Storage rack capable of sliding bidirectionally

By designing a bidirectional sliding storage rack, and using guide components and a sliding plate to adjust the height of the shelves, the limitations of existing storage racks in storing tall items are solved, achieving flexible space utilization and improved safety.

CN223554510UActive Publication Date: 2025-11-18东莞市必兴电子科技有限公司
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Patent Information

Application Number
CN202422847737.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-11-18
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

Existing storage racks cannot meet the storage needs of taller items, thus limiting their use.

Method used

Design a bidirectional sliding storage rack. Through the cooperation of guide components and sliding plates, the height of the shelves can be flexibly adjusted. The support structure includes a first support body, a second support body, and a locking device to realize the sliding connection and fixation of the shelves.

Benefits of technology

It meets the storage needs of items of different heights, and the size of the bracket is convertible, saving space and improving the flexibility and safety of use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223554510U_ABST
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Abstract

The utility model relates to the technical field of storage racks, in particular to a storage rack capable of sliding bidirectionally. Comprising a support, a storage layer plate and a guide assembly, the guide assembly comprises a guide groove and a sliding plate, the guide groove is connected with the support, and the sliding plate is connected with the storage layer plate; the support comprises a first supporting body, a second supporting body and a first locking piece, the second supporting body is connected with the first supporting body in a sliding mode, and the second supporting body is fixed to the first supporting body through the first locking piece. The storage layer plate comprises a first layer plate assembly and a second layer plate assembly, the first layer plate assembly is arranged on the first supporting body, the second layer plate assembly is arranged on the second supporting body, and the second layer plate assembly is in sliding connection with the first layer plate assembly; the sliding direction of the second layer plate assembly is consistent with that of the second supporting body, and the sliding direction of the second supporting body intersects with that of the sliding plate. Different conversion of the size of the storage rack is met, the storage rack is convenient to store and use, and space is saved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a storage rack technical field especially relates to a storage rack of two -way sliding. BACKGROUND

[0002] The storage rack has the characteristics of light weight, convenient movement, can be used in indoor and outdoor, stores various articles, saves space, is widely loved by consumers, but the existing storage rack has the following shortcomings in the use process: the height of the placed article is limited, that is, the storage rack cannot meet the storage demand of certain height article, so the storage rack of the existing structure has the use limitation when storing articles, and needs to be improved. SUMMARY

[0003] In order to overcome the shortcomings that the existing storage rack cannot meet the storage of higher articles, the utility model aims at providing a storage rack of two -way sliding, which meets the purpose of storing articles of different heights.

[0004] In order to achieve the above -mentioned purpose, the technical scheme of the utility model is as follows:

[0005] A storage rack of two -way sliding, including support, article placing layer plate and guide assembly, the guide assembly includes guide groove and sliding plate, the guide groove is connected with the support, the sliding plate is connected with the article placing layer plate;

[0006] The support includes first support body, second support body and first lock piece, the second support body is connected with the first support body slidingly, and the first lock piece fixes the second support body on the first support body;

[0007] The article placing layer plate includes first layer plate assembly and second layer plate assembly, the first layer plate assembly is arranged on the first support body, the second layer plate assembly is arranged on the second support body, and the second layer plate assembly is connected with the first layer plate assembly slidingly;

[0008] The sliding direction of the second layer plate assembly is consistent with the sliding direction of the second support body, and the sliding direction of the second support body intersects with the sliding direction of the sliding plate.

[0009] Further, the article placing layer plate includes a second lock piece, and the second lock piece fixes the second layer plate assembly on the first layer plate assembly.

[0010] Further, the first support body and the second support body each include two pad feet, two vertical rod pieces and two middle cross bars, one pad foot is connected with one vertical rod piece, one middle cross bar is connected with two vertical rod pieces, and the two middle cross bars are arranged in an upper and lower relationship.

[0011] The first support body further comprises a first telescopic outer tube connected with the vertical rod of the first support body;

[0012] The second support body further comprises a first telescopic inner tube connected with the vertical rod of the second support body, and the first telescopic inner tube is movably connected with the first telescopic outer tube, and the first lock is arranged on the first telescopic outer tube and fixes the first telescopic inner tube and the first telescopic outer tube.

