Copper wire winding device

By designing a copper wire winding device including a sliding plate, a guide frame and a roller, the problems of inconvenient disassembly of winding wheels and easy breakage of copper wires in the prior art are solved, and the rapid removal of winding wheels and uniform winding of copper wires are achieved, and working efficiency and product quality are improved.

CN222934951UActive Publication Date: 2025-06-03JIANGXI XINXIEJI OPTOELECTRONICS IND CO LTD
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Patent Information

Application Number
CN202421823108.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-06-03
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing copper wire winding device requires a screwdriver when removing the winding wheel, which is inconvenient to operate. At the same time, the copper wire is easily broken or loose due to excessive tension during winding, which affects working efficiency.

Method used

A copper wire winding device is designed, and the copper wire is pressed by the first roller and the second roller, and the sliding plate and guide frame are used to achieve rapid removal of the winding wheel. The device also includes a motor, flat belt, bidirectional screw and wire block to ensure that the copper wire is wound evenly and avoid cross-winding.

Benefits of technology

The rapid removal of the winding wheel and the uniform winding of the copper wire are achieved, avoiding the problem of loosening of the copper wire due to breakage, and improving work efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of copper wire processing, in particular to a copper wire winding device. According to the copper wire winding device, the winding wheel can be conveniently and rapidly taken out, operation is easy, a copper wire can be tightly pressed when wound, the copper wire is prevented from being loosened due to breakage, and working efficiency is improved. A copper wire winding device comprises a first supporting frame, a guide rail, a sliding plate and the like, the guide rail is connected to the upper side of the first supporting frame, the sliding plate is connected to the left portion of the guide rail, and the sliding plate is connected to the right portion of the guide rail in a sliding mode. A copper wire is compressed through the first roller and the second roller, and after the copper wire is wound, the winding wheel is taken out by moving the left sliding plate rightwards and moving the right sliding plate rightwards, so that the winding wheel can be taken out quickly and conveniently, the operation is simple, the copper wire can be compressed during winding, and the copper wire winding efficiency is improved. The copper wire is prevented from being loosened due to breakage, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of copper wire processing, in particular to a copper wire winding device. Background Technique

[0002] Copper wire winding is an industrial process mainly used for producing products such as electric wires, cables, motor windings, and transformer windings. This process involves winding copper wire onto a spool, a winding disk, or a winding cylinder according to specific specifications and requirements to form the final copper wire product.

[0003] In the existing copper wire winding, the copper wire is wound around a winding wheel, and usually, the winding wheel is fixed to the winding device by screws. When the winding wheel needs to be disassembled, a screwdriver is required to remove the screws and take out the winding wheel. Moreover, during the copper wire winding process, it is prone to break and become loose due to excessive tension or other reasons, which is rather inconvenient.

[0004] Therefore, it is necessary to design a copper wire winding device that can conveniently and quickly remove the winding wheel, has simple operation, can press the copper wire during winding to prevent the copper wire from breaking and becoming loose, and improve work efficiency. Content of the Utility Model

[0005] In order to overcome the disadvantages that in the existing copper wire winding, a screwdriver is used to remove the screws to take out the winding wheel, and during the copper wire winding process, it is prone to break and become loose due to excessive tension or other reasons, which is rather inconvenient, the utility model provides a copper wire winding device that can conveniently and quickly remove the winding wheel, has simple operation, can press the copper wire during winding to prevent the copper wire from breaking and becoming loose, and improve work efficiency.

[0006] The technical solution is: a copper wire winding device, including a first support frame, a guide rail, a sliding plate, a connecting block, a winding wheel, a guide frame, and a telescopic spring. The upper side of the first support frame is connected with the guide rail. The left part of the guide rail is connected with the sliding plate, and the right part of the guide rail is also slidably connected with the sliding plate. The upper parts of the sliding plates are rotatably connected with the connecting blocks. The winding wheel is clamped between the connecting blocks. The first support frame is connected with the guide frame. The right sliding plate is slidably connected with the guide frame. The guide frame is connected with the left sliding plate. A telescopic spring is connected between the right sliding plate and the guide frame.

[0007] Further, a guide groove is opened at the lower part of the guide frame.

[0008] Further, it further includes a motor, a flat belt, a bidirectional lead screw, and a second support frame. The upper left part of the left sliding plate is connected with the motor. The output shaft of the motor is connected with the left connecting block. A pulley is arranged on the output shaft of the motor. A pulley is arranged on the left part of the bidirectional lead screw. The flat belt is wound around between the pulleys. The rear side of the first support frame is connected with the second support frame. The upper part of the second support frame is rotatably connected with the bidirectional lead screw.

