixed in a base 30
on the front side of the door body 101. The base 30 is a box with an end open. The
opening of the box engages on the surface of the front side of the door body 101,
and is not limited thereto. In other embodiments of the present invention, the rotation
shaft is arranged at a connection between the handle portion and the lever portion
on the handle bar, a rotation shaft hole corresponding to the rotation shaft on the
handle bar is arranged in the base, and the rotation shaft on the handle bar is inserted
into the rotation shaft hole so that the handle bar pivots around the rotation shaft.
[0024] The base 30 encapsulates the lever portion 11 of the assist handle, the rotation
shaft 20, a portion of the push rod 50 and an elastic member 40 therein, so that the
refrigerator 100 has a good appearance.
[0025] As shown in FIG. 2, the push rod 50 comprises a first rod body 51 and a second rod
body 52. The first rod body 51 and the second rod body 52 are connected by the elastic
member 40. The elastic member 40 is for example a spring. An end of the spring is
sleeved around a post on the first rod body 51, the other end of the spring is sleeved
around another post on the rod body 52, and post on the first rod body 51 is opposite
to the another post on the second rod body 52. In other embodiments of the present
invention, the elastic member may also be a metal elastic sheet, the metal elastic
sheet is arranged between the first rod body and the second rod body, both ends of
the metal elastic sheet are respectively welded or adhered on a surface of the first
rod body and another surface of the second rod body, and the surface is opposite to
the another surface.
[0026] The elastic member 40 provides an elastic force for returning the handle bar. Specifically,
the user applies a force to pull the handle portion 10, so that the handle portion
10 and the lever portion 11 rotate counterclockwise about the rotation shaft 20, and
the protrusion 12 of the lever portion 11 pushes against the front end of the first
rod body 51, the first rod body 51 compresses the elastic member 40, the elastic member
40 acts on the front end of the second rod body 52 so that the second rod body 52
moves in the guide groove 90, and the distal end of the second rod body 52 extends
out of the opening at the distal end of the guide groove 90 and pushes against the
cabinet 102 to open the door body 101 relative to the cabinet 102. In the process
of opening the door body 101, the elastic member 40 is compressed to be in a compressed
state. After the door body 101 is opened, the distal end of the second rod body 52
abuts against the cabinet 102, and the user no longer applies a force to the handle
portion 10, and then the force applied to the elastic member 40 is removed. At this
time, the elastic member 40 in the compressed state returns to an extended state to
generate an elastic force, the elastic force acts on the first rod body 51, the first
rod body 51 pushes the protrusion 12 of the level portion 11 to move towards the user,
the lever portion 11 rotates clockwise about the rotation shaft 20, and the handle
portion 10 rotates clockwise together and then returns back.
[0027] In addition, the door body 101 is closed on the cabinet 102, the cabinet 102 pushes
against the distal end of the second rod body 52, and the second rod body 52 compresses
the elastic member 40 so that the portion of the second rod body 52 extending out
of the guide groove 90 retracts back into the interior of the guide groove 90.
[0028] In the present embodiment, the first rod body 51 and the elastic member 40 are located
on the front side of the door body 101, and the second rod body 52 is located in the
guide groove 90, but the arrangement is not limited to this. In other embodiments
of the present invention, the first rod body, the elastic member and the second rod
body may be simultaneously disposed in the guide groove.
[0029] Further referring to FIG. 1 and FIG. 2, in order to improve the comfort of the assist
handle, the assist handle further comprises a resistance structure 60 which is disposed
on one side of the push rod 50 to provide resistance. The resistance structure 60
comprises a first tooth-like structure 61 and a second tooth-like structure 62 meshing
with each other. The first tooth-like structure 61 is disposed on one side of the
first rod body 51 and fixedly connected to the first rod body 51, and may move along
with the first rod body 51; the second tooth-like structure 62 is located below the
first tooth-like structure 61. In the present embodiment, the first tooth-like structure
61 is for example a rack, the second tooth-like structure 62 is for example a gear,
and the gear meshes with a distal end of the rack. When the first rod body 51 moves
towards the rear side of the door body 101, the rack moves towards the rear side of
the door body along with the first rod body 51, and the gear rotates counterclockwise
to mesh with a proximal end of the rack; when the first rod body 51, driven by the
elastic piece 40, moves toward the front side of the door body 101, the rack moves
towards the front side of the door body 101 along with the first rod body 51, and
the gear rotates clockwise to gradually mesh with the distal end of the rack.
