Logistics storage rack capable of being converted and adjusted

By designing adjustable logistics warehouse storage racks, and utilizing adjustable components and ferromagnetic materials to achieve automatic lifting and locking of storage panels, the problem of traditional storage racks requiring forklift handling is solved, thus improving storage efficiency and safety.

CN223765251UActive Publication Date: 2026-01-06JIYONGLONG (SUZHOU) AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202520310570.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-06
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

Traditional logistics warehouses require forklifts and other tools to move items when they are stored at high heights, which is time-consuming, labor-intensive, increases labor costs, and poses safety hazards.

Method used

A convertible and adjustable logistics warehouse storage rack was designed. The storage platform is raised and lowered by adjusting the components. The storage platform is automatically locked and unlocked by using ferromagnetic materials and electric push rods, which simplifies the cargo handling process.

Benefits of technology

The height of the storage platform can be adjusted without the need for forklifts or other equipment, saving time and manpower, improving storage efficiency, reducing labor costs, and enhancing storage security.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of storage racks, and particularly relates to a convertible and adjustable logistics storage rack which comprises a rack body, a plurality of storage plates are arranged in the rack body from top to bottom at equal intervals, and sliding blocks made of ferromagnetic materials are fixedly connected to the two sides of each storage plate respectively. A plurality of connecting grooves are formed in the two sides of the inner wall of the frame body from top to bottom at equal intervals, the sliding blocks are slidably connected with the connecting grooves, and a lifting groove is jointly formed in one ends of the connecting grooves; the storage plate is driven to ascend and descend through the adjusting assembly, and when the storage rack is applied to a high storage rack, goods can be lifted and carried without the help of equipment such as a forklift, so that the goods storage steps are simplified, time and manpower are saved, the labor cost is reduced, the goods storage efficiency is remarkably improved, and convenience is brought to storage work.
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Description

Technical Field

[0001] This utility model relates to the field of warehouse storage rack technology, specifically a convertible and adjustable logistics warehouse storage rack. Background Technology

[0002] Warehousing refers to the actions of receiving, managing, and shipping goods or materials into warehouses. Logistics, within an economically reasonable range, involves selecting, processing, packaging, dividing, and assembling goods and materials according to customer requirements, and delivering them to designated locations on time. When storing goods, logistics warehousing racks are required.

[0003] Traditional logistics warehouse storage racks require manual placement of goods. When the racks are low, manual handling is possible, but this limits the amount of goods that can be stored. When the racks are high, forklifts or other tools are needed, which is time-consuming, labor-intensive, increases labor costs, and reduces storage efficiency. Furthermore, high racks reduce storage safety and increase the risk of falling objects and injuries. Therefore, this paper proposes an adjustable logistics warehouse storage rack system to address these issues. Utility Model Content

[0004] To overcome the shortcomings of existing technologies and solve the aforementioned technical problems, this utility model proposes a convertible and adjustable logistics warehouse storage rack.

[0005] The technical solution adopted by this utility model to solve its technical problem is as follows: A convertible and adjustable logistics warehouse storage rack, comprising a frame body, wherein several storage plates are equidistantly arranged from top to bottom inside the frame body, and sliders made of ferromagnetic material are fixedly connected to both sides of each storage plate. Several connecting grooves are equidistantly opened from top to bottom on both sides of the inner wall of the frame body, and the sliders are slidably connected to the connecting grooves. A lifting groove is provided at one end of each of the connecting grooves, and the lifting groove is located on the inner side wall of the frame body. An adjustment assembly is installed on the surface of the frame body, the adjustment assembly including a U-shaped sliding frame, the inner wall of which is slidably connected to the outer wall of the frame body, a lead screw threadedly connected to the center of the sliding frame, the bottom end of which is rotatably connected to the frame body, a driver fixedly connected to the upper surface of the frame body, the driving end of which is fixedly connected to the top end of the lead screw, and a pulling assembly is installed on both sides of the sliding frame, the pulling assembly being used to pull the storage plates.

[0006] Preferably, the pulling assembly includes an electric push rod, the outer wall of which is fixedly connected to the sliding frame, and an electromagnet is fixedly connected to the driving end of the electric push rod.

[0007] Preferably, a plurality of bottom slots are equidistantly distributed on the upper surface of the storage board.

[0008] Preferably, side baffles are fixedly connected to the edges of the upper surface of the storage board, and a plurality of equidistantly distributed T-shaped side slots are provided on the outer side walls of the side baffles.

[0009] Preferably, a plurality of partition boards are arranged on the upper surface of the storage board, both ends of the partition boards are T-shaped, and one T-shaped end of the partition board is inserted into the side slot.

