An electrode slicing machine
Patent Information
- Application Number
- CN202522108175.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-09-30
AI Technical Summary
[0005]本实用新型要解决的技术问题是提供一种电极切片机以解决现有难以对材料均匀施压,导致在切片中可能出现材料褶皱、位移的问题
[0036] 1. By setting up a linkage part at the top of the main body and a slicing part at the bottom, the cam in the linkage part rotates and drives the linkage rod to rotate. In conjunction with the elastic component to stabilize the rotating block, the cutting rod drives the cutting head to move vertically along the cutting groove of the support table, thereby achieving precise cutting of materials and avoiding material wrinkles or slippage caused by uneven manual handling, thus improving the stability of slicing.
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Figure CN224750229U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of battery manufacturing technology, and in particular to an electrode slicing machine. Background Technology
[0002] A motor slicing machine is a piece of equipment used to slice motor materials. It precisely cuts the motor materials to form slices with specific sizes, shapes and thicknesses to meet the needs of subsequent production, research and development or testing. It is an important core piece of equipment in the battery manufacturing process.
[0003] In existing technologies, manual cutting motor slicers usually rely on manual hand support or simple clamps to fix the material. When manually supporting the material, it is difficult to maintain uniform pressure on the material with hand strength. Simple clamps only clamp in one direction, resulting in large differences in pressure on different areas of the material. Thin materials are prone to wrinkles due to excessive local pressure or slippage due to insufficient pressure, thereby reducing the quality of finished products and manufacturing efficiency.
[0004] Therefore, this application provides an electrode slicer to meet the requirements. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide an electrode slicer to solve the problem that it is difficult to apply pressure to the material evenly, which may cause material wrinkles and displacement during slicing.
[0006] To solve the problems mentioned above, this utility model is implemented through the following technical solution.
[0007] An electrode slicer, comprising:
[0008] main body;
[0009] The main body includes a top linkage section and a bottom slicing section;
[0010] The linkage unit includes:
[0011] The middle slider is slidably connected to the top of the main body;
[0012] A linkage rod has one end located inside the main body and the other end extending to the top of the main body and rotatably connected to the top of the middle slider. A rotating block is rotatably connected to the bottom of the linkage rod.
[0013] A limiting block is fixedly connected inside the main body to limit the movement of the linkage rod;
[0014] The cam is rotatably connected inside the main body, and drives the linkage rod to rotate after rotation;
[0015] The elastic element has one end fixedly connected to the inner wall of the main body and the other end fixedly connected to the rotating block of the linkage rod;
[0016] A cutting rod is slidably connected to the top of the main body and extends downward to the slicing section;
[0017] The cutting head is fixedly connected to the bottom of the cutting rod;
[0018] The slice portion includes:
[0019] A support platform is fixedly connected to the bottom of the main body and is used to support the material to be cut and to provide a cutting groove for the cutting head.
[0020] Preferably, springs are installed between the bottom of the intermediate slider and the inner wall of the main body, and between the cutting rod and the top of the main body. A rotating component is rotatably connected to one end of the linkage rod located at the top of the main body, and the rotating component is located at the top of the limiting block.
[0021] Preferably, the linkage further includes a rotating rod, which is fixedly connected to one side of the cam, and the rotating rod is driven to rotate by the operator manually rotating the rotating rod.
[0022] Preferably, the slicing section further includes a collection box, which is slidably connected to the main body and located at the bottom of the support platform, for collecting the material cut by the cutting head and the support platform.
[0023] Preferably, it further includes:
[0024] Tensioning mechanism;
[0025] The tensioning mechanism includes:
[0026] Two rotating cylinders are provided, located on both sides of the main slice end, and a rotating shaft is provided inside;
[0027] The clamping components are provided in four pairs, which are attached to the two ends of the two rotating drums to clamp the material to be cut.
[0028] The threaded end is configured as the portion of the rotating shaft extending outward from the rotating cylinder;
[0029] A gasket is fitted onto the outside of the threaded end;
[0030] The nut is rotatably connected to the outside of the threaded end and is configured to drive the washer to fit against one end of the rotating drum.
[0031] A sliding component, fixedly connected to the rotating shaft, is used to drive the rotating drum to slide;
[0032] Two guide rails are provided, which are respectively fixed to the side walls on both sides of the main body slice end, guiding the slider to slide along its own outer side;
[0033] The connecting rod is fixedly connected at both ends to the sliding parts located on both sides of the main body slice end, and is used to drive the two rotating drums to move synchronously.