[0030] The rotation of the lever portion 11 and the elastic force provided by the elastic
piece 40 enable the first rod body 51 to move reciprocally, and then the rack moves
reciprocally along with the first rod body 51. Hence, during the reciprocal movement
of the rack, the gear moves clockwise or counterclockwise on the surface of the rack,
and the rotation of the gear provides an appropriate rotation resistance. On the one
hand, while the handle portion 10 is pulled to open the door body 101, the rotation
resistance reduces a movement rate of the first rod body 51 of the push rod 50 so
that the second rod body 52 moves slowly along the guide groove 90 to gradually push
against the cabinet 102, and the door body 101 gradually opens to improve the user's
door-opening comfort; on the other hand, after the door body 101 is opened, the first
lever body 51 moves toward the front side of the door body 101 under the action of
the elastic member 40, the rotation resistance may slow down the movement rate of
the first lever body 51 so that the lever portion 11 slowly pivots to return, and
the handle portion 10 does not impinge on the front side of the door body 101, thereby
reducing the noise caused by the return of the handle bar.
[0031] In the present embodiment, the first tooth-like structure 61 and the second tooth-like
structure 62 are disposed on the front side of the door body 101, and the first tooth-like
structure 61 engages on the first rod body 51 and moves along with the first rod body
51, but the arrangement is not limited to this. In other embodiments of the present
invention, the first tooth-like structure and the second tooth-like structure may
be disposed in the interior of the door body, and the first tooth-like structure engages
on the second rod body.
[0032] Further referring to FIG. 1 and FIG. 2, in order to avoid the problems such as cold
leakage and frosting caused by the guide groove 90 on the door body 101, the guide
groove 90 is provided with a guide sleeve 70 and a pair of bellows 80, wherein the
guide sleeve 70 is received in the guide groove 90, and the second rod body 52 runs
through the guide sleeve 70; the pair of bellows 80 are located at the openings at
both ends of the guide groove 90, outer sides of the pair of bellows 80 are respectively
connected to inner walls at both ends of the guide sleeve 70, and inner sides of the
pair of bellows 80 are respectively sleeved on the outer surface of the proximal end
and the outer surface of the distal end of the second rod body 52. That is, the pair
of bellows 80 may be regarded as being filled between the ends of the second rod body
52 and the ends of the guide sleeve 70 respectively so that the space between the
pair of bellows 80 is a sealed space, and the sealed space may function for heat preservation
and heat insulation.
[0033] In addition, the bellows 80 near the rear side of the door body 101 is filled between
the distal end of the guide sleeve 70 and the distal end of the second rod body 52,
and may block the overflow of the cold air through the guide groove 90 of the door
body 101 when the door body 101 closes the cabinet 102, thereby avoiding the frosting
at the assist handle of the door body.
[0034] In addition, the door body 101 comprises a first housing, a thermal insulation layer
and a second housing. The thermal insulation layer is disposed between the first housing
and the second housing. The guide groove 90 sequentially penetrates the first housing,
the thermal insulation layer and the second housing, wherein the guide sleeve 70 is
filled in the guide groove 90, a proximal end of the guide sleeve 70 is connected
with the first housing, and a distal end of the guide sleeve 70 is connected with
the second housing.
