Machining tool for anode plate

Through the design of split fixing components and pressing mechanism, the problems of poor fixability and difficulty in disassembly during the processing process are solved, efficient anode plate processing and stable bonding rate are achieved, and manufacturing costs are reduced.

CN223210955UActive Publication Date: 2025-08-12KOTA TECH CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422524420.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-08-12
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

In the prior art, the clamping of the anode plate has poor fixation, which leads to easy deformation during cutting and difficulty in disassembly, affecting processing efficiency and fitting rate.

Method used

The split fixing assembly and compression mechanism are adopted, combined with the cylindrical bearing cylinder and shaft core design, and the anode plate is stable and fast-disassembled and assembly through threaded holes and quick-disassembly bolts to ensure that there is no deformation during the processing.

Benefits of technology

The processing efficiency and fit rate of the anode plate are improved, ensuring that the shaping state of the anode plate remains unchanged after processing, simplifying the loading and unloading process, and reducing manufacturing costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223210955U_ABST
    Figure CN223210955U_ABST
Patent Text Reader

Abstract

The utility model provides a machining tool for an anode plate. The machining tool comprises a tool body and a pressing mechanism. The tool body is provided with a cylindrical bearing cylinder and is used for providing a supporting round surface for the anode plate; the pressing mechanism is installed on the tool body and used for tightly pressing the anode plate on the bearing cylinder in an attached mode. The tool is simple in structure, low in manufacturing cost and capable of achieving rapid disassembly and assembly operation of the anode plate, meanwhile, the machining efficiency of the anode plate can be effectively improved, and it can be guaranteed that the attachment rate of the anode plate after machining is not changed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of electrolytic copper foil, and in particular relates to a processing tool for an anode plate. Background Art

[0002] Electrolytic copper foil is a type of copper foil produced through an electrolytic process. It is mainly used to manufacture printed circuit boards (PCBs) and lithium-ion batteries, and is widely used in home appliances, communications, computing (3C), new energy and other industries. In the entire production process of electrolytic copper foil, electrolytic deposition is a very important step. During the electrolytic deposition process, high-purity electrolytic copper or scrap copper wire is used as raw material and dissolved in sulfuric acid to make a copper sulfate solution. In the prior art, electrolytic deposition is mainly achieved through a foil machine, in which the anode plate is an extremely important component. The anode plate of the foil machine in the prior art is usually formed by pressing or other forms and then fixed to a holding fixture, and then cut and formed. The holding fixture in the prior art is usually a large reel-shaped roller body, which is pressed and fixed to the reel by a hoop for shaping, and then cut after shaping. However, this method has the following disadvantages: First, due to its large overall size, the installation of a full ring of clamps is difficult. Second, the clamps' poor fixation can adversely affect processing. Furthermore, because the clamps can only be installed in the center of the anode plate, the cutting process cannot be completed on the tooling. If the clamps are removed before cutting, they are prone to deformation, resulting in a low fit rate for subsequent anode plates. Furthermore, the clamp removal process is very inconvenient, seriously reducing processing efficiency. Summary of the Invention

[0003] In response to the problems existing in the above-mentioned prior art, the utility model provides a processing tool for anode plates. The tool has a simple structure, low manufacturing cost, and can realize the rapid disassembly and assembly of the anode plates. At the same time, it can effectively improve the processing efficiency of the anode plates and ensure that the fitting rate of the anode plates will not change after processing.

[0004] In order to achieve the above-mentioned purpose, the utility model provides a processing tool for an anode plate, comprising a tool body and a pressing mechanism;

[0005] The tooling body has a cylindrical supporting cylinder, which is used to provide a supporting circular surface for the anode plate;

[0006] The pressing mechanism is installed on the tool body and is located at the end edge of the supporting cylinder. The pressing mechanism is used to press the anode plate onto the supporting cylinder in a close fit.

[0007] The center of the tool body has an axis core.

[0008] The two ends of the shaft core extend to the outside of the two ends of the bearing cylinder.

[0009] The tool body is provided with an internal support between the shaft core and the bearing cylinder. The periphery of the internal support is fixedly connected to the bearing cylinder, and the center thereof is fixedly connected to the shaft core.

