Bottle frame, door assembly and storage cabinet

By setting vent holes on the bottom and/or side walls of the bottle frame to expel air from the storage compartment and ensure that the liquid completely submerges the inner wall surface, the problem of poor transfer effect of large-volume, deep bottle frames is solved, and continuous and complete texture pattern transfer is achieved.

CN223839000UActive Publication Date: 2026-01-27TOSHIBA HA MANUFACTURING (NANHAI) CO LTD
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Patent Information

Application Number
CN202520403188.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-01-27
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

In existing technologies, bottle frames with large volume and deep storage depth have poor transfer effects during water transfer printing, which cannot meet production needs.

Method used

Vent holes are provided on the bottom wall and/or side wall of the bottle frame to connect the storage tank. When the vent holes penetrate the side wall, they are close to the boundary where the bottom wall and the side wall connect. The air in the storage tank is discharged through the vent holes, so that the liquid can completely immerse the inner wall surface of the storage tank, thereby achieving continuous and complete texture pattern transfer.

Benefits of technology

It solves the problem of poor transfer effect on bottle frames with large volume and deep storage, and achieves complete texture pattern transfer to meet production needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bottle frame, door subassembly and locker relates to storage technical field, bottle frame includes body, the surface of body is provided with first pattern, body includes bottom wall and side wall mutually connected, bottom wall and side wall enclose the storage groove, the body is also provided with the vent hole that communicates the storage groove, the vent hole passes through bottom wall and / or side wall; when the exhaust hole penetrates through the side wall, the exhaust hole is close to the boundary where the bottom wall is connected with the side wall relative to the opening of the storage groove. Due to the fact that the exhaust hole communicated with the storage groove is formed in the body, when water transfer printing is carried out on the bottle frame, air in the storage groove can be gradually exhausted from the exhaust hole along with the fact that the bottle frame body is completely immersed in liquid, the liquid can completely immerse the inner wall face of the storage groove, and water transfer printing is carried out on the bottle frame. Therefore, the whole inner surface of the body is in contact with the patterns on the liquid level to transfer continuous and complete texture patterns, the problem that in the related technology, the transfer printing effect on bottle frames large in volume and large in storage depth is poor is solved, and the production requirement can be met.
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Description

Technical Field

[0001] This utility model relates to the field of storage technology, and in particular to a bottle frame, door assembly and storage cabinet. Background Technology

[0002] Bottle frames are common storage accessories in some lockers, mainly used to hold bottled items such as beverages and condiments. To improve the aesthetics of bottle frames, water transfer printing is often used to print various textures and patterns on their surface. However, due to current limitations of water transfer printing technology, it can only be used on bottle frames with small volume and shallow storage depth. The transfer effect is poor on bottle frames with large volume and high storage depth, which cannot meet production requirements. Utility Model Content

[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a bottle frame that can completely expel air during the water transfer printing process, thereby improving the problem of poor transfer effect in related technologies.

[0004] This utility model also proposes a door assembly having the above-mentioned bottle frame.

[0005] This utility model also proposes a storage cabinet having the above-mentioned bottle frame or door assembly.

[0006] According to a first aspect of the present invention, the bottle frame includes a body, the surface of which is provided with a first pattern. The body includes a bottom wall and a side wall connected to each other, the bottom wall and the side wall forming a storage groove. The body also has a vent hole communicating with the storage groove, the vent hole penetrating the bottom wall and / or the side wall. Wherein, when the vent hole penetrates the side wall, the vent hole is close to the boundary where the bottom wall and the side wall connect relative to the opening of the storage groove.

