Lithium battery production clamping operation device

By designing a lithium battery production clamping and operating device consisting of a rotating motor, servo motor, screw rod and clamping assembly, the problem that the existing device cannot adapt to different heights and directions is solved, and the flexible and efficient transportation of lithium batteries is achieved.

CN223356797UActive Publication Date: 2025-09-19WUXI YUANPENG NEW ENERGY TECH SERVICE CO LTD
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Patent Information

Application Number
CN202422408524.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-09-19
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The existing lithium battery clamping and transporting device cannot adapt to conveying devices of different heights and cannot change the direction of transport, resulting in poor transport effect and low practicality.

Method used

A lithium battery production clamping and operating device including a rotary motor, a servo motor, a screw, a lifting block and a clamping assembly is designed. The rotating, lifting and clamping mechanisms are used to achieve flexible grasping and transportation of lithium batteries, and the device is adaptable to conveying devices of different heights and directions.

Benefits of technology

It realizes the flexible grabbing and transportation of lithium batteries, adapts to conveying devices of different heights and directions, is simple and convenient to operate, and improves transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of lithium battery production, in particular to a lithium battery production clamping operation device which comprises a base, a mounting groove is formed in the upper surface of the base, a rotating motor is fixedly connected in the mounting groove, a rotating shaft is connected to the top of the output end of the rotating motor, and the top of the rotating shaft extends to the outer side of the mounting groove. A base is fixedly connected to the top of the extending end of the rotating shaft, supporting assemblies are arranged between the two sides of the bottom of the base and the base, a stand column is vertically and fixedly connected to the center of the top of the base, and a lifting groove is formed in one side of the stand column and internally provided with a lifting assembly.
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Description

Technical Field

[0001] The utility model relates to the field of lithium battery production, in particular to a clamping and operating device for lithium battery production. Background Art

[0002] Due to its long cycle life and light weight, lithium battery modules are widely used in electric vehicles, communication power supplies, and energy storage fields. When lithium batteries are transferred from the end of the previous production line to the beginning of the next production line, or from the end of the production line to a conveying mechanism for transportation, storage, etc., a large number of lithium batteries need to be transferred one by one. During the transportation of lithium batteries, a clamping and transferring device is needed to clamp and transfer the lithium batteries so that they pass through different production stages. However, the existing clamping and transferring device has poor effect and can only rotate the lithium batteries to the conveying device at the same height. It cannot transfer the lithium batteries to the conveying devices at different heights, resulting in poor transfer effect. In addition, the existing clamping and transferring device cannot change the direction of transfer, and is not very practical. Utility Model Content

[0003] In view of the above situation, in order to overcome the defects of the prior art, the purpose of the present invention is to provide a lithium battery production clamping and operating device, which has the advantages of solving the problems raised in the above background technology.

[0004] The above technical objectives of the present invention are achieved through the following technical solutions:

[0005] A lithium battery production clamping and operating device includes a base, a mounting groove is provided on the upper surface of the base, a rotating motor is fixedly connected in the mounting groove, a rotating shaft is connected to the top of the output end of the rotating motor, the top of the rotating shaft extends to the outside of the mounting groove, the top of the extending end of the rotating shaft is fixedly connected to the base, support components are provided between the two sides of the bottom of the base and the base, a column is vertically fixedly connected to the center position of the top of the base, a lifting groove is provided on one side of the column, a lifting component is provided in the lifting groove, and the lifting component includes a fixing seat provided at the upper and lower ends of the lifting groove. A screw rod is rotatably connected between the fixed seats, the top of the screw rod extends to the outside of the lifting slot, the top of the extended end of the screw rod is connected to a servo motor through a coupling, the outer side of the screw rod is matched and connected with a lifting block, the lifting block slides with the lifting slot, one side of the lifting block extends to the outside of the lifting slot, the extended end of the lifting block is fixedly connected to a cross plate, a moving slot is provided at the bottom of the cross plate, a moving block is provided in the moving slot, a pushing component that drives the moving block to move left and right is provided in the moving slot, a clamping slot is provided at the bottom of the moving block, and a clamping component is provided in the clamping slot.