[0034] Preferably, the tops of both rotating cylinders are flush with the top of the support platform.
[0035] This invention provides an electrode slicer. Compared with the prior art, it has the following advantages:
[0036] 1. By setting up a linkage part at the top of the main body and a slicing part at the bottom, the cam in the linkage part rotates and drives the linkage rod to rotate. In conjunction with the elastic component to stabilize the rotating block, the cutting rod drives the cutting head to move vertically along the cutting groove of the support table, thereby achieving precise cutting of materials and avoiding material wrinkles or slippage caused by uneven manual handling, thus improving the stability of slicing.
[0037] 2. By setting up a tensioning mechanism, including components such as a rotating drum, clamping parts, threaded ends, washers, nuts, sliding parts, guide rails, and connecting rods, the clamping parts fix the material to be cut, the rotating drum is fixed by the threaded connection between the nut and the threaded end, the sliding parts slide on the guide rail to drive the rotating drum to move, and the connecting rod ensures that the two rotating drums move synchronously, thereby evenly tensioning the material to be cut and avoiding wrinkles or slippage of the material due to uneven local force. This solves the problem that it is difficult to apply pressure evenly in the existing technology by manual hand or simple clamps. Attached Figure Description
[0038] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0039] Figure 2 This is a front structural diagram of the present utility model.
[0040] Figure 3 This is a partial cross-sectional structural diagram of the main body of this utility model.
[0041] Figure 4 This utility model Figure 3 Enlarged structural diagram at point B.
[0042] Figure 5 This is a schematic diagram of the bottom structure of this utility model.
[0043] Figure 6 This utility model Figure 1 Enlarged structural diagram at point A in the middle.
[0044] The attached figures are labeled as follows:
[0045] 10. Main body; 11. Intermediate slider; 12. Linkage rod; 13. Limiting block; 14. Cam; 141. Rotating rod; 15. Elastic component; 16. Cutting rod; 161. Cutting head; 17. Support platform; 18. Collection box; 20. Rotary drum; 21. Clamping component; 22. Threaded end; 23. Washer; 24. Nut; 25. Sliding component; 26. Guide rail; 27. Connecting rod. Detailed Implementation
[0046] The present invention will be further described below with reference to specific embodiments. It should be understood that these embodiments are only used to illustrate the present invention and are not intended to limit the scope of protection of the present invention.
[0047] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.
[0048] Example 1: Refer to Figures 1-5 An electrode slicer, comprising:
[0049] Main body 10;
[0050] The main body 10 includes a top linkage part and a bottom slicing part;
[0051] The coordination department includes:
[0052] The middle slider 11 is slidably connected to the top of the main body 10;
[0053] Linkage rod 12, one end is set inside the main body 10, the other end extends to the top of the main body 10 and is rotatably connected to the top of the middle slider 11, and a rotating block is rotatably connected to the bottom of the linkage rod 12;
[0054] The limiting block 13 is fixedly connected inside the main body 10 to limit the movement of the linkage rod 12;
[0055] Cam 14 is rotatably connected inside the main body 10, and drives linkage rod 12 to rotate after rotation;
[0056] The elastic element 15 is fixedly connected at one end to the inner wall of the main body 10 and at the other end to the rotating block of the linkage rod 12;
[0057] The cutting rod 16 is slidably connected to the top of the main body 10 and extends downward to the slicing part;
[0058] The cutting head 161 is fixedly connected to the bottom of the cutting rod 16;
[0059] The slicing section includes:
[0060] The support platform 17 is fixedly connected to the bottom of the main body 10, and is used to support the material to be cut and provide a cutting groove for the cutting head 161.
[0061] Furthermore, as shown in the figure, both the cutting head 161 and the support platform 17 can be disassembled and replaced to cut slices of different sizes.
[0062] Springs are installed between the bottom of the intermediate slider 11 and the inner wall of the main body 10, and between the cutting rod 16 and the top of the main body 10. A rotating component is rotatably connected to one end of the linkage rod 12 at the top of the main body 10, and the rotating component is located at the top of the limit block 13.
[0063] Furthermore, as shown in the figure, the energy stored and released by the deformation of the spring is utilized to achieve automatic reset of the intermediate slider 11 and the cutting rod 16. The transmission component of the linkage rod 12 located at the top of the limit block 13 rotates when the intermediate slider 11 moves, ensuring smooth rotational connection between the linkage rod 12 and the intermediate slider 11 and avoiding jamming.