[0010] Preferably, a plurality of jacks are equidistantly arranged from top to bottom on the inner walls of both sides of the frame body.

[0011] Preferably, a middle-shaped chute one is provided inside the slider, a clamping column is slidably connected inside the chute one, and a spring is sleeved outside the clamping column.

[0012] Preferably, a middle-shaped chute two is provided inside the slider, the chute two and the chute one are vertically distributed, an adsorption block is slidably arranged inside the chute two, a pulling rope is fixedly connected between the opposite ends of the adsorption block and the clamping column, and the outer wall of the pulling rope penetrates through the slider.

[0013] The beneficial effects of the present utility model are as follows:

[0014] 1. The present utility model drives the storage board to perform lifting operations through the adjustment component. When applied to a relatively high storage shelf, there is no need to use equipment such as forklifts to lift and transport goods, thus simplifying the steps of storing goods, saving time and manpower, reducing labor costs, significantly improving the efficiency of storing goods, and bringing convenience to the storage work.

[0015] 2. The clamping column of the present utility model is inserted into the inside of the jack to realize the automatic locking of the storage board and the frame body, thereby fixing the storage board to prevent the storage board from shaking. When the pulling component horizontally pulls the storage board, the storage board and the frame body are automatically unlocked, enabling the pulling component to smoothly horizontally drive the slider to slide and realizing the position adjustment of the storage board. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings without creative efforts.

[0017] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0018] Figure 2 This is a schematic diagram of the frame structure of this utility model;

[0019] Figure 3 This is a schematic diagram of the adjustment component structure of this utility model;

[0020] Figure 4 This is a schematic diagram of the pull component structure of this utility model;

[0021] Figure 5 This utility model Figure 4 A schematic diagram of structure A.

[0022] In the diagram: 1. Frame; 2. Storage plate; 3. Slider; 4. Connecting groove; 5. Lifting groove; 6. Adjustment component; 61. Sliding frame; 62. Lead screw; 63. Driver; 64. Pulling component; 641. Electric push rod; 642. Electromagnet; 7. Bottom slot; 8. Side baffle; 9. Side slot; 10. Divider plate; 11. Insertion hole; 12. Slide 1; 13. Locking post; 14. Spring; 15. Slide 2; 16. Adsorption block; 17. Pull rope. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0024] Example 1

[0025] Please see Figure 1-4 As shown, a convertible and adjustable logistics warehouse storage rack includes a frame 1. Several storage plates 2 are equidistantly arranged from top to bottom inside the frame 1. Slider blocks 3 made of ferromagnetic material are fixedly connected to both sides of each storage plate 2. Several connecting grooves 4 are equidistantly opened from top to bottom on both sides of the inner wall of the frame 1. The sliders 3 are slidably connected to the connecting grooves 4. A lifting groove 5 is provided at one end of each connecting groove 4. The lifting groove 5 is located on the inner side wall of the frame 1. An adjustment assembly 6 is installed on the surface of the frame 1. The adjustment assembly 6 includes a U-shaped sliding frame 61. The inner wall of the sliding frame 61 is slidably connected to the outer wall of the frame 1. A lead screw 62 is threadedly connected to the center of the sliding frame 61. The bottom end of the lead screw 62 is rotatably connected to the frame 1. A driver 63 is fixedly connected to the upper surface of the frame 1. The driving end of the driver 63 is fixedly connected to the top end of the lead screw 62. Pulling assemblies 64 are installed on both sides of the sliding frame 61. The pulling assemblies 64 are used to pull the storage plates 2.

[0026] Specifically, slider 3 is connected to connecting groove 4 to support storage plate 2. Storage plate 2 is used to place goods. When the height of storage plate 2 needs to be adjusted to place goods, the controller controls the drive 63 to operate. The drive 63 drives the lead screw 62 to rotate, and the rotation of the lead screw 62 drives the sliding frame 61 to rise and fall, so that the sliding frame 61 descends to the lower side of the storage plate 2 that needs to be adjusted. Then, the pulling component 64 pulls the storage plate 2 to slide, so that slider 3 slides horizontally to the lifting groove 5, thereby supporting slider 3 through sliding frame 61. Then, the drive 63 continues to operate, driving the lead screw 62 to rotate, so that sliding frame 61 descends. The supporting slide can synchronously drive the storage plate 2 to descend, thereby adjusting the height of the storage plate 2 for easy placement of goods in the warehouse. After the goods are placed, the driver 63 moves in the opposite direction, causing the sliding frame 61 to rise to the lower side of the storage plate 2 that needs to be adjusted. Then, the pulling component 64 pushes the storage plate 2 to slide, causing the slider 3 to slide back into the connecting groove 4, realizing the automatic reset of the storage plate 2. This device drives the storage plate 2 to rise and fall by adjusting the component 6, so that when the warehouse rack is relatively high, there is no need to use forklifts or other equipment to lift and move the goods, reducing the steps of storing goods, saving time and effort, reducing labor costs, and improving storage efficiency.

