Adjustable assembly of storage rack
By designing adjustable components for warehouse racking and using sliding connectors and spring structures to replace traditional screw connections, the spacing between the horizontal racking panels can be quickly adjusted, solving the problem of cumbersome adjustments in existing technologies and improving operational convenience and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-26
- Publication Date
- 2026-03-17
AI Technical Summary
The existing warehouse racking system has a cumbersome operation for adjusting the spacing of the racking panels, making it difficult to adjust quickly.
An adjustable component for warehouse racking was designed. Through a combination of sliding connecting seat, cylinder, sliding handle, locking rod and spring, the spacing between horizontal plates can be quickly adjusted. Springs and limiting structures are used to replace traditional screw connections.
The adjustment process has been simplified, the adjustment efficiency has been improved, and the stability and convenience of the horizontal board have been enhanced.
Smart Images

Figure CN224000331U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of warehouse racking adjustment technology, and in particular relates to adjustable components for warehouse racking. Background Technology
[0002] As a core storage device in modern logistics systems, warehouse racking integrates basic logistics functions such as packaging, transportation, loading and unloading, sorting, and information management, and has become an indispensable key facility for industrial warehouses, logistics centers, and distribution centers.
[0003] When using warehouse racking, the vertical spacing between rack panels is usually adjusted according to needs. This is done by loosening the screws between the rack panels and the vertical frames to adjust the appropriate vertical spacing, and then tightening the connection with multiple screws. This connection method is relatively cumbersome and increases the difficulty of adjustment. To address this, we propose an adjustable component for warehouse racking to solve the shortcomings of existing technologies. Utility Model Content
[0004] The purpose of this invention is to provide an adjustable component for warehouse racking, which facilitates the adjustment of the spacing between the placement plates, thereby solving the aforementioned technical problems.
[0005] The technical solution of this utility model to solve the above-mentioned technical problems is as follows: an adjustable storage rack component, wherein the adjustable shelf structure is set between a horizontal plate and a vertical plate, the adjustable shelf structure includes a sliding connecting seat fixedly connected to the four corners of the horizontal plate, the sliding connecting seat is slidably disposed between the sliding connecting seat and the vertical plate, a cylinder is embedded and fixedly connected to the inner cavity of the sliding connecting seat, a sliding handle is slidably connected to the inner surface of the cylinder, a locking rod is fixedly connected to the axis of the sliding handle, a spring is sleeved on the surface of the locking rod, the spring is fixedly connected to the sliding handle and the inner wall of the cylinder, a pull rod is rotatably connected to one end face of the spring through a bearing cylinder, the pull rod is limited in position by a limiting structure, a locking hole is opened on the surface of the vertical plate at a position corresponding to the pull rod, and the pull rod is inserted into the inside of the locking hole.
[0006] Preferably, the surface of the vertical plate is provided with a sliding groove, and the card hole is provided in the recess of the sliding groove.
[0007] Preferably, the outer surface of the sliding connector is slidably connected to the inner surface of the sliding groove.
[0008] Preferably, the limiting structure includes a limiting cylinder fixedly connected to the surface of the sliding connecting seat, a limiting groove is formed on the inner surface of the limiting cylinder, a limiting rod is slidably connected to the inner surface of the limiting groove, and the outer surface of the limiting rod is slidably connected to the inner surface of the limiting groove.
[0009] Preferably, the limiting groove includes vertical and annular grooves, the vertical groove and the annular groove are perpendicularly connected to each other, and are centrally symmetrical about the limiting cylinder.
[0010] Preferably, the front and rear vertical plates are reinforced and connected by a reinforcing frame.
[0011] The beneficial effects of this utility model are:
[0012] 1. When it is necessary to adjust the spacing between the horizontal plates, this utility model only requires pulling the pull rod outward, thereby moving the locking rod connected to the pull rod. The locking rod slides on the inner surface of the cylinder through the sliding handle, thereby compressing the spring. After the pull rod is pulled out, the position of the pull rod is limited by the limiting structure, causing the locking rod to retract into the interior of the sliding connecting seat. Then, the sliding connecting seat slides on the inner surface of the vertical plate, thereby adjusting the spacing between the upper and lower horizontal plates. After adjusting to an appropriate spacing, the pull rod rotates between the locking rods, and the spring causes the locking rod to engage in the corresponding locking hole. By setting the above structure, the connection is replaced by multiple bolts, which facilitates the purpose of adjusting the spacing between the plates.
[0013] 2. This utility model guides the up-and-down movement of the horizontal plate by setting the outer surface of the sliding connecting seat to slide the inner surface of the sliding groove.
[0014] 3. This utility model uses a limiting rod to slide on the inner surface of the limiting groove. When sliding with the annular groove and the vertical groove, the position of the limiting rod is limited, so that the locking rod retracts into the interior of the sliding connecting seat. Attached Figure Description
[0015] in:
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 This is a schematic diagram showing the connection and disassembly of the vertical plate and the placement plate of this utility model;
[0018] Figure 3 This is a schematic diagram of the limiting structure of this utility model;
[0019] Figure 4 This is a partial enlarged view of point A of this utility model.