[0010] Furthermore, to more securely securely connect the anode plate to the support cylinder, a plurality of threaded holes are provided on the annular portion of the support cylinder between the two end edges. Thus, when the anode plate is securely connected to the support cylinder, positioning bolts threadably engaged with the threaded holes can be used to further enhance the positioning and locking of the anode plate. This, in conjunction with the clamping mechanism, improves the positioning effect, ensuring that the anode plate will not deform during subsequent processing.

[0011] Furthermore, in order to achieve the clamping and positioning of the shaft core end by quickly splicing together, two sets of split fixing components are also included, and the two sets of fixing components respectively cooperate with the two ends of the shaft core and are fixed to the shaft core; the fixing components include multiple pressure plates of the same shape and size; the center of the pressure plate is provided with an arc-shaped notch, and its outer edge is a flat structure; the multiple pressure plates are adjacent to each other in sequence, and the multiple arc-shaped notches in the central area form a circular positioning hole with a size that matches the shaft core, and are fitted onto the outer side of the shaft core end through the circular positioning hole. In traditional technology, a fixed plate with an integrated structure is often used. On the one hand, this fixed plate has a small contact area and low bearing strength, which is prone to deformation during the clamping process. On the other hand, it is difficult to disassemble after deformation, which affects the processing efficiency. This split fixing structure can not only quickly fix the tooling to the boring machine for processing, but also quickly remove the tooling from the boring machine, which is beneficial to improving processing efficiency. At the same time, it can also effectively ensure the fixing strength, thereby strengthening the overall connection strength between the tooling and the boring machine.

[0012] Furthermore, in order to increase the stability and reliability of the overall structure of the tooling, two side plates are also included. The side plates are annular plates, and the center has a through hole that is adapted to the size of the shaft core, and the outer diameter is adapted to the inner diameter of the supporting cylinder; the two side plates are relatively distributed on both sides of the internal support, and the center is fixedly mounted on the outer side of the end of the shaft core through the through hole, and the outer edge is fixedly connected to the inner circular surface of the supporting cylinder.

[0013] Furthermore, in order to be able to fix the anode plate more closely and stably on the supporting cylinder, and at the same time, to be able to realize the rapid assembly and disassembly of the anode plate on the tooling, the clamping mechanism is two clamping components, and the two clamping components are respectively connected to the two end edges of the supporting cylinder; the clamping component includes a plurality of clamping units uniformly distributed along the circumferential direction of the end of the supporting cylinder, and the clamping unit includes a pressure plate body and a quick-release bolt; the outer end of the pressure plate body is fixedly connected to the end edge of the supporting cylinder, and an accommodating space is formed between its inner section and the supporting cylinder, and at the same time, a long through hole extending along the height direction of the supporting cylinder is opened on the inner section of the pressure plate body; the quick-release bolt is inserted into the long through hole to lock and position the anode plate entering the accommodating space. By opening a long through hole on the pressure plate body and inserting a quick-release bolt in the long through hole, it is not only convenient to use the quick-release bolt to lock and position the edge of the anode plate entering the empty space, but also, when removing the anode plate, the quick-release bolt does not need to be removed completely. It is only necessary to move the quick-release bolt toward the outside of the long hole for a distance after releasing the locking connection state to remove the anode plate, thereby achieving the purpose of quick disassembly. At the same time, the processing operation of the middle part of the anode plate will not be affected by the operation at the edge.

[0014] Furthermore, in order to facilitate the rapid assembly and positioning of the anode plate, the pressure plate body is L-shaped as a whole, with a vertical section and a horizontal section. The vertical section serves as the outer end of the pressure plate body, and the horizontal section serves as the inner section of the pressure plate body, and the inner end of the horizontal section is wedge-shaped.

[0015] As a preference, the quick-release bolt includes a bolt body, a locking nut and a washer.

