A copper strip levelling device
By designing a rotating roller and tensioning assembly, the copper strip winding tube is automatically fixed, solving the problems of high labor intensity and low positioning efficiency in the feeding process of existing copper strip leveling devices, and achieving efficient and safe copper strip feeding.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHE JIANG ZHONG HUAN TONG YE YOU XIAN GONG SI
- Filing Date
- 2025-06-30
- Publication Date
- 2026-07-14
AI Technical Summary
The existing copper strip leveling equipment has high labor intensity and low positioning efficiency during the feeding process, which affects the processing efficiency of the leveling process.
The system employs rotating rollers and tensioning components to automatically fix the copper strip winding tube through mechanical clamping components, reducing manual intervention and improving feeding efficiency and accuracy.
It has enabled automated feeding of copper strips, reducing manual labor intensity and improving the accuracy and safety of feeding.
Smart Images

Figure CN224487206U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of copper strip processing equipment, and in particular relates to a copper strip leveling device. Background Technology
[0002] In the processing and production of copper strip, leveling is an important step. Its purpose is to eliminate deformations such as bending and wavy lines that occur during the production and transportation of copper strip, and to ensure the flatness of the copper strip in order to meet the quality requirements of subsequent processing or use.
[0003] Existing copper strip leveling equipment has significant shortcomings in copper strip feeding. Because copper strips are typically large in volume and mass, existing equipment generally requires a crane to transport the copper strip to the rotating rollers of the feeding device, followed by manual assistance in positioning and fixing. This process is labor-intensive, has low positioning efficiency, and can easily affect the overall processing efficiency of the leveling process. Utility Model Content
[0004] In order to overcome the shortcomings of the prior art, this utility model provides a copper strip leveling device that improves feeding efficiency, reduces manual labor intensity, and ensures the accuracy and safety of feeding.
[0005] To achieve the above objectives, this utility model adopts the following technical solution: a copper strip leveling device, comprising a feeding module, a leveling module, and a receiving module. The feeding module includes a fixed frame, a rotating roller rotatably mounted on the fixed frame, a drive motor for driving the rotating roller to rotate, and a tensioning assembly for fixing the copper strip winding tube onto the rotating roller. The rotating roller is connected to the output end of the drive motor via a drive shaft. The outer diameter of the rotating roller is smaller than the inner diameter of the copper strip winding tube. The tensioning assembly includes a slide tube slidably mounted on the rotating roller, a tensioning block connected to the slide tube via a linkage, and a device for fixing the copper strip winding tube. The described pressing component for the sliding tube includes a central sliding hole on the center of the rotating roller, into which the sliding tube is inserted. A tensioning hole communicating with the central sliding hole is opened on the outer wall of the rotating roller, into which a tensioning block is inserted. As the sliding tube moves, the linkage will cause the tensioning block to move away from or towards the sliding tube. The rotating roller and tensioning component facilitate the insertion of the copper strip winding tube. Simultaneously, the mechanical pressing component eliminates the need for manual fixing, automatically securing the copper strip, thereby improving feeding efficiency, reducing manual labor intensity, and ensuring feeding accuracy and safety.
[0006] Preferably, the linkage is a connecting rod, and the connecting rod is arranged in at least two parallel rows, with multiple connecting rods arranged in each row.
[0007] Preferably, at least one side of each tensioning hole is provided with a guide groove, and the tensioning block is provided with a guide block portion, which can be slidably engaged in the guide groove and can move radially relative to the rotating roller under the guidance of the guide groove.
[0008] Preferably, the pressing component includes a movable frame disposed on one side of the fixed frame and a pressing member disposed on the movable frame. A moving device for driving the movable frame to move is installed on the top of the movable frame. When the movable frame moves toward the rotating roller to a certain position under the drive of the moving device, the pressing member will press and tighten the slide tube.
[0009] Preferably, the top pressing member includes a pressure plate rotatably mounted on the movable frame and a tip disposed on the side of the pressure plate facing the rotating roller. When the slide tube is pressed, the pressure plate and the slide tube are pressed into contact, and the tip is inserted into the slide tube.
[0010] Preferably, the pressure plate is embedded with a magnetic block, which can magnetically attract the slide tube and drive the slide tube to move.
[0011] Preferably, the top pressing component further includes a top pressing ring disposed on the outer periphery of the pressure plate, wherein the inner diameter of the top pressing ring is larger than the outer diameter of the rotating roller, and its outer diameter is not larger than the outer diameter of the copper strip winding tube.
[0012] Preferably, the end of the rotating roller away from the copper strip winding tube is provided with a baffle.
[0013] Preferably, the rotating roller is provided with a central guide rod, the central guide rod is fixed in the central sliding hole, and the sliding tube is fitted onto the central guide rod.
