Anti-skid storage bottom support for vehicle-mounted refrigerator

CN224719050UActive Publication Date: 2026-09-04CHENGDU AEROSPACE MOLD & PLASTIC CO LTD
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Patent Information

Application Number
CN202522304119.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-30
Publication Date
2026-09-04
Estimated Expiration
2035-10-30

AI Technical Summary

Technical Problem

但是,现有的车载冰箱内部的饮品储物架上通过设置固定直径的开口,只能对应竖直放置对应直径规格的饮品

Benefits of technology

本实用新型通过在底托盒体的内部从左至右设置第一区域与第二区域,在第一区域内部能够倾倒放置饮品,并通过第一区域两相对侧壁上设置的柔性凸条对饮品进行倾倒柔性夹持固定;在第二区域内部设置第一柔性卡爪组与第二柔性卡爪组,并在第一柔性卡爪组与第二柔性卡爪组之间形成的固定腔中便捷竖直放置饮品,进而实现对饮品进行竖直柔性夹持固定;通过上述结构,能够兼容不同直径规格的饮品进行倾倒、直立式便捷柔性固定存放,同时能够有效避免饮品在车辆行驶过程中发生晃动异响。

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Abstract

The utility model discloses an anti -skidding storage bottom support for vehicle refrigerator, including the bottom support box body of top opening, the inside of bottom support box body is divided into first area and second area from left to right, the opposite two side walls of first area are arranged with flexible convex stripe, the opposite two side walls of second area are provided with first flexible dog -claw group, and the fixed cavity is formed between the first flexible dog -claw group of two sides, the utility model discloses can be compatible with the drink of different size specifications and pour, and the upright storage, and in the process of storing the drink, effectively avoid the drink to shake the abnormal sound.
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Description

Technical Field

[0001] This utility model belongs to the technical field of storage devices for vehicle refrigerators, specifically relating to a non-slip storage base for vehicle refrigerators. Background Technology

[0002] With the advancement of technology and the progress of the times, automobiles are no longer just a means of transportation; they have become more intelligent and technologically advanced, with more usage scenarios and functions, providing a more comfortable environment and a more complete riding experience. Car refrigerators are one of the commonly used devices in modern cars, allowing for the chilling and storage of beverages, thus enhancing the passenger experience. However, existing car refrigerators have beverage storage racks with fixed-diameter openings, which can only accommodate beverages of a specific diameter placed vertically. If the diameter of the beverage is larger than the opening diameter, it cannot be stored; if the diameter is smaller, a gap will form between the beverage and the opening, causing the beverage to rattle and make noise while the vehicle is in motion.

[0003] Therefore, in view of the above-mentioned problems of existing car refrigerator storage racks, this utility model discloses a non-slip storage base for car refrigerators. Utility Model Content

[0004] This utility model discloses a non-slip storage tray for a car refrigerator, which can accommodate beverages of different sizes for tilting and upright storage, and effectively prevents beverages from shaking and making noise during storage.

[0005] This utility model is achieved through the following technical solution: A non-slip storage tray for a car refrigerator includes a tray box with an open top. The interior of the tray box is divided into a first region and a second region from left to right. Flexible protrusions are arranged on the opposite side walls of the first region, and first flexible claw groups are arranged on the opposite side walls of the second region. A fixing cavity is formed between the first flexible claw groups on both sides.

[0006] The first area is for tilting bottled or canned beverages. Flexible protrusions on the opposite side walls of the first area contact the outer surface of the beverage, securing it while preventing collisions with the base tray and thus avoiding rattling or shaking. The second area is for upright placement of bottled or canned beverages. The beverage is vertically inserted into the fixing cavity, and the first and second flexible clamping groups work together to flexibly hold and secure the outer surface of the beverage. This design accommodates beverages with commonly available packaging sizes and similarly prevents collisions with the base tray, thus avoiding rattling or shaking.

[0007] To better realize this utility model, at least one set of second flexible claw groups is provided between the first flexible claw groups on both sides, and a fixing cavity is formed between the first flexible claw group and the second flexible claw group, or between adjacent second flexible claw groups.

[0008] To better realize this utility model, the first flexible claw group further includes a first transition flexible claw, a first intermediate flexible claw, and a first corner flexible claw. The first transition flexible claw is disposed on the side wall where the first region and the second region are connected and transitioned. The first corner flexible claw is disposed at the two corners of the second region. The first intermediate flexible claw is disposed between the first transition flexible claw and the first corner flexible claw.

