Feeding processing device for cylindrical battery
By designing an automated feeding and processing device, including components such as a feeding hopper, feeding traction wheels, and insulating paper traction support frame, the problem of low efficiency in manual feeding of cylindrical batteries has been solved, realizing automated feeding of cylindrical batteries and efficient application of insulating paper, adapting to modern intelligent production.
Patent Information
- Application Number
- CN202520948464.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-04-07
- Publication Date
- 2026-05-05
- Estimated Expiration
- 2036-04-07
AI Technical Summary
The traditional cylindrical battery feeding process relies on manual operation, which is inefficient and cannot be matched with modern intelligent production methods.
A feeding and processing device was designed, comprising a feeding hopper, a feeding traction wheel, a first conveyor belt, an insulating paper traction support frame, pneumatic grippers, and a punching knife assembly, to achieve automated feeding of cylindrical batteries and attachment of insulating paper through mechanization.
It has enabled automated feeding of cylindrical batteries and efficient application of insulating paper, improving production efficiency and meeting the needs of modern intelligent production.
Smart Images

Figure CN224198597U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of batteries, and in particular to a feeding and processing device for cylindrical batteries. Background Technology
[0002] Cylindrical batteries, as power components for most devices, have been widely adopted in various fields and are a key theme of energy conservation and environmental protection in the 21st century. Their small size is also an important issue. In the production and manufacturing process of lead-acid batteries, a feeding mechanism is often required to feed the batteries. However, traditional feeding methods mostly rely on manual handling, which is inefficient and clearly incompatible with modern intelligent production methods. Therefore, a feeding and processing device for cylindrical batteries is proposed. Utility Model Content
[0003] To overcome the shortcomings mentioned above, this utility model aims to provide a technical solution that can solve the above problems.
[0004] A feeding and processing device for cylindrical batteries includes a worktable and a hopper for holding multiple cylindrical batteries. The worktable is also equipped with a first conveyor belt for carrying and transporting the cylindrical batteries falling from the hopper. A cylindrical battery holding platform is provided on one side of the first conveyor belt to hold the cylindrical batteries and attach insulating paper. The hopper is equipped with a traction wheel for feeding, which is located at the bottom of the hopper and rotates at the bottom of the hopper. The rotation of the traction wheel can rotate and carry the cylindrical batteries out of the hopper one by one and simultaneously drop them onto the first conveyor belt.
[0005] Preferably, a first motor is provided between the hopper and the traction wheel, and the first motor is located at the bottom of the hopper and is connected to the traction wheel; a second motor is provided on one side of the first conveyor belt and is connected to the first conveyor belt.
[0006] Preferably, an insulating paper traction support frame is provided on one side of the cylindrical battery retention platform, and a moving platform is vertically provided on the front side of the insulating paper traction support frame. The insulating paper traction support frame is vertically fixed on the worktable, and a first pneumatic gripper and a second pneumatic gripper are vertically provided on the left and right sides of the front side of the moving platform, respectively. The moving platform, together with the first and second pneumatic grippers, moves horizontally on the front side of the insulating paper traction support frame, thereby cooperating with the synchronous movement of the moving platform and the first and second pneumatic grippers.
[0007] Preferably, a punching knife fixing frame is provided on the other side of the cylindrical battery holding platform, and the punching knife fixing frame is fixed on the worktable. A punching knife assembly is arranged laterally on one side of the punching knife fixing frame, and the punching knife assembly moves horizontally on one side of the punching knife fixing frame and moves horizontally on the surface of the cylindrical battery holding platform. An insulating paper roll is provided between the punching knife fixing frame and the worktable, and the insulating paper roll is rotated inside the worktable, and the insulating paper roll is wound with insulating paper.
[0008] Preferably, a third cylinder is provided between the punching cutter assembly and the punching cutter fixing frame, and the third cylinder is located on the outside side of the punching cutter fixing frame, and the third cylinder is driven by the punching cutter assembly.
[0009] Preferably, a first traction roller and a second traction roller are sequentially rolled on the top of the insulating paper traction support frame, and a fourth motor is provided between the insulating paper traction support frame and the first traction roller, and the fourth motor is driven to connect with the first traction roller. A connecting frame is provided on one side of the insulating paper traction support frame and is fixed to the workbench. A receiving roller is driven on one side of the connecting frame, and a third motor for driving the receiving roller is also provided on the connecting frame.
[0010] Preferably, one end of the cylindrical battery holding platform is provided with a second conveyor belt for conveying the cylindrical batteries after the insulating paper has been applied, and the other end of the second conveyor belt is provided with a cylindrical battery transport rack for individually pushing the cylindrical batteries that are transported there.
