CN210961025U - Storage rack and wine cabinet - Google Patents

Storage rack and wine cabinet Download PDF

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Publication number
CN210961025U
CN210961025U CN201920822995.8U CN201920822995U CN210961025U CN 210961025 U CN210961025 U CN 210961025U CN 201920822995 U CN201920822995 U CN 201920822995U CN 210961025 U CN210961025 U CN 210961025U
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China
Prior art keywords
frame
storage shelf
cross bar
storage
plane
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CN201920822995.8U
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Chinese (zh)
Inventor
于昭婷
蒋春晖
万鲁鲁
姜小霞
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Qingdao Haier Co Ltd
Qingdao Haigao Design and Manufacturing Co Ltd
Original Assignee
Qingdao Haier Co Ltd
Qingdao Haigao Design and Manufacturing Co Ltd
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Priority to CN201920822995.8U priority Critical patent/CN210961025U/en
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Abstract

The application discloses storing frame belongs to small household electrical appliances technical field. This storing frame includes: a frame; the cross bar is arranged in a wave shape and connected to the inner side of the frame; wherein, an inclination angle is formed between the plane of the cross bars and the plane of the frame, and the adjacent cross bars are symmetrically arranged. Adopt this optional embodiment, utilize the wave structure of horizontal pole, make the wave lower recess of horizontal pole can store the beverage bottle, also can store the beverage bottle in the gap between two adjacent horizontal poles, the relative circular storing space of arc can be formed to the wave-shaped epirelief or the undercut after adjacent horizontal pole slopes, can store the beverage bottle equally, makes this storing frame have multiple storage form, uses more nimble convenience. The application also discloses a wine cabinet.

Description

Storage rack and wine cabinet
Technical Field
The application relates to the technical field of small household appliances, for example to a storage rack and a wine cabinet.
Background
At present, wine cabinets become indispensable products for many families, and a good wine cabinet often can not leave a good storage rack, and the steel wire wine rack structure with the groove is adopted to be placed in the wine cabinet to store bottled articles such as red wine in some existing related technical schemes, and the bottled articles such as red wine can be directly placed on the groove of the steel wire wine rack during storage.
In the process of implementing the embodiments of the present disclosure, it is found that at least the following problems exist in the related art: the storage form is single, and the flexibility is lacked.
SUMMERY OF THE UTILITY MODEL
The following presents a simplified summary in order to provide a basic understanding of some aspects of the disclosed embodiments. This summary is not an extensive overview nor is intended to identify key/critical elements or to delineate the scope of such embodiments but rather as a prelude to the more detailed description that is presented later.
The embodiment of the disclosure provides a storage rack and a wine cabinet, and aims to solve the technical problems that the storage rack is single in storage form and lacks flexibility at the present stage.
In some embodiments, a storage shelf comprises: a frame; the cross bar is arranged in a wave shape and connected to the inner side of the frame; wherein, an inclination angle is formed between the plane of the cross bars and the plane of the frame, and the adjacent cross bars are symmetrically arranged.
Some technical solutions provided by the embodiments of the present disclosure can achieve the following technical effects:
adopt this optional embodiment, utilize the wave structure of horizontal pole, make the wave lower recess of horizontal pole can store the beverage bottle, also can store the beverage bottle in the gap between two adjacent horizontal poles, the relative circular storing space of arc can be formed to the wave-shaped epirelief or the undercut after adjacent horizontal pole slopes, can store the beverage bottle equally, makes this storing frame have multiple storage form, uses more nimble convenience.
In some embodiments, a wine cabinet comprises: the storage rack of any embodiment above.
The foregoing general description and the following description are exemplary and explanatory only and are not restrictive of the application.
