CN209893793U - Drawer for refrigerator and refrigerator - Google Patents

Drawer for refrigerator and refrigerator Download PDF

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Publication number
CN209893793U
CN209893793U CN201920317937.XU CN201920317937U CN209893793U CN 209893793 U CN209893793 U CN 209893793U CN 201920317937 U CN201920317937 U CN 201920317937U CN 209893793 U CN209893793 U CN 209893793U
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CN
China
Prior art keywords
plate body
drawer
bottom wall
side plate
sliding
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Active
Application number
CN201920317937.XU
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Chinese (zh)
Inventor
李月振
杨发林
周兆涛
姜明亮
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Qingdao Haier Co Ltd
Qingdao Haier Refrigerator Co Ltd
Original Assignee
Qingdao Haier Co Ltd
Qingdao Haier Refrigerator Co Ltd
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Application filed by Qingdao Haier Co Ltd, Qingdao Haier Refrigerator Co Ltd filed Critical Qingdao Haier Co Ltd
Priority to CN201920317937.XU priority Critical patent/CN209893793U/en
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Publication of CN209893793U publication Critical patent/CN209893793U/en
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Abstract

The utility model provides a drawer for refrigerator, include: a bottom wall panel arranged transversely; the peripheral wall plate extends upwards along the peripheral edge of the bottom wall plate, and the peripheral wall plate and the bottom wall plate define a storage cavity for accommodating articles; wherein, the bottom wall plate and the peripheral wall plate are made of metal materials. Because the specific heat capacity of metal material is little, heat transfer rate is fast, so even the drawer will wait to cool down the article and carry out the cladding, wait to cool down the article and also can carry out the heat transfer with the wall of drawer fast, realized waiting to cool down the rapid cooling of article.