[0009] To better realize this utility model, the first transition flexible claw further includes a transition support base and a first transition flexible protrusion. The transition support base is integrally disposed on the side wall connecting the first region and the second region. The top of the transition support base is provided with the first transition flexible protrusion, which is inclined toward the first corner flexible claw.

[0010] To better realize this utility model, the first intermediate flexible claw further includes an intermediate support base and a first intermediate flexible protrusion. The intermediate support base is integrally disposed on the opposite side walls of the second region. The top of the intermediate support base is provided with the first intermediate flexible protrusion, which is respectively disposed toward the first transition flexible claw and the first corner flexible claw.

[0011] To better realize this utility model, the first corner flexible claw further includes a corner support base and a first corner flexible protrusion. The corner support base is integrally disposed at the corner of the side wall of the second region. The top of the corner support base is provided with a first corner flexible protrusion, which is inclined toward the first transition flexible claw.

[0012] To better realize this utility model, the second flexible claw group further includes a second transition flexible claw, a second intermediate flexible claw, and a second end face flexible claw. The second transition flexible claw is disposed between the first transition flexible claws on both sides, the second intermediate flexible claw is disposed between the first intermediate flexible claws on both sides, and the second end face flexible claw is disposed between the first corner flexible claws on both sides.

[0013] To better realize this utility model, the second transition flexible claw further includes a transition support column and a second transition flexible protrusion. The transition support column is disposed between the first transition flexible claws on both sides, and the top of the transition support column is provided with a second transition flexible protrusion. The second transition flexible protrusion is inclined toward the first transition flexible claws on both sides respectively.

[0014] To better realize this utility model, the second intermediate flexible claw further includes an intermediate support column and a second intermediate flexible protrusion. The intermediate support column is disposed between the first intermediate flexible claws on both sides, and the top of the intermediate support column is provided with a second intermediate flexible protrusion. The second intermediate flexible protrusion is inclined toward the first transition flexible claw and the first corner flexible claw, respectively.

[0015] To better realize this utility model, the second end face flexible claw further includes an end face support column and a second end face flexible protrusion. The end face support column is disposed between the first corner flexible claws on both sides, and the top of the end face support column is provided with a second end face flexible protrusion. The second end face flexible protrusion is inclined towards the first corner flexible claws on both sides respectively.

[0016] Compared with the prior art, this utility model has the following advantages and beneficial effects: This invention features a first region and a second region arranged from left to right inside the base box. The first region allows for the tilting and placement of beverages, with flexible protrusions on the two opposite sidewalls providing flexible clamping and fixation. The second region contains a first flexible claw assembly and a second flexible claw assembly, allowing for convenient vertical placement of beverages within the fixed cavity formed between them, thus achieving vertical flexible clamping and fixation. This structure allows for convenient and flexible tilting and fixing of beverages of different diameters, while effectively preventing shaking and noise during vehicle operation. Attached Figure Description

[0017] Figure 1 A three-dimensional structural diagram of a non-slip storage tray for a car refrigerator; Figure 2 A top view of a non-slip storage tray for a car refrigerator; Figure 3 A schematic diagram showing how beverages with a diameter of 57mm are stored in the second area; Figure 4 A schematic diagram showing how beverages with a diameter of 65mm are stored in the second area; Figure 5 This is a diagram showing where beverages are stored in the first area; Figure 6This is a schematic diagram of the structure of the first flexible jaw assembly and the second flexible jaw assembly.

[0018] Wherein: 1-Base tray box body; 2-Flexible protrusion; 3-First flexible claw group; 4-Second flexible claw group; 31-First transition flexible claw; 32-First intermediate flexible claw; 33-First corner flexible claw; 41-Second transition flexible claw; 42-Second intermediate flexible claw; 43-Second end face flexible claw; 311-Transition support base; 312-First transition flexible protrusion; 321-Intermediate support base; 322-First intermediate flexible protrusion; 331-Corner support base; 332-First corner flexible protrusion; 411-Transition support post; 412-Second transition flexible protrusion; 421-Intermediate support post; 422-Second intermediate flexible protrusion; 431-End face support post; 432-Second end face flexible protrusion; 100-First region; 200-Second region; 300-Fixing cavity. Detailed Implementation

[0019] Example 1: This embodiment provides a non-slip storage tray for a car refrigerator, such as... Figure 1 and Figure 2 As shown, the bottom tray box 1 includes a top opening. The interior of the bottom tray box 1 is divided into a first region 100 and a second region 200 from left to right. Flexible protrusions 2 are arranged on the opposite side walls of the first region 100. First flexible claw groups 3 are arranged on the opposite side walls of the second region 200. A fixing cavity 300 is formed between the first flexible claw groups 3 on both sides.