[0011] Preferably, the top of the cylindrical battery transport rack is formed with a chute, and a first cylinder is provided on one side inside the chute. A first pusher block is synchronously driven on one side of the first cylinder, and the first pusher block is laterally located on one side inside the chute. The first cylinder drives the first pusher block to move horizontally inside the chute.
[0012] Preferably, the other end of the cylindrical battery holding platform is provided with a second pusher block to push the cylindrical batteries that fall from the first conveyor belt one by one, and a second cylinder is provided on one side of the second pusher block to move it.
[0013] Compared with the prior art, the beneficial effects of this utility model are: the first motor drives the material traction wheel to roll at the bottom of the material hopper, thereby pulling the cylindrical batteries inside the material hopper to drop, and then the second motor drives the first conveyor belt to run, thereby transporting the cylindrical batteries that have fallen from the material hopper.
[0014] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0015] 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.
[0016] Figure 1 A schematic diagram of a feeding and processing device for cylindrical batteries;
[0017] Figure 2 This is a schematic diagram of the material discharge hopper.
[0018] Figure 3 This is another structural diagram of the discharge hopper;
[0019] Figure 4 This is a schematic diagram of the workbench structure;
[0020] Figure 5 This is another structural diagram of the workbench;
[0021] Figure 6 This is another structural diagram of the workbench.
[0022] The diagram shows: 1. Workbench, 2. Feed hopper, 3. First conveyor belt, 4. Insulating paper traction support frame, 5. Moving table, 6. Second conveyor belt, 7. Cylindrical battery transfer frame, 8. First cylinder, 9. First pusher block, 10. Punching knife fixing frame, 11. First motor, 12. Feed traction wheel, 13. Feed limit frame, 14. Second motor, 15. Cylindrical battery holding platform, 16. Second cylinder, 17. Second pusher block, 18. Connecting frame, 19. Receiving roller, 20. Third cylinder, 21. Punching knife assembly, 22. Insulating paper winding wheel, 23. First pneumatic gripper, 24. Second pneumatic gripper, 26. Third motor, 27. Fourth motor, 28. First traction roller, 29. Second traction roller. 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 protection scope of the present utility model.
[0024] Please see Figure 1-6In this embodiment of the utility model, the feeding and processing device for cylindrical batteries includes a workbench 1 and a hopper 2 for placing multiple cylindrical batteries. The workbench 1 is also equipped with a first conveyor belt 3 for carrying and transporting the cylindrical batteries falling from the hopper 2. A cylindrical battery holding platform 15 is provided on one side of the first conveyor belt 3 for retaining the cylindrical batteries it carries and attaching insulating paper to them. The hopper 2 is equipped with a material traction wheel 12, which is located at the bottom of the hopper 2. The material traction wheel 12 rotates at the bottom of the hopper 2, thereby rotating the cylindrical batteries inside the hopper 2 one by one and dropping them onto the first conveyor belt 3.
[0025] A first motor 11 is provided between the discharge hopper 2 and the discharge traction wheel 12. The first motor 11 is located at the bottom of the outside of the discharge hopper 2. The first motor 11 and the discharge traction wheel 12 are connected by a drive and are driven by a shaft connection. The first motor 11 drives the discharge traction wheel 12 to roll at the bottom of the discharge hopper 2, thereby pulling the cylindrical batteries inside the discharge hopper 2 to discharge.
[0026] A second motor 14 is provided on one side outside the first conveyor belt 3. The second motor 14 is connected to the first conveyor belt 3 by transmission and the second motor 14 is connected to the first conveyor belt 3 by shaft transmission. Thus, the second motor 14 drives the first conveyor belt 3 to run, thereby transporting the cylindrical battery.
[0027] An insulating paper traction support frame 4 is provided on one side of the cylindrical battery holding platform 15, and a moving platform 5 is vertically arranged on the front side of the insulating paper traction support frame 4. The insulating paper traction support frame 4 is vertically fixed on the workbench 1, and a first pneumatic gripper 23 and a second pneumatic gripper 24 are vertically arranged on the left and right sides of the front side of the moving platform 5, respectively. The moving platform 5, together with the first pneumatic gripper 23 and the second pneumatic gripper 24, moves horizontally on the front side of the insulating paper traction support frame 4. Through the synchronous movement and cooperation between the moving platform 5 and the first pneumatic gripper 23 and the second pneumatic gripper 24, the battery falling onto the cylindrical battery is traction support. The cylindrical batteries on the holding platform 15 are gripped by the first pneumatic gripper 23. After the gripping is completed, the moving platform 5 moves the first pneumatic gripper 23 and the second pneumatic gripper 24. At this time, the cylindrical batteries gripped by the first pneumatic gripper 23 are moved to the middle position of the cylindrical battery holding platform 15. The moving platform 5 moves the first pneumatic gripper 23 and the second pneumatic gripper 24 to reset. At this time, the cylindrical batteries located in the middle position of the cylindrical holding platform 7 are located at the bottom of the second pneumatic gripper 24. The second pneumatic gripper 24 clamps and limits the cylindrical batteries so that the insulating paper can be attached to the cylindrical batteries later.
