Cutting disc cutting automatic tool rest
By designing an automatic blade holder for disc cutting, precise positioning of the blade body and rapid blade change are achieved through linear modules and electrical control, solving the problem of positional deviation after blade assembly replacement in existing technologies, and improving the cutting accuracy and uptime of the equipment.
Patent Information
- Application Number
- CN202520328982.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-27
AI Technical Summary
When replacing the lower blade in existing disc cutter slitting equipment, the relative positions of the lower blade assembly and the upper blade assembly are prone to deviation, resulting in a decrease in slitting accuracy. Furthermore, the replacement process is complex, affecting equipment uptime and operational efficiency.
The automatic slitting tool holder with a disc cutter achieves precise horizontal and vertical positioning of the independent cutter body through the first linear module and vertical moving platform. Combined with electrical control, it reduces human operation errors and supports a quick tool change design with one tool in use and one in standby.
It improves the positioning accuracy of the blade and the efficiency of blade changing, reduces equipment downtime, ensures cutting accuracy and equipment uptime, and simplifies the operation process.
Smart Images

Figure CN223763372U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of disc cutter slitting technology, and specifically to an automatic disc cutter slitting holder. Background Technology
[0002] Electrode / separator / foil slitting is a fundamental process in battery manufacturing. With economic development and social progress, there are very high requirements for the precision, intelligence level, reliability of production performance, and equipment uptime of equipment. At the same time, it is required to be simple, quick, and easy for personnel to learn.
[0003] Figure 6 In the existing structure, each time the lower blade is replaced, the entire lower blade assembly ③ needs to be pulled out of the equipment before the blade can be replaced. After replacing the lower blade, when it is returned to the equipment, the relative positions (parallelism, perpendicularity, positioning) of the lower blade assembly and the upper blade assembly will deviate. This necessitates adjusting the independent blade body ② to meet the slitting requirements. Utility Model Content
[0004] The purpose of this invention is to solve the problems mentioned above in the background technology and to propose an automatic disc cutter holder.
[0005] The objective of this utility model can be achieved through the following technical solutions:
[0006] An automatic slitting tool holder for disc cutters includes an upper blade beam. A first linear module is provided on the upper blade beam, and at least two independent blades are movably mounted on the first linear module. The independent blades can move laterally on the upper blade beam through the first linear module.
[0007] As a further embodiment of this utility model: the independent blade body includes a vertical moving platform, an independent blade body mounting plate, a vertical moving motor, and a blade disc motor. The vertical moving motor is used to drive the vertical moving platform to drive the blade disc motor to move vertically. A cutting component is detachably mounted on the output end of the blade disc motor. The independent blade body mounting plate is installed between the blade disc motor and the vertical moving platform.
[0008] As a further embodiment of this utility model: a blade guard is installed on the independent blade mounting plate near the cutting element.
[0009] As a further embodiment of this utility model, a blade dust removal device is also installed on the blade guard.
[0010] As a further embodiment of this utility model, a drag chain mounting plate is also installed on the vertical moving platform.
[0011] As a further embodiment of this utility model: the upper blade beam includes a side mounting plate, a linear module mounting plate, and a second linear module. The side mounting plate is installed at both ends of the linear module mounting plate, and the second linear module is installed on the linear module mounting plate.
[0012] As a further embodiment of this utility model, a crossbeam adjustment block is also installed on the side mounting plate.
[0013] As a further embodiment of this utility model: body plates are installed at both ends of the upper blade beam, and a lower blade assembly and a lower blade movable component are installed on the body plates below the upper blade beam along the length direction of the upper blade beam. The lower blade movable component is used to drive the lower blade assembly to move laterally. One end of the lower blade assembly is equipped with an ejection mechanism, and the other end of the lower blade assembly is equipped with a lower blade locking component.
[0014] As a further embodiment of this utility model: the lowering blade assembly includes a spacer assembly, a die base plate, and a lower blade assembly. A die support seat is installed at one end of the spacer assembly, and a die reference seat is installed at the other end of the spacer assembly. Both the support seat and the die reference seat are installed on the die base plate.