[0007] The bottle frame according to the first aspect of the present invention has at least the following beneficial effects:

[0008] This utility model discloses a bottle frame comprising a body, a storage compartment, and a vent hole communicating with the storage compartment. The body includes a bottom wall and a side wall, with the vent hole penetrating through the bottom wall and / or the side wall. When the vent hole penetrates the side wall, it is located near the boundary where the bottom wall and the side wall meet. By providing the vent hole, during water transfer printing on the bottle frame body, as the body is fully immersed in the liquid, air in the storage compartment can be gradually discharged through the vent hole, allowing the liquid to completely submerge the inner wall surface of the storage compartment, i.e., the inner surface of the body. This allows the entire inner surface of the body to contact the pattern on the liquid surface, transferring a continuous and complete texture pattern. This solves the problem of poor transfer effect for bottle frames with large volume and deep storage depth in related technologies and can meet production needs.

[0009] According to some embodiments of the present invention, the sidewall includes multiple wall panels, and the multiple wall panels and the bottom wall form multiple angles, with the exhaust hole located near one of the angles.

[0010] According to some embodiments of the present invention, the bottle frame further includes a shielding member, which is connected to the body and covers the vent hole.

[0011] According to some embodiments of the present invention, the bottle frame is applied to a storage cabinet, the side wall is provided with a hanging part, and the body is used to be hung on the storage cabinet through the hanging part, wherein at least a portion of the hanging part protrudes into the storage slot.

[0012] The shielding component is disposed in the storage slot. The shielding component includes a cover and a connecting part connected to the cover. The connecting part is connected to the hanging part. The cover covers the vent and the hanging part.

[0013] According to some embodiments of the present invention, the connecting part includes a limiting groove, and the hanging part is provided with a plug-in post. The plug-in post extends along the depth direction of the storage groove and is inserted into the limiting groove to limit the blocking member in the length direction and / or width direction of the storage groove.

[0014] According to some embodiments of the present invention, the hanging part includes a side surface connected to the side wall, and the plug-in post is connected to the side surface.

[0015] According to some embodiments of the present utility model, the connecting part includes a limiting buckle, the limiting buckle is disposed on the side of the cover facing the hanging part, the limiting buckle includes a connecting arm and a first hook part, the connecting arm extends along the depth direction of the storage groove, and the first hook part is connected to the end of the connecting arm near the bottom wall;

[0016] The hook part is provided with a fastening structure, and the first hook part engages with the fastening structure to make the shielding member engage with the hook part.

[0017] According to a second aspect embodiment of the present invention, the bottle frame is provided with a storage slot. The bottle frame includes at least two sub-components, which are detachably connected. At least one sub-component includes a patterned first surface, which forms part of the wall surface of the storage slot. The patterned sub-component is also provided with an exhaust vent. During the process of immersing the sub-component in liquid, the air between the first surface and the liquid surface can be discharged through the exhaust vent, so that the first surface can contact the liquid surface.

[0018] The bottle frame according to the second aspect embodiment of the present invention has at least the following beneficial effects:

[0019] By detachably connecting at least two sub-components, each sub-component includes a patterned first surface that forms part of the storage compartment wall of the bottle frame. The patterned sub-component also includes a vent, configured to expel air between its first surface and the liquid surface when immersed in liquid. By individually water-transfer printing on the sub-components to be patterned, a continuous and complete transfer pattern can be transferred onto the first surfaces of these sub-components. After all sub-components are connected as a whole bottle frame, the storage compartment wall forms the desired transfer pattern. In this way, by independently water-transfer printing each sub-component before connecting them as a whole, the problem of poor transfer effects on bottle frames with large capacity and deep storage depth in related technologies can be solved, meeting production requirements.

[0020] A door assembly according to a third aspect of the present invention includes a door body and a bottle frame as described in any of the above embodiments, wherein the bottle frame is mounted on the door body.

[0021] The locker according to a fourth aspect of the present invention includes the bottle frame or the door assembly described in any of the above embodiments.

