Conductive cloth winding frame with cutting structure
By employing a shearing blade structure with a motor-driven screw controlling the slider movement within the conductive cloth winding frame, the problems of short blade life and high noise caused by cylinder drive are solved, achieving a longer life and lower noise cutting effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING YOUWEI ELECTRONICS CO LTD
- Filing Date
- 2025-08-07
- Publication Date
- 2026-05-26
AI Technical Summary
The existing conductive cloth winding frame uses a cylinder to drive the cutting blade for punching and cutting during use, which results in excessive impact force on the blade, short service life, and high noise during operation.
The shearing blade structure uses a motor-driven screw to control the movement of the slider, replacing the cylinder drive, reducing the impact on the blade, extending its service life and reducing noise.
It effectively extends the service life of the cutting tools, reduces working noise, and improves the operational stability of the equipment and the comfort of the operating environment.
Smart Images

Figure CN224279161U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of conductive cloth tape production equipment, and in particular to a conductive cloth winding frame with a cutting structure. Background Technology
[0002] Conductive cloth is made of fiber cloth as the base material. After pretreatment, it is electroplated with a metal coating to give it metallic properties and become conductive fiber cloth. In the production process of conductive cloth, there are many production equipment on the production line. The last process is to wind it into a finished tape, that is, to evenly wind the conductive cloth tape onto a tape roll.
[0003] A conductive cloth processing and winding frame is disclosed, relating to the technical field of conductive cloth tape production equipment. The frame includes: a base plate with a fixed seat on top; a winding cylinder inside the fixed seat; a winding motor mounted on the input end of the winding cylinder; a mounting frame on the surface of the winding cylinder; a connecting plate on one side of the mounting frame; and clamping strips inside the mounting frame. This invention allows the winding motor to be started, allowing the conductive cloth to be wound onto the winding cylinder. A connecting spring pushes a limiting plate to press against the outside of the conductive cloth, ensuring a tighter wrapping and preventing sudden loosening. Then, the power to the winding motor and the conveyor motor is cut off, activating a push cylinder and an electromagnet. The electromagnet clamps the conductive cloth tightly, and the push cylinder pushes a cutting blade to cut the conductive cloth.
[0004] However, the aforementioned utility model uses a cylinder to drive the cutting blade for punching and cutting during use, which results in excessive impact force on the blade, a short service life, and loud noise during operation. Utility Model Content
[0005] The purpose of this invention is to provide a conductive cloth winding frame with a cutting structure, which aims to solve the problems of existing devices that use a cylinder to drive the cutting blade for punching and cutting, resulting in excessive impact force on the blade, short service life, and high noise during operation.
[0006] To achieve the above objectives, this utility model provides a conductive cloth winding frame with a cutting structure, including a worktable and a cutting assembly. The cutting assembly includes a limiting component, a cutting blade, a support frame, a winding roller, a mounting frame, a cylinder, a pressure plate, a slider, and a mounting component.
[0007] The support frame is fixedly connected to the workbench and located on one side of the workbench. The take-up roller is slidably connected to the support frame and located on one side of the support frame. The limiting member is connected to the support frame and located on the outside of the support frame. The cylinder is fixedly installed on the workbench. The pressure plate is fixedly connected to the output end of the cylinder and located on one side of the cylinder. The mounting frame is fixedly connected to the workbench and located on the top of the workbench. The slider is slidably connected to the mounting frame and located on one side of the mounting frame. The mounting component is disposed on the slider. The shearing blade is connected to the mounting component and located on one side of the mounting component.
[0008] The limiting component further includes a limiting plate and a limiting bolt. The limiting plate is slidably connected to the support frame and is located on one side of the support frame. The limiting bolt is threadedly connected to the limiting plate and the support frame, and is located on one side of the limiting plate.
[0009] The mounting component includes a mounting groove and a locking bolt. The mounting groove is fixedly connected to the slider and located at the bottom of the slider. The shearing blade is slidably connected to the mounting groove and located on one side of the mounting groove. The locking bolt is threadedly connected to the mounting groove and located on one side of the mounting groove.
[0010] The shearing assembly further includes a support frame and a guide roller. The support frame is fixedly connected to the worktable and located on one side of the worktable. The guide roller is rotatably connected to the support frame and located on one side of the support frame.
[0011] The shearing assembly further includes a motor and a sleeve. The motor is slidably connected to the support frame and located on one side of the support frame. The sleeve is fixedly connected to the output end of the motor and slidably connected to the take-up roller, and is located on one side of the motor.