[0013] Further, the first layer plate assembly and the second layer plate assembly each comprise a mesh plate;

[0014] The first layer plate assembly comprises a second telescopic outer tube connected with the mesh plate, and the length direction of the second telescopic outer tube is arranged to intersect the length direction of the sliding plate, and the second telescopic outer tube is connected with the sliding plate;

[0015] The second layer plate assembly comprises a second telescopic inner tube connected with the mesh plate, and the length direction of the second telescopic inner tube is arranged to intersect the length direction of the sliding plate, and the second telescopic inner tube is connected with the sliding plate;

[0016] The second telescopic inner tube is movably connected with the second telescopic outer tube.

[0017] Further, the mesh plate comprises a plurality of long rods, a plurality of short rods, a plurality of L rods and a material supporting rod, the long rod intersects the short rod, each L rod is connected with each long rod, the material supporting rod is connected with each short rod, the material supporting rod is connected with the second telescopic inner tube, and the material supporting rod is connected with the second telescopic outer tube.

[0018] The utility model discloses the beneficial effects: through setting up the guide component, make the thing layer board relative support horizontal motion, the thing height of thing layer board is flexibly adjusted, satisfies the thing demand of different height article, and the structure of support including first support body, second support body and first lock satisfies the different conversion of the volume of storage rack, is convenient for the storage and use of storage rack, saves the space. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is the structure schematic drawing of the use state of drawing apart of the utility model;

[0020] Figure 2 It is the structure schematic drawing of the storage structure of the utility model;

[0021] Figure 3 It is the state schematic drawing of the thing layer plate of drawing out support of the utility model;

[0022] Figure 4 It is the structure schematic drawing of support and guide component of the utility model;

[0023] Figure 5 The utility model discloses a storage layer board structure schematic diagram.

[0024] The reference signs include:

[0025] 1 - support 11 - first support body 12 - second support body

[0026] 13 - first lock piece 101 - foot pad piece 102 - vertical rod piece

[0027] 103 - middle cross bar 104 - first telescopic outer tube 105 - second telescopic inner tube

[0028] 2 - storage layer board 21 - first layer board assembly 22 - second layer board assembly

[0029] 23 - second lock piece 201 - net plate 202 - second telescopic outer tube

[0030] 203 - second telescopic inner tube 201a - long rod 201b - short rod

[0031] 201c - L rod 201d - material supporting rod 3 - guide assembly

[0032] 31 - guide slot 32 - sliding plate. DETAILED DESCRIPTION

[0033] For the convenience of the understanding of the person skilled in the art, the utility model is further explained below in combination with the embodiment and the drawing, and the content mentioned in the embodiment is not the limitation of the utility model.

[0034] Please refer to Figures 1 to 5 The utility model discloses a bidirectional sliding storage rack, including support 1, storage layer board 2 and guide assembly 3, the guide assembly 3 includes guide slot 31 and sliding plate 32, the guide slot 31 with support 1 is connected, and the sliding plate 32 with storage layer board 2 is connected;

[0035] The support 1 includes first support body 11, second support body 12 and first lock piece 13, the second support body 12 with first support body 11 sliding connection, and the first lock piece 13 will second support body 12 be fixed in first support body 11.

[0036] The storage layer board 2 includes first layer board assembly 21, second layer board assembly 22, the first layer board assembly 21 is located at first support body 11, and the second layer board assembly 22 is located at second support body 12, and the second layer board assembly 22 with first layer board assembly 21 sliding connection.

[0037] The sliding direction of the second layer plate assembly 22 is consistent with the sliding direction of the second support body 12, and the sliding direction of the second support body 12 is arranged to intersect the sliding direction of the sliding plate 32.

