Pay-off rack structure for copper wire processing
By designing the wire laying frame structure for copper wire processing, the problem that the guide components and copper wire cannot maintain a horizontal correspondence during copper wire laying is solved, and the stable guidance and protection of copper wire is achieved to ensure production continuity.
Patent Information
- Application Number
- CN202422423288.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-09
AI Technical Summary
During the release process of copper wire, the guide assembly and the copper wire cannot maintain a horizontal correspondence, resulting in the separation of the copper wire, affecting normal use.
A wire laying frame structure for copper wire processing is designed. Through the adjustment of the spacing between the circular plate and the wire ring, combined with the rotation of the transfer plate and the butt plate, the guide assembly is ensured to correspond horizontally to the copper wire, and the sliding ring and clamp are used for support to prevent damage to the copper wire.
Effectively prevent the copper wire from being separated from the guide assembly during the pulling process, ensure the horizontal correspondence of the copper wire, protect the copper wire from damage, and ensure production continuity.
Smart Images

Figure CN223175470U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of copper wire processing, and particularly relates to a wire-releasing rack structure for copper wire processing. Background Art
[0002] During the production process of wire and cable, a copper wire wire-releasing rack is used to provide continuous copper wire supply to ensure the normal operation of the production line. By installing a wire reel wound with copper wire on the wire reel shaft of the wire-releasing rack, and through an external force (such as the pulling force of a traction device) or manually rotating the wire reel shaft, the copper wire is gradually released from the wire reel. When the copper wire is pulled out under traction, since the copper wire will be straightened under the pulling force, when the traction device and the wire reel are not directly corresponding, when the copper wire is guided through the wire guiding device, due to the continuous release of the copper wire resulting in a decrease in thickness, it is impossible to ensure horizontal correspondence with the guiding component, thus easily causing separation and affecting its normal use. Summary of the Utility Model
[0003] The utility model provides a wire-releasing rack structure for copper wire processing, which has the characteristic of solving the problem that the guiding component is not conducive to always maintaining horizontal correspondence with the copper wire.
[0004] The utility model provides the following technical solutions: including a bottom plate and a wire winding cylinder, the bottom plate is provided with a rotating groove, the inner wall of the rotating groove is rotatably connected with a rotating plate, the rotating plate is provided with a sliding groove, the inner wall of the sliding groove is slidably connected with a sliding block, the top end of the sliding block is fixedly connected with a vertical rod, the vertical rod is slidably connected with a circular plate, the outer wall of the circular plate is rotatably connected with a wire guiding ring, a support frame is installed on the bottom plate, the top of the support frame is rotatably connected with a docking plate, the inner wall of the support frame is rotatably connected with an adjusting rod, a support ring is arranged between the adjusting rods, a sliding rod is arranged between the rotating groove and the docking plate, the outer wall of the sliding rod is slidably connected with a sliding ring, the circular plate is provided with a clamping plate that is engaged with the sliding ring, and the outer wall of the support ring is fixedly connected with a cross bar corresponding to the wire winding cylinder.
[0005] Among them, a support plate is installed on the bottom plate, an installation part is arranged above the support plate, one side of the installation part is fixedly connected with a frame plate, and the wire winding cylinder is rotatably connected with the frame plate.
[0006] Among them, the bottom end of the installation part is fixedly connected with a frame rod, and the frame rod is slidably connected with the support plate.
[0007] Among them, an annular groove is opened on the outer wall of the docking plate, and a support block that is matched with the annular groove is fixedly connected at the connection part between the support frame and the docking plate.
[0008] Among them, two fixing plates are fixedly connected to the top end of the docking plate. An installation plate is provided at the center of the fixing plate. A lead screw is rotatably connected between the fixing plate and the installation plate. The top end of the vertical rod is fixedly connected with a connecting plate, and the connecting plate is threadedly connected with the lead screw.
[0009] The beneficial effects of the present utility model are as follows: By adjusting the distance between the circular plate and the wire ring, and cooperating with the rotation of the rotating plate and the docking plate on the bottom plate, it can play a guiding role for the wire. Cooperating with the slip ring, clamping plate, support ring and cross bar can ensure that the wire reel is supported at the corresponding position on one side, ensuring that the copper wire is horizontal and corresponding to the wire ring, so that when the wire drawing device does not correspond to the wire reel, the copper wire can be guided and protected.
[0010] Parts not involved in this device are the same as the prior art or can be implemented using the prior art. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 is a three-dimensional structural diagram of the present utility model;
[0012] Figure 2 is a three-dimensional structural diagram of the support frame in the present utility model;
[0013] Figure 3 For the present utility model Figure 1 is an enlarged schematic diagram of A in;
[0014] Figure 4 For the present utility model Figure 1 is an enlarged schematic diagram of B in.