[0022] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments, wherein:

[0024] Figure 1 This is a schematic diagram of the bottle frame structure according to the first embodiment of the present invention;

[0025] Figure 2 for Figure 1 A structural schematic diagram of the bottle frame from another perspective;

[0026] Figure 3 This is a schematic diagram of the bottle frame structure according to the second embodiment of the present invention;

[0027] Figure 4 This is an exploded view of the bottle frame according to the second embodiment of the present invention;

[0028] Figure 5 This is a schematic diagram of the structure of the bottle frame shielding component according to the second embodiment of the present utility model;

[0029] Figure 6 for Figure 3 A magnified view of a section at point B in the middle;

[0030] Figure 7This is a side view of the bottle frame according to the second embodiment of the present invention;

[0031] Figure 8 for Figure 7 A partial sectional view of the structure shown along section CC;

[0032] Figure 9 for Figure 1 A magnified view of a section at point A in the middle;

[0033] Figure 10 for Figure 8 A partial sectional view of the structure shown along section DD;

[0034] Figure 11 This is a schematic diagram of the bottle frame structure according to the third embodiment of the present invention;

[0035] Figure 12 This is a schematic diagram of the structure of the first component of the bottle frame according to the third embodiment of this utility model;

[0036] Figure 13 This is a schematic diagram of the structure of the second component of the bottle frame according to the third embodiment of this utility model;

[0037] Figure 14 This is a schematic diagram of the structure of the door assembly according to an embodiment of the present utility model.

[0038] Icon labels:

[0039] Bottle frame 10;

[0040] Body 100; Storage compartment 100a; Vent 100b;

[0041] Bottom wall 110; side wall 120; first wall panel 121; second wall panel 122; hanging part 130; hanging groove 130a; side surface 131; end face 132;

[0042] Insertion post 140; First upright plate 141; Second upright plate 142; Fastening structure 150; Second hook part 151;

[0043] 200; cover 210; first cover 211; second cover 212; third cover 213; connecting part 220; limiting buckle 221; connecting arm 2211; first hook 2212; limiting groove 222; first groove 2221; second groove 2222;

[0044] Sub-component 300; Exhaust section 300a; First component 310; Second component 320;

[0045] Door body 20; door shell 21; door core 22; support part 22a. Detailed Implementation

[0046] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0047] In the description of this utility model, it should be understood that the orientation descriptions, such as up, down, etc., are based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0048] In the description of this utility model, "multiple" refers to two or more. The use of "first" and "second" is for distinguishing technical features only and should not be construed as indicating or implying relative importance, or implicitly indicating the number of technical features or their sequential relationship.

[0049] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0050] This utility model provides a bottle frame. The bottle frame of this utility model is mainly used in storage cabinets, which may include a cabinet body and a cabinet door connected to the cabinet body. The bottle frame can be installed on the cabinet body and / or the cabinet door. The storage cabinet can be a conventional storage cabinet or a storage cabinet with a refrigeration function, such as a refrigerator, freezer, or wine cabinet.

[0051] Please refer to Figure 1 The bottle frame 10 includes a body 100, which has a storage slot 100a for placing items to be stored. The body 100 includes a bottom wall 110 and a side wall 120 connected to the bottom wall 110. The bottom wall 110 and the side wall 120 form the storage slot 100a. The side wall 120 can be composed of multiple connected wall panels or it can be a single wall panel. For example, when the bottle frame 10 has a circular or elliptical outline, the side wall 120 can be a continuous annular wall panel.

[0052] The surface of the body 100 is provided with a first pattern, which is formed by water transfer printing. Specifically, the surface of the body 100 includes an outer surface and an inner surface (the wall of the storage tank 100a is the inner surface). In order to transfer the pattern to both the inner and outer surfaces of the body 100, during the water transfer printing process, the opening of the storage tank 100a of the body 100 is generally facing downwards, and the body 100 is tilted at a certain angle and immersed in the liquid. For bottle frames 10 with large volume and deep storage depth, some air will not be able to escape from the storage tank 100a, causing part of the inner surface of the body 100 to be unable to contact the pattern on the liquid surface and thus the pattern cannot be transferred. As a result, the texture pattern on the surface of the body 100 is discontinuous and incomplete, affecting the aesthetics of the bottle frame 10.