[0015] As a further embodiment of this utility model: the lowering cutter movable component includes a lowering cutter linear module mounting plate, a third linear module is mounted on the lowering cutter linear module mounting plate, and a die-cutting mold movable base plate is mounted on the third linear module, the die-cutting mold movable base plate being used to support the lowering cutter assembly.
[0016] The beneficial effects of this utility model are as follows: The independent cutter body is fixed on the linear module of the upper cutter beam, achieving lateral positioning of the independent cutter body; through the precise positioning of the first linear module, accurate and digital control of the independent cutter body's position is achieved. Due to the use of electrical control, errors caused by manual operation are reduced, while positioning accuracy is improved. Furthermore, the use of one cutter body for each user enables rapid replacement and repositioning of the independent cutter body. Attached Figure Description
[0017] The present invention will be further described below with reference to the accompanying drawings.
[0018] Figure 1 and 2 This is a schematic diagram of the structure of this utility model;
[0019] Figure 3 This is a schematic diagram of the upper blade crossbeam of this utility model;
[0020] Figure 4 This is a schematic diagram of the structure of the independent blade of this utility model;
[0021] Figure 5This is a structural schematic diagram of the lowering blade assembly and the lowering blade movable part of this utility model;
[0022] Figure 6 This is a diagram of existing technology.
[0023] In the diagram: 1. Upper blade crossbeam; 2. Independent blade body; 3. Body support plate; 4. Lower blade assembly; 5. Lower blade moving part; 6. Ejection mechanism; 7. Lower blade locking part; 8. Electronic blade holder touch screen;
[0024] 101. Side mounting plate; 102. Crossbeam adjusting block; 103. Cable chain; 104. Cable chain groove; 105. Linear module mounting plate; 106. Second linear module;
[0025] 201. Cable chain mounting plate; 202. Vertical moving platform; 203. Independent blade mounting plate; 204. Vertical moving motor; 205. Cutter head motor; 206. Blade guard; 207. Blade dust removal device; 208. Belt guard;
[0026] 401. Handle; 402. Die-cutting mold support; 403. Spacer assembly; 404. Die-cutting mold base plate; 405. Lower blade assembly; 406. Die-cutting mold reference base;
[0027] 501. Support for moving parts; 502. Movable base plate of die-cutting mold; 503. Side positioning plate of die-cutting mold; 504. Guide rail; 505. Third linear module; 506. Mounting plate of the lowering linear module; 507. Guide rail mounting component. Detailed Implementation
[0028] 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 skilled in the art without creative effort are within the protection scope of the present utility model.
[0029] Example 1, please refer to Figure 1-5 As shown, the present invention is an automatic blade holder for disc cutting, including an upper blade beam 1. A first linear module is provided on the upper blade beam 1. At least two independent blades 2 are movably mounted on the first linear module. The independent blades 2 can move laterally on the upper blade beam 1 through the first linear module.
[0030] Example 2, please refer to Figure 1-5As shown, the present invention is an automatic blade holder for disc cutting, including an upper blade beam 1. A first linear module is provided on the upper blade beam 1. At least two independent blades 2 are movably mounted on the first linear module. The independent blades 2 can move laterally on the upper blade beam 1 through the first linear module.
[0031] The independent blade body 2 includes a vertical moving platform 202, an independent blade body mounting plate 203, a vertical moving motor 204, and a blade disc motor 205. The vertical moving motor 204 is used to drive the vertical moving platform 202 to drive the blade disc motor 205 to move vertically. A cutting component is detachably mounted on the output end of the blade disc motor 205. The independent blade body mounting plate 203 is installed between the blade disc motor 205 and the vertical moving platform 202.
[0032] Example 2, please refer to Figure 1-5 As shown, the present invention is an automatic blade holder for disc cutting, including an upper blade beam 1. A first linear module is provided on the upper blade beam 1. At least two independent blades 2 are movably mounted on the first linear module. The independent blades 2 can move laterally on the upper blade beam 1 through the first linear module.