Drawings
One or more embodiments are illustrated by way of example in the accompanying drawings, which correspond to the accompanying drawings and not in limitation thereof, in which elements having the same reference numeral designations are shown as like elements and not in limitation thereof, and wherein:
FIG. 1 is a schematic view of a storage shelf according to an embodiment of the present disclosure;
FIG. 2 is a top view of a storage shelf provided by embodiments of the present disclosure;
FIG. 3 is a left side elevational view of a storage shelf provided by an embodiment of the present disclosure;
FIG. 4 is a front side view of a heat dissipation structure provided by embodiments of the present disclosure;
FIG. 5 is a schematic structural diagram of a fastening card according to an embodiment of the present disclosure;
figure 6 is a schematic view of a storage means of the storage shelf according to the disclosed embodiment;
FIG. 7 is a schematic view of another storage mode of the storage shelf according to the embodiment of the present disclosure;
FIG. 8 is a schematic view of an alternative storage of the storage shelf according to the present disclosure;
FIG. 9 is another schematic structural view of a storage shelf provided in accordance with an embodiment of the present disclosure;
FIG. 10 is a side elevational view of a storage shelf provided by an embodiment of the present disclosure;
FIG. 11 is a schematic view of a cushion provided by an embodiment of the present disclosure;
FIG. 12 is a schematic structural view of a card slot portion provided by an embodiment of the disclosure;
FIG. 13 is a schematic view of another alternate construction of a storage shelf in accordance with an embodiment of the present disclosure;
FIG. 14 is a top view of a storage shelf provided by embodiments of the present disclosure;
figure 15 is a side elevational view of a storage shelf provided by embodiments of the present disclosure;
figure 16 is a schematic view of a storage shelf in accordance with an embodiment of the present disclosure;
figure 17 is a schematic view of another storage mode of the storage shelf according to the embodiment of the present disclosure.
Reference numerals:
100. a frame; 200. a cross bar; 201. a storage tank; 202. buckling a card; 203. a circular groove; 204. an opening; 300. a cup holder; 301. a connecting portion; 302. a rod hanging part; 303. a slot clamping part; 304. a cushion pad; 305. fixing the clamping groove; 306. a limiting part; 307. a cup hanging part; 400. erecting a frame; 401. a stop lever; 402. a limiting rod; 403. and a bottle mouth positioning groove.
Detailed Description
So that the manner in which the features and elements of the disclosed embodiments can be understood in detail, a more particular description of the disclosed embodiments, briefly summarized above, may be had by reference to the embodiments, some of which are illustrated in the appended drawings. In the following description of the technology, for purposes of explanation, numerous details are set forth in order to provide a thorough understanding of the disclosed embodiments. However, one or more embodiments may be practiced without these details. In other instances, well-known structures and devices may be shown in simplified form in order to simplify the drawing.
The disclosed embodiments provide a storage rack.
Figures 1, 2, 3 and 4 show alternative embodiments of the storage shelf.
In some embodiments, a storage shelf comprises: a frame 100; and a cross bar 200 which is formed in a wave shape and is coupled to the inner side of the bezel 100; an inclined angle is formed between the plane of the cross bar 200 and the plane of the frame 100, and the adjacent cross bars 200 are symmetrically arranged.
By adopting the optional embodiment, the wavy lower concave part of the cross rod 200 can store wine bottles by utilizing the wavy structure of the cross rod 200, the wine bottles can also be stored in the gap between the two adjacent cross rods 200, and the wavy upper convex or lower concave part can form circular storage spaces with opposite arcs after the adjacent cross rods 200 are inclined, so that the wine bottles can be stored, the storage rack has various storage forms, and the use is more flexible and convenient.
Optionally, an inclination angle between a plane where the cross bar 200 is located and a plane where the frame 100 is located ranges from greater than 0 degree to less than 90 degrees. With this alternative embodiment, the angle of inclination of the cross bar 200 can enable a storage space to be formed between the waves of the cross bar 200 for better storage of wine bottles.
Optionally, the angle of inclination between the plane of the cross bar 200 and the plane of the frame 100 is 45 degrees. With this alternative embodiment, the 45 degree angle of inclination allows the storage space formed between the waves of the cross bar 200 to be more spacious without affecting the storage capacity of the lower concave of the waves on the upper side of the cross bar 200, and allows better storage of the wine bottles.
Optionally, the concave part of the wave-shaped structure of the cross bar 200 is a regular arc. Adopt this optional embodiment, when storing the beverage bottle of perfect circle, the area of contact with the beverage bottle is bigger, and is more stable.
Optionally, the sides of the crossbar 200 are curved. Adopt this optional embodiment, horizontal pole 200 is holistic to look sideways at for the arc, makes two horizontal poles 200 can mutually support and form an arc storing groove, and the storage beverage bottle that can be better increases the area of contact with the beverage bottle during storage, can prevent that the beverage bottle from damaging or the landing.