[0016] In the present invention, by making the tool body have a cylindrical supporting cylinder, it is convenient to provide a fitting fixed support circular surface for the anode plate, which is conducive to stably fixing the anode plate on the supporting cylinder. The clamping mechanism is arranged at the end edge of the supporting cylinder, which can facilitate locking and fixing the edge of the anode plate to the edge of the supporting cylinder, thereby solving the disadvantage that the clamping mechanism in the traditional technology needs to be arranged in the central area of the anode plate, which is conducive to the subsequent cutting operation of the central area of the anode plate after the anode plate is locked and positioned, thereby improving the processing efficiency of the anode plate. At the same time, it can ensure that the shaping state of the anode plate will not change during the cutting process, which is conducive to avoiding the deformation of the anode plate during the cutting process, and effectively ensures that the fitting rate of the anode plate will not change after processing.

[0017] The tooling has a simple structure and low manufacturing cost, and can realize the rapid disassembly and assembly of the anode plate. At the same time, it can effectively improve the processing efficiency of the anode plate and ensure that the fitting rate of the anode plate will not change after processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a structural diagram of the utility model;

[0019] Figure 2 It is a structural schematic diagram of the fixing assembly in the present invention;

[0020] Figure 3 It is a schematic diagram of the assembly of the compacting mechanism and the bearing cylinder in the utility model.

[0021] In the figure: 1. Tool body, 2. Clamping mechanism, 3. Bearing cylinder, 4. Shaft core, 5. Internal support, 6. Fixing assembly, 7. Pressure plate, 8. Circular positioning hole, 9. Side plate, 10. Pressure plate body, 11. Quick-release bolt, 12. Long through hole, 13. Anode plate, 14. Vertical section, 15. Horizontal section, 16. Bolt body, 17. Locking nut, 18. Washer, 19. Threaded hole. DETAILED DESCRIPTION

[0022] The present invention will be further described below with reference to the accompanying drawings.

[0023] like Figures 1 to 3 As shown, the present invention provides a tool for processing anode plates, comprising a tool body 1 and a pressing mechanism 2;

[0024] The tooling body 1 has a cylindrical supporting cylinder 3, which is used to provide a supporting circular surface for the anode plate;

[0025] The pressing mechanism 2 is installed on the tool body 1 and is located at the end edge of the supporting cylinder 3 . The pressing mechanism 2 is used to press the anode plate onto the supporting cylinder 3 in a close fit.

[0026] The center of the tool body 1 has an axis core 4 .

[0027] Both ends of the shaft core 4 extend to the outside of both ends of the supporting cylinder 3 .

[0028] The tool body 1 is provided with an internal support 5 between the shaft core 4 and the bearing cylinder 3 . The periphery of the internal support 5 is fixedly connected to the bearing cylinder 3 , and the center thereof is fixedly connected to the shaft core 4 .

[0029] In order to more closely securely connect the anode plate to the body of the supporting cylinder, a plurality of threaded holes 19 are formed in the annular portion of the supporting cylinder 3 between the two end edges. Thus, when the anode plate is closely connected to the body of the supporting cylinder, positioning bolts threadably engaged with the threaded holes can be used to further enhance the positioning and locking effect of the anode plate, thereby cooperating with the clamping mechanism to improve the positioning effect and ensure that the anode plate will not be deformed during subsequent processing.

[0030] As a preference, the internal support 5 is a cross-shaped support. Of course, other shapes of internal supports 5 can also be used to strengthen the bearing strength of the bearing cylinder 3 through the internal support 5.

[0031] In order to achieve clamping and positioning of the shaft core end by quickly assembling, two sets of split fixing assemblies 6 are also included, and the two sets of fixing assemblies 6 are respectively matched with the two ends of the shaft core 4; the fixing assemblies 6 include multiple pressure plates 7 of the same shape and size; the center of each pressure plate 7 is provided with an arc-shaped notch, and its outer edge is a flat structure; the multiple pressure plates 7 are adjacent to each other in sequence, and the multiple arc-shaped notches in the central area form a circular positioning hole 8 with a size that matches the shaft core 4, and the pressure plates 7 are fitted onto the outer side of the end of the shaft core 4 through the circular positioning hole 8. In traditional technology, a fixed plate with an integrated structure is often used. On the one hand, this fixing plate has a small contact area and low bearing strength, which makes it easy to deform during the clamping process. On the other hand, it is difficult to disassemble after deformation, which affects processing efficiency. This split fixing structure not only allows the tooling to be quickly fixed to the boring machine for processing, but also allows the tooling to be quickly removed from the boring machine, which is beneficial to improving processing efficiency. At the same time, it can also effectively ensure the fixing strength, thereby strengthening the overall connection strength between the tooling and the boring machine.