[0020] The length, width, and height dimensions of the first region 100 and the second region 200 are set according to the standard dimensions of bottled or canned beverages on the market. The first region 100 is used for tilting and placing bottled or canned beverages. When a beverage is tilted and placed inside the first region 100, the beverage is flexibly clamped and fixed to the outside by the flexible protrusions 2 on the opposite side walls of the first region 100. Because the flexible protrusions 2 have the ability to elastically deform, such as... Figure 5 As shown, the first area 100 is designed to accommodate beverages with diameters ranging from 57mm to 65mm. The flexible protrusions 2 prevent beverages from colliding with the side walls of the first area 100, ensuring stable storage and effectively preventing shaking and noise.

[0021] The second area 200 is used for upright placement of bottled or canned beverages. The beverages are placed vertically within the fixing cavities 300 formed by the first flexible claw assemblies 3 on both sides, where the first flexible claw assemblies 3 flexibly clamp and fix the beverages to their outer sides. Because the first flexible claw assemblies 3 have the ability to elastically deform, such as... Figure 3 and Figure 4As shown, the second area 200 is designed to accommodate beverages with diameters ranging from 57mm to 65mm. The first flexible claw assembly 3 prevents beverages from colliding with the side walls of the second area 200, ensuring stable storage and effectively preventing shaking and noise.

[0022] Furthermore, at least one set of second flexible claw groups 4 is provided between the first flexible claw groups 3 on both sides, and a fixing cavity 300 is formed between the first flexible claw group 3 and the second flexible claw group 4, or between adjacent second flexible claw groups 4. By providing the second flexible claw groups 4, at least two rows of parallel fixing cavities 300 can be formed, thereby enabling the side-by-side storage of at least two rows of beverages and increasing the storage capacity.

[0023] Example 2: This embodiment discloses a non-slip storage tray for a car refrigerator, which is an optimization based on Embodiment 1, such as... Figure 2 As shown, the first flexible claw group 3 includes a first transition flexible claw 31, a first intermediate flexible claw 32, and a first corner flexible claw 33. The first transition flexible claw 31 is disposed on the side wall connecting the first region 100 and the second region 200. The first corner flexible claw 33 is disposed at the two corners of the second region 200. The first intermediate flexible claw 32 is disposed between the first transition flexible claw 31 and the first corner flexible claw 33. The second flexible claw group 4 includes a second transition flexible claw 41, a second intermediate flexible claw 42, and a second end face flexible claw 43. The second transition flexible claw 41 is disposed between the first transition flexible claws 31 on both sides. The second intermediate flexible claw 42 is disposed between the first intermediate flexible claws 32 on both sides. The second end face flexible claw 43 is disposed between the first corner flexible claws 33 on both sides.

[0024] The first transition flexible claw 31 is located on the side wall of the inner side of the base tray 1 where the first region 100 and the second region 200 are connected. The first corner flexible claw 33 is located at the corner of the side wall of the second region 200. The first intermediate flexible claw 32 is centrally located between the first transition flexible claw 31 and the first corner flexible claw 33. Together with the second transition flexible claw 41, the second intermediate flexible claw 42, and the second end face flexible claw 43, they form a 2×2 fixing cavity 300, which can vertically store four beverages at a time.

[0025] The rest of this embodiment is the same as that of Embodiment 1, so it will not be described again.