[0028] A punching cutter holder 10 is provided on the other side of the cylindrical battery holding platform 15, and the punching cutter holder 10 is fixed on the workbench 1. A punching cutter assembly 21 is arranged laterally on one side of the punching cutter holder 10, and the punching cutter assembly 21 translates on one side of the punching cutter holder 10 and on the surface of the cylindrical battery holding platform 15. An insulating paper roll wheel 22 is provided between the punching cutter holder 10 and the workbench 1, and the insulating paper roll wheel 22 is rotated inside the workbench 1. The insulating paper roll wheel 22 is wound with insulating paper (not shown in the figure). The rotation of the insulating paper roll wheel 22 loosens the outer insulating paper, and the loosened insulating paper passes through one side of the punching cutter holder 10 and is connected to the insulating paper traction support frame 4 for traction transmission. The insulating paper also connects to the punching hole on one side. The blade assembly 21 contacts each other. When the first pneumatic gripper 23 clamps and transports multiple cylindrical batteries to the middle position of the cylindrical battery holding platform 15 and then clamps and limits them through the second pneumatic gripper 24, the multiple cylindrical batteries are located on the other side of the insulating paper. At this time, the driving punching blade assembly 21 moves out from inside the punching blade fixing frame 10 and punches the insulating paper. During the punching process, the insulating paper can be punched and pasted onto the positive terminal of the multiple cylindrical batteries. After the insulating paper is punched and pasted, the multiple cylindrical batteries are clamped and transported onto the second conveyor belt 6 through the movement and cooperation between the moving platform 5 and the second pneumatic gripper 24, and the punching blade assembly 21 is reset. The insulating paper traction support frame 4 pulls the punched insulating paper so that the unpunched insulating paper can continue to move to one side of the punching blade fixing frame 10 so that the insulating paper can be punched and pasted onto the cylindrical batteries in the future.
[0029] A third cylinder 20 is provided between the punching knife assembly 21 and the punching knife fixing frame 10. The third cylinder 20 is located on the outside of the punching knife fixing frame 10 and is connected to the punching knife assembly 21 for driving. The third cylinder 20 drives the punching knife assembly 21 to extend out of the punching knife fixing frame 10.
[0030] The top of the insulating paper traction support frame 4 is sequentially equipped with a first traction roller 28 and a second traction roller 29. A fourth motor 27 is provided between the insulating paper traction support frame 4 and the first traction roller 28, and the fourth motor 27 is driven to drive the first traction roller 28. A connecting frame 18 is provided on one side of the insulating paper traction support frame 4 and is fixed on the workbench 1. A take-up roller 19 is driven on one side of the connecting frame 18, and a third motor 26 is also provided on the connecting frame 18 to drive the take-up roller 19. When the insulating paper passes through the punching knife fixing frame 10, the insulating paper slides sequentially over the surface of the first traction roller 28, the second traction roller 29, and the first traction roller 28, and finally wraps around the take-up roller 19. Thus, the punched insulating paper can be wound up by the driving cooperation between the third motor 26 and the take-up roller 19. During the winding process, the first traction roller 28, the second traction roller 29, and the first traction roller 28 provide traction and guidance.
[0031] One end of the cylindrical battery holding platform 15 is provided with a second conveyor belt 6 for conveying cylindrical batteries after the insulating paper has been applied, and the other end of the second conveyor belt 6 is provided with a cylindrical battery transport rack 7 for individually pushing the cylindrical batteries transported there.
[0032] The top of the cylindrical battery transport rack 7 is formed with a chute (not shown in the figure), and a first cylinder 8 is provided on one side inside the chute. A first pusher block 9 is synchronously driven on one side of the first cylinder 8, and a first push-pull block 17 is laterally located on one side inside the chute. The first cylinder 8 drives the first pusher block 9 to move horizontally inside the chute. When the second conveyor belt 6 transports the cylindrical battery to the cylindrical battery transport rack 7, the cylindrical battery falls into the chute one by one. At this time, the first cylinder 8 drives the first pusher block 9 to push the cylindrical battery inside the chute one by one.
