Copper foil composite material production cutting equipment

By designing a copper foil composite material production and cutting equipment, and utilizing the cooperation of sliding components and threaded rods, combined with the indication of a scale, precise cutting of copper foil is achieved, solving the problem of inaccurate dimensions in existing technologies and improving the practicality of the device and the uniformity of cutting.

CN223477723UActive Publication Date: 2025-10-28SICHUAN WEIYEXIN PRECISION TECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202423081320.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-10-28
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

In the existing technology, copper foil cannot be cut to the required size with precision, resulting in low practicality of the device.

Method used

A copper foil composite material production and cutting equipment was designed, including a worktable, a rotating mechanism, and a cutting mechanism. Through the cooperation of a sliding component, a threaded rod, and a scale, the copper foil can be precisely cut. The accuracy of copper foil cutting is ensured by utilizing the cooperation of the sliding component and the threaded rod, combined with the indication of the scale.

Benefits of technology

It enables precise cutting of copper foil to the required dimensions, improving the practicality of the device and ensuring the uniformity and accuracy of copper foil cutting.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223477723U_ABST
    Figure CN223477723U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of copper foil production cutting, in particular to copper foil composite material production cutting equipment which comprises a workbench, a rotating mechanism and a cutting mechanism, the cutting mechanism comprises a mounting frame, a transmission rod, a cutter, two sliding assemblies, a mounting frame, a threaded rod, a graduated scale and a pressing plate, the rotating mechanism is arranged at one end of the workbench, and the cutter is arranged at the other end of the workbench. The mounting frame is fixedly connected with the workbench and located above the workbench, the transmission rod is in sliding connection with the mounting frame and penetrates through the mounting frame, the cutter is fixedly connected with the transmission rod and located in the mounting frame, the mounting frame is in sliding connection with the workbench through two sliding assemblies, and the threaded rod is in threaded connection with the mounting frame and penetrates through the mounting frame. And the pressing plate is rotationally connected with the threaded rod and located in the mounting frame, the graduated scale is fixedly connected with one end of the workbench, the copper foil can be cut into the needed size through the cutting mechanism, and then the practicability of the device is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of copper foil production and cutting technology, and in particular to a copper foil composite material production and cutting equipment. Background Technology

[0002] Copper foil is a cathodic electrolytic material, a thin, continuous metal foil deposited on the substrate layer of a circuit board. Currently, when cutting copper foil, there is no support or rotation for the copper foil being cut. Because copper foil is relatively thin, it may be damaged during the pulling process, and the vibration of the copper foil during the cutting process may lead to uneven cutting.

[0003] Patent application CN220464034U discloses a copper foil composite material production and cutting equipment, including a rotating mechanism, a worktable, and springs. During copper foil cutting, the rotating mechanism allows the copper foil to be rotated, facilitating pulling and reducing the likelihood of damage. The springs clamp the copper foil, enabling better and more uniform cutting.

[0004] However, in the existing technology, the copper foil cannot be cut to the required size precisely, resulting in low practicality of the device. Utility Model Content

[0005] The purpose of this invention is to provide a copper foil composite material production and cutting equipment, which aims to solve the problem that in the prior art, copper foil cannot be accurately cut to the required size, resulting in low practicality of the device.

[0006] To achieve the above objectives, this utility model provides a copper foil composite material production and cutting equipment, including a worktable, a rotating mechanism, and a cutting mechanism. The cutting mechanism includes a mounting frame, a transmission rod, a cutter, two sliding components, a mounting frame, a threaded rod, a scale, and a pressure plate. The rotating mechanism is located at one end of the worktable and above it. The mounting frame is fixedly connected to the worktable and above it. The transmission rod is slidably connected to the mounting frame and passes through it. The cutter is fixedly connected to the transmission rod and located within the mounting frame. The mounting frame is slidably connected to the worktable via the two sliding components. The threaded rod is threadedly connected to the mounting frame and passes through it. The pressure plate is rotatably connected to the threaded rod and located within the mounting frame. The scale is fixedly connected to one end of the worktable.

[0007] The sliding component includes a slide rail and a slider. The slide rail is fixedly connected to one end of the worktable, and the slider is fixedly connected to one end of the mounting frame and located below the mounting frame. One end of the slider is slidably connected to the slide rail and located inside the slide rail.

[0008] The cutting mechanism further includes a locking block with a knife groove. The locking block is fixedly connected to the worktable and located within the mounting frame. The knife groove is disposed on the locking block and located below the cutter.

[0009] The cutting mechanism further includes two limiting posts, which are fixedly connected to both ends of the mounting frame and located within the mounting frame. The two limiting posts are slidably connected to both ends of the pressure plate.

[0010] The cutting mechanism further includes a mounting plate and a telescopic spring. The mounting plate is fixedly connected to the transmission rod and is located above the mounting frame. The two ends of the telescopic spring are fixedly connected to the mounting frame and the mounting plate, respectively, and the transmission rod is located inside the telescopic spring.

