A transport kit for dense storage

CN224782792UActive Publication Date: 2026-09-22EULIKIND TIANJIN TECH
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Patent Information

Application Number
CN202522237325.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2026-09-22
Estimated Expiration
2035-10-23

AI Technical Summary

Technical Problem

该装置可以解决现有运输片材的工具通用性差,资源浪费大的问题;但该装置仍存在以下问题:

Benefits of technology

[0013]本实用新型相较于现有技术,其有益效果为:1、本实用新型可以实现通过支撑机构针对板材进行支撑,避免运输过程中因为震动等原因导致板材的弧形边变形;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of transport frocks of dense storage belongs to transport frock field, including substrate;The substrate is equipped with for the sliding self-locking mechanism of being adapted to adjust according to board size;The sliding self-locking mechanism is equipped with the supporting mechanism for supporting installation to board;The substrate includes sliding assembly, self-locking assembly and self-locking switch assembly;Substrate, supporting mechanism and self-locking switch assembly are all connected with sliding assembly;Self-locking assembly and self-locking switch assembly are connected;Sliding assembly is used to change the support size of supporting mechanism according to the size of board;Self-locking assembly is used for the self-locking of sliding assembly, and self-locking switch assembly is used for opening and closing self-locking assembly. By the above mode, the utility model can be supported by supporting mechanism for board, avoid the deformation of arc-shaped edge of board due to vibration in the process of transportation.
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Description

Technical Field

[0001] This utility model relates to the field of transportation tooling, specifically to a transportation tooling for dense storage. Background Technology

[0002] High-density storage transport equipment is a specialized storage system designed to maximize warehouse space utilization. Unlike traditional racking, it achieves extremely high space utilization and storage density by eliminating or reducing internal aisles, increasing rack height and depth, and often working in conjunction with automated equipment. These systems are not only storage carriers but also the backbone of smart warehousing, significantly improving inventory capacity, operational efficiency, and reducing overall warehousing costs.

[0003] Chinese patent CN112960021A discloses a universal sheet material transport fixture, including a central support assembly. Two movable components are provided on either side of the central support assembly and inserted into it. The central support assembly comprises a frame formed by crisscrossing horizontal and vertical tubes. Each movable component includes a side vertical tube and an inner horizontal tube. Both the horizontal and inner horizontal tubes have positioning holes, and the inner horizontal tube has multiple positioning holes arranged side-by-side. The horizontal tubes of the central support assembly and the inner horizontal tube of the movable component are fastened together by fixing pins. Vertical rods are provided on both sides of the side vertical tubes of the movable component to support it. The two sets of movable components are a front movable component and a rear movable component. This device can solve the problems of poor versatility and significant resource waste in existing sheet material transport tools; however, the device still has the following problems: When placing stacked plates with rounded corners, the rounded edges of the plates are easily squeezed and deformed by the ground support.

[0004] Based on this, the present invention designs a dense storage transport tool to solve the above problems. Utility Model Content

[0005] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a transport fixture for dense storage.

[0006] To achieve the above objectives, this utility model provides the following technical solution: A transport fixture for dense storage, including a substrate; The substrate is equipped with a sliding self-locking mechanism for adaptive adjustment according to the size of the substrate. The sliding self-locking mechanism is equipped with a support mechanism for supporting the installation of the plate. The substrate includes a sliding assembly, a self-locking assembly, and a self-locking switch assembly; the substrate, the support mechanism, and the self-locking switch assembly are all connected to the sliding assembly; the self-locking assembly and the self-locking switch assembly are connected; the sliding assembly is used to slide and change the support size of the support mechanism according to the size of the substrate; the self-locking assembly is used to self-lock the sliding assembly, and the self-locking switch assembly is used to open and close the self-locking assembly; Furthermore, the sliding assembly includes a slider, and multiple limiting grooves are equally spaced at the front and back of the upper end of the substrate. The left ends of the limiting grooves at the frontmost and rearmost ends are both limited and slid with a slider. The left and right ends of the limiting grooves other than the frontmost and rearmost ends are both limited and slid with a slider. The upper end of the slider is connected to the support mechanism. The self-locking switch assembly is connected to the slider.

[0007] Furthermore, the self-locking assembly includes ratchet teeth and a second locking block; multiple mounting slots are provided on the upper end of the base plate; the mounting slots are located below the limiting slide groove; a set of ratchet teeth is fixedly installed inside the mounting slot below each slider; the two sets of ratchet teeth in the same mounting slot are symmetrically distributed left and right; the second locking block engages with the ratchet teeth; the upper end of the second locking block is connected to the self-locking switch assembly.