[0033] The independent blade body 2 includes a vertical moving platform 202, an independent blade body mounting plate 203, a vertical moving motor 204, and a blade disc motor 205. The vertical moving motor 204 is used to drive the vertical moving platform 202 to drive the blade disc motor 205 to move vertically. A cutting component is detachably mounted on the output end of the blade disc motor 205. The independent blade body mounting plate 203 is installed between the blade disc motor 205 and the vertical moving platform 202.
[0034] A blade guard 206 is installed on the independent blade mounting plate 203 near the cutting element. A blade dust removal device 207 is also installed on the blade guard 206. A cable chain mounting plate 201 is also installed on the vertical moving platform 202.
[0035] Example 3, please refer to Figure 1-5 As shown, the present invention is an automatic blade holder for disc cutting, including an upper blade beam 1. A first linear module is provided on the upper blade beam 1. At least two independent blades 2 are movably mounted on the first linear module. The independent blades 2 can move laterally on the upper blade beam 1 through the first linear module.
[0036] The independent blade body 2 includes a vertical moving platform 202, an independent blade body mounting plate 203, a vertical moving motor 204, and a blade disc motor 205. The vertical moving motor 204 is used to drive the vertical moving platform 202 to drive the blade disc motor 205 to move vertically. A cutting component is detachably mounted on the output end of the blade disc motor 205. The independent blade body mounting plate 203 is installed between the blade disc motor 205 and the vertical moving platform 202.
[0037] A blade guard 206 is installed on the independent blade mounting plate 203 near the cutting element. A blade dust removal device 207 is also installed on the blade guard 206. A cable chain mounting plate 201 is also installed on the vertical moving platform 202.
[0038] The upper blade crossbeam 1 includes a side mounting plate 101, a linear module mounting plate 105, and a second linear module 106. The side mounting plate 101 is mounted at both ends of the linear module mounting plate 105, and the second linear module 106 is mounted on the linear module mounting plate 105. A crossbeam adjustment block 102 is also mounted on the side mounting plate 101.
[0039] Example 4, please refer to Figure 1-5 As shown, the present invention is an automatic blade holder for disc cutting, including an upper blade beam 1. A first linear module is provided on the upper blade beam 1. At least two independent blades 2 are movably mounted on the first linear module. The independent blades 2 can move laterally on the upper blade beam 1 through the first linear module.
[0040] The independent blade body 2 includes a vertical moving platform 202, an independent blade body mounting plate 203, a vertical moving motor 204, and a blade disc motor 205. The vertical moving motor 204 is used to drive the vertical moving platform 202 to drive the blade disc motor 205 to move vertically. A cutting component is detachably mounted on the output end of the blade disc motor 205. The independent blade body mounting plate 203 is installed between the blade disc motor 205 and the vertical moving platform 202.
[0041] A blade guard 206 is installed on the independent blade mounting plate 203 near the cutting element. A blade dust removal device 207 is also installed on the blade guard 206. A cable chain mounting plate 201 is also installed on the vertical moving platform 202.
[0042] The upper blade crossbeam 1 includes a side mounting plate 101, a linear module mounting plate 105, and a second linear module 106. The side mounting plate 101 is mounted at both ends of the linear module mounting plate 105, and the second linear module 106 is mounted on the linear module mounting plate 105. A crossbeam adjustment block 102 is also mounted on the side mounting plate 101.
[0043] Body plates 3 are installed at both ends of the upper blade beam 1. A lower blade assembly 4 and a lower blade movable component 5 are installed on the body plates 3 below the upper blade beam 1 along the length of the upper blade beam 1. The lower blade movable component 5 is used to drive the lower blade assembly 4 to move laterally. A push-out mechanism 6 is installed at one end of the lower blade assembly 4, and a lower blade locking component 7 is installed at the other end of the lower blade assembly 4.
