Soft package lithium battery PACK transfer equipment

By using damper and spring shock-absorbing structures in lithium battery PACK transport equipment, as well as clamping systems of motors, screws and electric telescopic rods, the problem of vulnerability to damage to lithium battery PACK in traditional transport equipment is solved, and a safer and more stable transportation process is achieved.

CN222876011UActive Publication Date: 2025-05-16SHENZHEN OUYUESI TECH CO LTD
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Patent Information

Application Number
CN202422043221.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-05-16
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

The traditional soft-pack lithium battery PACK is susceptible to physical damage during transportation, such as vibration, collision or extrusion, resulting in damage to the structure and function, affecting its safety and performance.

Method used

A soft-pack lithium battery PACK transport equipment is designed, and the shock-absorbing structure of dampers and springs is used to achieve stable clamping and smooth movement of the lithium battery PACK through motors, screws, moving blocks and electric telescopic rods to avoid collision and squeezing.

Benefits of technology

It effectively reduces the vibration and collision risks of lithium battery PACK during transportation, ensures its safety and performance during transportation, and avoids structural and functional problems caused by physical damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a soft package lithium battery PACK transfer device which comprises a bottom plate and is characterized in that a loading box is arranged at the top end of the bottom plate, at least one lapping plate is arranged in the loading box, opening grooves are formed in the lapping plates, a groove is formed in the bottom plate, a motor is arranged on one side of the bottom plate, and the motor is arranged on the other side of the bottom plate. A groove is formed in the bottom plate, a screw driven by a motor is arranged in the groove, a moving block in threaded connection is arranged on the screw, a guide mechanism is arranged at the bottom end of the moving block, an electric telescopic rod is arranged at the top end of the moving block, a placing plate is arranged at the telescopic end of the electric telescopic rod, and sliding wheels with damping structures are arranged at the four corners of the bottom of the bottom plate. Compared with the prior art, the utility model has the advantages that not only can shock be effectively reduced and the vibration amplitude of the lithium batteries PACK be prevented from being too large, but also the lithium batteries PACK can be arranged one by one and clamped stably, so that the lithium batteries PACK are prevented from being collided or extruded in the transportation process, and the safety of the lithium batteries PACK is ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of lithium battery PACK transportation, and specifically refers to a soft-pack lithium battery PACK transportation device. Background Art

[0002] With the popularity of electric vehicles, the importance of lithium batteries as their power source has become increasingly prominent. Soft-pack lithium batteries are widely used in electric vehicles due to their high energy density, safety, and environmental protection. However, during the battery production and use process, individual soft-pack lithium batteries need to be assembled into battery PACKs, and then transported and stored.

[0003] Traditional soft-pack lithium battery PACKs are usually transported by conveyor belts or transfer vehicles. When transported by transfer vehicles, the battery PACKs are susceptible to physical damage during transportation, such as vibration, collision or extrusion, which may damage the structure and function of the battery PACK, thereby affecting its safety and performance. Utility Model Content

[0004] The technical problem to be solved by the utility model is to overcome the above technical defects and provide a soft-pack lithium battery PACK transport device, which can not only effectively reduce shock and prevent the lithium battery PACK from vibrating too much, but also discharge the lithium battery PACKs one by one and clamp them firmly to avoid collision or extrusion during transportation, thereby ensuring their safety.

[0005] In order to solve the above technical problems, the technical solution provided by the utility model is: a soft-pack lithium battery PACK transport equipment, including a base plate, characterized in that: a loading box is provided at the top of the base plate, and at least one stacking board is provided in the loading box, and the stacking boards are provided with open grooves, and the base plate is provided with a groove, and a motor is provided on one side of the base plate, and a screw driven by the motor is provided in the groove, and a moving block connected by a thread is provided on the screw, and a guide mechanism is provided at the bottom end of the moving block, and an electric telescopic rod is provided at the top of the moving block, and a placement plate is provided at the telescopic end of the electric telescopic rod, and sliding wheels with shock-absorbing structures are provided at the four corners of the bottom of the base plate, and fixed clamping structures are provided on both sides above the stacking board.

[0006] As an improvement, the guiding mechanism includes a sliding block arranged at the bottom end of the moving block, and the bottom plate is provided with a sliding groove used in conjunction with the sliding block, which can guide and limit the moving block to ensure its smooth movement.

[0007] As an improvement, the open slot is used in conjunction with the electric telescopic rod and the width of the open slot is greater than the width of the electric telescopic rod, so that the soft-pack lithium battery PACK can be directly placed on the mounting plate.