[0008] Furthermore, the self-locking switch assembly includes a vertical slider, a return spring, and a sliding locking block; the upper end of the second locking block is fixedly connected to a vertical slider; the vertical slider is slidably connected to the first slider, the lower end of the return spring is fixedly connected to the second locking block, and the first slider has two locking grooves opened at the top and bottom; the sliding locking block is slidably connected to the locking grooves, and the sliding locking block is slidably connected to the vertical slider through the limiting groove opened on the vertical slider.

[0009] Furthermore, the support mechanism includes an arc-shaped plate side support assembly and a flat side blocking assembly; both the arc-shaped plate side support assembly and the flat side blocking assembly are connected to the slider; the arc-shaped plate side support assembly is used to support and fix the side of the plate with an arc-shaped surface, and the flat side blocking assembly is used to support and fix the flat side of the plate.

[0010] Furthermore, the arc-shaped plate side support assembly includes an anti-tipping assembly and a self-adjusting support assembly; both the anti-tipping assembly and the support assembly are connected to the slider.

[0011] Furthermore, the self-adjusting support assembly includes a support column, a support shaft, a support connecting block, and an arc-shaped support block; the upper ends of the sliders at the frontmost and rearmost ends on the left are fixedly connected to a support column, and the front and rear sides of the support shaft are fixedly connected to two support columns respectively; multiple support rotation slots are equally spaced on the support shaft, and each support rotation slot is rotatably connected to a support connecting block, with the end of the support connecting block away from the support shaft fixedly connected to the arc-shaped support block.

[0012] Furthermore, the planar side blocking assembly includes slider two and locking block one; the upper end of each slider one in the right row is fixedly connected to a slider two, except for the first slider two, each slider two has a locking groove one, which engages with the locking block one; except for the last slider two, the upper end of each slider two is fixedly connected to a locking block one.

[0013] Compared with the prior art, the advantages of this utility model are as follows: 1. This utility model can support the board through the support mechanism to avoid deformation of the curved edge of the board due to vibration and other reasons during transportation. 2. This utility model can also achieve support and fixation of plates of different sizes through a sliding self-locking support mechanism. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a perspective view of a dense storage transport fixture according to the present invention; Figure 2 This is a front view of a high-density storage transport fixture according to the present invention; Figure 3 The three-dimensional representation of the disassembled sliding self-locking support mechanism in this utility model Figure 1 ; Figure 4 The three-dimensional representation of the disassembled sliding self-locking support mechanism in this utility model Figure 2 ; Figure 5 for Figure 3 Enlarged view of point A in the middle; Figure 6 for Figure 4 Enlarged view of point B in the middle.

[0016] The labels in the diagram represent: 1. Base plate; 2. Sliding self-locking mechanism; 21. Sliding assembly; 211. Limiting groove one; 212. Slider one; 22. Self-locking assembly; 221. Mounting groove; 222. Ratchet; 223. Locking block two; 23. Self-locking switch assembly; 231. Vertical slider; 232. Return spring; 233. Sliding locking block; 234. Locking groove; 3. Support mechanism; 31. Arc-shaped plate side support assembly; 311. Anti-tipping column; 312. Support column; 313. Support shaft; 314. Support rotation groove; 315. Support connecting block; 316. Arc-shaped support block; 32. Planar side blocking assembly; 321. Slider two; 322. Locking groove one; 323. Locking block one. Detailed Implementation

[0017] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0018] The terms "left," "right," "front," "back," "up," and "down" used in the following description refer to the orientation from the perspective of the front view.