[0014] The technical advantages of this invention are as follows: the rotating roller and tensioning assembly facilitate the insertion of the copper strip winding tube, while the mechanical clamping component eliminates the need for manual fixing and automatically fixes the copper strip, thereby improving feeding efficiency, reducing manual labor intensity, and ensuring the accuracy and safety of feeding. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model.
[0016] Figure 2 This is a structural diagram of the feeding module.
[0017] Figure 3 This is the first part of the structural diagram of the feeding module.
[0018] Figure 4 for Figure 3 Schematic diagram of cross-section at point AA.
[0019] Figure 5 This is the second part of the structure diagram of the feeding module.
[0020] Figure 6 for Figure 5 Cross-sectional view at the CC point
[0021] The main technical features in the figure are labeled as follows: 1. Feeding module; 2. Leveling module; 3. Receiving module; 4. Fixing frame; 5. Rotating roller; 51. Center sliding hole; 52. Center guide rod; 6. Drive motor; 71. Sliding tube; 72. Tensioning block; 73. Tensioning hole; 74. Linkage component; 75. Baffle; 76. Guide groove; 77. Guide block part; 8. Movable frame; 81. Pressure plate; 82. Center; 83. Top pressure ring. Detailed Implementation
[0022] The present invention will be further described below with reference to specific embodiments and accompanying drawings.
[0023] like Figures 1-6 As shown, a copper strip leveling device includes a feeding module 1, a leveling module 2, and a receiving module 3. The leveling module 2 and the receiving module 3 are existing technologies and are commonly used mechanical leveling devices and winding receiving devices.
[0024] Specifically, the feeding module 1 includes a fixed frame 4, a rotating roller 5, a drive motor 6, and a tensioning assembly. The rotating roller 5 is rotatably mounted on one side of the fixed frame 4, and the drive motor 6 is fixedly mounted on the other side. The output end of the drive motor 6 is connected to the rotating roller 5. The rotating roller 5 has a central sliding hole 51, and a central guide rod 52 is fixedly connected to the center of the central sliding hole 51. The outer diameter of the rotating roller 5 is smaller than the inner diameter of the copper strip winding tube to facilitate the insertion of the copper strip winding tube.
[0025] Furthermore, the tensioning assembly includes a slide tube 71, a tensioning block 72, and a pressing component. The slide tube 71 is inserted into the central sliding hole 51 and fitted onto the central guide rod 52. The length of the central guide rod 52 is shorter than the length of the slide tube 71. Tensioning holes 73 are formed on the wall of the central sliding hole 51, communicating with the central sliding hole 51 and extending outwards. The tensioning block 72 is fitted into the tensioning hole 73. Four tensioning holes 73 are provided along the circumference of the rotating roller 5, and each tensioning hole 73 contains a corresponding tensioning block 72. Each tensioning block 72 is provided with a linkage 74, which is a connecting rod. Two rows of connecting rods are arranged parallel to each other on each tensioning block 72, and two connecting rods are arranged parallel to each other in each row. One end of each connecting rod is hinged to the tensioning block 72, and the other end is hinged to the slide tube 71.
[0026] Furthermore, a baffle 75 is provided on one end of the rotating roller 5 near the fixed frame 4. A guide groove 76 is provided on the baffle 75. Four guide grooves 76 are provided around the circumference of the rotating roller 5. The guide grooves 76 are opened radially along the rotating roller 5 and are connected to the tensioning holes 73 one by one. A guide block part 77 is provided on the tensioning block 72. The guide block part 77 is slidably engaged in the guide groove 76. The cross-section of the guide block part 77 is "I" shaped, and its two sides are respectively fastened to the groove edge of the guide groove 76.
[0027] Furthermore, the clamping component includes a movable frame 8 and a top pressing member. The movable frame 8 is arranged opposite to the fixed frame 4, and the top pressing member is installed on it. A moving device is provided at its bottom. The moving device is a prior art and can be a moving structure composed of common rollers, wheel rails and motors that drive the rollers to rotate. Driven by the motor, the movable frame 8 can reciprocate along the direction pointing to the fixed frame 4.
[0028] Specifically, the top pressing component includes a pressure plate 81, a top tip 82, and a top pressing ring 83. The pressure plate 81 and the top tip 82 are integrally fixed and rotatably mounted on the movable frame 8. The top tip 82 is located on the side of the pressure plate 81 away from the movable frame 8. A magnetic block is embedded in the pressure plate 81. The magnetic block can be a commonly used electromagnet. The top pressing ring 83 is fixed to the movable frame 8 and is located on the outer periphery of the pressure plate 81. The inner diameter of the top pressing ring 83 is larger than the outer diameter of the rotating roller 5, and its outer diameter is not larger than the outer diameter of the copper strip winding tube.