[0032] In order to increase the stability and reliability of the overall structure of the tooling, it also includes two side plates 9, which are annular plates with a through hole in the center that is adapted to the size of the shaft core 4, and whose outer diameter is adapted to the inner diameter of the supporting cylinder 3; the two side plates 9 are relatively distributed on both sides of the internal support 5, and their centers are fixedly sleeved on the outer side of the end of the shaft core 4 through the through hole, and their outer edges are fixedly connected to the inner circular surface of the supporting cylinder 3.

[0033] In order to make the anode plate fit more closely and stably fixedly connected to the supporting cylinder, and at the same time, to realize the rapid assembly and disassembly of the anode plate on the tooling, the clamping mechanism 2 is two clamping components, and the two clamping components are respectively connected to the end edges of the supporting cylinder 3; the clamping component includes a plurality of clamping units uniformly distributed along the circumference of the end of the supporting cylinder 3, and the clamping unit includes a pressure plate body 10 and a quick-release bolt 11; the outer end of the pressure plate body 10 is fixedly connected to the end edge of the supporting cylinder 3, and an accommodating space is formed between its inner section and the supporting cylinder 3, and at the same time, a long through hole 12 extending along the height direction of the supporting cylinder is opened on the inner section of the pressure plate body 10; the quick-release bolt 11 is inserted into the long through hole 12 to lock and position the anode plate entering the accommodating space. By opening a long through hole on the pressure plate body and inserting a quick-release bolt in the long through hole, it is not only convenient to use the quick-release bolt to lock and position the edge of the anode plate entering the empty space, but also, when removing the anode plate, the quick-release bolt does not need to be removed completely. It is only necessary to move the quick-release bolt toward the outside of the long hole for a distance after releasing the locking connection state to remove the anode plate, thereby achieving the purpose of quick disassembly. At the same time, the processing operation of the middle part of the anode plate will not be affected by the operation at the edge.

[0034] To facilitate rapid assembly and positioning of the anode plate, the platen body 10 is L-shaped, comprising a vertical section 14 and a horizontal section 15. The vertical section 14 serves as the outer end of the platen body 10, while the horizontal section 15 serves as the inner section of the platen body 10. The inner end of the horizontal section 15 is wedge-shaped. Preferably, the bottom surface of the horizontal section 15 is flat.

[0035] As a preferred embodiment, the quick-release bolt 11 includes a bolt body 16, a locking nut 17, and a washer 18. There may be two locking nuts 17, which are respectively located on the upper and lower sides of the horizontal section 15 of the pressure plate body 10. The washer 18 is located on the upper side of the horizontal section 15 and below the locking nut 17 on the upper side. The bolt body 16 passes through the locking nut 17 on the upper side, the washer 18, the long through hole 12, and the locking nut 17 on the lower side in sequence. The two locking nuts 17 are connected to the bolt body 16 through threaded engagement, and the locking nut 17 on the upper side presses the washer 18 against the upper surface of the horizontal section 15, while the locking nut 17 on the lower side presses against the lower surface of the horizontal section 15, thereby fixing the bolt body 16 at a specific height to meet the compression requirements of the male plate 13.

[0036] In the present invention, by making the tool body have a cylindrical supporting cylinder, it is convenient to provide a fitting fixed support circular surface for the anode plate, which is conducive to stably fixing the anode plate on the supporting cylinder. The clamping mechanism is arranged at the end edge of the supporting cylinder, which can facilitate locking and fixing the edge of the anode plate to the edge of the supporting cylinder, thereby solving the disadvantage that the clamping mechanism in the traditional technology needs to be arranged in the central area of the anode plate, which is conducive to the subsequent cutting operation of the central area of the anode plate after the anode plate is locked and positioned, thereby improving the processing efficiency of the anode plate. At the same time, it can ensure that the shaping state of the anode plate will not change during the cutting process, which is conducive to avoiding the deformation of the anode plate during the cutting process, and effectively ensures that the fitting rate of the anode plate will not change after processing.