[0053] In this embodiment of the application, please refer to Figure 1 and Figure 2 The main body 100 is also provided with a vent 100b communicating with the storage compartment 100a, the vent 100b penetrating the bottom wall 110 and / or the side wall 120. When the vent 100b penetrates the side wall 120, the opening of the vent 100b relative to the storage compartment 100a is close to the boundary where the bottom wall 110 and the side wall 120 connect. It should be noted that "vent 100b close to the boundary where the bottom wall 110 and the side wall 120 connect" means that the edge of the vent 100b is close to the boundary where the bottom wall 110 and the side wall 120 connect. This can be due to a small distance between the edge of the vent 100b and the boundary where the bottom wall 110 and the side wall 120 connect, or it can be due to the edge of the vent 100b coinciding with (fitting against) the boundary where the bottom wall 110 and the side wall 120 connect.

[0054] It is easy to understand that when the vent 100b only penetrates the side wall 120, it is positioned near the boundary where the bottom wall 110 connects to the side wall 120. This allows the body 100 to be immersed in the liquid with the opening of the storage tank 100a facing downwards and at an angle for water transfer printing. The vent 100b can then be positioned near the highest point of the body 100's angled position, ensuring that all air in the storage tank 100a is expelled. However, when the vent 100b only penetrates the bottom wall 110, it can be positioned near the boundary where the bottom wall 110 connects to the side wall 120, or it can be positioned at other parts of the bottom wall 110, such as the middle of the bottom wall 110. In the latter case, to ensure that all air in the storage tank 100a is expelled, the body 100 can be immersed in the liquid in a non-tilted position.

[0055] By providing an exhaust port 100b that communicates with the storage tank 100a on the main body 100, when performing water transfer printing on the main body 100, as the main body 100 is fully immersed in the liquid, the air in the storage tank 100a can be gradually discharged from the exhaust port 100b, so that the liquid can completely submerge the tank wall surface of the storage tank 100a, that is, the inner surface of the main body 100. This allows the entire inner surface of the main body 100 to come into contact with the pattern on the liquid surface and transfer a continuous and complete texture pattern, which solves the problem of poor transfer effect of bottle frames with large volume and deep storage depth in related technologies and can meet production needs.

[0056] In one embodiment, to facilitate the production and processing of the body 100, the vent 100b penetrates the bottom wall 110 of the body 100.

[0057] In some embodiments, the sidewall 120 includes a plurality of wall panels, which are connected to the bottom wall 110 and form a plurality of angles, with the vent 100b located near one of the angles. During water transfer printing, the tilt angle of the body 100 can be adjusted so that the angle is at its highest point. Immersing the body in water at this angle allows for better and faster air expulsion from the storage tank 100a, ensuring a good transfer effect.

[0058] In one embodiment, such as Figure 1 As shown, the main body 100 is generally designed as a square, and the main body 100 has four corners, with the exhaust port 100b located at one of the corners.

[0059] Please refer to Figure 3 In some embodiments, the bottle frame 10 further includes a shield 200, which is connected to the body 100 and covers the vent 100b.

[0060] By covering the vent 100b with a shield 200, the aesthetics of the bottle frame 10 can be improved. Furthermore, the shield 200 also acts as a barrier, preventing small parts stored in the storage compartment 100a from falling out of the vent 100b.

[0061] It is easy to understand that the shielding component 200 and the main body 100 are two independently processed parts. The shielding component 200 is attached to the main body 100 after the water transfer printing is completed. To ensure the consistency of the overall appearance of the bottle frame 10, the surface of the shielding component 200 can also be water-transfer printed to form the same texture pattern as the main body 100. The shielding component 200 is water-transfer printed separately and then attached to the main body 100. In one embodiment, the surface of the shielding component 200 is provided with a second pattern.