[0029] The specific implementation process of this utility model is as follows:
[0030] The copper strip winding tube is hoisted to one side of the fixed frame 4 by a gantry crane. The copper strip winding tube is slowly fitted onto the rotating roller 5. The moving device is activated, and the movable frame 8 moves towards the fixed frame 4. The tip 82 first inserts into the slide tube 71, and then the pressure plate 81 squeezes the slide tube 71, causing it to move towards the fixed frame 4. This movement is driven by a connecting rod to move the tension block 72. Guided by the guide groove 76 and the guide block part 77, the tension block 72 moves away from the center of the rotating roller 5. The tension block 72 and the copper strip winding tube... The inner wall contacts and squeezes to achieve tension and fixation of the copper strip winding tube. During this process, the copper strip winding tube is restricted to a certain position area by the baffle 75 and the top pressure ring 83 to avoid the copper strip installation position from shifting or the copper strip from falling off. After tensioning and fixing are completed, the trolley and the copper strip winding tube are separated, and the copper strip leveling process begins. After the processing is completed, the movable frame 8 retracts, and the slide tube 71 is moved a certain distance by the electromagnet, thereby driving the tensioning block 72 to reset, so as to facilitate the loading operation of the next processing.
[0031] The above description is only a specific embodiment of the present utility model, but the structural features of the present utility model are not limited thereto. The present utility model can be used in similar products. Any changes or modifications made by those skilled in the art within the scope of the present utility model are covered by the patent scope of the present utility model.
Claims
1. A copper strip leveling device, comprising a feeding module (1), a leveling module (2), and a receiving module (3), characterized in that: The feeding module (1) includes a fixed frame (4), a rotating roller (5) rotatably mounted on the fixed frame (4), a drive motor (6) for driving the rotating roller (5) to rotate, and a tensioning assembly for fixing the copper strip winding tube onto the rotating roller (5). The rotating roller (5) is connected to the output end of the drive motor (6). The outer diameter of the rotating roller (5) is smaller than the inner diameter of the copper strip winding tube. The tensioning assembly includes a slide tube (71) slidably connected to the rotating roller (5), a tensioning block (72) connected to the slide tube (71) via a linkage (74), and a clamping member for fixing the slide tube (71). The rotating roller (5) has a central sliding hole (51) at its center, and the slide tube (71) is inserted into the central sliding hole (51). The outer wall of the rotating roller (5) has a tensioning hole (73) communicating with the central sliding hole (51), and the tensioning block (72) is inserted into the tensioning hole (73). As the slide tube (71) moves, the linkage (74) will drive the tensioning block (72) to move away from or closer to the slide tube (71).
2. The copper strip leveling device according to claim 1, characterized in that: The linkage (74) is a connecting rod, and each tensioning block (72) has at least two rows of connecting rods arranged in parallel, and each row of connecting rods has multiple connecting rods arranged in parallel.
3. The copper strip leveling device according to claim 1, characterized in that: Each tensioning hole (73) has a guide groove (76) on at least one side, and the tensioning block (72) has a guide block part (77) which can be slidably engaged in the guide groove (76) and can move radially relative to the rotating roller (5) under the guidance of the guide groove (76).
4. The copper strip leveling device according to claim 1, characterized in that: The pressing component includes a movable frame (8) located on one side of the fixed frame (4) and a pressing member located on the movable frame (8). The top of the movable frame (8) is equipped with a moving device for driving the movable frame (8) to move. When the movable frame (8) moves towards the rotating roller (5) to a certain position under the drive of the moving device, the pressing member will press and tighten the slide tube (71).
5. A copper strip leveling device according to claim 4, characterized in that: The top pressing component includes a pressure plate (81) rotatably mounted on the movable frame (8) and a tip (82) disposed on the side of the pressure plate (81) facing the rotating roller (5). When the slide tube (71) is pressed, the pressure plate (81) and the slide tube (71) are pressed into contact, and the tip (82) is inserted into the slide tube (71).
6. The copper strip leveling device according to claim 5, characterized in that: The pressure plate (81) is embedded with a magnetic block, which can magnetically attract the slide tube (71) and drive the slide tube (71) to move.
7. A copper strip leveling device according to claim 5, characterized in that: The top pressing component also includes a top pressing ring (83) disposed on the outer periphery of the pressure plate (81). The inner diameter of the top pressing ring (83) is larger than the outer diameter of the rotating roller (5), and its outer diameter is not larger than the outer diameter of the copper strip winding tube.
8. The copper strip leveling device according to claim 1, characterized in that: The rotating roller (5) is provided with a baffle (75) at the end away from the copper strip winding tube.
9. A copper strip leveling device according to claim 1, characterized in that: The rotating roller (5) is provided with a central guide rod (52), which is fixed in the central sliding hole (51), and the sliding tube (71) is fitted on the central guide rod (52).