[0006] By adopting the above technical solution, when in use, the operator opens the rotating motor according to the operation requirements, and adjusts and rotates the base and other components on the base to the lithium battery grabbing position through the cooperation of the rotating shaft and the supporting assembly. Then the operator turns on the servo motor to drive the screw to rotate. At this time, the lifting block on the screw and other components on the lifting block cooperate with the lifting slot to lift up and down to a suitable working height. Then the operator turns on the pushing assembly to cooperate with the moving block and the clamping assembly on the moving block to push horizontally to the lithium battery grabbing position and complete the grabbing of the lithium battery through cooperation with the clamping assembly. When the grabbing work is completed, the operator turns on the rotating motor according to the operation requirements, drives the rotating shaft to rotate, and cooperates to rotate the base and the components on the base to the lithium battery storage location to complete the lithium battery operation operation.

[0007] It is further configured that the support assembly includes support frames arranged on both sides of the bottom of the base, the bottoms of the support frames are movably connected to rotating wheels, and the bottoms of the rotating wheels are in contact with the upper surface of the base.

[0008] By adopting the above technical solution, when in use, the operator starts the rotating motor according to the work requirements, and drives the base to rotate through the cooperation with the rotating shaft. The wheels set on both sides of the bottom of the base and the support frame cooperate to play a supporting and stabilizing role.

[0009] Further configuration: a stabilizing frame is provided between one side of the top of the horizontal plate and the lifting block.

[0010] By adopting the above technical solution, the stabilizing frame provided by the horizontal plate and the lifting block plays a supporting and stabilizing role.

[0011] Further configuration: the pushing assembly includes a pushing cylinder arranged on one side of the moving groove, the output end of the pushing cylinder is horizontally arranged toward one side of the moving block, the output end of the pushing cylinder is fixedly connected to a push plate, and the push plate is fixedly connected to the moving block away from the side of the pushing cylinder.

[0012] By adopting the above technical solution, during operation, the operator turns on the push cylinder according to the operation requirements, cooperates with the push plate to horizontally push the moving block and other components at the bottom of the moving block to the appropriate grasping position, and cooperates with other components to complete the grasping operation.

[0013] Further arrangement: the clamping assembly includes a bidirectional cylinder arranged at the center position of the clamping groove, the output ends on both sides of the bidirectional cylinder are fixedly connected with clamping blocks, the clamping blocks are slidably fitted with the clamping grooves, the bottoms of the clamping blocks are fixedly connected with clamping plates, and the bottoms of the clamping plates extend to the outside of the clamping grooves.

[0014] By adopting the above technical solution, when grabbing lithium batteries, the operator turns on the two-way cylinder according to the work requirements, and cooperates with the clamping blocks on the output ends on both sides and the clamping plates at the bottom of the clamping plate to move toward each other to complete the clamping and grabbing operation.

[0015] It is further configured that adjacent sides of the splint are fixedly connected with anti-slip pads.

[0016] By adopting the above technical solution, when the clamping plates move toward each other to clamp and grab the lithium battery, the anti-slip pads provided on the adjacent sides of the clamping plates come into contact with the lithium battery, thereby playing an anti-slip and protective role.

[0017] In summary, the present invention has the following beneficial effects:

[0018] When the present utility model is used, the operator opens the rotating motor according to the operation requirements, and adjusts and rotates the base and other components on the base to the lithium battery grabbing position through the cooperation of the rotating shaft and the supporting assembly. Then the operator starts the servo motor to drive the screw to rotate. At this time, the lifting block on the screw and other components on the lifting block cooperate with the lifting slot to rise and fall to a suitable operating height, so as to adapt to grabbing batteries at different heights. Then the operator starts the pushing assembly, cooperates to push the moving block and the clamping assembly on the moving block horizontally to the lithium battery grabbing position and completes the grabbing of the lithium battery through cooperation with the clamping assembly. When the grabbing work is completed, the operator starts the rotating motor according to the operation requirements, drives the rotating shaft to rotate, and cooperates to rotate the base and the components on the base to the lithium battery storage position, so as to change the rotation direction, adapt to grabbing batteries stored in different positions, and complete the lithium battery operation operation. The operation is simple and convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application, but do not constitute an improper limitation of the present invention. In the drawings:

[0020] Figure 1 It is the main view of the utility model;

[0021] Figure 2 It is a main structural diagram of the present utility model.