Description

Drawer for refrigerator and refrigerator
Technical Field
The utility model relates to a drawer structure especially relates to a drawer and refrigerator for refrigerator.
Background
A drawer structure is commonly used in a storage compartment in a refrigerator, and a user stores articles in the storage compartment after placing the articles in the drawer. The drawer that is used for in the refrigerator that has now all is injection moulding, and the thermal conductivity of plastics material's drawer is poor, and the bottom wall board of drawer and the perisporium board that extends up along the circumference edge of bottom wall board have carried out the cladding with the article in it, lead to the article in the drawer to be difficult to in time carry out the heat transfer with the heat transfer air current in the refrigerator, have influenced the freezing rate of the article of saving in the drawer.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a drawer and refrigerator that are used for refrigerator that can increase the freezing rate of article.
In particular, the present invention provides a drawer for a refrigerator, comprising:
a bottom wall panel arranged transversely;
the peripheral wall plate extends upwards along the peripheral edge of the bottom wall plate, and the peripheral wall plate and the bottom wall plate define a storage cavity for accommodating articles;
wherein, the bottom wall plate and the peripheral wall plate are made of metal materials.
Further, the bottom wall plate and the peripheral wall plate are made of aluminum alloy.
Further, the bottom wall panel is rectangular and the peripheral wall panel includes:
a front plate body;
the rear plate body is arranged opposite to the front plate body;
the first side plate body is arranged between the front plate body and the rear plate body;
the second side plate body is arranged between the front plate body and the rear plate body and is opposite to the first side plate body.
Further, the lower edge of the first side plate body is provided with a first sliding groove with a downward opening and extending in a direction parallel to the bottom wall plate, the lower edge of the second side plate body is provided with a second sliding groove with a downward opening and extending in a direction parallel to the bottom wall plate, and the first sliding groove and the second sliding groove are configured to be connected with a sliding rail structure of the refrigerator, so that the drawer has a stroke of sliding along a straight line relative to the refrigerator.
Further, the bottom wall plate is composed of a first transverse plate body and a second transverse plate body, the first transverse plate body and the first side plate body are integrally formed, and the second transverse plate body and the second side plate body are integrally formed.
Further, first horizontal plate body all is the rectangle with the horizontal plate body of second, and first horizontal plate body and the butt of the horizontal plate body of second in the bonding line department of diapire board, and the bonding line is on a parallel with first side plate body and second side plate body.
Furthermore, the bottom surface of the first transverse plate body is provided with a clamping rail extending along the direction parallel to the first side plate body, the bottom surface of the second transverse plate body is provided with a clamping groove extending along the direction parallel to the second side plate body, and the clamping rail is configured to slide into the clamping groove along the length direction of the clamping groove through a port of the clamping groove so that the first transverse plate body is clamped with the second transverse plate body.
The second aspect of the present invention also provides a refrigerator, including:
a storage compartment for storing articles;
the drawer is arranged in the storage compartment.
Further, the storage compartment is only a refrigerating chamber or a temperature changing chamber.
Furthermore, a sliding rail structure is arranged in the storage chamber, the sliding rail structure comprises a first fixed rail fixedly connected with the storage chamber and a first sliding rail slidably connected with the first fixed rail, a first positioning hole with an upward opening is formed in the first sliding rail, the sliding rail structure further comprises a second fixed rail fixedly connected with the storage chamber and a second sliding rail slidably connected with the second fixed rail, and a second positioning hole with an upward opening is formed in the second sliding rail
The bottom wall board is rectangle, and the perisporium board includes:
a front plate body;
the rear plate body is arranged opposite to the front plate body;
the first side plate body is arranged between the front plate body and the rear plate body;
the second side plate body is arranged between the front plate body and the rear plate body and is opposite to the first side plate body;
the lower edge of the first side plate body is provided with a first sliding groove with a downward opening, the first sliding groove is parallel to the bottom wall plate, a first positioning protrusion extending downwards is arranged in the first sliding groove and positioned in the first positioning hole, the lower edge of the second side plate body is provided with a second sliding groove with a downward opening, the second sliding groove is parallel to the bottom wall plate, a second positioning protrusion extending downwards is arranged in the second sliding groove, and the second positioning protrusion is positioned in the second positioning hole.
The utility model provides a drawer for refrigerator, its diapire board and perisporium board are the metal material, because the specific heat capacity of metal material is little, heat transfer speed is fast, so even the drawer will treat that cooling down article carry out the cladding, treat that cooling down article also can carry out the heat transfer with the wall of drawer fast, realized treating the rapid cooling of cooling down article.