[0008] As an improvement, the shock-absorbing structure includes cylindrical grooves arranged at the four corners of the bottom of the base plate, a damper is provided in the cylindrical groove, the telescopic end of the damper is fixedly connected to the sliding wheel, and a spring is provided on the damper to facilitate shock absorption of the whole and avoid strong vibration to avoid damage to the battery or PACK structure.

[0009] As an improvement, the fixed clamping structure includes studs inserted on both sides of the loading box and located above the mounting plate, one end of the stud is provided with a handle, and the other end of the stud is provided with a rotatably connected clamping plate, and the connection between the stud and the loading box is a threaded connection, which can clamp and fix the soft-pack lithium battery PACK placed on the mounting plate.

[0010] As an improvement, anti-static foam is provided on one side of the clamping plate to prevent static electricity from damaging the soft-pack lithium battery PACK.

[0011] As an improvement, a push handle is provided on one side of the bottom plate to facilitate pushing forward.

[0012] Compared with the prior art, the utility model has the advantages that the damper and spring can reduce the shock of the whole body to avoid damage to the lithium battery PACK due to excessive vibration. The lithium battery PACK can be directly placed on different placement boards through the motor, screw, moving block, slider, slide, electric telescopic rod and placement board, and clamped and fixed by studs, turning handles, clamping plates and anti-static foam cotton, and arranged one by one and clamped firmly to avoid collision or extrusion during transportation, ensuring its safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a three-dimensional schematic diagram of a soft-pack lithium battery PACK transport device of the utility model. Figure 1 .

[0014] Figure 2 This is a three-dimensional schematic diagram of a soft-pack lithium battery PACK transport device of the utility model. Figure 2 .

[0015] Figure 3 The utility model is a cross-sectional structural schematic diagram of a soft-pack lithium battery PACK transport device.

[0016] Figure 4 It is a partial structural schematic diagram of a soft-pack lithium battery PACK transport device of the utility model.

[0017] Figure 5 The utility model is a soft-pack lithium battery PACK transport equipment Figure 2 A magnified detail of part A.

[0018] Figure 6The utility model is a soft-pack lithium battery PACK transport equipment Figure 3 A magnified detail of part B.

[0019] As shown in the figure: 1. Base plate; 2. Push handle; 3. Loading box; 4. Laying board; 5. Open slot; 6. Groove; 7. Motor; 8. Screw; 9. Moving block; 10. Slider; 11. Slide; 12. Electric telescopic rod; 13. Placement plate; 14. Cylindrical slot; 15. Damper; 16. Spring; 17. Sliding wheel; 18. Stud; 19. Turning handle; 20. Clamp; 21. Anti-static foam cotton. DETAILED DESCRIPTION

[0020] The utility model is further described in detail below in conjunction with the accompanying drawings.

[0021] Combined with Figure 1 and attached Figure 3 A soft-pack lithium battery PACK transport device comprises a base plate 1, characterized in that: a loading box 3 is provided at the top of the base plate 1, at least one stacking board 4 is provided in the loading box 3, the stacking boards 4 are provided with opening grooves 5, a groove 6 is provided on the base plate 1, a motor 7 is provided on one side of the base plate 1, a screw 8 driven by the motor 7 is provided in the groove 6, a moving block 9 connected by a thread is provided on the screw 8, a guide mechanism is provided at the bottom end of the moving block 9, an electric telescopic rod 12 is provided at the top of the moving block 9, a placing plate 13 is provided at the telescopic end of the electric telescopic rod 12, sliding wheels 17 with a shock-absorbing structure are provided at the four corners of the bottom of the base plate 1, and fixed clamping structures are provided on both sides above the stacking board 4.

[0022] Combined with Figure 6 The guiding mechanism includes a slider 10 arranged at the bottom end of the moving block 9, and a slide groove 11 used in conjunction with the slider 10 is provided on the bottom plate 1, which can guide and limit the moving block 9 to ensure that it can move smoothly.

[0023] Combined with Figure 1 In order to facilitate placing the soft-pack lithium battery PACK on the mounting plate 4, the opening groove 5 is used in conjunction with the electric telescopic rod 12 and the width of the opening groove 5 is greater than the width of the electric telescopic rod 12.

[0024] Combined with Figure 5 The shock absorbing structure includes cylindrical grooves 14 arranged at the four corners of the bottom of the base plate 1, and a damper 15 is arranged in the cylindrical groove 14. The telescopic end of the damper 15 is fixedly connected to the sliding wheel 17. The damper 15 is sleeved with a spring 16, which can reduce the shock of the whole and avoid damage to the soft-pack lithium battery PACK due to excessive shaking.