[0022] In the figure, 1. base; 2. mounting slot; 3. rotating motor; 4. rotating shaft; 5. base; 6. supporting assembly; 7. column; 8. lifting slot; 9. lifting assembly; 10. fixing seat; 11. screw rod; 12. servo motor; 13. lifting block; 14. horizontal plate; 15. moving slot; 16. moving block; 17. pushing assembly; 18. clamping slot; 19. clamping assembly; 20. supporting frame; 21. rotating wheel; 22. stabilizing frame; 23. pushing cylinder; 24. pushing plate; 25. two-way cylinder; 26. clamping block; 27. clamping plate; 28. anti-slip pad. DETAILED DESCRIPTION

[0023] The above and other technical contents, features and effects of the present invention are described in detail below with reference to the attached Figure 1 To the attached Figure 2 The detailed description of the embodiments will clearly show that the structural contents mentioned in the following embodiments are all based on the accompanying drawings.

[0024] Various exemplary embodiments of the present invention will be described below with reference to the accompanying drawings.

[0025] Example 1: A lithium battery production clamping and operating device, such as Figure 1 、 2 As shown, it includes a base 1, a mounting groove 2 is opened on the upper surface of the base 1, a rotating motor 3 is fixedly connected in the mounting groove 2, a rotating shaft 4 is connected to the top of the output end of the rotating motor 3, the top of the rotating shaft 4 extends to the outside of the mounting groove 2, and the top of the extended end of the rotating shaft 4 is fixedly connected to a base 5, and support components 6 are provided between the bottom of the base 5 and the base 1 on both sides. The support component 6 includes support frames 20 arranged on both sides of the bottom of the base 5, and the bottom of the support frames 20 are movably connected to the rotating wheels 21, and the bottoms of the rotating wheels 21 are in contact with the upper surface of the base 1;

[0026] The top center position of the base 5 is vertically fixedly connected to the column 7, and a lifting groove 8 is provided on one side of the column 7. A lifting component 9 is provided in the lifting groove 8. The lifting component 9 includes a fixed seat 10 arranged at the upper and lower ends of the lifting groove 8. A screw rod 11 is rotatably connected between the fixed seats 10. The top of the screw rod 11 extends to the outside of the lifting groove 8. The top of the extended end of the screw rod 11 is connected to the servo motor 12 through a coupling. The outside of the screw rod 11 is matched with a lifting block 13, and the lifting block 13 slides with the lifting groove 8. One side of the lifting block 13 extends to the outside of the lifting groove 8. The extended end of the lifting block 13 is fixedly connected to a cross plate 14. A stable frame 22 is provided between the top side of the cross plate 14 and the lifting block 13. A moving groove 15 is provided at the bottom of the cross plate 14, and a moving block 16 is provided in the moving groove 15. A driving moving block 16 is provided in the moving groove 15 The pushing assembly 17 for moving the block 16 left and right, the pushing assembly 17 includes a pushing cylinder 23 arranged on one side of the moving groove 15, the output end of the pushing cylinder 23 is horizontally arranged toward the side of the moving block 16, the output end of the pushing cylinder 23 is fixedly connected to a push plate 24, the push plate 24 is fixedly connected to the moving block 16 away from the side of the pushing cylinder 23, a clamping groove 18 is provided at the bottom of the moving block 16, a clamping assembly 19 is provided in the clamping groove 18, the clamping assembly 19 includes a two-way cylinder 25 arranged at the center position of the clamping groove 18, the output ends on both sides of the two-way cylinder 25 are fixedly connected to clamping blocks 26, the clamping blocks 26 are slidably matched with the clamping groove 18, the bottom of the clamping block 26 is fixedly connected to a splint 27, the bottom of the splint 27 extends to the outside of the clamping groove 18, and the adjacent side of the splint 27 is fixedly connected to an anti-slip pad 28.