[0062] Generally, when bottle frames 10 are used in lockers, they are typically fixed to the locker body or door using a hook-and-loop method. Please refer to [reference needed]. Figure 4The side wall 120 of the main body 100 is provided with a hanging part 130. The cabinet or door of the storage cabinet may be provided with a support part, and the main body 100 is hung on the support part through the hanging part 130. For example, in one embodiment, the hanging part 130 is provided with a hanging groove 130a that opens to the outside of the main body 100. The groove opening of the hanging groove 130a faces downward. The support part is inserted into the hanging groove 130a to hang the main body 100 on the storage cabinet.

[0063] Please refer to Figures 3 to 5 In some embodiments, at least part of the hook portion 130 protrudes into the storage slot 100a, and the cover 200 is disposed in the storage slot 100a. The cover 200 includes a cover 210 and a connecting portion 220 connected to the cover 210. The connecting portion 220 is connected to the hook portion 130, and the cover 210 covers the vent hole 100b and the hook portion 130.

[0064] By placing the cover 200 inside the storage compartment 100a, the cover 200 conceals the vent 100b inside the storage compartment 100a. This prevents the user from directly seeing the vent 100b from inside the storage compartment 100a when taking or placing items, improving the appearance of the bottle frame 10. The cover 200 is connected to the hook-on portion 130 via the connecting part 220, rather than at other locations on the side wall 120. This allows for direct connection using the hook-on portion 130, eliminating the need for additional connections elsewhere. This minimizes the impact on the storage compartment 100a by reducing the space occupied by the hook-on portion 130. Furthermore, the cover 200 has a cap 210 that covers the hook-on portion 130, meaning it conceals both the vent 100b and the hook-on portion 130. This further enhances the appearance of the bottle frame 10 by preventing the user from seeing the hook-on portion 130 when taking or placing items.

[0065] Please refer to the reference. Figure 1 and Figure 6 The side wall 120 includes adjacent first wall panel 121 and second wall panel 122. An exhaust hole 100b penetrates the bottom wall 110, and the edge of the exhaust hole 100b is close to the first wall panel 121 and the second wall panel 122. A hanging part 130 is disposed on the first wall panel 121 or the second wall panel 122. To cover the exhaust hole 100b and the hanging part 130, in one embodiment, the cover 210 includes a first covering part 211, a second covering part 212, and a third covering part 213 connected to each other. The first covering part 211 is disposed opposite to the first wall panel 121 and abuts against the second wall panel 122 and the bottom wall 110. The second covering part 212 is disposed opposite to the second wall panel 122 and abuts against the first wall panel 121 and the bottom wall 110. The third covering part 213 is disposed opposite to the bottom wall 110 and abuts against the first wall panel 121 and the second wall panel 122.

[0066] To ensure the secure connection between the shielding component 200 and the main body 100, the connecting part 220 can be connected by snap-fit, plug-in or other connection methods.

[0067] In some embodiments, please refer to Figure 7 and Figure 8 The connecting part 220 includes a limiting groove 222, and the hook part 130 is provided with a plug post 140, which is plugged into the limiting groove 222. Through the limiting engagement of the plug post 140 and the limiting groove 222, the blocking member 200 can be limited in at least one direction, which is beneficial to the stability of the connection between the blocking member 200 and the body 100. Furthermore, the plug-in method is simple to operate and facilitates assembly.

[0068] In one embodiment, the insertion post 140 extends along the depth direction of the storage slot 100a. The insertion post 140 mainly utilizes the vertical space of the storage slot 100a, without needing to extend outward excessively to occupy the horizontal space of the storage slot 100a. This allows the shielding member 200 to be set as close as possible to the side wall 120, effectively reducing the space occupied by the storage space. Moreover, for bottle frames 10 with a relatively deep storage depth, the insertion post 140 can be set to a sufficiently long length along the depth direction of the storage slot 100a, which can enhance the limiting effect and improve the firmness of the connection between the shielding member 200 and the body 100.