The above and other objects, advantages and features of the present invention will become more apparent to those skilled in the art from the following detailed description of specific embodiments thereof, taken in conjunction with the accompanying drawings.
Drawings
Some specific embodiments of the present invention will be described in detail hereinafter, by way of illustration and not by way of limitation, with reference to the accompanying drawings. The same reference numbers in the drawings identify the same or similar elements or components. Those skilled in the art will appreciate that the drawings are not necessarily drawn to scale. In the drawings:
fig. 1 is a schematic perspective view of a drawer according to an embodiment of the present invention;
fig. 2 is a schematic exploded view of a drawer according to an embodiment of the present invention;
FIG. 3 is a schematic, full cross-sectional view of a drawer according to one embodiment of the present invention; wherein the cross section is parallel to the front plate body of the drawer;
FIG. 4 is a schematic, full cross-sectional view of a drawer according to one embodiment of the present invention; wherein the section is parallel to the first side plate body of the drawer;
fig. 5 is a partially enlarged schematic view at B in fig. 4;
fig. 6 is a schematic perspective view of a bottom view of a drawer according to another embodiment of the present invention;
fig. 7 is a schematic perspective view of a top view of a drawer according to another embodiment of the present invention;
fig. 8 is a schematic exploded view of a drawer according to another embodiment of the present invention;
FIG. 9 is a schematic, full cross-sectional view of a drawer according to another embodiment of the present invention; wherein the cross section is parallel to the front plate body of the drawer;
fig. 10 is a partially enlarged schematic view at a in fig. 9.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
Fig. 1 to 10 show a preferred embodiment of the present invention.
The present embodiment provides a drawer 100 for a refrigerator, the drawer 100 including a bottom wall panel 150 and a peripheral wall panel. After the drawer 100 is disposed in the refrigerator and in the operating position, the bottom wall panel 150 of the drawer 100 is transversely disposed, and a peripheral wall panel extends upwardly along a peripheral edge of the bottom wall panel 150, the peripheral wall panel and the bottom wall panel 150 defining an upwardly open storage cavity for receiving articles. The bottom wall 150 and the peripheral wall of the drawer 100 are made of metal, for example, the bottom wall 150 and the peripheral wall of the drawer 100 may be made of one or a combination of aluminum alloy, copper alloy, stainless steel, and the like. In particular, for convenience of manufacturing, the bottom wall 150 and the peripheral wall of the drawer 100 may be made of the same material, for example, the bottom wall 150 and the peripheral wall of the drawer 100 may be made of aluminum alloy. The drawer 100 may further include a cover plate disposed at the opening, the cover plate may be made of conventional plastic or metal, and specifically, the cover plate, the bottom wall 150 and the peripheral wall may be made of the same material.
When the bottom wall plate 150 and the peripheral wall plate of the drawer 100 are made of metal materials, the heat exchange rate is high due to the fact that the specific heat capacity of the metal materials is small, even if the drawer 100 coats the object to be cooled, the object to be cooled can also exchange heat with the wall surface of the drawer 100 quickly, and the object to be cooled is cooled quickly.
In one embodiment, the bottom wall panel 150 may be rectangular, and the peripheral wall panel may include a front panel body 110, a rear panel body 120, a first side panel body 130, and a second side panel body 140. When the drawer 100 is disposed in the refrigerator and located at the working position, the front plate 110 is located on the outer side of the storage compartment of the refrigerator close to the door, the rear plate 120 is located on the inner side of the storage compartment opposite to the front plate 110, and the first side plate 130 and the second side plate 140 are located between the front plate 110 and the rear plate 120 and are arranged opposite to each other. Specifically, the front plate 110, the rear plate 120, the first side plate 130 and the second side plate 140 may be disposed perpendicular to the bottom wall 150, and the storage cavity of the drawer 100 may have a substantially rectangular parallelepiped shape.
In order to facilitate the assembly of the drawer 100 into the refrigerator, the lower edge of the first side plate 130 may be provided with a first sliding groove 131 which is open downward and extends in a direction parallel to the bottom wall plate 150, the lower edge of the second side plate 140 may be provided with a second sliding groove 141 which is open downward and extends in a direction parallel to the bottom wall plate 150, and the first sliding groove 131 and the second sliding groove 141 may be configured to be connectable to a sliding rail structure of the refrigerator, so that the drawer 100 has a stroke of sliding in a straight line with respect to the refrigerator. The lengths of the first sliding groove 131 and the second sliding groove 141 may be determined according to the types of sliding rail structures in the refrigerator, and specifically, in order to adapt to sliding rail structures with different lengths, the length of the first sliding groove 131 may be equal to the size of the first side plate 130 in the horizontal direction, and the length of the second sliding groove 141 may be equal to the size of the second side plate 140 in the horizontal direction. Furthermore, the two transverse ends of the first sliding chute 131 and the second sliding chute 141 can be penetrated, so that the first sliding chute 131 and the second sliding chute 141 can be adapted to slide rail structures with more types of sizes as much as possible.