[0064] The linkage also includes a rotating rod 141, which is fixedly connected to one side of the cam 14. The rotating rod 141 is rotated by the operator manually rotating it.
[0065] Furthermore, as shown in the figure, the rotational motion is transmitted to the cam 14 by directly driving the rotating rod 141 by human power, and then converted into the vertical motion of the cutting head 161 by the linkage rod 12 to complete the cutting work.
[0066] The slicing section also includes a collection box 18, which is slidably connected to the main body 10 and located at the bottom of the support platform 17, for collecting the material cut by the cutting head 161 and the support platform 17.
[0067] Furthermore, as shown in the figure, the collection box 18 can automatically collect cutting waste, keep the work area clean, and reduce manual cleaning time.
[0068] Working process and principle: The operator manually rotates the rotating rod 141, which drives the cam 14 to rotate. The cam 14 then drives the linkage rod 12 to rotate. Figure 3As shown, clockwise rotation causes the rotating component at the top of the cutting rod 16 to press down, which in turn converts the rotational motion into the vertical downward movement of the cutting head 161 via the linkage rod 12, allowing the cutting head 161 to cut the material along the cutting groove. Springs between the bottom of the intermediate slider 11 and the inner wall of the main body 10, and between the cutting rod 16 and the top of the main body 10, utilize the energy stored in their elastic deformation after cutting to automatically reset the intermediate slider 11 and the cutting rod 16. The limiting block 13 restricts the movement trajectory of the linkage rod 12, while the elastic component 15 stabilizes the rotating block of the linkage rod 12. The cut waste falls into the collection box 18 below the support platform 17 for automatic collection, keeping the working area clean. The cutting head 161 and the support platform 17 are detachable and replaceable to adapt to the cutting needs of different material specifications.
[0069] Example 2: Refer to Figures 1-3 , Figure 4 and Figure 6 It also includes:
[0070] Tensioning mechanism;
[0071] The tensioning mechanism includes:
[0072] Two rotating cylinders 20 are provided, located on both sides of the slicing end of the main body 10, and a rotating shaft is provided inside;
[0073] Clamping components 21 are provided in four pairs, which are attached to the two ends of the two rotating drums 20 to clamp the material to be cut.
[0074] The threaded end 22 is configured to extend outward from the rotating cylinder 20 along the rotating shaft;
[0075] Washer 23 is fitted onto the outside of threaded end 22;
[0076] Nut 24 is rotatably connected to the outside of threaded end 22 and is configured to drive washer 23 to fit against one end of rotating drum 20;
[0077] Sliding element 25 is fixedly connected to the rotating shaft and is used to drive the rotating drum 20 to slide.
[0078] Two guide rails 26 are provided, which are respectively fixed to the side walls of the slice end of the main body 10 and guide the sliding member 25 to slide along its own outer side;
[0079] The connecting rod 27 is fixedly connected at both ends to the sliding parts 25 located on both sides of the slice end of the main body 10, and is used to drive the two rotating drums 20 to move synchronously.
[0080] Furthermore, as shown in the figure, the material to be cut is fixed and moved by the rotating cylinder 20 and the clamping member 21, thereby evenly tightening the material to be cut and avoiding wrinkles or slippage caused by uneven local stress, thus improving the slice quality. The two sliding members 25 are connected by the connecting rod 27 to prevent the two sliding members 25 from being misaligned.
[0081] The tops of both rotating cylinders 20 are flush with the top of the support platform 17.
[0082] Furthermore, such as Figure 2 As shown, the flush design ensures that the material placement surface and the cutting surface are on the same plane, eliminating the need for manual height alignment. This ensures that the material surface is subjected to uniform force during cutting and avoids cutting deviations caused by height differences.