[0069] The insertion post 140 can be designed to restrict the movement of the blocking member 200 along the length and / or width of the storage slot 100a. In one embodiment, please refer to... Figure 8 and Figure 9 The insertion post 140 includes a first upright plate 141 and a second upright plate 142. The first upright plate 141 is connected to the hook portion 130 and extends along a first direction. The second upright plate 142 is connected to the end of the first upright plate 141 away from the hook portion 130 and extends along a second direction. The first direction is one of the length direction and the width direction of the storage compartment 100a, and the second direction is the other of the length direction and the width direction of the storage compartment 100a. Thus, the first upright plate 141 and the second upright plate 142 extend along different directions, so that the cross-sectional shape of the insertion post 140 can be T-shaped or L-shaped. The appended illustration of this embodiment only uses the T-shaped cross-section design of the insertion post 140 as an example and should not be regarded as a limitation of this application. Correspondingly, the shape of the limiting groove 222 is designed to match the shape of the plug post 140. The limiting groove 222 includes a first groove 2221 and a second groove 2222 that communicates with the first groove 2221. The first upright plate 141 is inserted into the first groove 2221, and the second upright plate 142 is inserted into the second groove 2222.

[0070] Taking the first upright plate 141 extending along the width direction of the storage slot 100a and the second upright plate 142 extending along the length direction of the storage slot 100a as an example, the first upright plate 141 restricts the degree of freedom of the blocking member 200 to move along the length direction of the storage slot 100a, and the second upright plate 142 restricts the degree of freedom of the blocking member 200 to move along the width direction of the storage slot 100a, thereby realizing the limitation of the blocking member 200 in two directions and ensuring that the blocking member 200 can be stably connected to the body 100.

[0071] Please refer to Figure 9 The mounting portion 130 includes a side surface 131 and an end surface 132. The side surface 131 is connected to the side wall 120, and the end surface 132 is connected to the end of the side surface 131 away from the side wall 120 and is spaced apart from the side wall 120. To further reduce the space occupied by storage space, in one embodiment, a first upright plate 141 is connected to the side surface 131.

[0072] In this embodiment, by connecting the first upright plate 141 to the side 131, that is, by connecting the plug post 140 to the side 131, when the shield 200 is connected to the plug post 140, the cover 210 of the shield 200 can be close to the end face 132 of the hanging part 130, further reducing the occupation of storage space.

[0073] In some embodiments, reference Figure 5 and Figure 9 As shown, the connecting part 220 also includes a limiting buckle 221, and the hanging part 130 is provided with a fastening structure 150. The limiting buckle 221 and the fastening structure 150 are engaged to make the blocking member 200 be engaged with the hanging part 130 through the limiting buckle 221.

[0074] In one embodiment, please refer to Figure 10 The limiting buckle 221 includes a connecting arm 2211 and a first hook portion 2212. The connecting arm 2211 extends along the depth direction of the storage groove 100a, and the first hook portion 2212 is connected to the end of the connecting arm 2211 near the bottom wall 110. The latching structure 150 includes a second hook portion 151, which is connected to the hanging part 130. The first hook portion 2212 abuts against the side of the second hook portion 151 facing the bottom wall 110.