[0038] Specifically, in the embodiment, the support 1 is processed and assembled by a metal rod, the support 1 includes a first support body 11, a second support body 12 and a first locking piece 13, the storage layer plate 2 includes a first layer plate assembly 21 and a second layer plate assembly 22, the first layer plate assembly 21 is fixed on the first support body 11, the second layer plate assembly 22 is fixed on the second support body 12, the second support body 12 slides along the X direction relative to the first support body 11, and the second layer plate assembly 22 moves along the X direction relative to the first layer plate assembly 21, after being adjusted to a suitable position, the first locking piece 13 fixes the second support body 12 on the first support body 11, and the second layer plate assembly 22 is stationary relative to the first layer plate assembly 21, through the movement of the second support body 12 relative to the first support body 11, the storage rack can be pulled out or reduced in size, the storage space is changed, and the use demand of different storage spaces is met; the guide assembly 3 includes guide grooves 31 and sliding plates 32, the number of the guide grooves 31 is two, and the number of the sliding plates 32 is two, one guide groove 31 is installed on the first support body 11, and one guide groove 31 is installed on the second support body 12, the length direction of the guide groove 31 is arranged along the Y direction, so that the storage layer plate 2 can slide relative to the support 1 along the Y direction, that is, when the lower storage layer plate 2 places higher articles, the upper storage layer plate 2 is pulled out, so that the higher articles can be placed on the lower storage layer plate 2, and the purpose of storing articles of different heights is met.

[0039] Through the guide assembly 3, the storage layer plate 2 moves horizontally relative to the support 1, the storage height of the storage layer plate 2 is flexibly adjusted, the storage demand of articles of different heights is met, the structure of the support 1 including the first support body 11, the second support body 12 and the first locking piece 13 meets the different conversion of the size of the storage rack, the storage rack is conveniently stored and used, and space is saved.

[0040] The storage layer plate 2 includes a second locking piece 23, the second locking piece 23 fixes the second layer plate assembly 22 on the first layer plate assembly 21, further enhances the stability of the connection between the first layer plate assembly 21 and the second layer plate assembly 22, and improves the safety during use.

[0041] The first support body 11 and the second support body 12 each comprise two pad feet 101, two vertical rod members 102, and two middle cross bars 103, one pad foot 101 is connected with one vertical rod member 102, one middle cross bar 103 is connected with two vertical rod members 102, and the two middle cross bars 103 are arranged in an up-down manner, preferably, the pad feet 101 are height-adjustable horizontal adjustment feet, which facilitate adjustment of the overall levelness of the support 1 and improve the use safety, and the two middle cross bars 103 are arranged at an up-down interval, which has the purpose of enhancing the stability of the first support body 11 and the second support body 12;

[0042] The first support body 11 further comprises a first telescopic outer tube 104, the first telescopic outer tube 104 is connected with the vertical rod member 102 of the first support body 11, the first telescopic outer tube 104 is a hollow square steel structure, and the first telescopic outer tube 104 is fixedly connected with the vertical rod member 102 through a screw connector;

[0043] The second support body 12 further comprises a first telescopic inner tube 105, the first telescopic inner tube 105 is connected with the vertical rod member 102 of the second support body 12, the first telescopic inner tube 105 is movably connected with the first telescopic outer tube 104, the first lock 13 is arranged on the first telescopic outer tube 104, the first lock 13 fixes the first telescopic inner tube 105 and the first telescopic outer tube 104, the first telescopic inner tube 105 is a hollow square steel structure, and the first telescopic inner tube 105 is slidably connected with the first telescopic outer tube 104, which has the characteristics of firm structure and smooth sliding.

[0044] The first layer plate assembly 21 and the second layer plate assembly 22 each comprise a mesh plate 201, the mesh plate 201 is processed from metal and has the characteristics of light weight, which meets the daily load bearing demand;

[0045] The first layer plate assembly 21 comprises a second telescopic outer tube 202, the second telescopic outer tube 202 is connected with the mesh plate 201, the length direction of the second telescopic outer tube 202 is arranged to intersect the length direction of the sliding plate 32, the second telescopic outer tube 202 is connected with the sliding plate 32, the number of the second telescopic outer tubes 202 is two, and the two second telescopic outer tubes 202 fix the mesh plate 201, thereby improving the load bearing capacity and deformation resistance;

[0046] The second layer plate assembly 22 comprises a second telescopic inner tube 203, the second telescopic inner tube 203 is connected with the mesh plate 201, the length direction of the second telescopic inner tube 203 is arranged to intersect the length direction of the sliding plate 32, the second telescopic inner tube 203 is connected with the sliding plate 32, the number of the second telescopic inner tubes 203 is two, and the two second telescopic inner tubes 203 fix the mesh plate 201, thereby improving the load bearing capacity and deformation resistance;

[0047] The second telescopic inner tube 203 is slidingly connected to the second telescopic outer tube 202, with the purpose of improving sliding stability.