[0015] In the figure: 1, bottom plate; 11, support plate; 12, rack bar; 13, mounting part; 14, rack plate; 15, wire reel; 2, rotating groove; 21, rotating plate; 22, sliding groove; 23, sliding block; 24, vertical rod; 241, fixing plate; 242, lead screw; 243, connecting plate; 244, mounting plate; 25, circular plate; 26, wire ring; 3, support frame; 31, docking plate; 311, annular groove; 312, support block; 32, sliding rod; 33, slip ring; 34, clamping plate; 35, adjusting rod; 36, support ring; 361, cross bar. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0016] Please refer to Figures 1-4, the present utility model provides the following technical solutions: It includes a bottom plate 1 and a wire reel 15. The bottom plate 1 is provided with a rotating groove 2. The inner wall of the rotating groove 2 is rotatably connected with a rotating plate 21. The rotating plate 21 is provided with a sliding groove 22. The inner wall of the sliding groove 22 is slidably connected with a slider 23. The top end of the slider 23 is fixedly connected with a vertical rod 24. A circular plate 25 is slidably connected to the vertical rod 24. The outer wall of the circular plate 25 is rotatably connected with a wire guide ring 26. A support frame 3 is installed on the bottom plate 1. The top of the support frame 3 is rotatably connected with a docking plate 31. The inner wall of the support frame 3 is rotatably connected with an adjusting rod 35. A support ring 36 is provided between the adjusting rods 35. A sliding rod 32 is provided between the rotating groove 2 and the docking plate 31. A sliding ring 33 is slidably connected to the outer wall of the sliding rod 32. A clamping plate 34 that is engaged with the sliding ring 33 is installed on the circular plate 25. A cross bar 361 corresponding to the wire reel 15 is fixedly connected to the outer wall of the support ring 36.
[0017] In this embodiment: The bottom plate 1 is the carrier of the loading device. The wire reel 15 installed on the bottom plate 1 is at a certain height above the bottom plate 1. The wire reel 15 winds the copper wire, so that the copper wire is collected on the outer wall of the wire reel 15. When the copper wire needs to be pulled, at this time, the rotating plate 21 can be installed through the rotating groove 2 opened at the top of the bottom plate 1. The rotating plate 21 rotates on the inner wall of the rotating groove 2. At this time, the sliding groove 22 opened on the rotating plate 21 can slide the sliding block 23 to adjust the distance between the two sliding blocks 23. After the distance between the sliding blocks 23 is adjusted, the vertical rods 24 fixedly connected to the sliding blocks 23 can be adjusted synchronously. The circular plate 25 slidably connected to the outer wall of the vertical rod 24 and the wire guiding ring 26 rotatably connected to the outer wall of the circular plate 25 can be adjusted in distance at the same time, so that the distance between the wire guiding rings 26 can be adjusted to a distance corresponding to the size of the copper wire, so that the outer walls of the two wire guiding rings 26 can clamp the outer wall of the copper wire, thereby limiting the pulled copper wire. When the copper wire passes through the wire guiding ring 26, the wire guiding ring 26 can guide the pulling of the copper wire. When the copper wire is directly pulled, if it is not horizontally corresponding to the wire reel 15 when the copper wire is pulled, it is easy to damage the copper wire. At this time, when the mechanism for pulling the copper wire and the wire reel 15 cannot be corresponding, the position between the wire guiding rings 26 can be adjusted by rotating the rotating groove 2, so that the wire guiding rings 26 can support and guide the copper wire, ensuring that the copper wire can be prevented from being damaged while being pulled. At the same time, when the circular plate 25 is pulled, the support frame 3 supports the docking plate 31. The sliding rod 32 is fixed between the rotating groove 2 and the docking plate 31. The sliding ring 33 slidably connected to the outer wall of the sliding rod 32 can be supported by the support ring 36 on the inner wall of the support frame 3. At this time, the support ring 36 is connected to the support frame 3 through the adjusting rod 35. The adjusting rod 35 is threadedly connected to the support ring 36. Rotating it can make the support ring 36 push the sliding ring 33 to displace, and the clamping plate 34 clamps the sliding ring 33, so that the height of the wire guiding ring 26 can be adjusted by the position of the support ring 36, so that the height of the cross bar 361 can be adjusted to a position below the wire reel 15 to support the wire reel 15. At the same time, after the copper wire is continuously released, the thickness of the copper wire continuously decreases. After the copper wire decreases, the height of the mounting member 13 on the support plate 11 can slide downward, so that the wire reel 15 is supported in the cross bar 361, ensuring that the copper wire is horizontally corresponding to the wire guiding ring 26, so as to ensure that the wire drawing device can guide the copper wire and protect it when it is not corresponding to the wire reel 15.
[0018] A support plate 11 is installed on the bottom plate 1. Above the support plate 11, there is an installation part 13. One side of the installation part 13 is fixedly connected to a frame plate 14, and the wire reel 15 is rotatably connected to the frame plate 14. The support plate 11 installed on the bottom plate 1 can support the installation part 13, so that the height of the installation part 13 on the support plate 11 can be adjusted. By installing the frame plate 14 on the installation part 13, the wire reel 15 is supported and can wind and unwind the copper wire between the frame plates 14.