[0019] Example 1: In some embodiments, please refer to the accompanying drawings. Figures 1-6 A transport fixture for dense storage, comprising a substrate 1; The substrate 1 is equipped with a sliding self-locking mechanism 2 for adaptive adjustment according to the size of the substrate. The sliding self-locking mechanism 2 is equipped with a support mechanism 3 for supporting the installation of the plate. The substrate 1 includes a sliding component 21, a self-locking component 22, and a self-locking switch component 23; the substrate 1, the support mechanism 3, and the self-locking switch component 23 are all connected to the sliding component 21; the self-locking component 22 and the self-locking switch component 23 are connected; the sliding component 21 is used to slide and change the support size of the support mechanism 3 according to the size of the substrate; the self-locking component 22 is used to self-lock the sliding component 21, and the self-locking switch component 23 is used to open and close the self-locking component 22; In this utility model, the operator opens the self-locking component 22 through the self-locking switch component 23, and then slides the support mechanism 3 through the sliding component 21 to adjust the support width according to the size of the plate. After adjustment, the self-locking component 22 locks and fixes the position of the support mechanism 3. When supporting, the support mechanism 3 can automatically adjust the support angle according to the position of the arc plate. The sliding assembly 21 includes a slider 212. The upper end of the base plate 1 is provided with multiple limiting grooves 211 at equal intervals. The left ends of the frontmost and rearmost limiting grooves 211 are both limited and slidable with a slider 212. The left and right ends of the limiting grooves 211 other than the frontmost and rearmost are both limited and slidable with a slider 212. The upper end of the slider 212 is connected to the support mechanism 3. The self-locking switch assembly 23 is connected to the slider 212. The self-locking assembly 22 includes ratchet 222 and locking block 223; the upper end of the base plate 1 is provided with multiple mounting slots 221; the mounting slots 221 are located below the limiting slide groove 211; a set of ratchet 222 is fixedly installed inside the mounting slot 221 below each slider 212; the two sets of ratchet 222 in the same mounting slot 221 are symmetrically distributed from left to right; the locking block 223 engages with the ratchet 222; the upper end of the locking block 223 is connected to the self-locking switch assembly 23; The self-locking switch assembly 23 includes a vertical slider 231, a return spring 232, and a sliding locking block 233; the upper end of each locking block 223 is fixedly connected to a vertical slider 231; the vertical slider 231 is slidably connected to the first slider 212; the lower end of the return spring 232 is fixedly connected to the second locking block 223; the first slider 212 has two locking grooves 234 inside; the sliding locking block 233 is slidably connected to the locking grooves 234; the sliding locking block 233 is slidably connected to the vertical slider 231 through the limiting groove on the vertical slider 231. In this utility model, the operator slides the sliding locking block 233 out of the upper locking groove 234, then pulls the return spring 232 to drive the vertical slider 231 to slide downward within the slider 212. Then, the sliding locking block 233 enters the lower locking groove 234 to lock the position of the vertical slider 231. At this time, the slider 212 slides along the limiting groove 211. The slider 212 drives the locking block 223 to move inward along the mounting groove 221. However, it cannot slide outward with the cooperation of the ratchet 222 and the locking block 223. This achieves the adjustment of the support width according to the width of the sheet material and has self-locking properties.

[0020] The support mechanism 3 includes an arc-shaped plate side support assembly 31 and a flat side blocking assembly 32; both the arc-shaped plate side support assembly 31 and the flat side blocking assembly 32 are connected to the slider 212; the arc-shaped plate side support assembly 31 is used to support and fix the side of the plate with an arc-shaped surface, and the flat side blocking assembly 32 is used to support and fix the flat side of the plate. The arc-shaped plate side support assembly 31 includes an anti-tipping assembly and a self-adjusting support assembly; both the anti-tipping assembly and the support assembly are connected to the slider 212. The anti-tipping assembly includes an anti-tipping post 311; except for the frontmost and rearmost sliders 212, the upper ends of the row of sliders 212 on the left side are all fixedly connected to an anti-tipping post 311. The self-adjusting support assembly includes a support column 312, a support shaft 313, a support connecting block 315, and an arc-shaped support block 316. The upper ends of the slider 212 at the frontmost and rearmost ends on the left are fixedly connected to a support column 312, and the front and rear sides of the support shaft 313 are fixedly connected to two support columns 312 respectively. Multiple support rotation slots 314 are equally spaced on the support shaft 313, and each support rotation slot 314 is rotatably connected to a support connecting block 315. The end of the support connecting block 315 away from the support shaft 313 is fixedly connected to the arc-shaped support block 316. The planar side blocking assembly 32 includes a second slider 321 and a first locking block 323; the upper end of each first slider 212 in the right row is fixedly connected to a second slider 321, except for the first second slider 321, each second slider 321 has a first locking slot 322, which engages with the first locking block 323; except for the last second slider 321, the upper end of each second slider 321 is fixedly connected to a first locking block 323. In this invention, the operator slides the support shaft 313, which drives the slider 212 to slide along the limiting groove 211 via the support column 312. At the same time, the ratchet 222 and the locking block 223 cooperate to self-lock the slider 212. The operator then pulls the last anti-tipping column 311 to the right. The operator then places the curved side of a piece of board close to the anti-tipping column 311 and abuts the curved board against the curved support block 316. The operator then pulls the two corresponding sliders 321 on the right side to slide to the left, so that the locking block 323 is engaged in the slot 322, and the flat side of the curved board abuts against the locking block 323 to fix its position. At this time, the curved support block 316 drives the support connecting block 315 to rotate under the action of the curved side of the board, so that the curved support block 316 fits and is fixed to the curved side of the board, preventing the curved side of the board from deforming due to vibration during transportation.