[0035] The present invention further provides a refrigerator 100 comprising the door body
101 and the cabinet 102, wherein the door body 101 may be opened or closed relative
to the cabinet 102, and the front side of the door body 101 is provided with the assist
handle as stated above.
[0036] In summary, the present invention provides the assist handle and the refrigerator,
the assist handle comprises the resistance structure, and the resistance structure
moves along with the push rod and generates a rotation resistance; when the user pulls
the handle bar to open the door body, the rotation resistance enhances the door-opening
comfort; when the handle bar returns, the rotation resistance reduces the noise caused
by the return of the handle bar.
[0037] It should be understood that although the description is described according to the
embodiments, not every embodiment only comprises one independent technical solution,
that such a description manner is only for the sake of clarity, that those skilled
in the art should take the description as an integral part, and that the technical
solutions in the embodiments may be suitably combined to form other embodiments understandable
by those skilled in the art.
[0038] The detailed descriptions set forth above are merely specific illustrations of feasible
embodiments of the present invention, and are not intended to limit the scope of protection
of the present invention. All equivalent embodiments or modifications that do not
depart from the art spirit of the present invention should fall within the scope of
protection of the present invention.
1. An assist handle mounted on a front side of a door body of a refrigerator, wherein
the assist handle comprises:
a handle bar disposed on the front side of the door body;
a rotation shaft pivoted to the handle bar;
a guide groove disposed in the door body and running through the door body;
a push rod running through the guide groove, a distal end of the push rod being close
to a cabinet of the refrigerator, and a proximal end of the push rod being close to
a front end of the handle bar; and
a resistance structure disposed on a side of the push rod and comprising a first tooth-like
structure and a second tooth-like structure that mesh with each other, the first tooth-like
structure being engaged with the push rod;
wherein, the handle bar rotates about the rotation shaft, the front end of the handle
bar pushes against the proximal end of the push rod, the push rod slides in the guide
groove, the distal end of the push rod pushes against the cabinet of the refrigerator,
and the push rod drives the first tooth-like structure to move relative to the second
tooth-like structure.
2. The assist handle according to claim 1, wherein one of the first tooth-like structure
and the second tooth-like structure is a gear, and the other of the first tooth-like
structure and the second tooth-like structure is a rack.
3. The assist handle according to claim 2, wherein the resistance structure is disposed
on the front side of the door body.
4. The assist handle according to claim 1, wherein the assist handle further comprises
an elastic member disposed in the push rod to provide an elastic force for returning
the push rod, where the push rod comprises a first rod body and a second rod body,
the elastic member is disposed between the first rod body and the second rod body,
and both ends of the elastic member are respectively connected to the first rod body
and the second rod body.
5. The assist handle according to claim 4, wherein the elastic member is a spring.
6. The assist handle according to claim 4, wherein the handle bar includes a handle portion
and a lever portion, the handle portion and the lever portion are distributed on both
sides of the rotation shaft, wherein a length of the handle portion is greater than
a length of the lever portion, the handle portion is pulled to allow the handle bar
to rotate about the rotation shaft as a whole, the lever portion pushes the first
rod body, the first rod body compresses the elastic member, and the elastic member
pushes against the second rod body to slide, to push against the cabinet of the refrigerator
to thereby open the door.
7. The assist handle according to claim 6, wherein the assist handle further comprises
a base, the base is fitted on the front side of the door body, and the elastic member,
the first rod body, the lever portion and the resistance structure are respectively
received in the base.
8. The assist handle according to claim 1, wherein the base is a box with an end open,
and the opening of the box is attached to the front side of the door body.
9. The assist handle according to claim 1, wherein the assist handle further comprises
a guide sleeve and bellows, the guide sleeve is disposed in the guide groove and sleeved
on the push rod, and the bellows are disposed between the guide sleeve and the push
rod.
10. A refrigerator comprising a door body, a cabinet and an assist handle, wherein the
assist handle is disposed on a front side of the door body, and the assist handle
is the assist handle according to any of claims 1-9.