Optionally, the lowest point of the undulating undercut of the rail 200 is located in or on the upper side of the plane of the bezel 100. With this alternative embodiment, the lowermost end of the crossbar 200 is lower than the frame 100, so that the frame 100 can be placed directly on a plane for use more stably, and the whole body can be supported by the frame 100.
Optionally, the frame 100 and the cross bar 200 are made of steel wires. By adopting the optional embodiment, the production is convenient, and the production cost is reduced.
Optionally, the frame 100 and the cross bar 200 are both integrally formed steel wire structures. By adopting the optional embodiment, the structure is stable, and the cost is lower
Alternatively, the cross bar 200 is welded directly to the inner side wall of the bezel 100. By adopting the optional embodiment, the connection is stable, the cost is lower, and the production is convenient.
Alternatively, the distance between the centre lines of the undulations of each cross-bar 200 is the same. With this alternative embodiment, the cross bars 200 are evenly disposed on the frame 100, which is more elaborate when storing articles of the same size.
Optionally, the center line of the cross bar 200 is a connecting line of two intermediate points of the wave-shaped upper convex part and the wave-shaped lower concave part of the cross bar 200. With this alternative embodiment, regular arrangement of the cross-bars 200 is facilitated.
Optionally, the cross bar 200 is covered with a non-slip coating. With this alternative embodiment, the frictional force of the crossbar 200 is increased, preventing the articles stored on the crossbar 200 from sliding and falling, and at the same time, having an anti-collision function, reducing the damage to the stored articles and reducing the noise of collision when storing the articles.
Alternatively, the cross bar 200 may be removably attached to the bezel 100 by snap fasteners 202. With this alternative embodiment, the cross bar 200 is attached to the snap fastener 202 via the snap fastener, which facilitates easy removal and installation, and the distance between the cross bars 200 can be adjusted to facilitate storage of different sized articles.
FIG. 5 shows an alternative embodiment of a snap-fit card.
Optionally, the cross bar 200 is fixedly connected to the snap clip 202. With this alternative embodiment, the cross bar 200 may be secured to the bezel 100 by securing the snap tabs 202 to the bezel 100.
Optionally, the snap-fit card 202 is a structure having an opening 204 at one side of the circular groove 203. With this alternative embodiment, snap-fit card 202 may be secured to bezel 100 by partially snapping bezel 100 into circular groove 203 through opening 204.
Optionally, the snap-fit card 202 is an elastic member. With this alternative embodiment, the frame 100 is clamped by the elasticity of the fastening card 202, so that the fastening card 202 is tightly fixed to the frame 100, and the fastening card 202 has enough elasticity to open the opening 204 by a sufficient width, so that the frame 100 can be clamped into the circular groove 203 through the opening 204.
Optionally, the corners at the opening 204 are arc-shaped. With this alternative embodiment, the friction between the frames 100 at the opening can be reduced, and the snap-fit card 202 can be more easily removed.
Figure 6 shows one storage mode of the storage shelf.
When the wine bottles are stored in parallel to the cross bars 200, the wine bottles are placed in gaps formed between the two adjacent cross bars 200, and the wine bottles can be stored in parallel to the cross bars 200 due to the fact that the side faces of the cross bars 200 are arc-shaped and the two cross bars 200 are symmetrical and a storage space is formed between the two cross bars 200.
Figure 7 shows another storage of the storage shelf.
When the transverse vertical cross rods 200 store wine bottles, the storage grooves 201 at the same position on the cross rods 200 jointly form a storage space, and the wine bottles are placed in the storage space, so that the wine bottles can be horizontally stored.
Figure 8 shows another storage of the storage shelf.
When the wine bottles are vertically stored, the cross rods 200 have inclination angles, arcs between the wave-shaped upper convex parts of the adjacent cross rods 200 or arcs between the wave-shaped lower concave parts of the adjacent cross rods 200 are opposite, a circular storage space is formed, the wine bottles are vertically inserted into the storage space, the wine bottles are directly contacted with flat plates inside storage devices such as wine cabinets or refrigerators, the wine bottles are fixed by the cross rods 200, and the wine bottles can be vertically stored.