[0012] This utility model discloses a conductive cloth winding frame with a cutting structure. The worktable serves as the main body of the device and is used for connecting device components. The support frame has a U-shaped design, allowing the winding roller to slide and rotate after insertion. The limiting component restricts the rotation position of the winding roller to prevent it from sliding up and down during rotation. The winding roller is used to wind the conductive cloth. During winding, the conductive cloth passes through the bottom of the pressure plate and the shearing blade and then one end is fixed on the winding roller for rotation and winding. When it is necessary to cut the conductive cloth, the cylinder lowers the pressure plate to press the conductive cloth down. Then, a drive mechanism drives the slider to slide on the mounting frame, thereby causing the shearing blade to cut the conductive cloth. The drive mechanism uses a motor-driven screw to control the movement of the slider. This solves the problems of existing devices that use a cylinder to drive the cutting blade for punching and cutting, resulting in excessive impact force on the blade, short service life, and high noise during operation. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0014] Figure 1 This is a structural diagram of a conductive cloth winding frame with a cutting structure according to this utility model.
[0015] Figure 2 This is a cross-sectional schematic diagram of a conductive cloth winding frame with a cutting structure according to this utility model.
[0016] Figure 3 yes Figure 2 Enlarged view of detail A.
[0017] 101-Workbench, 102-Shearing assembly, 103-Limiting component, 104-Shearing blade, 105-Support frame, 106-Take-up roller, 107-Mounting frame, 108-Cylinder, 109-Pressure plate, 110-Slider, 111-Mounting component, 112-Limiting plate, 113-Limiting bolt, 114-Mounting groove, 115-Locking bolt, 116-Bracket, 117-Guide roller, 118-Motor, 119-Sleeve. Detailed Implementation
[0018] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0019] Please see Figures 1-3 , Figure 1 This is a structural diagram of a conductive cloth winding frame with a cutting structure according to the first embodiment of this utility model. Figure 2 This is a cross-sectional schematic diagram of a conductive cloth winding frame with a cutting structure according to the first embodiment of this utility model. Figure 3 yes Figure 2 Enlarged view of detail A.
[0020] This utility model provides a conductive cloth winding frame with a cutting structure, comprising a worktable 101 and a cutting assembly 102. The cutting assembly 102 includes a limiting component 103, a cutting blade 104, a support frame 105, a winding roller 106, a mounting frame 107, a cylinder 108, a pressure plate 109, a slider 110, a mounting component 111, a limiting plate 112, a limiting bolt 113, a mounting groove 114, a locking bolt 115, a bracket 116, a guide roller 117, a motor 118, and a sleeve 119. This solution solves the problems of existing devices where the cutting blade is driven by a cylinder for punching and cutting, resulting in excessive impact force on the blade, short service life, and high noise during operation.
[0021] In this embodiment, the support frame 105 is fixedly connected to the workbench 101 and located on one side of the workbench 101. The take-up roller 106 is slidably connected to the support frame 105 and located on one side of the support frame 105. The limiting member 103 is connected to the support frame 105 and located on the outside of the support frame 105. The cylinder 108 is fixedly mounted on the workbench 101. The pressure plate 109 is fixedly connected to the output end of the cylinder 108 and located on one side of the cylinder 108. The mounting frame 107 is fixedly connected to the workbench 101 and located on the top of the workbench 101. The slider 110 is slidably connected to the mounting frame 107 and located on one side of the mounting frame 107. The mounting member 111 is disposed on the slider 110. The shearing blade 104 is connected to the mounting member 111 and located on one side of the mounting member 111. The workbench 101 serves as the main body of the device and is used for the device. Regarding the connection of components, the support frame 105 has a U-shaped design. After the take-up roller 106 is slidably inserted, it can also rotate on the support frame 105. The limiting member 103 restricts the rotation position of the take-up roller 106 to prevent it from sliding up and down during rotation. The take-up roller 106 is used to take up the conductive cloth. During the take-up process, the conductive cloth passes through the bottom of the pressure plate 109 and the shearing blade 104 and then fixes one end on the take-up roller 106 for rotation and take-up. When it is necessary to cut the conductive cloth, the cylinder 108 lowers the pressure plate 109 to press the conductive cloth. Then, the drive mechanism drives the slider 110 to slide on the mounting frame 107, so that the shearing blade 104 cuts the conductive cloth. The drive mechanism uses a motor 118 to drive the screw to control the movement of the slider 110. This solves the problem that the existing device uses the cylinder 108 to drive the cutting blade to punch and cut, resulting in excessive impact force on the blade, short service life, and high noise during operation.
[0022] The limiting member 103 further includes a limiting plate 112 and a limiting bolt 113. The limiting plate 112 is slidably connected to the support frame 105 and is located on one side of the support frame 105. The limiting bolt 113 is threadedly connected to the limiting plate 112 and the support frame 105, and is located on one side of the limiting plate 112. The limiting plate 112 is used to limit the vertical sliding position of the take-up roller 106. After the limiting plate 112 is slidably installed, the limiting bolt 113 fixes the position of the limiting plate 112.