[0026] Example 3: This embodiment discloses a non-slip storage tray for a car refrigerator, which is an optimization based on embodiment 1 or 2, such as... Figure 6As shown, the first transition flexible claw 31 includes a transition support base 311 and a first transition flexible protrusion 312. The transition support base 311 is integrally disposed on the side wall connecting the first region 100 and the second region 200. The first transition flexible protrusion 312 is disposed on the top of the transition support base 311 and is inclined toward the first corner flexible claw 33. The first intermediate flexible claw 32 includes an intermediate support base 321 and a first intermediate flexible protrusion 322. The intermediate support base 321 is integrally disposed on the opposite side walls of the second region 200. The first intermediate flexible protrusion 322 is disposed on the top of the intermediate support base 321 and is disposed toward the first transition flexible claw 31 and the first corner flexible claw 33, respectively. The first corner flexible claw 33 includes a corner support base 331 and a first corner flexible protrusion 332. The corner support base 331 is integrally disposed at the corner of the side wall of the second region 200. The first corner flexible protrusion 332 is disposed on the top of the corner support base 331 and is inclined toward the first transition flexible claw 31.

[0027] The transition support base 311, the intermediate support base 321, and the corner support base 331 are all integrally formed and connected with the bottom tray box 1. The transition support base 311, the intermediate support base 321, the corner support base 331, and the bottom tray box 1 are all made of lightweight plastic, lightweight aluminum alloy, and other materials, which ensures that the support base 311, the intermediate support base 321, the corner support base 331, and the bottom tray box 1 have a certain strength and can stably support the beverage.

[0028] The first transition flexible protrusion 312, the first intermediate flexible protrusion 322, and the first corner flexible protrusion 332 are respectively bonded or snapped onto the top of the transition support base 311, the intermediate support base 321, and the corner support base 331. The first transition flexible protrusion 312, the first intermediate flexible protrusion 322, and the first corner flexible protrusion 332 are made of elastically deformable materials such as rubber and silicone, so that the first transition flexible protrusion 312, the first intermediate flexible protrusion 322, and the first corner flexible protrusion 332 can be compatible with beverages with a diameter of 57mm-65mm for clamping and fixing.

[0029] The rest of this embodiment is the same as that of embodiment 1 or 2, so it will not be described again.

[0030] Example 4: This embodiment discloses a non-slip storage tray for a car refrigerator, which is an optimization based on any one of embodiments 1-3, such as... Figure 6As shown, the second transition flexible claw 41 includes a transition support post 411 and a second transition flexible protrusion 412. The transition support post 411 is disposed between the first transition flexible claws 31 on both sides, and the second transition flexible protrusion 412 is disposed on the top of the transition support post 411. The second transition flexible protrusion 412 is inclined towards the first transition flexible claws 31 on both sides. The second intermediate flexible claw 42 includes an intermediate support post 421 and a second intermediate flexible protrusion 422. The intermediate support post 421 is disposed between the first intermediate flexible claws 32 on both sides, and the second intermediate flexible protrusion 422 is disposed on the top of the intermediate support post 421. The second intermediate flexible protrusion 422 is inclined towards the first transition flexible claw 31 and the first corner flexible claw 33. The second end face flexible claw 43 includes an end face support post 431 and a second end face flexible protrusion 432. The end face support post 431 is disposed between the first corner flexible claws 33 on both sides. The top of the end face support post 431 is provided with the second end face flexible protrusion 432, which is inclined toward the first corner flexible claws 33 on both sides.

[0031] The transition support column 411, intermediate support column 421, and end support column 431 are all integrally formed and connected to the bottom tray box 1. The transition support column 411, intermediate support column 421, end support column 431, and bottom tray box 1 are all made of lightweight plastic, lightweight aluminum alloy, and other materials, which ensures that the transition support column 411, intermediate support column 421, end support column 431, and bottom tray box 1 have a certain strength and can stably support the beverage.

[0032] The second transition flexible protrusion 412, the second intermediate flexible protrusion 422, and the second end face flexible protrusion 432 are respectively bonded or snapped onto the top of the transition support column 411, the intermediate support column 421, and the end face support column 431. The second transition flexible protrusion 412, the second intermediate flexible protrusion 422, and the second end face flexible protrusion 432 are made of elastically deformable materials such as rubber and silicone, so that the second transition flexible protrusion 412, the second intermediate flexible protrusion 422, and the second end face flexible protrusion 432 can be compatible with beverages with a diameter of 57mm-65mm for clamping and fixing.

[0033] The rest of this embodiment is the same as any one of embodiments 1-3, so it will not be described again.

[0034] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Any simple modifications or equivalent changes made to the above embodiments based on the technical essence of the present utility model shall fall within the protection scope of the present utility model.