[0048] The screen plate 201 comprises a plurality of long rods 201a, a plurality of short rods 201b, a plurality of L-shaped rods 201c and a material supporting rod 201d, the long rods 201a intersect with the short rods 201b, each L-shaped rod 201c is connected with each long rod 201a, the material supporting rod 201d is connected with each short rod 201b, the material supporting rod 201d is connected with the second telescopic inner tube 203, and the material supporting rod 201d is connected with the second telescopic outer tube 202; the screen plate 201 is substantially L-shaped, further enhancing the load bearing capacity of the screen plate 201 and improving the use safety.

[0049] The above is only the preferred embodiment of the present application, and for those skilled in the art, the specific implementation and application range can be changed according to the idea of the present application, and the content of the specification should not be understood as limiting the present application.

Claims

1. A bidirectionally slidable housing, characterized by: The utility model provides a support (1), commodity layer board (2) and guide assembly (3), guide assembly (3) includes guide groove (31) and slide plate (32), guide groove (31) is connected with support (1), and slide plate (32) is connected with commodity layer board (2); The support (1) includes a first support body (11), a second support body (12), and a first locking piece (13), the second support body (12) is slidably connected with the first support body (11), and the first locking piece (13) fixes the second support body (12) on the first support body (11); The commodity layer board (2) includes a first layer board assembly (21) and a second layer board assembly (22), the first layer board assembly (21) is arranged on the first support body (11), the second layer board assembly (22) is arranged on the second support body (12), and the second layer board assembly (22) is slidably connected with the first layer board assembly (21); The sliding direction of the second layer board assembly (22) is consistent with the sliding direction of the second support body (12), and the sliding direction of the second support body (12) intersects with the sliding direction of the slide plate (32).

2. The bidirectionally slidable storage rack of claim 1, wherein: The commodity layer board (2) includes a second locking piece (23), and the second locking piece (23) fixes the second layer board assembly (22) on the first layer board assembly (21).

3. The bidirectionally slidable storage rack of claim 2, wherein: The first support body (11) and the second support body (12) each include two pad feet (101), two vertical rod pieces (102), and two middle cross bars (103), one pad foot (101) is connected with one vertical rod piece (102), one middle cross bar (103) is connected with two vertical rod pieces (102), and the two middle cross bars (103) are arranged in an up-down manner; The first support body (11) further includes a first telescopic outer tube (104), and the first telescopic outer tube (104) is connected with the vertical rod piece (102) of the first support body (11); The second support body (12) further includes a first telescopic inner tube (105), the first telescopic inner tube (105) is connected with the vertical rod piece (102) of the second support body (12), the first telescopic inner tube (105) is movably connected with the first telescopic outer tube (104), the first locking piece (13) is arranged on the first telescopic outer tube (104), and the first locking piece (13) fixes the first telescopic inner tube (105) and the first telescopic outer tube (104).

4. The bidirectionally slidable storage rack of claim 1, wherein: The first layer board assembly (21) and the second layer board assembly (22) each include a mesh plate (201); The first layer board assembly (21) includes a second telescopic outer tube (202), the second telescopic outer tube (202) is connected with the mesh plate (201), the length direction of the second telescopic outer tube (202) intersects with the length direction of the slide plate (32), and the second telescopic outer tube (202) is connected with the slide plate (32); The second layer plate assembly (22) comprises a second telescopic inner tube (203), which is connected with the screen plate (201), and the length direction of the second telescopic inner tube (203) is arranged to intersect with the length direction of the sliding plate (32), and the second telescopic inner tube (203) is connected with the sliding plate (32). The second telescopic inner tube (203) is slidingly connected with a second telescopic outer tube (202).

5. The bidirectionally slidable storage case of claim 4, wherein: The screen plate (201) comprises a plurality of long rods (201a), a plurality of short rods (201b), a plurality of L rods (201c) and a material supporting rod (201d), the long rods (201a) intersect with the short rods (201b), each L rod (201c) is connected with each long rod (201a), the material supporting rod (201d) is connected with each short rod (201b), the material supporting rod (201d) is connected with the second telescopic inner tube (203), and the material supporting rod (201d) is connected with the second telescopic outer tube (202).