[0011] This utility model discloses a copper foil composite material production and cutting equipment. When cutting copper foil, the copper foil roll is fixed to the rotating mechanism, one end of the copper foil is pulled into the mounting frame, and the copper foil passes through the mounting frame. Rotating the threaded rod causes the pressure plate to move downwards, clamping the copper foil between the pressure plate and the mounting frame. The mounting frame is then moved, sliding on the worktable via two sliding components. According to the scale display, the mounting frame is moved to an appropriate position. Then, the transmission rod is pressed down, causing the cutter to move downwards and cut the copper foil. This method allows for the cutting of copper foil to a specified length, thus increasing the practicality of the device. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the copper foil composite material production and cutting equipment of this utility model.

[0014] Figure 2 This is the utility model Figure 1 Enlarged view of the local structure at point A.

[0015] Figure 3 This is a schematic diagram of the copper foil composite material production and cutting equipment of this utility model from another direction.

[0016] Figure 4 This is a side view of the copper foil composite material production and cutting equipment of this utility model.

[0017] 101-Workbench, 102-Rotating mechanism, 103-Mounting bracket, 104-Transmission rod, 105-Cutter, 106-Mounting plate, 107-Telescopic spring, 108-Slide rail, 109-Slider, 110-Mounting frame, 111-Threaded rod, 112-Limit post, 113-Pressure plate, 114-Scale, 115-Clamping block, 116-Knife groove. Detailed Implementation

[0018] Please see Figures 1 to 4 ,in, Figure 1 This is a schematic diagram of the copper foil composite material production and cutting equipment of this utility model. Figure 2 This is the utility model Figure 1 Enlarged view of the local structure at point A. Figure 3 This is a schematic diagram of the copper foil composite material production and cutting equipment of this utility model from another direction. Figure 4 This is a side view of the copper foil composite material production and cutting equipment of this utility model.

[0019] This utility model provides a copper foil composite material production and cutting equipment, including a workbench 101, a rotating mechanism 102, and a cutting mechanism. The cutting mechanism includes a mounting frame 103, a mounting plate 106, a locking block 115, two limiting posts 112, a telescopic spring 107, a transmission rod 104, a cutter 105, two sliding components, a mounting frame 110, a threaded rod 111, a scale 114, and a pressure plate 113. The sliding components include a slide rail 108 and a slider 109. The locking block 115 has a cutting groove 116. The aforementioned solution solves the problem in the prior art that when cutting copper foil, it is impossible to accurately cut the copper foil to the required size, resulting in low practicality of the device.

[0020] In this embodiment, the rotating mechanism 102 is disposed at one end of the workbench 101 and located above the workbench 101. The mounting bracket 103 is fixedly connected to the workbench 101 and located above the workbench 101. The transmission rod 104 is slidably connected to the mounting bracket 103 and passes through the mounting bracket 103. The cutter 105 is fixedly connected to the transmission rod 104 and located inside the mounting bracket 103. The mounting frame 110 is slidably connected to the workbench 101 through two sliding components. The threaded rod 111 is threadedly connected to the mounting frame 110 and passes through the mounting frame 110. The pressure plate 113 is rotatably connected to the threaded rod 111 and located inside the mounting frame 110. The scale 114 is fixedly connected to one end of the workbench 101. When cutting copper foil, the copper foil roll is fixed on the rotating mechanism 102, one end of the copper foil is pulled into the mounting frame 110, and the copper foil passes through the mounting bracket 103. The threaded rod 111 is rotated, and the threaded rod 111 drives the pressure plate 113 to move downward, clamping the copper foil between the pressure plate 113 and the mounting frame 110. At this time, the mounting frame 110 is moved, and the mounting frame 110 slides on the worktable 101 through the two sliding components. According to the display on the scale 114, the mounting frame 110 is moved to the appropriate position, and then the transmission rod 104 is pressed down. The transmission rod 104 drives the cutter 105 to move downward, and the cutter 105 cuts the copper foil. In this way, copper foil of a specified length can be cut, thereby increasing the practicality of the device.

[0021] Furthermore, the slide rail 108 is fixedly connected to one end of the worktable 101, the slider 109 is fixedly connected to one end of the mounting frame 110 and is located below the mounting frame 110, and one end of the slider 109 is slidably connected to the slide rail 108 and is located inside the slide rail 108.

[0022] In this embodiment, when the mounting frame 110 is moved on the worktable 101, the two sliders 109 at both ends of the mounting frame 110 slide on the two slide rails 108 respectively, so as to move the mounting frame 110 to the appropriate position.

[0023] Furthermore, the locking block 115 is fixedly connected to the workbench 101 and located within the mounting bracket 103, and the blade groove 116 is disposed on the locking block 115 and located below the cutter 105.

[0024] In this embodiment, when cutting copper foil, the transmission rod 104 and the cutter 105 are pressed down. After the cutter 105 cuts the copper foil, it enters the cutter groove 116. The cutter groove 116 can prevent the cutter 105 from directly contacting the worktable 101, thus avoiding damage to the cutter 105.