Claims

1. A non-slip storage tray for a vehicle refrigerator, comprising a tray body (1) with an open top, characterized in that, The interior of the base box (1) is divided into a first region (100) and a second region (200) from left to right. Flexible protrusions (2) are arranged on the opposite side walls of the first region (100), and first flexible claw groups (3) are arranged on the opposite side walls of the second region (200). A fixed cavity (300) is formed between the first flexible claw groups (3) on both sides.

2. The anti-slip storage tray for a vehicle refrigerator according to claim 1, characterized in that, At least one set of second flexible claw groups (4) is provided between the first flexible claw groups (3) on both sides, and a fixed cavity (300) is formed between the first flexible claw group (3) and the second flexible claw group (4) or between adjacent second flexible claw groups (4).

3. The anti-slip storage tray for a vehicle refrigerator according to claim 2, characterized in that, The first flexible claw group (3) includes a first transition flexible claw (31), a first intermediate flexible claw (32), and a first corner flexible claw (33). The first transition flexible claw (31) is disposed on the side wall where the first region (100) and the second region (200) are connected and transitioned. The first corner flexible claw (33) is disposed at the two corners of the second region (200). The first intermediate flexible claw (32) is disposed between the first transition flexible claw (31) and the first corner flexible claw (33).

4. The anti-slip storage tray for a vehicle refrigerator according to claim 3, characterized in that, The first transition flexible claw (31) includes a transition support base (311) and a first transition flexible protrusion (312). The transition support base (311) is integrally disposed on the side wall connecting the first region (100) and the second region (200). The first transition flexible protrusion (312) is disposed on the top of the transition support base (311). The first transition flexible protrusion (312) is inclined toward the first corner flexible claw (33).

5. A non-slip storage tray for a vehicle refrigerator according to claim 3, characterized in that, The first intermediate flexible claw (32) includes an intermediate support base (321) and a first intermediate flexible protrusion (322). The intermediate support base (321) is integrally disposed on the opposite side walls of the second region (200). The top of the intermediate support base (321) is provided with the first intermediate flexible protrusion (322). The first intermediate flexible protrusion (322) is disposed towards the first transition flexible claw (31) and the first corner flexible claw (33) respectively.

6. A non-slip storage tray for a vehicle refrigerator according to claim 3, characterized in that, The first corner flexible claw (33) includes a corner support base (331) and a first corner flexible protrusion (332). The corner support base (331) is integrally disposed at the corner of the side wall of the second region (200). The first corner flexible protrusion (332) is disposed on the top of the corner support base (331). The first corner flexible protrusion (332) is inclined toward the first transition flexible claw (31).

7. A non-slip storage tray for a vehicle refrigerator according to any one of claims 3-5, characterized in that, The second flexible claw group (4) includes a second transition flexible claw (41), a second intermediate flexible claw (42), and a second end face flexible claw (43). The second transition flexible claw (41) is disposed between the first transition flexible claws (31) on both sides, the second intermediate flexible claw (42) is disposed between the first intermediate flexible claws (32) on both sides, and the second end face flexible claw (43) is disposed between the first corner flexible claws (33) on both sides.

8. A non-slip storage tray for a vehicle refrigerator according to claim 7, characterized in that, The second transition flexible claw (41) includes a transition support column (411) and a second transition flexible protrusion (412). The transition support column (411) is disposed between the first transition flexible claws (31) on both sides. The top of the transition support column (411) is provided with the second transition flexible protrusion (412). The second transition flexible protrusion (412) is inclined toward the first transition flexible claws (31) on both sides respectively.

9. A non-slip storage tray for a vehicle refrigerator according to claim 7, characterized in that, The second intermediate flexible claw (42) includes an intermediate support column (421) and a second intermediate flexible protrusion (422). The intermediate support column (421) is disposed between the first intermediate flexible claws (32) on both sides. The top of the intermediate support column (421) is provided with the second intermediate flexible protrusion (422). The second intermediate flexible protrusion (422) is inclined toward the first transition flexible claw (31) and the first corner flexible claw (33) respectively.

10. A non-slip storage tray for a vehicle refrigerator according to claim 7, characterized in that, The second end face flexible claw (43) includes an end face support post (431) and a second end face flexible protrusion (432). The end face support post (431) is disposed between the first corner flexible claws (33) on both sides. The top of the end face support post (431) is provided with a second end face flexible protrusion (432). The second end face flexible protrusion (432) is inclined toward the first corner flexible claws (33) on both sides respectively.