[0009] Further, it also includes a wire block. The wire block is threadedly connected to the bidirectional lead screw, and the wire block is slidably connected to the second support frame.

[0010] Further, it also includes a third support frame, a rotating frame, a first roller, a rotating plate, a second roller, a gear, and a torsion spring. There are two third support frames, front and back, connected to the front of the first support frame. The rotating frame is rotatably connected to the front support frame, and the first roller is rotatably connected to the upper part of the rotating frame. The rotating plate is rotatably connected to the rear third support frame, and the second roller is rotatably connected to the upper part of the rotating plate. Gears are connected to the left and right parts of the rotating frame and the left and right parts of the rotating plate respectively, and two adjacent gears are engaged with each other. The gears are all rotatably connected to the adjacent third support frames. A torsion spring is connected between the front third support frame and the rotating frame.

[0011] Further, the rotating frame is in a folded shape.

[0012] The beneficial effects are as follows: 1. In the present utility model, the first roller and the second roller are used to press the copper wire. After the copper wire winding is completed, by moving the left sliding plate to the right, the right sliding plate is moved to the right, and the winding wheel is taken out, achieving the effect of being able to conveniently and quickly take out the winding wheel, with simple operation, and being able to press the copper wire during winding, avoiding the copper wire from becoming loose due to breakage and improving work efficiency.

[0013] 2. In the present utility model, by starting the motor, the winding wheel rotates, causing the copper wire to wind around the winding wheel. At the same time, the pulley rotates, driving the bidirectional lead screw to rotate, causing the wire block to move left and right under the action of the thread, achieving the effect of being able to wind the copper wire evenly, avoiding the copper wire from being cross-wound during the winding process, and improving production efficiency and product quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic diagram of the present utility model.

[0015] Figure 2 It is a sectional three-dimensional structure schematic diagram of the present utility model.

[0016] Names and serial numbers of components in the figure: 1 - First support frame, 2 - Guide rail, 3 - Sliding plate, 4 - Connecting block, 5 - Winding wheel, 6 - Guide frame, 7 - Telescopic spring, 8 - Motor, 9 - Flat belt, 10 - Bidirectional lead screw, 11 - Second support frame, 12 - Wire block, 13 - Third support frame, 14 - Rotating frame, 15 - First roller, 16 - Rotating plate, 17 - Second roller, 18 - Gear, 19 - Torsion spring. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] The technical solutions of the present utility model will be further described below with reference to the drawings.

[0018] A copper wire winding device, as Figure 1 and Figure 2 shown, includes a first support frame 1, a guide rail 2, a sliding plate 3, a connecting block 4, a winding wheel 5, a guide frame 6, a telescopic spring 7, a motor 8, a flat belt 9, a bidirectional lead screw 10, a second support frame 11, a wire guiding block 12, a third support frame 13, a rotating frame 14, a first roller 15, a rotating plate 16, a second roller 17, a gear 18 and a torsion spring 19. The upper side of the first support frame 1 is connected with the guide rail 2. The left part of the guide rail 2 is connected with the sliding plate 3. The right part of the guide rail 2 is also slidably connected with the sliding plate 3. The upper parts of the sliding plates 3 are rotatably connected with the connecting blocks 4. The winding wheel 5 is clamped between the connecting blocks 4. The first support frame 1 is connected with the guide frame 6. The right sliding plate 3 is slidably connected with the guide frame 6. The guide frame 6 is connected with the left sliding plate 3. A telescopic spring 7 is connected between the right sliding plate 3 and the guide frame 6. A guide groove is opened at the lower part of the guide frame 6. The upper left part of the left sliding plate 3 is connected with the motor 8. The output shaft of the motor 8 is connected with the left connecting block 4. A pulley is arranged on the output shaft of the motor 8. The flat belt 9 is wound around between the pulleys. A pulley is arranged on the left part of the bidirectional lead screw 10. The rear side of the first support frame 1 is connected with the second support frame 11. The upper parts of the second support frame 11 are rotatably connected with the bidirectional lead screw 10. The wire guiding block 12 is threadedly connected with the bidirectional lead screw 10. The wire guiding block 12 is slidably connected with the second support frame 11. The front part of the first support frame 1 is connected with two front and rear third support frames 13. The front support frame is rotatably connected with the rotating frame 14. The rotating frame 14 is in a folded shape. The upper part of the rotating frame 14 is rotatably connected with the first roller 15. The rear third support frame 13 is rotatably connected with the rotating plate 16. The upper part of the rotating plate 16 is rotatably connected with the second roller 17. The left and right parts of the rotating frame 14 and the left and right parts of the rotating plate 16 are both connected with the gears 18. The adjacent two gears 18 are engaged with each other. The gears 18 are rotatably connected with the adjacent third support frames 13. A torsion spring 19 is connected between the front third support frame 13 and the rotating frame 14.