[0019] A support rod 12 is fixedly connected to the bottom end of the installation part 13, and the support rod 12 is slidably connected to the support plate 11. The support rod 12 fixedly connected to the bottom end of the installation part 13 is used to connect the installation part 13 and the support plate 11 up and down, so that the installation part 13 can limit its position through the support rod 12. At the same time, the installation part 13 can slide up and down on the support plate 11, so as to ensure that when the copper wire at the bottom of the wire reel 15 is continuously released, the copper wire can be horizontally corresponding to the wire guide ring 26.
[0020] An annular groove 311 is formed on the outer wall of the docking plate 31. At the connection between the support frame 3 and the docking plate 31, a support block 312 matching the annular groove 311 is fixedly connected. The annular groove 311 fixedly connected to the outer wall of the docking plate 31 is used to connect and limit with the support block 312, so that the docking plate 31 and the rotating groove 2 can rotate to direct the pulling direction of the steel wire to the traction device, and the docking plate 31 is supported and limited by the support frame 3 to reinforce its position.
[0021] Two fixing plates 241 are fixedly connected to the top end of the docking plate 31. At the center of the fixing plates 241, there is an installation plate 244. A lead screw 242 is rotatably connected between the fixing plates 241 and the installation plate 244. The top end of the vertical rod 24 is fixedly connected to a connecting plate 243, and the connecting plate 243 is threadedly connected to the lead screw 242. The fixing plates 241 fixedly connected to the top end of the docking plate 31 can install the lead screw 242. One end of each of the two lead screws 242 rotates on the installation plate 244 and is connected to the connecting plate 243 fixedly connected to the top end of the vertical rod 24, so that the position of the vertical rod 24 can be adjusted by rotating the lead screw 242, and after adjustment, its position can be limited.
[0022] The working principle and usage process of the present utility model: Through the adjustment of the distance between the vertical rods 24, the circular plate 25 and the wire rings 26 are adjusted synchronously, enabling the outer walls of the two wire rings 26 to clamp the outer wall of the copper wire, thereby limiting the copper wire after traction. The docking plate 31 and the rotating groove 2 can be rotated to direct the pulling direction of the steel wire to the traction device, ensuring that the copper wire can be pulled while preventing it from being damaged. The slip ring 33 can be supported by the support ring 36 on the inner wall of the support frame 3, and the clamping plate 34 clamps the slip ring 33, enabling the height of the wire ring 26 to be adjusted according to the position of the support ring 36, so that the height of the cross bar 361 can be adjusted to a position below the winding drum 15 to support the winding drum 15. The height of the mounting member 13 on the support plate 11 can slide downward, enabling the winding drum 15 to be supported within the cross bar 361, ensuring that the copper wire is horizontally aligned with the wire ring 26, so as to facilitate the device to guide the copper wire and ensure that the wire drawing device can ensure that the copper wire is guided and protected when it is not aligned with the winding drum 15.
Claims
1. A wire pay-off rack structure for copper wire processing, comprising a bottom plate (1) and a wire reel (15), characterized in that: The bottom plate (1) is provided with a rotating groove (2), the inner wall of the rotating groove (2) is rotatably connected with a rotating plate (21), the rotating plate (21) is provided with a sliding groove (22), the inner wall of the sliding groove (22) is slidably connected with a sliding block (23), the top end of the sliding block (23) is fixedly connected with a vertical rod (24), the vertical rod (24) is slidably connected with a circular plate (25), the outer wall of the circular plate (25) is rotatably connected with a wire ring (26), a support frame (3) is installed on the bottom plate (1), the top of the support frame (3) is rotatably connected with a docking plate (31), the inner wall of the support frame (3) is rotatably connected with an adjusting rod (35), a support ring (36) is arranged between the adjusting rods (35), a sliding rod (32) is arranged between the rotating groove (2) and the docking plate (31), the outer wall of the sliding rod (32) is slidably connected with a sliding ring (33), the circular plate (25) is provided with a clamping plate (34) that is engaged with the sliding ring (33), and the outer wall of the support ring (36) is fixedly connected with a cross bar (361) corresponding to the wire winding cylinder (15).
2. The structure of a wire pay - off rack for copper wire processing according to claim 1, wherein: A support plate (11) is installed on the bottom plate (1), an installation part (13) is arranged above the support plate (11), one side of the installation part (13) is fixedly connected with a frame plate (14), and the wire winding cylinder (15) is rotatably connected with the frame plate (14).
3. The structure of a wire pay-off stand for copper wire processing according to claim 2, characterized in that: The bottom end of the installation part (13) is fixedly connected with a support rod (12), and the support rod (12) is slidably connected with the support plate (11).
4. The wire unwinding rack structure for copper wire processing according to claim 1, characterized in that: The outer wall of the docking plate (31) is provided with an annular groove (311), and the connection part of the support frame (3) and the docking plate (31) is fixedly connected with a support block (312) that matches the annular groove (311).
5. The structure of a wire pay-off stand for copper wire processing according to claim 1, characterized in that: The top end of the docking plate (31) is fixedly connected with two fixing plates (241), the center of the fixing plates (241) is provided with a mounting plate (244), a lead screw (242) is rotatably connected between the fixing plates (241) and the mounting plate (244), the top end of the vertical rod (24) is fixedly connected with a connecting plate (243), and the connecting plate (243) is threadedly connected with the lead screw (242).