[0075] With the above configuration, the first hook portion 2212 abuts against the side of the second hook portion 151 facing the bottom wall 110, so that the two are engaged along the depth direction of the storage slot 100a, which restricts the freedom of movement of the blocking member 200 along the depth direction of the storage slot 100a. Combined with the insertion post 140 limiting the blocking member 200 in the length and width directions of the storage slot 100a, these two parts of the structure together limit the blocking member 200 in the three coordinate directions of three-dimensional space, which greatly improves the firmness and reliability of the connection between the blocking member 200 and the body 100, and effectively prevents the blocking member 200 from falling off the body 100. Furthermore, in this embodiment, by extending the connecting arm 2211 along the depth direction of the storage groove 100a, the engaging direction of the first hook portion 2212 and the second hook portion 151 is along the depth direction of the storage groove 100a and is consistent with the insertion direction of the shield 200. Therefore, during the insertion process of the insertion post 140 and the limiting groove 222, the first hook portion 2212 will engage with the second hook portion 151, thereby achieving the assembly of the two-part structure through only one insertion step, which facilitates the installation of the shield 200.

[0076] In other embodiments, the fastening structure 150 may also be a slot provided in the hanging part 130, with the first hook part 2212 engaging in the slot to fasten and fix the shield 200 to the hanging part 130. This will not be described in detail here.

[0077] This utility model also provides another embodiment of the bottle frame 10. Please refer to... Figures 11 to 13 The bottle frame 10 is provided with a storage slot 100a for placing items to be stored. The bottle frame 10 includes at least two sub-components 300, which are detachably connected. At least one sub-component 300 includes a patterned first surface, which forms part of the wall surface of the storage slot 100a. The patterned sub-component 300 is also provided with an exhaust vent 300a. During the process of immersing the sub-component 300 in liquid, the air between the first surface and the liquid surface can be discharged through the exhaust vent 300a so that the first surface can contact the liquid surface.

[0078] The venting section 300a is designed to expel air between the first surface of the sub-component 300 and the liquid surface during immersion in the liquid. Therefore, in this embodiment, when performing water transfer printing on the bottle frame, each sub-component 300 to be patterned can be individually water-transferred, allowing the first surface of these sub-components 300 to contact the liquid surface, thereby transferring a continuous and complete transfer pattern onto the first surface of these sub-components 300. After connecting all the sub-components 300 into the bottle frame as a whole, the wall surface of the storage tank 100a (i.e., the inner surface of the bottle frame) forms the desired transfer pattern. Thus, through the above configuration, each sub-component 300 of the bottle frame 10 can be independently water-transferred before being connected into the bottle frame as a whole, solving the problem of poor transfer effect for bottle frames with large capacity and deep storage depth in related technologies, and meeting production requirements.

[0079] It should be noted that the venting part 300a is formed on the sub-component 300 when the bottle frame 10 is disassembled into individual parts. When all the sub-components 300 are connected to form the bottle frame 10 as a whole, the sub-component 300 may or may not have the venting part 300a.

[0080] The venting section 300a can be a notch, opening, or open space formed on the periphery of the first surface. During the immersion of the sub-component 300 in the liquid, as the gap between the first surface and the liquid surface gradually decreases, the air between the first surface and the liquid surface is compressed and gradually discharged from the notch, opening, or open space at the venting section 300a. For example, in one embodiment, referring to… Figure 12 and Figure 13 As shown, the bottle frame 10 can be formed by connecting a first component 310 and a second component 320. The first component 310 is constructed as a flat plate structure, and the second component 320 is constructed as a frame structure with open ends. One end of the frame structure is connected to the flat plate structure, and the frame structure and the flat plate structure enclose the aforementioned storage slot 100a. For the flat plate structure, the side of the flat plate structure facing the frame structure is its first surface, and its venting portion 300a is an open space formed in the circumference of the flat plate structure; for the frame structure, the inner wall surface of the frame structure is its first surface, and its venting portion 300a is the open ends of the frame structure.

[0081] Please refer to Figure 14 This utility model also provides a door assembly, which includes a door body 20 and a bottle frame 10 based on any of the above embodiments, the bottle frame 10 being mounted on the door body 20. The door assembly provided by this utility model can be applied to a storage cabinet, which may include a cabinet body, and the door assembly is mounted on the cabinet body. The storage cabinet can be a conventional storage cabinet or a storage cabinet with a refrigeration function, such as a refrigerator, freezer, or wine cabinet.