[0027] After the lifting of the battery, the lifting device 11 is lifted up and down, and the lifting and lowering of the battery are completed, and the lifting and lowering of the battery are completed, and the lifting and lowering of the battery are completed, and the lifting and lowering of the battery are completed, and the lifting and lowering of the battery are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed, and the lifting and lowering of the battery are completed, are completed,

[0028] The above is a further detailed description of the present invention in combination with a specific implementation method, and it cannot be determined that the specific implementation of the present invention is limited to this. For technical personnel in the field of the present invention and related technical fields, based on the technical solution of the present invention, any expansion and replacement of operating methods and data should fall within the scope of protection of the present invention.

Claims

1. A lithium battery production clamping and operating device, comprising a base (1), characterized in that: The upper surface of the base (1) is provided with a mounting groove (2), a rotating motor (3) is fixedly connected in the mounting groove (2), a rotating shaft (4) is connected to the top of the output end of the rotating motor (3), the top of the rotating shaft (4) extends to the outside of the mounting groove (2), the top of the extending end of the rotating shaft (4) is fixedly connected to a base (5), a supporting assembly (6) is provided between the two sides of the bottom of the base (5) and the base (1), a column (7) is vertically fixedly connected to the center position of the top of the base (5), a lifting groove (8) is provided on one side of the column (7), a lifting assembly (9) is provided in the lifting groove (8), the lifting assembly (9) includes a fixing seat (10) provided at the upper and lower ends of the lifting groove (8), a screw rod (11) is rotatably connected between the fixing seats (10), the fixing seats (10) are provided with a screw rod (11), the fixing seats (10) are provided with a screw rod (11) and the screw rod (11) is rotatably connected between the fixing seats (10). The top of the screw rod (11) extends to the outside of the lifting groove (8), and the top of the extended end of the screw rod (11) is connected to the servo motor (12) through a coupling. The outer side of the screw rod (11) is matched and connected with a lifting block (13), and the lifting block (13) slides with the lifting groove (8). One side of the lifting block (13) extends to the outside of the lifting groove (8), and the extended end of the lifting block (13) is fixedly connected to a horizontal plate (14). A moving groove (15) is provided at the bottom of the horizontal plate (14), and a moving block (16) is provided in the moving groove (15). A pushing component (17) for driving the moving block (16) to move left and right is provided in the moving groove (15). A clamping groove (18) is provided at the bottom of the moving block (16), and a clamping component (19) is provided in the clamping groove (18).

2. A lithium battery production clamping and operating device according to claim 1, characterized in that: The support assembly (6) includes support frames (20) arranged on both sides of the bottom of the base (5), the bottoms of the support frames (20) are movably connected to rotating wheels (21), and the bottoms of the rotating wheels (21) are in contact with the upper surface of the base (1).

3. The lithium battery production clamping and operating device according to claim 1, characterized in that: A stabilizing frame (22) is provided between one side of the top of the transverse plate (14) and the lifting block (13).

4. The lithium battery production clamping and operating device according to claim 1, characterized in that: The pushing assembly (17) includes a pushing cylinder (23) arranged on one side of the moving groove (15), the output end of the pushing cylinder (23) is arranged horizontally toward the side of the moving block (16), the output end of the pushing cylinder (23) is fixedly connected to a push plate (24), and the push plate (24) is fixedly connected to the moving block (16) on a side away from the pushing cylinder (23).

5. The lithium battery production clamping and operating device according to claim 1, characterized in that: The clamping assembly (19) includes a bidirectional cylinder (25) arranged at a central position in the clamping groove (18), and the output ends on both sides of the bidirectional cylinder (25) are fixedly connected to clamping blocks (26), and the clamping blocks (26) are slidably matched with the clamping groove (18). The bottom of the clamping blocks (26) is fixedly connected to a clamping plate (27), and the bottom of the clamping plate (27) extends to the outside of the clamping groove (18).

6. The lithium battery production clamping and operating device according to claim 5, characterized in that: Adjacent sides of the splint (27) are both fixedly connected with anti-slip pads (28).