[0020] The attached diagram lists the components represented by each number as follows:
[0021] 1. Horizontal plate, 2. Vertical plate, 3. Sliding connecting seat, 4. Cylinder body, 5. Sliding handle, 6. Locking rod, 7. Spring, 8. Bearing cylinder, 9. Pull rod, 10. Locking hole, 11. Limiting cylinder, 12. Limiting groove, 13. Limiting rod, 14. Sliding groove. Detailed Implementation
[0022] In the following description, embodiments of the adjustable storage rack component of this utility model will be described with reference to the accompanying drawings. Example 1
[0023] Figure 1-4 This invention illustrates an adjustable storage rack assembly according to an embodiment of the present invention. The adjustable shelf structure is disposed between a horizontal plate 1 and a vertical plate 2. The adjustable shelf structure includes sliding connecting seats 3 fixedly connected to the four corners of the horizontal plate 1. The sliding connecting seats 3 are slidably disposed between themselves and the vertical plate 2. A cylindrical body 4 is embedded and fixedly connected to the inner cavity of the sliding connecting seat 3. A sliding handle 5 is slidably connected to the inner surface of the cylindrical body 4. A locking rod 6 is fixedly connected to the axis of the sliding handle 5. A spring 7 is sleeved on the surface of the locking rod 6. The spring 7 is fixedly connected to the sliding handle 5 and the inner wall of the cylindrical body 4. The spring 7 passes through one end face of the cylindrical body 4 and is rotatably connected to a pull rod 9 via a bearing cylinder 8. The pull rod 9 is positioned by a limiting structure, which includes a limiting cylinder 11 fixedly connected to the surface of the sliding connecting seat 3. A limiting groove 12 is formed on the inner surface of the limiting cylinder 11. A limiting rod 13 is slidably connected to the inner surface of the limiting groove 12. The outer surface of 13 is slidably connected to the inner surface of the limiting groove 12. The limiting groove 12 includes vertical and annular grooves. The vertical groove and the annular groove are perpendicularly connected to each other and are centrally symmetrical about the limiting cylinder 11. By setting the limiting rod 13 to slide on the inner surface of the limiting groove 12, the position of the limiting rod 13 is limited when sliding with the annular groove and the vertical groove, so that the locking rod 6 retracts into the interior of the sliding connecting seat 3. The surface of the vertical plate 2 and the position corresponding to the pull rod 9 are provided with a locking hole 10. The surface of the vertical plate 2 is provided with a sliding groove 14. The locking hole 10 is opened in the recess of the sliding groove 14. The outer surface of the sliding connecting seat 3 is slidably connected to the inner surface of the sliding groove 14. By setting the outer surface of the sliding connecting seat 3 to slide on the inner surface of the sliding groove 14, the up and down movement of the horizontal plate 1 can be guided. The interior of the locking hole 10 is inserted into the pull rod 9.
[0024] When it is necessary to adjust the spacing between the horizontal plates 1, simply pull the pull rod 9 outward, thereby moving the locking rod 6 connected to the pull rod 9. The locking rod 6 then slides on the inner surface of the cylinder 4 via the sliding handle 5, thereby compressing the spring 7. After the pull rod 9 is pulled out, the position of the pull rod 9 is limited by the limiting structure, causing the locking rod 6 to retract into the interior of the sliding connecting seat 3. The locking rod 6 then slides on the inner surface of the vertical plate 2 via the sliding connecting seat 3, thereby adjusting the spacing between the upper and lower horizontal plates 1. After adjusting to an appropriate spacing, the pull rod 9 rotates between the locking rods 6, and the locking rod 6 is driven into the corresponding locking hole 10 by the action of the spring 7. By setting the above structure, the connection point is replaced by multiple bolts for installation and connection, which facilitates the purpose of adjusting the spacing between the placement plates. Example 2
[0025] Figure 1-4 This invention illustrates an adjustable storage rack assembly according to an embodiment of the present invention. The adjustable shelf structure is disposed between a horizontal plate 1 and a vertical plate 2. The two vertical plates 2 are reinforced and connected by a reinforcing frame, which can improve the stability between the horizontal plates 1. The adjustable shelf structure includes sliding connecting seats 3 fixedly connected to the four corners of the horizontal plate 1. The sliding connecting seats 3 are slidably disposed between the sliding connecting seats 3 and the vertical plates 2. A cylinder 4 is embedded and fixedly connected to the inner cavity of the sliding connecting seat 3. A sliding handle 5 is slidably connected to the inner surface of the cylinder 4. A locking rod 6 is fixedly connected to the axis of the sliding handle 5. A spring 7 is sleeved on the surface of the locking rod 6. The spring 7 is fixedly connected to the sliding handle 5 and the inner wall of the cylinder 4. The spring 7 passes through one end face of the cylinder 4 and is rotatably connected to a pull rod 9 through a bearing cylinder 8. The pull rod 9 is limited in position by a limiting structure. A locking hole 10 is opened on the surface of the vertical plate 2 at a position corresponding to the pull rod 9. The inside of the locking hole 10 is inserted into the pull rod 9.