[0027] The pulling assembly 64 includes an electric push rod 641, the outer wall of which is fixedly connected to the sliding frame 61, and an electromagnet 642 is fixedly connected to the drive end of the electric push rod 641.

[0028] Specifically, the electric push rod 641 extends to drive the electromagnet 642 to adhere to the storage plate 2. The operation of the electromagnet 642 generates magnetic force to attract the storage plate 2. Then, the electric push rod 641 retracts to drive the storage plate 2 to slide, so that the slider 3 slides from the connecting groove 4 to the lifting groove 5, realizing the horizontal sliding of the storage plate 2.

[0029] The upper surface of the storage plate 2 is provided with several equally spaced bottom slots 7. A side baffle 8 is fixedly connected to the edge of the upper surface of the storage plate 2. Several equally spaced T-shaped side slots 9 are provided on the outer side wall of the side baffle 8. Several partition plates 10 are provided on the upper surface of the storage plate 2. The two ends of the partition plates 10 are T-shaped. One end of the T-shaped partition plate 10 is inserted into the side slot 9.

[0030] Specifically, the side slot 9 is used to engage with both ends of the partition plate 10, and the bottom slot 7 is used to engage with the bottom end of the partition plate 10, so that the partition plate 10 can be inserted into the storage plate 2. This divides the space above the partition plate 10 into multiple storage spaces for classifying and placing goods and intercepting them, thereby improving storage safety, reducing the probability of crushing accidents, and by changing the insertion spacing of the partition plate 10, the size of the storage space can be adjusted according to the size of the goods, making it convenient to place various types of goods.

[0031] Example 2

[0032] For comparison with Example 1, please refer to Figure 4-5 As shown, this utility model provides another embodiment. The inner walls on both sides of the frame 1 are provided with a plurality of insertion holes 11 at equal intervals from top to bottom. The slider 3 is provided with a Chinese character-shaped sliding groove 12. The sliding groove 12 is slidably connected to a locking post 13. A spring 14 is sleeved on the outside of the locking post 13.

[0033] Specifically, when the storage plate 2 is inside the frame 1, the locking post 13 is pushed by the elastic force of the spring 14 to slide out of the slide groove 12 and insert into the insertion hole 11, thereby automatically locking the storage plate 2 and the frame 1, thus fixing the storage plate 2 and preventing the storage plate 2 from shaking.

[0034] The slider 3 has a 2-shaped groove 15 inside. The groove 15 and the first groove 12 are vertically distributed. An adsorption block 16 is slidably arranged inside the groove 15. A pull rope 17 is fixedly connected to the opposite end of the adsorption block 16 and the locking post 13. The outer wall of the pull rope 17 passes through the slider 3.

[0035] When the pulling component 64 pulls the storage plate 2 to move, it magnetically connects the adsorption block 16 through the electromagnet 642. When the electric push rod 641 retracts, it applies an outward pulling force to the adsorption block 16. The adsorption block 16 slides outward, pulling the pull rope 17 to move. The pull rope 17 moves and pulls the locking post 13 to slide into the slide groove 12, so that one end of the locking post 13 exits the insertion hole 11, realizing the automatic unlocking of the storage plate 2 from the frame 1. This allows the pulling component 64 to smoothly drive the slider 3 to slide horizontally, realizing the position adjustment of the storage plate 2.

[0036] Those skilled in the art should connect all electrical components and their compatible power supplies in this case via wires, and should select appropriate controllers and drivers 63, electric actuators 641 and electromagnets 642 to operate according to actual conditions to meet control requirements. The specific connection and control sequence should refer to the working principle described below, where the electrical components are connected in sequence. The detailed connection methods are well-known in the art. The following mainly introduces the working principle and process, and will not describe the electrical control.

[0037] The parts of the device not covered herein are the same as or can be implemented using existing technologies.

[0038] Working principle: When the height of the storage plate 2 needs to be adjusted to place goods, the controller controls the drive 63 to run. The drive 63 drives the lead screw 62 to rotate, and the rotation of the lead screw 62 drives the sliding frame 61 to rise and fall, so that the sliding frame 61 descends to the lower side of the storage plate 2 to be adjusted. Then, the pulling component 64 pulls the storage plate 2 to slide, so that the slider 3 slides horizontally to the lifting groove 5, thereby supporting the slider 3 through the sliding frame 61. The drive 63 continues to run, driving the lead screw 62 to rotate, so that the sliding frame 61 descends. Since the sliding frame 61 supports the sliding, it can synchronously drive the storage plate 2 to descend, thereby realizing the adjustment of the height of the storage plate 2, which is convenient for storing and placing goods. After the goods are placed, the drive 63 moves in the opposite direction, so that the sliding frame 61 rises to the lower side of the storage plate 2 to be adjusted. Then, the pulling component 64 pushes the storage plate 2 to slide, so that the slider 3 slides back into the connecting groove 4, realizing the automatic reset of the storage plate 2. Finally, the electromagnet 642 is disconnected and the electric push rod 641 retracts.