[0083] Working process and principle: The material to be cut is clamped by the clamping member 21 and rolled to the outside of a rotating drum 20. The rotating drum 20 is moved so that its own shaft is inserted into itself. The rotating drum 20 is fixed to its own shaft through the threaded connection between the washer 23, the nut 24 and the threaded end 22. One end of the movable material to be cut on the outside of the rotating drum 20 is moved to the outside of the other rotating drum 20 and fixed by the clamping member 21. At this time, the operator pushes the sliding member 25. The sliding member 25 slides along the outside of the guide rail 26 under its guidance, adjusting the position of the rotating drum 20 and the material to be cut on the rotating drum 20. Since the top of the rotating drum 20 is flush with the top of the support platform 17, the material placement surface and the cutting surface are on the same plane. The material surface is subjected to uniform force during cutting, avoiding cutting deviation due to height difference. At this time, the rotating drum 20, which did not roll the material to be cut around its own outside before rotating, moves the material to be cut from one side of the main body 10 to the other side. During this process, the staff rotates the rotating rod 141 to cut the material to be cut. The cut material falls downward into the collection box 18.
[0084] Therefore, although the present invention has been described herein with reference to specific embodiments thereof, freedom of modification, various changes and substitutions are also within the scope of the above disclosure, and it should be understood that in some cases, certain features of the present invention may be adopted without departing from the scope and spirit of the invention and without corresponding use of other features. Thus, many modifications can be made to adapt a particular environment or material to the essential scope and spirit of the present invention. The present invention is not intended to be limited to the specific terms used in the following claims and / or the specific embodiments disclosed as the best mode of carrying out the present invention, but the present invention will include any and all embodiments and equivalents falling within the scope of the appended claims. Therefore, the scope of the present invention will be determined only by the appended claims.
Claims
1. An electrode slicer, characterized in that, include: Main body (10); The main body (10) includes a top linkage part and a bottom slicing part; The linkage unit includes: The middle slider (11) is slidably connected to the top of the main body (10); The linkage rod (12) has one end located inside the main body (10) and the other end extends to the top of the main body (10) and is rotatably connected to the top of the intermediate slider (11). A rotating block is rotatably connected to the bottom of the linkage rod (12). The limiting block (13) is fixedly connected inside the main body (10) to limit the movement of the linkage rod (12); The cam (14) is rotatably connected inside the main body (10), and after rotation, it drives the linkage rod (12) to rotate. The elastic element (15) is fixedly connected at one end to the inner wall of the main body (10) and at the other end to the rotating block of the linkage rod (12); The cutting rod (16) is slidably connected to the top of the main body (10) and extends downward to the slicing part; The cutting head (161) is fixedly connected to the bottom of the cutting rod (16); The slicing portion includes: The support platform (17) is fixedly connected to the bottom of the main body (10) and is used to support the material to be cut and provide a cutting groove for the cutting head (161).
2. The electrode slicer according to claim 1, characterized in that, Springs are installed between the bottom of the intermediate slider (11) and the inner wall of the main body (10), and between the cutting rod (16) and the top of the main body (10). A rotating component is rotatably connected to one end of the linkage rod (12) located at the top of the main body (10), and the rotating component is located at the top of the limiting block (13).
3. An electrode slicer according to claim 1, characterized in that, The linkage also includes a rotating rod (141), which is fixedly connected to one side of the cam (14). The rotating rod (141) is driven to rotate by the operator manually rotating the rotating rod (141).
4. An electrode slicer according to claim 1, characterized in that, The slicing section further includes a collection box (18), which is slidably connected to the main body (10) and located at the bottom of the support platform (17), for collecting the material cut by the cutting head (161) and the support platform (17).
5. An electrode slicer according to claim 1, characterized in that, Also includes: Tensioning mechanism; The tensioning mechanism includes: Two rotating cylinders (20) are provided, located on both sides of the slicing end of the main body (10), and a rotating shaft is provided inside; Clamping components (21) are provided in four pairs, which are attached to the two ends of the two rotating cylinders (20) to clamp the material to be cut; The threaded end (22) is configured as a portion that extends outward from the rotating shaft of the rotating cylinder (20); A gasket (23) is fitted onto the outside of the threaded end (22); Nut (24), rotatably connected to the outside of the threaded end (22), is configured to drive the washer (23) to fit against one end of the rotating drum (20); A sliding member (25) is fixedly connected to the rotating shaft and is used to drive the rotating drum (20) to slide. Two guide rails (26) are provided, which are respectively fixed to the two side walls of the slice end of the main body (10) to guide the sliding member (25) to slide along its own outer side; The connecting rod (27) is fixedly connected at both ends to the sliding member (25) located on both sides of the slice end of the main body (10), and is used to drive the two rotating drums (20) to move synchronously.
6. An electrode slicer according to claim 5, characterized in that, The tops of both rotating cylinders (20) are flush with the top of the support platform (17).