[0033] The other end of the cylindrical battery holding platform 15 is provided with a second pusher block 17 that pushes the cylindrical batteries that fall from the first conveyor belt 3 one by one. A second cylinder 16 is provided on one side of the second pusher block 17 to move it. Thus, the cylindrical batteries that fall from the first conveyor belt 3 are pushed one by one through the driving cooperation between the second cylinder 16 and the second pusher block 17.
[0034] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention.
Claims
1. A feeding and processing device for cylindrical batteries, characterized in that, The device includes a workbench and a hopper for holding multiple cylindrical batteries. The workbench is also equipped with a first conveyor belt for carrying and transporting the cylindrical batteries falling from the hopper. A cylindrical battery holding platform is provided on one side of the first conveyor belt to hold the cylindrical batteries and attach insulating paper to them. The hopper is equipped with a traction wheel for feeding, which is located at the bottom of the hopper and rotates at the bottom of the hopper. The rotation of the traction wheel can rotate and carry the cylindrical batteries out of the hopper one by one and simultaneously drop them onto the first conveyor belt.
2. The feeding and processing device for cylindrical batteries according to claim 1, characterized in that, A first motor is provided between the hopper and the traction wheel, and the first motor is located at the bottom of the hopper and is connected to the traction wheel. A second motor is provided on one side of the first conveyor belt and is connected to the first conveyor belt.
3. The feeding and processing apparatus for cylindrical batteries according to claim 1, characterized in that, An insulating paper traction support frame is provided on one side of the cylindrical battery retention platform, and a moving platform is vertically provided on the front side of the insulating paper traction support frame. The insulating paper traction support frame is vertically fixed on the worktable, and a first pneumatic gripper and a second pneumatic gripper are vertically provided on the left and right sides of the front side of the moving platform, respectively. The moving platform, together with the first and second pneumatic grippers, moves horizontally on the front side of the insulating paper traction support frame, thereby cooperating with the synchronous movement of the moving platform and the first and second pneumatic grippers.
4. The feeding and processing device for cylindrical batteries according to claim 1, characterized in that, A punching knife holder is provided on the other side of the cylindrical battery retention platform, and the punching knife holder is fixed on the worktable. A punching knife assembly is arranged laterally on one side of the punching knife holder, and the punching knife assembly moves horizontally on one side of the punching knife holder and moves horizontally on the surface of the cylindrical battery retention platform. An insulating paper roll is provided between the punching knife holder and the worktable, and the insulating paper roll is rotated inside the worktable, and the insulating paper roll is wound with insulating paper.
5. The feeding and processing apparatus for cylindrical batteries according to claim 4, characterized in that, A third cylinder is provided between the punching cutter assembly and the punching cutter fixing frame, and the third cylinder is located on the outside side of the punching cutter fixing frame, and the third cylinder is driven by the punching cutter assembly.
6. The feeding and processing apparatus for cylindrical batteries according to claim 3, characterized in that, The top of the insulating paper traction support frame is sequentially equipped with a first traction roller and a second traction roller, and a fourth motor is provided between the insulating paper traction support frame and the first traction roller, and the fourth motor is driven to connect with the first traction roller. A connecting frame is provided on one side of the insulating paper traction support frame and is fixed to the workbench. A receiving roller is driven on one side of the connecting frame, and a third motor for driving the receiving roller is also provided on the connecting frame.
7. The feeding and processing apparatus for cylindrical batteries according to claim 1, characterized in that, One end of the cylindrical battery holding platform is provided with a second conveyor belt for transporting cylindrical batteries with insulating paper applied, and the other end of the second conveyor belt is provided with a cylindrical battery transport rack for individually pushing the transported cylindrical batteries.
8. The feeding and processing apparatus for cylindrical batteries according to claim 7, characterized in that, The top of the cylindrical battery transport rack is formed with a chute, and a first cylinder is provided on one side inside the chute. A first pusher block is synchronously driven on one side of the first cylinder, and the first pusher block is laterally located on one side inside the chute. The first cylinder drives the first pusher block to move horizontally inside the chute.
9. The feeding and processing apparatus for cylindrical batteries according to claim 1, characterized in that, The other end of the cylindrical battery holding platform is provided with a second pusher block that pushes the cylindrical batteries that fall from the first conveyor belt one by one, and a second cylinder is provided on one side of the second pusher block to move it.