[0044] The lower blade assembly 4 includes a spacer assembly 403, a die base plate 404, and a lower blade assembly 405. A die support base 402 is installed at one end of the spacer assembly 403, and a die reference base 406 is installed at the other end of the spacer assembly 403. Both the support base 402 and the die reference base 406 are installed on the die base plate 404.
[0045] The lowering cutter movable component 5 includes a lowering cutter linear module mounting plate 506, on which a third linear module 505 is mounted, and on which a die-cutting mold movable base plate 502 is mounted, the die-cutting mold movable base plate 502 is used to support the lowering cutter assembly 4.
[0046] It is worth mentioning that:
[0047] Figure 1 The automatic blade holder for slitting the middle disc consists of an upper blade beam 1, an independent blade body 2, an independent blade body upright plate 3, a lower blade assembly 4, a lower blade moving part and a linear module 5, a lower blade assembly ejection mechanism 6, a lower blade locking part 7, and an electronic blade holder touch screen 8.
[0048] The first linear module is also installed on the upper blade beam 1.
[0049] The upper blade beam 1 and the first straight module consist of a side mounting plate 101, a beam adjusting block 102, a cable chain 103, a cable chain groove 104, a straight module mounting plate 105, and a second straight module 106. The upper blade beam 1 supports the independent blade body 2 and provides a reference for lateral positioning of the independent blade body 2. Simultaneously, with one independent blade body 2 in use and one in reserve, it is possible to replace one independent blade body 2 while the other takes its place to continue cutting, allowing for the replacement of damaged upper blades without affecting the cutting process.
[0050] The independent blade body 2 consists of a cable chain mounting plate 201, a vertical moving platform 202, an independent blade body mounting plate 203, a vertical moving motor 204, a blade disc motor 205, a blade protective cover 206, a blade dust removal device 207, and a belt protective cover 208. The vertical moving platform 202 provides vertical movement and positioning for the blade body, while the independent blade body 2 retains independent adjustment functions in six directions, enabling fine-tuning of the relative position of the blades.
[0051] The lower blade assembly 4 consists of a handle 401, a die support 402, a spacer assembly 403, a die base plate 404, a lower blade assembly 405, and a die reference base 406.
[0052] The lowering blade movable component 5 consists of a movable component support 501, a die movable base plate 502, a die side positioning plate 503, a guide rail 504, a third linear module 505, a lowering blade linear module mounting plate 506, and a guide rail mounting component 507. The lowering blade assembly 4 is mounted on the lowering blade movable component 5. The third linear module 505 drives the entire lowering blade assembly 4 to achieve lateral displacement, thus meeting the equipment's cutting position requirements. Simultaneously, it allows for the installation of multiple lowering blades on the lowering blade assembly 4. By moving the position of the movable component, the cutting point remains unchanged, and the lowering blade can be replaced, achieving "lowering blade positioning compensation."
[0053] It is also important to note that:
[0054] 1. The independent blade body 2 is fixed on the linear module of the upper blade beam 1 to achieve lateral positioning of the independent blade body 2. Precise positioning through the first linear module enables accurate and digital control of the position of the independent blade body 2. Electrical control reduces errors caused by manual operation and improves positioning accuracy. Furthermore, the independent blade body 2 uses a one-in-one-out-of-service configuration, allowing for rapid replacement of the blade. (Rapid replacement of the blade means that when one independent blade body 2 needs to be replaced, it does not occupy downtime. The spare independent blade body 2 is used at the cutting position, and the blade-replacing independent blade body 2 moves to an idle position, allowing for blade replacement without affecting continued cutting, thus not occupying equipment production time.)
[0055] 2. The independent cutter body 2 is fixed on the vertical module, achieving precise positioning and digital control in the vertical direction. This reduces errors and time consumption caused by human intervention.
[0056] 3. The lowering blade assembly 4 is fixed on the lowering blade linear module. The lowering blade assembly 4 moves as a whole through the precise positioning of the lowering blade linear module. The lowering blade assembly 4 has 1-20 identical blades installed at the cutting position, which reduces the number of blade changes. At the same time, when changing the lowering blade, the lowering blade assembly 4 does not need to be pulled out, which solves the inconvenience of the original equipment lowering blade assembly 4 repeatedly being inaccurately positioned after changing the blade, requiring adjustment of the independent upper blade body.