[0039] When the storage plate 2 is inside the frame 1, the locking post 13 is pushed by the elastic force of the spring 14 to slide out of the slide groove 12 and insert into the insertion hole 11, thereby automatically locking the storage plate 2 and the frame 1, thus fixing the storage plate 2 and preventing it from shaking. When the pulling component 64 pulls the storage plate 2, it magnetically connects the adsorption block 16 through the electromagnet 642, and applies an outward pulling force to the adsorption block 16 when the electric push rod 641 retracts. The adsorption block 16 slides outward, pulling the pull rope 17 to move. The pull rope 17 moves and pulls the locking post 13 to slide into the slide groove 12, causing one end of the locking post 13 to exit the insertion hole 11, thereby automatically unlocking the storage plate 2 and the frame 1. This allows the pulling component 64 to smoothly drive the slider 3 to slide horizontally, realizing the position adjustment of the storage plate 2.

[0040] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.

Claims

1. A convertible regulated logistics warehousing storage rack comprising a rack body (1), characterized in that: The inside of the frame body (1) is provided with a plurality of storage plates (2) equidistantly from top to bottom, both sides of the storage plate (2) are fixedly connected with a sliding block (3) made of ferromagnetic material, both sides of the inner wall of the frame body (1) are provided with a plurality of connecting grooves (4) equidistantly from top to bottom, the sliding block (3) is in sliding connection with the connecting groove (4), one end of a plurality of connecting grooves (4) is commonly provided with a lifting groove (5), the lifting groove (5) is arranged on the inner side wall of the frame body (1), the surface of the frame body (1) is provided with an adjusting assembly (6), the adjusting assembly (6) comprises a U-shaped sliding frame (61), the inner wall of the sliding frame (61) is in sliding connection with the outer wall of the frame body (1), the center of the sliding frame (61) is in threaded connection with a lead screw (62), the bottom end of the lead screw (62) is rotatably connected with the frame body (1), the upper surface of the frame body (1) is fixedly connected with a driver (63), the driving end of the driver (63) is fixedly connected with the top end of the lead screw (62), both sides of the sliding frame (61) are provided with a pulling assembly (64), and the pulling assembly (64) is used for pulling the storage plate (2).

2. The convertible regulated logistics warehouse shelving of claim 1, wherein: The pulling assembly (64) comprises an electric push rod (641), the outer wall of the electric push rod (641) is fixedly connected with the sliding frame (61), and the driving end of the electric push rod (641) is fixedly connected with an electromagnet (642).

3. The convertible regulated logistics warehouse shelving of claim 1, wherein: A plurality of equidistant bottom insertion grooves (7) are arranged on the upper surface of the storage plate (2).

4. The convertible regulated logistics warehouse shelving of claim 3, wherein: The upper surface edge of the storage plate (2) is fixedly connected with a side baffle (8), a plurality of equidistant T-shaped side insertion grooves (9) are arranged on the outer side wall of the side baffle (8).

5. The convertible regulated logistics warehouse shelving of claim 4, wherein: A plurality of partition plates (10) are arranged on the upper surface of the storage plate (2), both ends of the partition plate (10) are T-shaped, and one end of the T-shaped partition plate (10) is inserted into the side insertion groove (9).

6. The convertible regulated logistics warehouse shelving of claim 1, wherein: A plurality of insertion holes (11) are equidistantly arranged on the inner wall of both sides of the frame body (1) from top to bottom.

7. The convertible regulated logistics warehouse shelving of claim 1, wherein: A middle-shaped sliding groove one (12) is arranged in the sliding block (3), a clamping column (13) is in sliding connection with the inside of the sliding groove one (12), and a spring (14) is arranged on the outer side of the clamping column (13).

8. The convertible regulated logistics warehouse shelving of claim 7, wherein: A middle-shaped sliding groove two (15) is arranged in the sliding block (3), the sliding groove two (15) and the sliding groove one (12) are vertically distributed, an adsorption block (16) is slidably arranged in the sliding groove two (15), a pull rope (17) is fixedly connected between the opposite end of the adsorption block (16) and the clamping column (13), and the outer wall of the pull rope (17) penetrates the sliding block (3).