[0025] Furthermore, the two limiting posts 112 are fixedly connected to both ends of the mounting frame 110 and located inside the mounting frame 110, and the two limiting posts 112 are slidably connected to both ends of the pressure plate 113.

[0026] In this embodiment, when fixing one end of the copper foil, the threaded rod 111 is rotated, and the threaded rod 111 drives the pressure plate 113 to move downward. The two limiting posts 112 play a limiting and guiding role on the movement of the pressure plate 113, ensuring that the pressure plate 113 maintains the correct movement trajectory during the movement.

[0027] Furthermore, the mounting plate 106 is fixedly connected to the transmission rod 104 and is located above the mounting frame 103. The two ends of the telescopic spring 107 are fixedly connected to the mounting frame 103 and the mounting plate 106 respectively, and the transmission rod 104 is located inside the telescopic spring 107.

[0028] In this embodiment, when cutting copper foil, the mounting plate 106 is pressed down, and the transmission rod 104 drives the cutter 105 to move downward. The cutter 105 cuts the copper foil. At this time, the telescopic spring 107 is in a compressed state. After the cutter 105 cuts the copper foil, the operator releases the mounting plate 106. At this time, the telescopic spring 107 extends under the action of its own elastic potential energy, and drives the transmission rod 104 and the cutter 105 to move upward to the initial position for the next cut. In this way, copper foil of a specified length can be cut, thereby increasing the practicality of the device.

[0029] When cutting copper foil using this invention, the copper foil roll is fixed to the rotating mechanism 102. One end of the copper foil is pulled into the mounting frame 110, with the copper foil passing through the mounting bracket 103. The threaded rod 111 is rotated, causing the pressure plate 113 to move downwards and clamping the copper foil between the pressure plate 113 and the mounting frame 110. At this time, the mounting frame 110 is moved, and the operator slides the mounting frame 110. The mounting frame 110 slides on the two slide rails 108 via the two sliders 109. According to the display on the scale 114, the copper foil is cut... The mounting frame 110 is moved to the appropriate position, and then the transmission rod 104 is pressed down. The transmission rod 104 drives the cutter 105 to move downward, and the cutter 105 cuts the copper foil. At this time, the telescopic spring 107 is in a compressed state. After the cutter 105 cuts the copper foil, the operator releases the mounting plate 106. At this time, the telescopic spring 107 extends under the action of its own elastic potential energy, and drives the transmission rod 104 and the cutter 105 to move up to the initial position for the next cut. In this way, copper foil of a specified length can be cut, thereby increasing the practicality of the device.

[0030] The above-disclosed embodiments are merely preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art will understand that all or part of the processes for implementing the above embodiments, and equivalent variations made in accordance with the claims of this application, still fall within the scope of this application.

Claims

1. A copper foil composite material production and cutting equipment, comprising a worktable and a rotating mechanism, wherein the rotating mechanism is disposed at one end of the worktable and located above the worktable, characterized in that, It also includes a cutting mechanism, which comprises a mounting frame, a transmission rod, a cutter, two sliding components, a mounting frame, a threaded rod, a scale, and a pressure plate. The mounting frame is fixedly connected to the worktable and is located above the worktable. The transmission rod is slidably connected to the mounting frame and passes through the mounting frame. The cutter is fixedly connected to the transmission rod and is located inside the mounting frame. The mounting frame is slidably connected to the worktable through the two sliding components. The threaded rod is threadedly connected to the mounting frame and passes through the mounting frame. The pressure plate is rotatably connected to the threaded rod and is located inside the mounting frame. The scale is fixedly connected to one end of the worktable.

2. The copper foil composite material production and cutting equipment as described in claim 1, characterized in that, The sliding assembly includes a slide rail and a slider. The slide rail is fixedly connected to one end of the worktable, and the slider is fixedly connected to one end of the mounting frame and located below the mounting frame. One end of the slider is slidably connected to the slide rail and located inside the slide rail.

3. The copper foil composite material production and cutting equipment as described in claim 2, characterized in that, The cutting mechanism further includes a locking block with a blade groove. The locking block is fixedly connected to the worktable and located within the mounting frame. The blade groove is disposed on the locking block and located below the cutter.

4. The copper foil composite material production and cutting equipment as described in claim 3, characterized in that, The cutting mechanism also includes two limiting posts, which are fixedly connected to both ends of the mounting frame and located inside the mounting frame. The two limiting posts are slidably connected to both ends of the pressure plate.

5. The copper foil composite material production and cutting equipment as described in claim 4, characterized in that, The cutting mechanism further includes a mounting plate and a telescopic spring. The mounting plate is fixedly connected to the transmission rod and is located above the mounting frame. The two ends of the telescopic spring are fixedly connected to the mounting frame and the mounting plate, respectively, and the transmission rod is located inside the telescopic spring.

Citation Information

Patent Citations

  • Copper foil composite material production cutting equipment

    CN220464034U