[0021] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A transport fixture for dense storage, comprising a substrate (1), characterized in that: It also includes a sliding self-locking mechanism (2) and a support mechanism (3); The substrate (1) is equipped with a sliding self-locking mechanism (2) for adaptive adjustment according to the size of the substrate. The sliding self-locking mechanism (2) is equipped with a support mechanism (3) for supporting the installation of the plate. The substrate (1) includes a sliding component (21), a self-locking component (22), and a self-locking switch component (23); the substrate (1), the support mechanism (3), and the self-locking switch component (23) are all connected to the sliding component (21); the self-locking component (22) and the self-locking switch component (23) are connected; the sliding component (21) is used to slide and change the support size of the support mechanism (3) according to the size of the plate; the self-locking component (22) is used to self-lock the sliding component (21), and the self-locking switch component (23) is used to open and close the self-locking component (22).

2. The transport fixture for dense storage according to claim 1, characterized in that, The sliding assembly (21) includes a slider (212). Multiple limiting grooves (211) are equally spaced at the front and back of the upper end of the substrate (1). The left end of the limiting groove (211) at the front end and the rear end is limited and slidable with a slider (212). The left and right ends of the limiting grooves (211) other than the front end and the rear end are limited and slidable with a slider (212). The upper end of the slider (212) is connected to the support mechanism (3). The self-locking switch assembly (23) is connected to the slider (212).

3. The transport fixture for dense storage according to claim 2, characterized in that, The self-locking assembly (22) includes ratchet (222) and locking block two (223); the upper end of the base plate (1) is provided with multiple mounting slots (221); the mounting slots (221) are located below the limiting slide groove one (211); a set of ratchet (222) is fixedly installed inside the mounting slot (221) below each slider one (212); the two sets of ratchet (222) in the same mounting slot (221) are symmetrically distributed from left to right; the locking block two (223) engages with the ratchet (222); the upper end of the locking block two (223) is connected to the self-locking switch assembly (23).

4. The transport fixture for dense storage according to claim 3, characterized in that, The self-locking switch assembly (23) includes a vertical slider (231), a reset spring (232), and a sliding locking block (233); the upper end of the second locking block (223) is fixedly connected to a vertical slider (231); the vertical slider (231) is limited to the sliding connection of the first slider (212), the lower end of the reset spring (232) is fixedly connected to the second locking block (223), and the first slider (212) has two locking grooves (234) opened inside; the sliding locking block (233) is limited to the sliding connection of the locking groove (234), and the sliding locking block (233) is limited to the sliding connection of the vertical slider (231) through the limiting groove opened on the vertical slider (231).

5. The transport fixture for dense storage according to claim 2, characterized in that, The support mechanism (3) includes an arc-shaped plate side support assembly (31) and a flat side blocking assembly (32); both the arc-shaped plate side support assembly (31) and the flat side blocking assembly (32) are connected to the slider (212); the arc-shaped plate side support assembly (31) is used to support and fix the side of the plate with an arc surface, and the flat side blocking assembly (32) is used to support and fix the flat side of the plate.

6. The transport fixture for dense storage according to claim 5, characterized in that, The arc-shaped plate side support assembly (31) includes an anti-tipping assembly and a self-adjusting support assembly; both the anti-tipping assembly and the support assembly are connected to the slider (212).

7. The transport fixture for dense storage according to claim 6, characterized in that, The self-adjusting support assembly includes a support column (312), a support shaft (313), a support connecting block (315), and an arc-shaped support block (316). The upper ends of the slider 1 (212) at the frontmost and rearmost ends on the left are fixedly connected to a support column (312), and the front and rear sides of the support shaft (313) are fixedly connected to two support columns (312) respectively. Multiple support rotation slots (314) are equally spaced on the support shaft (313), and each support rotation slot (314) is rotatably connected to a support connecting block (315). The end of the support connecting block (315) away from the support shaft (313) is fixedly connected to the arc-shaped support block (316).

8. The transport fixture for dense storage according to claim 5, characterized in that, The planar side blocking assembly (32) includes a second slider (321) and a first locking block (323); the upper end of each first slider (212) on the right side is fixedly connected to a second slider (321), except for the first second slider (321), each second slider (321) is provided with a first locking slot (322), and the first locking slot (322) is engaged with the first locking block (323); except for the last second slider (321), the upper end of each second slider (321) is fixedly connected to a first locking block (323).

Citation Information

Patent Citations

  • Universal transportation tool for sheets

    CN112960021A