Figures 9 and 10 show an alternative embodiment of a storage shelf.
In some embodiments, a storage shelf comprises: the frame 100 is provided with a cross bar 200, and the cross bar 200 is provided with a storage groove 201; and a cup holder 300 provided at a lower side of the rim 100, having an integral bent bar structure; the cup holder 300 includes: a connecting portion 301; and a hanging rod part 302, wherein the hanging rod part 302 is provided with a clamping groove part 303.
Adopt this optional embodiment, the frame 100 that will store the beverage bottle combines together with hanging the glass stand 300 of putting the wineglass, and glass stand 300 hugs closely at frame 100 downside, and draw-in groove portion 303 of glass stand 300 can hang and put the wineglass, with the firm fixing of wineglass at frame 100 downside, reduces the space of frame 100 and glass stand 300 and occupies, improves space utilization, and the commonality is higher, and it is more convenient to use.
Alternatively, the cup holder 300 is integrally formed as a single-piece steel wire structure, in which the two ends are bent to form the connecting portions 301 and the middle portion is bent to form the engaging groove portions 303. By adopting the optional embodiment, the structure is simple, the production is convenient, and the production cost is reduced.
Optionally, the connecting portion 301 is perpendicular to the hanger portion 302. With this alternative embodiment, the stress on the connecting portion 301 in other directions is reduced, and the whole is more stable.
Optionally, the hanging rod portion 302 is provided with one or more slot portions 303. With this alternative embodiment, different numbers of catch portions 303 can be provided on the same peg portion 302 depending on the situation, making full use of the space on the peg portion 302.
Optionally, an angle between the slot portion 303 and a plane where the frame 100 is located ranges from 0 degree to 45 degrees. Adopt this optional embodiment, utilize inclination to carry on spacingly to the cup, prevent that the cup from droing.
Optionally, the slot portion 303 is provided in a U-shaped configuration. With this alternative embodiment, the cup is placed from one side of the U-shaped structure and the cup is secured within the mouth of the U-shaped structure.
Optionally, the open position of the slot portion 303 is higher than the closed position of the slot portion 303. Adopt this optional embodiment, can carry out spacingly to the cup, prevent that the cup from droing.
Optionally, an included angle between the slot portion 303 and the plane where the frame 100 is located is 10 degrees. By adopting the optional embodiment, the included angle of 10 degrees can prevent the cup from falling off, and the inclination angle of the cup cannot be increased due to overlarge inclination angle.
Optionally, the rim 100, cross bar 200, and cup holder 300 are all wire constructions. By adopting the optional embodiment, the production cost is reduced, and the production is more convenient.
Optionally, a cushion 304 is disposed on the slot portion 303. Adopt this optional embodiment, can increase the frictional force between draw-in groove portion 303 and the cup, prevent that the cup from falling, utilize the elasticity of blotter 304 simultaneously, prevent that the cup from colliding with draw-in groove portion 303, causing the cup to damage.
FIG. 11 illustrates an alternative embodiment of the cushion.
Optionally, the cushion 304 is provided with a fixed card slot 305 configured to be able to be clipped on the card slot portion 303. With this alternative embodiment, the cushion 304 is attached to the catch section 303 through the fixed catch 305, facilitating the removal and installation of the cushion 304.
Optionally, the outer circumference of the cushion pad 304 is provided with a fixing slot 305. By adopting the optional embodiment, the cushion pad 304 can be clamped from the inner side of the clamping groove part 303 when being installed, and when the cup is hung, the cushion pad 304 is stressed from the inner side to the outer side, so that the cushion pad 304 can be placed to fall off from the clamping groove part 303.
Optionally, the cushion pad 304 is made of plastic or rubber with elasticity. With this alternative embodiment, the cup placed on the cushion pad 304 can be effectively protected from damage by contact with hard objects.
Fig. 12 shows an alternative embodiment of the card slot portion.
Optionally, the card slot portion 303 includes: a limiting part 306 connected with the hanging rod part 302; and a cup portion 307 connected to the stopper portion 306. With this alternative embodiment, the cup is fixed by the cup retaining portion 307, and the stopper portion 306 prevents the cup from falling off.