[0082] Since the door assembly adopts all the technical solutions of the bottle frame 10 in the above embodiments, it has at least all the beneficial effects brought about by the technical solutions in the above embodiments.

[0083] In one embodiment, the storage cabinet is a refrigerator or freezer. The door 20 may include a door shell 21 and a door liner 22 arranged along its thickness direction. A support portion 22a is provided on the side of the door liner 22 facing the inside of the storage cabinet. The bottle frame 10 may be provided with a hook portion 130 as described in the above embodiment. The hook portion 130 is provided with a hook groove 130a that hooks and cooperates with the support portion 22a, so that the bottle frame 10 is hooked on the door liner 22.

[0084] This utility model also provides a storage cabinet, which includes a bottle frame 10 or a door assembly based on any of the above embodiments. The storage cabinet can be a conventional storage cabinet or a storage cabinet with a refrigeration function, such as a refrigerator, freezer, or wine cabinet. Because the storage cabinet adopts all the technical solutions of the bottle frame 10 or door assembly of the above embodiments, it possesses at least all the beneficial effects brought about by the technical solutions of the above embodiments.

[0085] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. A bottle frame, characterized in that, The bottle frame includes a body with a first pattern on its surface. The body includes a bottom wall and a side wall connected to each other, which together form a storage compartment. The body also has a vent hole communicating with the storage compartment, which penetrates the bottom wall and / or the side wall. When the vent hole penetrates the side wall, it is located near the boundary where the bottom wall and the side wall connect relative to the opening of the storage compartment.

2. The bottle frame according to claim 1, characterized in that, The sidewall includes multiple wall panels, which together with the bottom wall form multiple angles, and the vent is located near one of the angles.

3. The bottle frame according to claim 1 or 2, characterized in that, The bottle frame also includes a shield, which is connected to the main body and covers the vent.

4. The bottle frame according to claim 3, characterized in that, The bottle frame is applied to the locker, the side wall is provided with a hanging part, and the body is used to be hung on the locker through the hanging part, wherein at least part of the hanging part protrudes into the storage slot; The shielding component is disposed in the storage slot. The shielding component includes a cover and a connecting part connected to the cover. The connecting part is connected to the hanging part. The cover covers the vent and the hanging part.

5. The bottle frame according to claim 4, characterized in that, The connecting part includes a limiting groove, and the hook part is provided with a plug post. The plug post extends along the depth direction of the storage groove and is inserted into the limiting groove to limit the blocking member in the length direction and / or width direction of the storage groove.

6. The bottle frame according to claim 5, characterized in that, The mounting portion includes a side surface connected to the side wall, and the plug post is connected to the side surface.

7. The bottle frame according to claim 4, characterized in that, The connecting part includes a limiting buckle, which is disposed on the side of the cover facing the hanging part. The limiting buckle includes a connecting arm and a first hook part. The connecting arm extends along the depth direction of the storage groove, and the first hook part is connected to the end of the connecting arm near the bottom wall. The hook part is provided with a fastening structure, and the first hook part engages with the fastening structure to make the shielding member engage with the hook part.

8. Bottle frame, characterized in that, The bottle frame is provided with a storage slot. The bottle frame includes at least two sub-components that are detachably connected. At least one of the sub-components includes a patterned first surface that forms part of the wall of the storage slot. The patterned sub-component is also provided with an exhaust vent. During the process of immersing the sub-component in liquid, the air between the first surface and the liquid surface can be discharged through the exhaust vent, so that the first surface can contact the liquid surface.

9. A door assembly, characterized in that, It includes a door body and a bottle frame as described in any one of claims 1 to 8, wherein the bottle frame is installed on the door body.

10. A locker, characterized in that, Includes the bottle frame as described in any one of claims 1 to 8 or the door assembly as described in claim 9.