It should be noted that the above-mentioned terms, such as the bottom wall plate 150, the front plate 110, the rear plate 120, the first side plate 130, and the second side plate 140, are all described for the convenience of distinguishing the structure of the drawer 100, and do not mean that each plate is an independent plate, for example, the drawer 100 may be formed by splicing five independent plates, such as the bottom wall plate 150, the front plate 110, the rear plate 120, the first side plate 130, and the second side plate 140, or may be integrally formed by stamping a complete sheet metal part.
In one embodiment, as shown in fig. 1 to 2, the drawer 100 is assembled by five separate panels, namely, a bottom wall panel 150, a front panel 110, a rear panel 120, a first side panel 130, and a second side panel 140. The bottom surface of the bottom wall plate 150 close to the edge of the front plate body 110 is provided with a front positioning groove 154 parallel to the front plate body 110, the lower edge of the front plate body 110 is provided with a front positioning flange 111 transversely extending towards the direction close to the front positioning groove 154, the upper surface of the front positioning flange 111 is provided with a front positioning strip 1111 matched with the front positioning groove 154, after the front positioning strip 1111 is clamped into the front positioning groove 154, the bottom wall plate 150 and the front plate body 110 complete relative positioning, and the connection between the bottom wall plate 150 and the front plate body 110 can be completed by subsequently utilizing a threaded connection piece. The bottom surface that is close to the border of back plate body 120 of end wall board 150 is provided with the rear positioning groove that is on a parallel with back plate body 120, and the lower limb of back plate body 120 is formed with the back location flange that transversely extends towards the direction that is close to the rear positioning groove, and the upper surface of back location flange is provided with the back location strip with back positioning groove complex, after back location strip card goes into in the back positioning groove, relative positioning has been accomplished with back plate body 120 to end wall board 150, and follow-up utilization threaded connection spare can accomplish being connected between them. The first side wall plate and the second side wall plate are respectively clamped between the front wall plate and the rear wall plate for positioning.
In another embodiment, as shown in fig. 6 to 8, the bottom wall 150 of the drawer 100 is formed by two parts, namely a first transverse plate 151 and a second transverse plate 152. The first transverse plate 151 and the first side plate 130 are integrally formed, the first transverse plate 151 and the first side plate 130 are combined into an independent assembly part, and for convenience of description, a portion of the first transverse plate 151 and the first side plate 130 after combination is referred to as a first assembly portion 160. The second transverse plate 152 is integrally formed with the second side plate 140, and the second transverse plate 152 and the second side plate 140 are combined into a single assembly component, and for convenience of description, a combined part of the second transverse plate 152 and the second side plate 140 is referred to as a second assembly portion 170. The drawer 100 is formed by splicing four independent parts, i.e., a front plate 110, a rear plate 120, a first assembling portion 160, and a second assembling portion 170. Such a blocking manner may reduce the number of parts of the drawer 100 and reduce the assembly difficulty.
The first transverse plate 151 and the second transverse plate 152 may have the same shape and size or different shapes, and the shapes may be arranged regularly or irregularly. When the first transverse plate body 151 and the second transverse plate body 152 have the same shape and size and are regularly arranged, as shown in fig. 7, the first transverse plate body 151 and the second transverse plate body 152 are rectangular, and the first transverse plate body 151 and the second transverse plate body 152 abut at a joint line 153 of the bottom wall plate 150 (the joint line 153 is a virtual line, and when the first transverse plate body 151 and the second transverse plate body 152 are spliced, a joint between the first transverse plate body 151 and the second transverse plate body 152 is the joint line 153), the joint line 153 is a straight line and may be parallel to the first side plate body 130 and the second side plate body 140 (in other embodiments, the joint line 153 may be a straight line and perpendicular to the first side plate body 130 and the second side plate body 140). When the first and second lateral panels 151 and 152 are configured as described above, the first and second assembling portions 160 and 170 can be completely symmetrically disposed about the joint line 153, or even have the same shape and size, so that the first and second assembling portions 160 and 170 can be produced simultaneously by processing the same mold. Further, when the joining line 153 is parallel to the first and second side plate bodies 130 and 140, both the first and second fitting portions 160 and 170 can be processed by an extrusion process, which reduces the production cost of both (when the bottom wall plate 150 is a separate plate member, the cost of processing by the extrusion process is greater than the cost of press forming due to its large transverse width dimension).