[0019] When using this device, first place the first support frame 1 in the winding area. Pass one end of the wire to be wound through the guiding groove on the wire guiding block 12, then wind the other end around the winding wheel 5. Then start the motor 8 to drive the connecting block 4 to rotate, causing the winding wheel 5 to rotate, so that the copper wire is wound around the winding wheel 5. At the same time, the pulley rotates, causing the flat belt 9 to rotate, driving the bidirectional lead screw 10 to rotate, and causing the wire guiding block 12 to move left and right under the action of the thread, so as to wind the copper wire evenly, avoid cross winding of the copper wire during the winding process, improve production efficiency and product quality. During the winding process of the copper wire, it will drive the first roller 15 and the second roller 17 to rotate. When more copper wire is wound, it will drive the rotating frame 14 to rotate forward, and the torsion spring 19 will deform, causing the gear 18 to rotate. The gears 18 mesh with each other, driving the rotating plate 16 to rotate downward to press the copper wire. After the copper wire winding is completed, move the sliding plate 3 on the right part to the right on the guiding frame 6, so that the connecting block 4 does not contact the sliding plate 3, and then take out the winding wheel, so that the winding wheel can be taken out quickly and conveniently. The operation is simple, and the copper wire can be pressed during winding, avoiding the copper wire from loosening due to breakage and improving work efficiency.

[0020] The above are only the preferred embodiments of the present invention. It should be pointed out that for those of ordinary skill in the art of this technology, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. A copper wire winding device, characterized in that: The invention comprises a first support frame (1), a guide rail (2), a sliding plate (3), a connecting block (4), a winding wheel (5), a guide frame (6) and a telescopic spring (7). The upper side of the first support frame (1) is connected to the guide rail (2), the left part of the guide rail (2) is connected to the sliding plate (3), the right part of the guide rail (2) is also slidably connected to the sliding plate (3), the upper part of the sliding plate (3) is rotatably connected to the connecting block (4), the winding wheel (5) is clamped between the connecting blocks (4), the first support frame (1) is connected to the guide frame (6), the right sliding plate (3) is slidably connected to the guide frame (6), the guide frame (6) is connected to the left sliding plate (3), and a telescopic spring (7) is connected between the right sliding plate (3) and the guide frame (6).

2. A copper wire winding device according to claim 1, characterized in that: The guide frame (6) has a guide groove at the bottom.

3. A copper wire winding device according to claim 2, characterized in that: The invention also comprises a motor (8), a flat belt (9), a bidirectional screw rod (10) and a second support frame (11); the upper left part of the left sliding plate (3) is connected with the motor (8); the output shaft of the motor (8) is connected with the connecting block (4) on the left; a pulley is arranged on the output shaft of the motor (8); a pulley is arranged on the left part of the bidirectional screw rod (10); a flat belt (9) is wound around the pulleys; the rear side of the first support frame (1) is connected with the second support frame (11); and the upper part of the second support frame (11) is rotatably connected with the bidirectional screw rod (10).

4. A copper wire winding device according to claim 3, characterized in that: It also includes a conductor block (12), the conductor block (12) is threadedly connected to the bidirectional lead screw (10), and the conductor block (12) is slidably connected to the second support frame (11).

5. A copper wire winding device according to claim 4, characterized in that: The invention also comprises a third support frame (13), a rotating frame (14), a first roller (15), a rotating plate (16), a second roller (17), a gear (18) and a torsion spring (19); the front part of the first support frame (1) is connected to two third support frames (13) at the front and rear; the front support frame is rotatably connected to the rotating frame (14); the upper part of the rotating frame (14) is rotatably connected to the first roller (15); the rear third support frame (13) is rotatably connected to the rotating plate (16); the upper part of the rotating plate (16) is rotatably connected to the second roller (17); the left and right parts of the rotating frame (14) and the left and right parts of the rotating plate (16) are both connected to gears (18); two adjacent gears (18) mesh with each other for movement; the gears (18) are both rotatably connected to the adjacent third support frames (13); and a torsion spring (19) is connected between the front third support frame (13) and the rotating frame (14).

6. A copper wire winding device according to claim 5, characterized in that: The rotating frame (14) is in a folding shape.

Citation Information

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