Wire stranding equipment for control cable production
By designing twisted wire equipment with reel, guide rod and adjustment structure, the problem of uneven distribution of cables during reeling is solved, and uniform reeling of cables and improving the stability of equipment is achieved.
Patent Information
- Application Number
- CN202422321285.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-24
AI Technical Summary
It is difficult for existing stranded wire equipment to evenly distribute the cables on the surface of the reel after twisting, resulting in uneven internal structure of the cables, affecting product quality and equipment adaptability.
A stranded wire device including a reel, a guide rod, an adjustment structure and a motor is designed. The motor drives the cooperation of the cam and the rotary plate to achieve uniform distribution of the cables, and prevents the guide rod from being offset by the clamping structure to ensure the stability of the cable during the reeling process.
The uniform distribution of cables on the surface of the reel is achieved, the internal structure and external roundness of the cable are improved, and the product quality and equipment adaptability are improved.
Smart Images

Figure CN223180897U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of control cable production, in particular to a stranding device for control cable production. Background Technique
[0002] In the field of cable production, the production of control cables is an important link, which involves stranding multiple cable cores together in a certain stranding manner to form a cable product with specific electrical and physical properties. Control cables are widely used in various industrial control and automation systems, and their quality directly affects the stability and reliability of the entire system. During the production of control cables, stranding devices will be used. The current stranding devices strand multiple cable cores together in a certain stranding manner to improve the flexibility and anti-interference ability of the cables, and then wind the stranded cables through a take-up reel. However, most of the stranding devices do not have an adjustment structure, making it difficult to evenly distribute the stranded cables on the surface of the take-up reel, resulting in overlapping or gaps between layers, affecting the internal structure and external roundness of the control cables, thus reducing the adaptability of the stranding device. Content of the Utility Model
[0003] The purpose of the utility model is to provide a stranding device for control cable production to solve the problems raised in the above background technique.
[0004] To achieve the above purpose, the utility model provides the following technical solution: A stranding device for control cable production, including a base, one side of the base is fixedly connected with a support plate, one side of the support plate is fixedly connected with an adjustment structure, a strander is arranged above the base, a guide rod is rotatably connected inside the support plate, a take-up reel is fixedly connected to the outer surface of the guide rod, a connecting plate is connected to the adjustment structure, a motor three is fixedly connected to one side of the connecting plate, a clamping structure is arranged inside the support plate, and the clamping structure is lapped with the guide rod. The adjustment structure includes a concave plate, a motor one, a moving plate, a fixed rod and a cam. A rotating plate is rotatably connected to the outside of the fixed rod, a fixed wheel is arranged on the front surface of the rotating plate, the rotating plate is connected to the lower part of the moving plate, and a spring is arranged outside the rotating plate.
[0005] As a further preference of the above technical solution, the guide rod is rotatably connected inside the connecting plate, the output shaft of the motor three is clamped with the guide rod, and the strander is connected to the support plate.
[0006] As a further preference of the above technical solution, the concave plate is fixedly connected to one side of the support plate, a chute is opened inside the concave plate, the moving plate is slidably connected inside the chute, and the connecting plate is connected to the moving plate through bolts.
[0007] As a further preference of the technical solution, the first motor is fixedly connected to the front of the concave plate, the output shaft of the first motor is connected to the cam, and the rotating plate is connected to the inside of the concave plate through a spring.
[0008] As a further preference of the technical solution, the fixed rod is fixedly connected to the inside of the concave plate, the cam is rotatably connected to the inside of the concave plate, and the cam is in lap joint with the fixed wheel.
[0009] As a further preference of the technical solution, the clamping structure includes a fixing plate, a threaded rod is rotatably connected to the fixing plate, the threaded rod is rotatably connected to the support plate, a second motor is fixedly connected to one side of the support plate, and the output shaft of the second motor is connected to the threaded rod.
[0010] As a further preference of the technical solution, the threaded rod is externally threaded with an auxiliary plate, clamping plates are fixedly connected to both sides of the auxiliary plate, the clamping plates are slidably connected to the inside of the support plate, and the clamping plates are in lap joint with the surface of the guide rod.
[0011] The utility model provides a stranding device for controlling cable production, which has the following beneficial effects:
[0012] (1) By setting a take-up reel, a guide rod, an adjusting structure, a connecting plate and a third motor, the utility model drives the cam to rotate by itself through the first motor. The convex surface of the cam will contact the fixed wheel, and the fixed wheel will drive the rotating plate to rotate around the fixed rod. When the rotating plate swings, it will drive the moving plate to slide in the chute, and the spring will deform with the swing of the rotating plate. When the rotating plate loses resistance, it will be reset by the spring. Through the cooperation between the cam, the rotating plate and the spring, the stranding device enables the moving plate to drive the guide rod to reciprocate in the support plate, facilitating the uniform distribution of the stranded cable on the surface of the take-up reel. The evenly distributed cable can ensure the internal structure and external roundness of the cable, improve the product quality, and ensure the adaptability of the stranding device.