In one embodiment, the bottom surface of the first transverse plate 151 is provided with a clamping rail 1511 extending in a direction parallel to the first side plate 130, the bottom surface of the second transverse plate 152 is provided with a clamping groove 1521 extending in a direction parallel to the second side plate 140, and the clamping rail 1511 is configured to be slid into the clamping groove 1521 along a length direction of the clamping groove 1521 by a port of the clamping groove 1521, so that the clamping rail is clamped with the clamping groove 1521. That is, the first assembling portion 160 and the second assembling portion 170 are assembled by using the clamping of the clamping groove 1521 and the clamping rail 1511, so that the number of screws is reduced, the assembling steps are simplified, and the clamping groove 1521 and the clamping rail 1511 can also be used as a reinforcing rib of the bottom wall plate 150, so that the bearing capacity of the drawer 100 is enhanced. The clamping groove 1521 and the clamping rail 1511 may be any known structures capable of performing a clamping function, and the lengths of the clamping groove 1521 and the clamping rail 1511 may be determined according to the assembling strength, when the first assembling portion 160 and the second assembling portion 170 are processed by the extrusion molding process, the length of the clamping rail 1511 may be equal to the dimension of the first transverse plate 151 in the direction parallel to the first side plate 130, and the length of the clamping groove 1521 may be equal to the dimension of the second transverse plate 152 in the direction parallel to the second side plate 140. In particular, the clamping groove 1521 and the clamping rail 1511 may be disposed at the edges of the first transverse plate 151 and the second transverse plate 152 near the bonding line 153.
The second aspect of the present invention further provides a refrigerator, which comprises a storage compartment and the drawer 100 of any of the above embodiments, wherein the drawer 100 is disposed in the storage compartment of the refrigerator. Since the temperature of the freezer compartment of the refrigerator is low, even if the drawer 100 is made of plastic, the cooling speed of the articles to be cooled in the drawer 100 is fast, so compared with the drawer 100 made of plastic, the drawer 100 made of metal has an insignificant effect of increasing the freezing rate in the freezer compartment of the refrigerator, and on the contrary, the drawer 100 made of metal has a higher production cost than the drawer 100 made of plastic. In order to make the drawer 100 made of metal (specifically, aluminum alloy) play a greater role, in one embodiment, the drawer 100 may be disposed only in the refrigerating chamber and the temperature changing chamber of the refrigerator. That is, the aforementioned storage compartment may be understood as a generic term for a refrigerator compartment as well as a freezer compartment, which does not include a freezer compartment.
In one embodiment, a sliding rail structure is further disposed in the storage chamber, the sliding rail structure includes a first fixed rail fixedly connected to the storage chamber and a first sliding rail slidably connected to the first fixed rail, a first positioning hole with an upward opening is disposed in the first sliding rail, the sliding rail structure further includes a second fixed rail fixedly connected to the storage chamber and a second sliding rail slidably connected to the second fixed rail, and a second positioning hole with an upward opening is disposed in the second sliding rail. As shown in fig. 6, the lower edge of the first side plate 130 is provided with a first sliding slot 131 with a downward opening and extending in a direction parallel to the bottom wall plate 150, a first positioning protrusion 132 extending downward is provided in the first sliding slot 131, the first positioning protrusion 132 is positioned in the first positioning hole, the lower edge of the second side plate 140 is provided with a second sliding slot 141 with a downward opening and extending in a direction parallel to the bottom wall plate 150, a second positioning protrusion 142 extending downward is provided in the second sliding slot 141, and the second positioning protrusion 142 is positioned in the second positioning hole. When the drawer 100 is installed in the refrigerator, the first fixed rail and the first sliding rail are both located in the first sliding groove 131 of the drawer 100, and the first positioning protrusion 132 extends into the first positioning hole of the first sliding rail; the second fixed rail and the second sliding rail are both located in the second sliding slot 141141 of the drawer 100, and the second positioning protrusion 142 extends into the second positioning hole. When the drawer 100 slides laterally, the first sliding rail of the sliding rail structure slides relative to the first fixed rail, and the second sliding rail slides relative to the second fixed rail. When the drawer 100 needs to be detached, the drawer 100 is directly lifted upwards, so that the first positioning protrusion 132 extends out of the first positioning hole, and the second positioning protrusion 142 extends out of the second positioning hole.
In particular, as shown in fig. 6, two first positioning protrusions 132 may be further disposed in the first sliding chute 131, two first positioning holes are disposed on the first sliding rail, and the two first positioning protrusions 132 correspondingly extend into the two first positioning holes one by one. Two second positioning protrusions 142 may also be disposed in the second sliding chute 141141, two second positioning holes are disposed on the second sliding rail, and the two second positioning protrusions 142 correspondingly extend into the two second positioning holes one by one.
Thus, it should be appreciated by those skilled in the art that while a number of exemplary embodiments of the invention have been shown and described in detail herein, many other variations and modifications can be made, consistent with the principles of the invention, which are directly determined or derived from the disclosure herein, without departing from the spirit and scope of the invention. Accordingly, the scope of the present invention should be understood and interpreted to cover all such other variations or modifications.