Alternatively, the cup portion 307 is provided with a U-shaped structure, and the open end of the U-shaped structure is connected with the limiting portion 306. With this alternative embodiment, the stopper 306 forms a stop at the opening of the cup-hanging portion 307, preventing the cup from sliding off the opening of the stopper 306.
Optionally, an angle between the limiting portion 306 and a plane where the frame 100 is located ranges from 0 degree to 90 degrees. With this alternative embodiment, the angle of the stopper 306 can block the cup, so that the cup will not fall off after being hung on the cup hanging portion 307.
Optionally, the cup portion 307 is parallel to the plane of the rim 100. With this alternative embodiment, the cup portion 307 parallel to the rim 100 is able to more evenly contact the bottom of the cup, which results in a more even force on the bottom of the cup and prevents the cup from being damaged.
Figures 13, 14 and 15 show alternative embodiments of the storage shelf.
In some embodiments, a storage shelf comprises: a frame 100 provided with a protruding stand 400; the cross bar 200 is connected with the frame 100 and is provided with a storage groove 201; wherein, the cross bars 200 are provided in plurality, and the positions of some cross bars 200 are protruded compared with other cross bars 200, and the protruding direction is opposite to the protruding direction of the stand 400 relative to the frame 100.
Adopt this optional embodiment, utilize storage tank 201 on the horizontal pole 200 can the level to store the beverage bottle, and partly convex horizontal pole 200 forms for other horizontal poles 200 sunken, fixes the one end of beverage bottle, and utilizes the stand 400 to fix the other end of beverage bottle, and the beverage bottle is stored to the inclinable, makes the storing frame of this application have more storage forms, and is nimble reliable, and is better to the storage effect of article such as beverage bottle.
Optionally, the stand 400 is perpendicular to the bezel 100. With this alternative embodiment, the vertical frame 400 is perpendicular to the frame 100, and does not affect the storage space on the cross bar 200 in the frame 100, thereby improving the space utilization.
Optionally, the stands 400 are disposed on the side of the bezel 100 parallel to the crossbar 200. With this alternative embodiment, it is convenient to lean one side of the wine bottle against the stand 400, and at the same time, it is convenient to store the wine bottle obliquely by fixing one side of the wine bottle with the cross bar 200.
Optionally, the stand 400 is provided with a stop bar 401. With this alternative embodiment, the stop bar 401 prevents a wine bottle lying on the cross bar 200 from falling through the stand 400 and out of the gap of the stand 400.
Alternatively, the blocking bars 401 are arranged inside the stand 400, and the blocking bars 401 are arranged in parallel with the cross bar 200. With this alternative embodiment, the stand 400 lying on the cross bar 200 can be shielded to prevent the wine bottles from falling off. Optionally, the stand 400 is provided with a stop bar 402. With this alternative embodiment, the stopper rod 402 may be used to limit one side of the stand 400, preventing the stopper rod from being pressed close to the inner wall of the storage device, such as a refrigerator or a wine cabinet, and preventing the bottle opening of the wine bottle from touching the inner wall of the storage device when leaning against the stand 400.
Optionally, a stop bar 402 is provided on one side of the reverse rim 100 of the stand 400. With this alternative embodiment, one side of the stand 400 is prevented from being too close to the inner wall of a storage device such as a refrigerator or a wine cabinet when in use.
Optionally, the stop rods 402 are symmetrically disposed on both sides of the stand 400. By adopting the optional embodiment, both sides of the stand 400 can be separated from the inner wall of the storage device such as a refrigerator or a wine cabinet by a certain distance.
Optionally, the limiting rod 402 is a bent steel wire rod, one end of which is fixed on one side of the stand, and the other end of which is bent at the side opposite to the side where the frame 100 is arranged. With this alternative embodiment, the stop bar 402 has a width on the side opposite the bezel 100 to better space the inner walls of the storage device, such as a refrigerator or a wine cabinet.
Optionally, stand 400 is provided with a spout positioning groove 403. By adopting the optional embodiment, the bottle mouth is limited and fixed by the bottle mouth positioning groove 403, so that the wine bottle cannot move left and right.
Alternatively, finish positioning groove 403 is a circular arc shaped groove. By adopting the optional embodiment, the circular arc can be better contacted with the bottle opening, the supporting capacity of the bottle opening position is improved, and the bottle opening can be more stably fixed.