[0026] Working principle: When using this utility model, if it is necessary to adjust the spacing between the horizontal plates 1, simply pull the pull rod 9 outward, thereby moving the locking rod 6 connected to the pull rod 9. The locking rod 6 then slides on the inner surface of the cylinder 4 via the sliding handle 5, thereby compressing the spring 7. After the pull rod 9 is pulled out, it slides on the inner surface of the limiting groove 12 via the limiting rod 13. When the limiting rod 13 slides with the vertical groove, it moves back and forth. When the limiting rod 13 slides with the annular groove, the position of the limiting rod 13 is limited, causing the locking rod 6 to retract into the sliding connecting seat 3, thereby limiting the position of the pull rod 9. The sliding connecting seat 3 then slides on the inner surface of the vertical plate 2, thereby adjusting the spacing between the upper and lower horizontal plates 1. After adjusting to an appropriate spacing, the pull rod 9 rotates between the locking rods 6, and the locking rod 6 is driven into the corresponding locking hole 10 by the action of the spring 7. This replaces the installation and connection of multiple bolts at the connection point, facilitating the adjustment of the spacing between the plates.
Claims
1. Adjustable assembly of a storage rack, the adjusting deck structure being arranged between a crosspiece (1) and a vertical piece (2), characterized in that, The adjusting layer plate structure includes sliding connecting seats (3) fixedly connected at four corners of the horizontal plate (1), the sliding connecting seats (3) are slidingly arranged between the vertical plates (2), inner cavities of the sliding connecting seats (3) are fixedly connected with cylinder bodies (4) in a plug-in mode, inner surfaces of the cylinder bodies (4) are slidingly connected with sliding handles (5), shaft centers of the sliding handles (5) are fixedly connected with clamping rods (6), surfaces of the clamping rods (6) are sleeved with springs (7), the springs (7) are fixedly connected with the sliding handles (5) and the inner walls of the cylinder bodies (4), one end of the spring (7) penetrating through the cylinder body (4) is rotatably connected with a pull rod (9) through a bearing cylinder (8), the pull rod (9) is limited in position through a limiting structure, the vertical plate (2) is provided with a clamping hole (10) on the surface and at a position corresponding to the pull rod (9), and the clamping hole (10) is inserted between the pull rod (9).
2. The warehouse shelving adjustable assembly of claim 1, wherein, The vertical plate (2) is provided with a sliding groove (14) on the surface, and the clamping hole (10) is arranged in the inner recess of the sliding groove (14).
3. The warehouse shelving adjustable assembly of claim 2, wherein, The outer surface of the sliding connecting seat (3) is slidingly connected with the inner surface of the sliding groove (14).
4. The warehouse shelving adjustable assembly of claim 1, wherein, The limiting structure includes a limiting cylinder (11) fixedly connected on the surface of the sliding connecting seat (3), the inner surface of the limiting cylinder (11) is provided with a limiting groove (12), the inner surface of the limiting groove (12) is slidingly connected with a limiting rod (13), and the outer surface of the limiting rod (13) is slidingly connected with the inner surface of the limiting groove (12).
5. The warehouse shelving adjustable assembly of claim 4, wherein, The limiting groove (12) includes vertical and annular grooves, the vertical groove and the annular groove are vertically and annularly communicated, and the vertical groove and the annular groove are centrally symmetric with the limiting cylinder (11) as the center point.
6. The warehouse shelving adjustable assembly of claim 1, wherein, The two vertical plates (2) are fixedly connected through a reinforcing frame. The adjusting layer plate structure includes sliding connecting seats (3) fixedly connected at four corners of the horizontal plate (1), the sliding connecting seats (3) are slidingly arranged between the vertical plates (2), inner cavities of the sliding connecting seats (3) are fixedly connected with cylinder bodies (4) in a plug-in mode, inner surfaces of the cylinder bodies (4) are slidingly connected with sliding handles (5), shaft centers of the sliding handles (5) are fixedly connected with clamping rods (6), surfaces of the clamping rods (6) are sleeved with springs (7), the springs (7) are fixedly connected with the sliding handles (5) and the inner walls of the cylinder bodies (4), one end of the spring (7) penetrating through the cylinder body (4) is rotatably connected with a pull rod (9) through a bearing cylinder (8), the pull rod (9) is limited in position through a limiting structure, the vertical plate (2) is provided with a clamping hole (10) on the surface and at a position corresponding to the pull rod (9), and the clamping hole (10) is inserted between the pull rod (9).