Claims (10)

1. A drawer for a refrigerator, comprising:
a bottom wall panel arranged transversely;
the peripheral wall plate extends upwards along the peripheral edge of the bottom wall plate, and the peripheral wall plate and the bottom wall plate define a storage cavity for accommodating articles;
the bottom wall plate and the peripheral wall plate are made of metal materials.
2. The drawer of claim 1,
the bottom wall plate and the peripheral wall plate are made of aluminum alloy materials.
3. The drawer of claim 1, wherein the bottom wall panel is rectangular and the perimeter wall panel comprises:
a front plate body;
the rear plate body is arranged opposite to the front plate body;
the first side plate body is arranged between the front plate body and the rear plate body;
the second side plate body is arranged between the front plate body and the rear plate body and is opposite to the first side plate body.
4. The drawer of claim 3,
the lower edge of the first side plate body is provided with a first sliding groove with a downward opening and extending in a direction parallel to the bottom wall plate, the lower edge of the second side plate body is provided with a second sliding groove with a downward opening and extending in a direction parallel to the bottom wall plate, and the first sliding groove and the second sliding groove are configured to be connected with a sliding rail structure of the refrigerator, so that the drawer has a stroke of sliding along a straight line relative to the refrigerator.
5. The drawer according to claim 4,
the bottom wall plate is composed of a first transverse plate body and a second transverse plate body, the first transverse plate body and the first side plate body are integrally formed, and the second transverse plate body and the second side plate body are integrally formed.
6. The drawer of claim 5,
the first transverse plate body and the second transverse plate body are rectangular, the first transverse plate body and the second transverse plate body are abutted at a joint line of the bottom wall plate, and the joint line is parallel to the first side plate body and the second side plate body.
7. The drawer of claim 6,
the bottom surface of first horizontal plate body is provided with along being on a parallel with the joint rail that the direction of first side plate body extends, the bottom surface of the horizontal plate body of second is provided with along being on a parallel with the joint groove that the direction of second side plate body extends, the joint rail configure into can by the port in joint groove is followed the length direction in joint groove slides in the joint groove, so that first horizontal plate body with the horizontal plate body joint of second.
8. A refrigerator, characterized by comprising:
a storage compartment for storing articles;
the drawer of any of claims 1-7, disposed within the storage compartment.
9. The refrigerator according to claim 8,
the storage compartment is only a refrigerating compartment or a temperature changing compartment.
10. The refrigerator according to claim 8,
a sliding rail structure is arranged in the storage chamber, the sliding rail structure comprises a first fixed rail fixedly connected with the storage chamber and a first sliding rail in sliding connection with the first fixed rail, a first positioning hole with an upward opening is formed in the first sliding rail, the sliding rail structure further comprises a second fixed rail fixedly connected with the storage chamber and a second sliding rail in sliding connection with the second fixed rail, and a second positioning hole with an upward opening is formed in the second sliding rail;
the bottom wall plate is rectangular, and the peripheral wall plate comprises:
a front plate body;
the rear plate body is arranged opposite to the front plate body;
the first side plate body is arranged between the front plate body and the rear plate body;
the second side plate body is arranged between the front plate body and the rear plate body and is opposite to the first side plate body;
the lower edge of the first side plate body is provided with a first sliding groove with a downward opening, the first sliding groove is parallel to the bottom wall plate, a first positioning protrusion extending downwards is arranged in the first sliding groove, the first positioning protrusion is positioned in the first positioning hole, the lower edge of the second side plate body is provided with a second sliding groove with a downward opening, the second sliding groove is parallel to the bottom wall plate, a second positioning protrusion extending downwards is arranged in the second sliding groove, and the second positioning protrusion is positioned in the second positioning hole.
CN201920317937.XU 2019-03-13 2019-03-13 Drawer for refrigerator and refrigerator Active CN209893793U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920317937.XU CN209893793U (en) 2019-03-13 2019-03-13 Drawer for refrigerator and refrigerator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920317937.XU CN209893793U (en) 2019-03-13 2019-03-13 Drawer for refrigerator and refrigerator

Publications (1)

Publication Number Publication Date
CN209893793U true CN209893793U (en) 2020-01-03

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ID=69017269

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920317937.XU Active CN209893793U (en) 2019-03-13 2019-03-13 Drawer for refrigerator and refrigerator

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112378155A (en) * 2020-11-24 2021-02-19 安徽康佳同创电器有限公司 Drawer and refrigerator

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112378155A (en) * 2020-11-24 2021-02-19 安徽康佳同创电器有限公司 Drawer and refrigerator

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