[0037] The tooling has a simple structure and low manufacturing cost, and can realize the rapid disassembly and assembly of the anode plate. At the same time, it can effectively improve the processing efficiency of the anode plate and ensure that the fitting rate of the anode plate will not change after processing.

Claims

1. A tool for processing an anode plate, comprising a tool body (1), characterized in that: Also includes a pressing mechanism (2); The tool body (1) has a cylindrical supporting cylinder (3), and the supporting cylinder (3) is used to provide a supporting circular surface for the anode plate; The pressing mechanism (2) is installed on the tool body (1) and is located at the end edge of the supporting cylinder (3). The pressing mechanism (2) is used to press the anode plate onto the supporting cylinder (3) in a close fit.

2. A tool for processing anode plates according to claim 1, characterized in that: The center of the tool body (1) has an axis core (4).

3. The tooling for processing anode plates according to claim 2, characterized in that: Both ends of the shaft core (4) extend to the outside of both ends of the bearing cylinder (3).

4. A tool for processing anode plates according to claim 3, characterized in that: The tool body (1) is provided with an internal support (5) between the shaft core (4) and the bearing cylinder (3); the periphery of the internal support (5) is fixedly connected to the bearing cylinder (3), and the center thereof is fixedly connected to the shaft core (4).

5. The tooling for processing anode plates according to claim 4, characterized in that: A plurality of threaded holes (19) are provided on the portion between the two end edges on the annular direction of the supporting cylinder (3).

6. The tooling for processing anode plates according to claim 3, characterized in that: It also includes two groups of split fixing components (6), which respectively cooperate with the two ends of the shaft core (4) and are fixed on the shaft core (4); The fixing assembly (6) includes a plurality of pressure plates (7) of the same shape and size; an arc-shaped notch is provided at the center of the pressure plate (7), and its outer edge is a planar structure; the plurality of pressure plates (7) are adjacent to each other in sequence, and the plurality of arc-shaped notches in the central area form a circular positioning hole (8) of a size that matches the shaft core (4), and are fitted onto the outer side of the end of the shaft core (4) through the circular positioning hole (8).

7. The tooling for processing anode plates according to claim 1, characterized in that: The side plates (9) are annular plates, the center of which has a through hole that matches the size of the shaft core (4), and the outer diameter of which matches the inner diameter of the bearing cylinder (3); the two side plates (9) are relatively distributed on both sides of the internal support (5), and the centers of the side plates are fixedly sleeved on the outer side of the end of the shaft core (4) through the through hole, and the outer edges of the side plates are fixedly connected to the inner circular surface of the bearing cylinder (3).

8. The tooling for processing anode plates according to claim 1, characterized in that: The pressing mechanism (2) comprises two pressing assemblies, and the two pressing assemblies are respectively connected to the two end edges of the bearing cylinder (3); The pressing assembly comprises a plurality of pressing units uniformly distributed along the circumferential direction along the end of the bearing cylinder (3), and the pressing unit comprises a pressing plate body (10) and a quick-release bolt (11); The outer end of the pressure plate body (10) is fixedly connected to the end edge of the bearing cylinder (3), and an accommodating space is formed between the inner section of the pressure plate body (10) and the bearing cylinder (3). At the same time, a long through hole (12) extending along the height direction of the bearing cylinder (3) is opened on the inner section of the pressure plate body (10); The quick-release bolt (11) is inserted into the long through hole (12) and is used to lock and position the anode plate entering the accommodation space.

9. The tooling for processing anode plates according to claim 8, characterized in that: The pressure plate body (10) is L-shaped as a whole, and has a vertical section (14) and a horizontal section (15). The vertical section (14) serves as the outer end of the pressure plate body (10), and the horizontal section (15) serves as the inner section of the pressure plate body (10), and the inner end of the horizontal section (15) is wedge-shaped.

10. The tooling for processing anode plates according to claim 9, characterized in that: The quick-release bolt (11) comprises a bolt body (16), a locking nut (17) and a washer (18).