[0013] (2) By setting the clamping structure, the utility model drives the threaded rod to rotate by itself through the second motor. The auxiliary plate will move on the surface of the threaded rod, and the auxiliary plate will drive the clamping plate to slide in the support plate. After the clamping plate slides, it will be clamped with the guide rod, thereby playing a certain limiting role on the guide rod in the support plate and avoiding the phenomenon that the position of the guide rod shifts during sliding. Description of the Drawings
[0014] Figure 1 is a three-dimensional structural schematic diagram of the utility model;
[0015] Figure 2 is a three-dimensional structural schematic diagram of the support plate of the utility model;
[0016] Figure 3Schematic cross-sectional structure diagram of the adjustment structure of the present utility model in three dimensions;
[0017] Figure 4 Schematic three-dimensional structure diagram of the clamping structure of the present utility model;
[0018] In the figure: 1, base; 2, wire twisting device; 3, support plate; 4, winding drum; 5, guide rod; 6, adjustment structure; 601, concave plate; 602, chute; 603, motor 1; 604, moving plate; 605, fixed rod; 606, cam; 607, rotating plate; 608, fixed wheel; 609, spring; 7, clamping structure; 701, fixing plate; 702, threaded rod; 703, motor 2; 704, auxiliary plate; 705, clamping plate; 8, connecting plate; 9, motor 3. Specific implementation manner
[0019] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model.
[0020] The present utility model provides a technical solution: As Figure 1 and Figure 4 shown, in this embodiment, a wire twisting device for controlling cable production includes a base 1, a support plate 3 is fixedly connected to one side of the base 1, an adjustment structure 6 is fixedly connected to one side of the support plate 3, a wire twisting device 2 is provided above the base 1, a guide rod 5 is rotatably connected inside the support plate 3, a winding drum 4 is fixedly connected to the outer surface of the guide rod 5, a connecting plate 8 is connected to the adjustment structure 6, a motor 3 9 is fixedly connected to one side of the connecting plate 8, a clamping structure 7 is provided inside the support plate 3, the clamping structure 7 is lapped with the guide rod 5, the adjustment structure 6 includes a concave plate 601, a motor 1 603, a moving plate 604, a fixed rod 605 and a cam 606, a rotating plate 607 is rotatably connected outside the fixed rod 605, a fixed wheel 608 is provided on the front surface of the rotating plate 607, the rotating plate 607 is connected to the lower part of the moving plate 604, and a spring 609 is provided outside the rotating plate 607.
[0021] As Figure 1 and Figure 3 shown, the guide rod 5 is rotatably connected inside the connecting plate 8, the output shaft of the motor 3 9 is clamped with the guide rod 5, the wire twisting device 2 is connected to the support plate 3, the concave plate 601 is fixedly connected to one side of the support plate 3, a chute 602 is opened inside the concave plate 601, the moving plate 604 is slidably connected inside the chute 602, the connecting plate 8 is connected to the moving plate 604 by bolts, the motor 1 603 is fixedly connected to the front surface of the concave plate 601, the output shaft of the motor 1 603 is connected to the cam 606, the rotating plate 607 is connected inside the concave plate 601 through the spring 609, the fixed rod 605 is fixedly connected inside the concave plate 601, the cam 606 is rotatably connected inside the concave plate 601, and the cam 606 is lapped with the fixed wheel 608.
[0022] By setting the sliding groove 602 and the fixed rod 605, when the first motor 603 drives the cam 606 to rotate, the convex surface of the cam 606 will contact the fixed wheel 608, and the fixed wheel 608 will drive the rotating plate 607 to rotate around the fixed rod 605. When the rotating plate 607 swings, it will drive the moving plate 604 to slide in the sliding groove 602, so that the sliding groove 602 plays a certain guiding role in the movement of the moving plate 604, avoiding the phenomenon of collision when the moving plate 604 moves, and the fixed rod 605 plays a certain positioning role in the swing of the rotating plate 607, preventing the rotating plate 607 from falling off the concave plate 601 when swinging.
[0023] As Figure 4 As shown, the clamping structure 7 includes a fixing plate 701. A threaded rod 702 is rotatably connected inside the fixing plate 701. The threaded rod 702 is rotatably connected in the support plate 3. A second motor 703 is fixedly connected to one side of the support plate 3. The output shaft of the second motor 703 is connected to the threaded rod 702. An auxiliary plate 704 is threadedly connected to the threaded rod 702. Clamping plates 705 are fixedly connected to both sides of the auxiliary plate 704. The clamping plates 705 are slidably connected in the support plate 3, and the clamping plates 705 are lapped on the surface of the guide rod 5.