Alternatively, the finish positioning groove 403 is formed directly by bending the stand 400. Adopt this optional embodiment, simple structure, the production of being convenient for.
Optionally, a bottle opening positioning groove 403 is also formed on the stop lever 401. With this alternative embodiment, the mouth of the bottle may be held against the stop 401 to provide multiple angles of inclination for the wine bottle being stored.
Optionally, the frame 100 and the stand 400 are of a unitary construction. Adopt this optional embodiment, stable in structure, the production of being convenient for reduces manufacturing cost.
Alternatively, the frame 100 and the stand 400 are an integral rectangular frame, and a part of the rectangular frame is the frame 100 and the other part is bent to one side to form the stand 400. By adopting the optional embodiment, the structure is simplified, the appearance is attractive and elegant, and the cost is reduced.
Optionally, the cross bar 200 has a wave-shaped structure, and the wave-shaped concave part is a storage groove 201. Adopt this optional embodiment, utilize wavy concave part can fix the beverage bottle, prevent that the beverage bottle from rocking, increase and store the effect.
Optionally, the frame 100, the posts and the cross bar 200 are all of steel wire construction. By adopting the optional embodiment, the structure is stable, the production cost is low, and the production is convenient.
Figure 16 shows one storage mode of the storage shelf.
For example, the stand 400 protrudes upward relative to the frame 100, one cross bar 200 of the plurality of cross bars 200 protrudes downward relative to the other cross bars 200, when a wine bottle is stored in an inclined manner, the wine bottle is placed on the downward protruding cross bar 200 in a flat manner, the bottom of the wine bottle is limited by the one cross bar 200 or the frame 100 outside the downward protruding cross bar 200, and the bottle mouth part of the wine bottle is leaned against the stand 400, so that the wine bottle can be stored in an inclined manner.
Figure 17 shows an alternative storage of the storage shelf.
When the wine bottles are stored horizontally, the storage grooves 201 in the same position on the cross bars 200 on the same plane in the cross bars 200 form a storage space together, and the wine bottles are placed in the storage space, so that the wine bottles can be stored horizontally.
The embodiment of the disclosure also provides a wine cabinet.
In some embodiments, a wine cabinet comprises: the storage rack of any embodiment above.
The above description and drawings sufficiently illustrate embodiments of the disclosure to enable those skilled in the art to practice them. Other embodiments may include structural and other changes. The examples merely typify possible variations. Individual components and functions are optional unless explicitly required, and the sequence of operations may vary. Portions and features of some embodiments may be included in or substituted for those of others. The scope of the disclosed embodiments includes the full ambit of the claims, as well as all available equivalents of the claims.

Claims (10)

1. A storage shelf, comprising:
a frame; and
the cross bar is arranged in a wave shape and connected to the inner side of the frame;
the plane of the cross bars and the plane of the frame are inclined, and the adjacent cross bars are symmetrically arranged.
2. The storage shelf of claim 1 wherein the range of angles of inclination between the plane of said cross bar and the plane of said side frame is greater than 0 degrees and less than 90 degrees.
3. The storage shelf of claim 1 wherein the concave portions of the undulating configuration of said cross bar are right circular arcs.
4. The storage shelf of claim 1 wherein said cross bar is arcuate in side profile.
5. The storage shelf of claim 1 wherein the lowest point of said undulating undercut of said cross bar is located in or on the upper side of the plane of said peripheral frame.
6. The storage shelf of claim 1 wherein said side frame and said cross bar are of an integrally formed steel wire construction.
7. The storage shelf of claim 1 wherein said cross bar is removably attached to said rim by snap fasteners.
8. The storage shelf of claim 1 wherein said cross-bar is covered with a non-slip coating.
9. The storage shelf of any of claims 1 to 8 wherein the distance between the centre lines of the undulations of each cross-bar is the same.
10. A wine cabinet comprising a storage shelf according to any one of claims 1 to 9.
CN201920822995.8U 2019-05-31 2019-05-31 Storage rack and wine cabinet Active CN210961025U (en)

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112190027A (en) * 2020-09-22 2021-01-08 海信容声(广东)冰箱有限公司 Wine cabinet

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112190027A (en) * 2020-09-22 2021-01-08 海信容声(广东)冰箱有限公司 Wine cabinet

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