[0057] 4. Combining the precise positioning of the previous three points, the entire equipment can achieve repeatable positioning and digital control of moving parts. It can also record positions through electrical components, enabling functions such as "one-button tool setting." ("One-button tool setting" refers to using a setting button on the screen to move the independent blade 2 and the lowering blade moving component to the set cutting position. Due to the high repeatability, no further parameter adjustments are needed, allowing it to work directly at that position.)
[0058] The above description provides a detailed account of one embodiment of the present invention. However, this description is merely a preferred embodiment and should not be construed as limiting the scope of the present invention. All equivalent variations and improvements made within the scope of the claims of the present invention should still fall within the patent coverage of the present invention.
Claims
1. A disc cutter slitting automatic tool holder comprising an upper cutter beam (1), characterized in that, The upper knife beam (1) is provided with a first linear module, and at least two independent knife bodies (2) are movably installed on the first linear module.
2. The automatic cutter holder for circular knife slitting according to claim 1, characterized in that, The independent knife body (2) comprises a vertical moving platform (202), an independent knife body mounting plate (203), a vertical moving motor (204) and a cutter motor (205), the vertical moving motor (204) is used for driving the vertical moving platform (202) to drive the cutter motor (205) to vertically move, a cutting piece is detachably installed at an output end of the cutter motor (205), and the independent knife body mounting plate (203) is installed between the cutter motor (205) and the vertical moving platform (202).
3. The automatic knife holder for circular knife slitting according to claim 2, characterized in that, A blade protection cover (206) is installed on the independent knife body mounting plate (203) and close to the cutting piece.
4. The automatic slitter cam of a circular knife slitting according to claim 3, characterized in that, A blade dust removal device (207) is further installed on the blade protection cover (206).
5. The automatic slitter cam of a circular knife slitting according to claim 2, characterized in that, A drag chain mounting plate (201) is further installed on the vertical moving platform (202).
6. The automatic slitter cam of a circular knife slitting according to claim 1, characterized in that, The upper knife beam (1) comprises a side vertical mounting plate (101), a linear module mounting plate (105) and a second linear module (106), the side vertical mounting plate (101) is installed at two ends of the linear module mounting plate (105), and the second linear module (106) is installed on the linear module mounting plate (105).
7. A slitting automatic tool holder for a circular knife according to claim 6, characterized in that, A beam adjusting block (102) is further installed on the side vertical mounting plate (101).
8. The automatic knife holder for circular knife slitting according to claim 1, characterized in that, Body vertical plates (3) are installed at two ends of the upper knife beam (1), a lower knife assembly (4) and a lower knife movable component (5) are installed below the upper knife beam (1) and along the length direction of the upper knife beam (1) on the body vertical plate (3), the lower knife movable component (5) is used for driving the lower knife assembly (4) to move transversely, an ejection mechanism (6) is installed at one end of the lower knife assembly (4), and a lower knife locking component (7) is installed at the other end of the lower knife assembly (4).
9. The automatic slitter cam of a circular knife slitting according to claim 8, characterized in that, The lower knife assembly (4) comprises a spacer sleeve group (403), a cutter mold bottom plate (404) and a lower blade group (405), one end of the spacer sleeve group (403) is provided with a cutter mold support seat (402), the other end of the spacer sleeve group (403) is provided with a cutter mold reference seat (406), and the support seat (402) and the cutter mold reference seat (406) are both installed on the cutter mold bottom plate (404).
10. The automatic knife holder for circular knife slitting according to claim 8, characterized in that, The lower knife movable component (5) comprises a lower knife linear module mounting plate (506), a third linear module (505) is installed on the lower knife linear module mounting plate (506), and a cutter mold movable bottom plate (502) is installed on the third linear module (505), the cutter mold movable bottom plate (502) is used for supporting the lower knife assembly (4).