[0025] Combined with Figure 1 and attached Figure 4 The fixed clamping structure includes studs 18 inserted on both sides of the loading box 3 and located above the mounting plate 4. A handle 19 is provided at one end of the stud 18, and a rotatably connected clamping plate 20 is provided at the other end of the stud 18. The connection between the stud 18 and the loading box 3 is a threaded connection, which can clamp and fix the soft-pack lithium battery PACK, and the whole is stable.

[0026] Combined with Figure 3 In order to reduce static electricity, an anti-static foam 21 is provided on one side of the clamping plate 20 .

[0027] Combined with Figure 1 In order to facilitate pushing forward, a push handle 2 is provided on one side of the base plate 1.

[0028] During the specific implementation of the utility model, the lithium battery PACK is directly placed on the placement plate 13, the motor 7 is started, the motor 7 drives the screw 8 to rotate continuously, and the moving block 9 located on the screw 8 drives the electric telescopic rod 12 and the placement plate 13 to move under the limitation of the slider 10 and the slide groove 11.

[0029] The electric telescopic rod 12 moves with the moving block 9, and directly enters the loading box 3 through the opening slot 5, so that the soft-pack lithium battery PACK is located above the mounting plate 4. The staff picks up the soft-pack lithium battery PACK with both hands, starts the motor 7 to reverse, and pulls out the placement plate 13. The staff then directly places the soft-pack lithium battery PACK on the mounting plate. As the electric telescopic rod 12 continues to extend and contract, multiple soft-pack lithium battery PACKs can be placed on different mounting plates.

[0030] By turning the handle 19, the stud 18 is driven to rotate continuously, and the clamping plate 20 is continuously moved toward the middle, so that the soft-pack lithium battery PACK can be clamped and fixed, and the batteries can be placed one by one and clamped firmly to avoid collision or extrusion during transportation, thereby ensuring their safety.

[0031] During the transportation process, the damper and spring can be used to reduce the shock of the entire device, thus preventing the lithium battery PACK from being damaged due to excessive vibration.

[0032] The above description of the utility model and its implementation methods is not restrictive. The drawings show only one implementation method of the utility model, and the actual structure is not limited thereto. In short, if ordinary technicians in this field are inspired by it and design structural methods and embodiments similar to the technical solution without creativity without departing from the purpose of the invention of the utility model, they should all fall within the protection scope of the utility model.

Claims

1. A soft-pack lithium battery PACK transport device, comprising a bottom plate (1), characterized in that: A loading box (3) is provided at the top of the base plate (1), and at least one stacking plate (4) is provided in the loading box (3). The stacking plates (4) are all provided with opening grooves (5). A groove (6) is provided on the base plate (1). A motor (7) is provided on one side of the base plate (1). A screw rod (8) driven by the motor (7) is provided in the groove (6). A moving block (9) connected by a thread is provided on the screw rod (8). A guide mechanism is provided at the bottom end of the moving block (9). An electric telescopic rod (12) is provided at the top of the moving block (9). A placement plate (13) is provided at the telescopic end of the electric telescopic rod (12). Sliding wheels (17) with a shock-absorbing structure are provided at the four corners of the bottom of the base plate (1), and fixed clamping structures are provided on both sides above the stacking plates (4).

2. A soft-pack lithium battery PACK transport device according to claim 1, characterized in that: The guide mechanism comprises a sliding block (10) arranged at the bottom end of the moving block (9), and a sliding groove (11) used in conjunction with the sliding block (10) is provided on the bottom plate (1).

3. The soft-pack lithium battery PACK transport device according to claim 1, characterized in that: The opening slot (5) is used in conjunction with the electric telescopic rod (12), and the width of the opening slot (5) is greater than the width of the electric telescopic rod (12).

4. The soft-pack lithium battery PACK transport device according to claim 1, characterized in that: The shock absorbing structure comprises cylindrical grooves (14) arranged at the four corners of the bottom of the base plate (1), a damper (15) is arranged in the cylindrical groove (14), a telescopic end of the damper (15) is fixedly connected to a sliding wheel (17), and a spring (16) is sleeved on the damper (15).

5. The soft-pack lithium battery PACK transport device according to claim 1, characterized in that: The fixed clamping structure comprises studs (18) inserted into both sides of the loading box (3) and located above the mounting plate (4); a turning handle (19) is provided at one end of the stud (18); a rotatably connected clamping plate (20) is provided at the other end of the stud (18); and the stud (18) and the loading box (3) are connected by threaded connection.

6. The soft-pack lithium battery PACK transport device according to claim 5, characterized in that: Antistatic foam (21) is provided on one side of the clamping plate (20).

7. The soft-pack lithium battery PACK transport device according to claim 1, characterized in that: A push handle (2) is provided on one side of the bottom plate (1).