[0024] By setting the clamping structure 7, the second motor 703 drives the threaded rod 702 to rotate, and the auxiliary plate 704 will move on the surface of the threaded rod 702. The auxiliary plate 704 will drive the clamping plates 705 to slide in the support plate 3. After the clamping plates 705 slide, they will be clamped with the guide rod 5, so as to be able to play a certain limiting role on the guide rod 5 in the support plate 3, avoiding the phenomenon that the position of the guide rod 5 shifts when sliding.
[0025] The utility model provides a stranding device for controlling cable production, and the specific working principle is as follows:
[0026] When the stranding device is in use, it will strand multiple groups of cables through the strander 2, and the stranded control cable will be wound through the take-up reel 4. During the use process, the take-up reel 4 can be clamped into the support plate 3 through the guide rod 5, and then one end of the guide rod 5 will rotate inside the connecting plate 8, and the output shaft of the third motor 9 will be clamped with the guide rod 5 inside the connecting plate 8. The second motor 703 drives the threaded rod 702 to rotate, and the auxiliary plate 704 will move on the surface of the threaded rod 702. The auxiliary plate 704 will drive the clamping plates 705 to slide in the support plate 3. After the clamping plates 705 slide, they will be clamped with the guide rod 5;
[0027] When the control cable after stranding is wound by the take-up reel 4, the guide rod 5 is driven by the third motor 9 to rotate in the connecting plate 8. When the take-up reel 4 rotates, it winds the control cable. During the winding process, the first motor 603 drives the cam 606 to rotate. The convex surface of the cam 606 contacts the fixed wheel 608, and the fixed wheel 608 drives the rotating plate 607 to rotate around the fixed rod 605. When the rotating plate 607 swings, it drives the moving plate 604 to slide in the sliding groove 602, and the spring 609 deforms as the rotating plate 607 swings. When the rotating plate 607 loses resistance, it is reset by the spring 609.
[0028] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A stranding device for controlling cable production, comprising a base (1), characterized in that: One side of the base (1) is fixedly connected with a support plate (3). One side of the support plate (3) is fixedly connected with an adjusting structure (6). Above the base (1) is a wire twisting device (2). A guide rod (5) is rotatably connected inside the support plate (3). A wire winding drum (4) is fixedly connected to the outer surface of the guide rod (5). A connecting plate (8) is connected to the adjusting structure (6). One side of the connecting plate (8) is fixedly connected with a motor three (9). A clamping structure (7) is arranged inside the support plate (3). The clamping structure (7) is lapped with the guide rod (5). The adjusting structure (6) includes a concave plate (601), a motor one (603), a moving plate (604), a fixed rod (605) and a cam (606). A rotating plate (607) is rotatably connected to the outside of the fixed rod (605). A fixed wheel (608) is arranged on the front surface of the rotating plate (607). The rotating plate (607) is connected to the lower part of the moving plate (604). A spring (609) is arranged outside the rotating plate (607).
2. The stranding equipment for manufacturing control cables according to claim 1, characterized in that: The guide rod (5) is rotatably connected inside the connecting plate (8). The output shaft of the motor three (9) is clamped with the guide rod (5). The wire twisting device (2) is connected to the support plate (3).
3. The stranding equipment for manufacturing control cables according to claim 1, characterized in that: The concave plate (601) is fixedly connected to one side of the support plate (3). A chute (602) is formed inside the concave plate (601). The moving plate (604) is slidably connected inside the chute (602). The connecting plate (8) is connected to the moving plate (604) by bolts.
4. The stranding equipment for manufacturing control cables according to claim 1, wherein: The motor one (603) is fixedly connected to the front surface of the concave plate (601). The output shaft of the motor one (603) is connected to the cam (606). The rotating plate (607) is connected inside the concave plate (601) through the spring (609).
5. A stranding device for controlling the production of cables according to claim 1, characterized in that: The fixed rod (605) is fixedly connected inside the concave plate (601). The cam (606) is rotatably connected inside the concave plate (601). The cam (606) is lapped with the fixed wheel (608).
6. The stranding equipment for the production of control cables according to claim 1, characterized in that: The clamping structure (7) includes a fixing plate (701). A threaded rod (702) is rotatably connected inside the fixing plate (701). The threaded rod (702) is rotatably connected inside the support plate (3). A motor two (703) is fixedly connected to one side of the support plate (3). The output shaft of the motor two (703) is connected to the threaded rod (702).
7. The stranding equipment for the production of control cables according to claim 6, characterized in that: The threaded rod (702) is threadedly connected with an auxiliary plate (704). Clamping plates (705) are fixedly connected to both sides of the auxiliary plate (704). The clamping plates (705) are slidably connected inside the support plate (3). The clamping plates (705) are lapped with the surface of the guide rod (5).