[0023] Secondly, the mounting component 111 includes a mounting groove 114 and a locking bolt 115. The mounting groove 114 is fixedly connected to the slider 110 and is located at the bottom of the slider 110. The shearing blade 104 is slidably connected to the mounting groove 114 and is located on one side of the mounting groove 114. The locking bolt 115 is threadedly connected to the mounting groove 114 and is located on one side of the mounting groove 114. After the shearing blade 104 is slidably installed into the mounting groove 114, the locking bolt 115 fixes the position of the shearing blade 104 inside the mounting groove 114, making it convenient to disassemble and replace the shearing blade 104.
[0024] Furthermore, the shearing assembly 102 also includes a bracket 116 and a guide roller 117. The support frame 105 is fixedly connected to the worktable 101 and located on one side of the worktable 101. The guide roller 117 is rotatably connected to the bracket 116 and located on one side of the bracket 116. The bracket 116 is used to install the guide roller 117. The conductive cloth passes through the bottom of the guide roller 117 and is then wound up. The guide roller 117 is used to assist in guiding the winding up and ensure the flatness of the conductive cloth.
[0025] Finally, the shearing assembly 102 also includes a motor 118 and a sleeve 119. The motor 118 is slidably connected to the support frame 105 and is located on one side of the support frame 105. The sleeve 119 is fixedly connected to the output end of the motor 118 and slidably connected to the take-up roller 106 and is located on one side of the motor 118. By sliding the motor 118, the sleeve 119 at the output end of the motor 118 is slidably inserted into one end of the take-up roller 106. The take-up roller 106 is driven to rotate by the motor 118, thereby winding and wrapping the conductive cloth.
[0026] In the conductive cloth winding frame with a cutting structure of this utility model, the workbench 101 serves as the main body of the device and is used for connecting device components. The support frame 105 has a U-shaped design, allowing the winding roller 106 to rotate after being slidably inserted. The limiting member 103 restricts the rotation position of the winding roller 106 to prevent it from sliding up and down during rotation. The winding roller 106 is used to wind up the conductive cloth. During the winding process, the conductive cloth passes through the bottom of the pressure plate 109 and the shearing blade 104 and then one end is fixed. The conductive cloth is wound around on the take-up roller 106. When it is necessary to cut the conductive cloth, the cylinder 108 lowers the pressure plate 109 to press the conductive cloth down. Then, the drive mechanism drives the slider 110 to slide on the mounting frame 107, so that the shearing blade 104 cuts the conductive cloth. The drive mechanism uses a motor 118 to drive the screw to control the movement of the slider 110. This solves the problem that the existing device uses the cylinder 108 to drive the cutting blade to punch and cut, which results in excessive impact force on the blade, short service life, and high noise during operation.
[0027] The above-disclosed embodiment is merely a preferred embodiment of the conductive cloth winding frame with a cutting structure of the present utility model. Of course, it should not be construed as limiting the scope of the present utility model. Those skilled in the art can understand that all or part of the process of implementing the above embodiment and the equivalent changes made in accordance with the claims of the present utility model still fall within the scope of the utility model.
Claims
1. A conductive cloth winding frame with a cutting structure, comprising a worktable, characterized in that: It also includes a shearing assembly, which includes a limiting component, a shearing blade, a support frame, a take-up roller, a mounting frame, a cylinder, a pressure plate, a slider, and a mounting component; The support frame is fixedly connected to the workbench and located on one side of the workbench. The take-up roller is slidably connected to the support frame and located on one side of the support frame. The limiting member is connected to the support frame and located on the outside of the support frame. The cylinder is fixedly installed on the workbench. The pressure plate is fixedly connected to the output end of the cylinder and located on one side of the cylinder. The mounting frame is fixedly connected to the workbench and located on the top of the workbench. The slider is slidably connected to the mounting frame and located on one side of the mounting frame. The mounting component is disposed on the slider. The shearing blade is connected to the mounting component and located on one side of the mounting component.
2. The conductive cloth winding frame with a cutting structure as described in claim 1, characterized in that: The limiting component further includes a limiting plate and a limiting bolt. The limiting plate is slidably connected to the support frame and is located on one side of the support frame. The limiting bolt is threadedly connected to the limiting plate and the support frame, and is located on one side of the limiting plate.
3. The conductive cloth winding frame with a cutting structure as described in claim 2, characterized in that: The mounting component includes a mounting groove and a locking bolt. The mounting groove is fixedly connected to the slider and located at the bottom of the slider. The shearing blade is slidably connected to the mounting groove and located on one side of the mounting groove. The locking bolt is threadedly connected to the mounting groove and located on one side of the mounting groove.
4. The conductive cloth winding frame with a cutting structure as described in claim 3, characterized in that: The shearing assembly also includes a support frame and a guide roller. The support frame is fixedly connected to the worktable and located on one side of the worktable. The guide roller is rotatably connected to the support frame and located on one side of the support frame.
5. A conductive cloth winding frame with a cutting structure as described in claim 4, characterized in that: The shearing assembly also includes a motor and a sleeve. The motor is slidably connected to the support frame and located on one side of the support frame. The sleeve is fixedly connected to the output end of the motor and slidably connected to the take-up roller, and is located on one side of the motor.