Processing equipment for high-speed tensile data cable
By using a motor-driven shaft and drum in data cable processing equipment to wrap wear-resistant and tensile-resistant cloth around the data cable, the problem of sheath wear caused by dragging during cable use is solved, and the tensile strength and durability of the cable are improved.
Patent Information
- Application Number
- CN202422524567.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-10-18
AI Technical Summary
Data cables are prone to wear and tear on their outer sheath due to dragging during use, reducing their durability.
A high-speed tensile data cable processing device was designed. The device uses a motor to drive a rotating shaft and a rotating drum to wrap abrasion-resistant and tensile-resistant cloth around the data cable body. Multiple motors provide power to make the cloth wrap evenly, thereby improving the tensile strength of the cable.
It enables convenient winding of wear-resistant and tensile-resistant cloth, improves the tensile strength of data cables, and saves time and effort in operation.
Smart Images

Figure CN223665238U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable technology, specifically to processing equipment for high-speed tensile data cables. Background Technology
[0002] A data cable is a type of cable used to connect various devices to transmit data. It typically consists of internal metal conductors, an insulation layer, and an outer sheath. Data cables can be used to connect computers, mobile devices, network devices, etc., to achieve data transmission and communication. Different types of data cables have different designs, transmission speeds, and applications. Data cables play a vital role in modern society, helping us to transmit information and data quickly and stably between devices. During use, data cables are often dragged, which puts tension on the cable itself, easily causing wear or tear on the outer sheath, leading to damage and breakage during daily use, reducing overall durability.
[0003] Chinese patent discloses a data cable (authorization announcement number CN210925547U). This patented technology mainly comprises: a first sheath, which is cylindrical and has a hollow cavity inside; multiple cable assemblies, arranged within the first cavity and forming a circle around the center of the data cable; a second sheath, also cylindrical and with a hollow cavity inside; multiple pairs of twisted-pair wires, arranged within the second cavity; and a filler material located at the center of the data cable, with the multiple cable assemblies surrounding the outside of the filler material. The filler material is made of polypropylene filler rope.
[0004] However, this patent still has shortcomings. Data cables are often dragged during use, which puts tension on the cable itself, easily causing wear or tear on the outer sheath. This leads to damage and breakage during daily use, reducing overall durability. Therefore, this application provides a processing device for high-speed, tensile-resistant data cables to solve the problems mentioned in the background art. Utility Model Content
[0005] The purpose of this utility model is to provide a processing device for high-speed tensile data cables. It facilitates the wrapping of wear-resistant and tensile cloth around the data cable body of different lengths, thereby improving the tensile strength of the data cable body. It also saves time and effort, solving the problem that when using data cables, they often need to be dragged, which puts tension on the data cable itself, easily causing wear or tear on the outer sheath, damage or breakage during daily use, and reducing the overall durability.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a processing device for high-speed tensile-resistant data cables, comprising a support frame 1, a support frame 2, a rotating drum 1, and a rotating drum 2. The support frame 1 has a groove 1 at its front end. A support frame 3 is fixed to one side of the inner wall of the groove 1. The support frame 3 has a groove 3 at its front end. The upper and lower ends of the inner wall of the groove 3 are rotatably connected to a rotating shaft 3. The rotating shaft 3 is fixed to the rotating drum 2. Abrasion-resistant tensile-resistant cloth is wound onto the rotating drum 2. The upper and lower ends of the inner wall of the groove 1 are rotatably connected to the rotating shaft 1. The rotating shaft 1 is fixed to the support frame 2. A groove 2 is formed on one side of the support frame 2. The front and rear ends of the inner wall of the groove 2 are rotatably connected to the rotating shaft 2. The rotating shaft 2 is fixed to the rotating drum 1. The rotating drum 1 winds up the data cable body.
[0007] Preferably, four pillars arranged in a rectangular array are fixed to the lower surface of the support. The four pillars support the support, making the entire device stable.
[0008] Preferably, a control switch box is fixed to one side of the bracket, and a display screen and buttons are sequentially fitted and installed on one side of the control switch box from top to bottom. The start and stop of motor one, motor two, and motor three can be controlled through the control switch box.
[0009] Preferably, the bracket has a circular hole at each of its upper and lower ends, and a motor is fixed at each of the upper and lower ends. The bottom end of the drive shaft of the motor extends into the circular hole, and a rotating shaft is fixed at the bottom end of the drive shaft. By fixing the rotating shaft with the drive shaft of the motor, power is provided for the rotation of the rotating shaft, the bracket, and the data cable body. This facilitates the wrapping of the wear-resistant and tensile-resistant cloth around the data cable body, saving time and effort, while also improving the tensile strength of the data cable body.
[0010] Preferably, the upper surface of the bracket three has a circular hole three, and a motor three is fixed to the upper surface of the bracket three. The bottom end of the drive shaft of the motor three extends into the circular hole three, and a rotating shaft three is fixed to the bottom end of the drive shaft of the motor three. The rotating shaft three is fixed by the drive shaft of the motor three, which provides power for the rotation of the rotating shaft three, the wear-resistant and tensile-resistant cloth, and the rotating drum two, so that the wear-resistant and tensile-resistant cloth can be fed out, making it easy to wind the wear-resistant and tensile-resistant cloth onto the data cable body.
[0011] Preferably, the second bracket has a circular hole at its front end, a second motor is fixed to the front end of the second bracket, the rear end of the drive shaft of the second motor extends into the circular hole, and a second rotating shaft is fixed to the rear end of the drive shaft of the second motor. By fixing the second rotating shaft to the drive shaft of the second motor, power is provided for the rotation of the second rotating shaft, the data cable body, and the first rotating drum, so that the data cable body can transmit as needed, and it is convenient to wrap the wear-resistant and tensile-resistant cloth around the data cable body of different lengths.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] This invention utilizes a three-section groove with rotating shaft three rotatably connected to its upper and lower ends. Rotating shaft three is fixed to rotating drum two, which winds up a wear-resistant and tensile-resistant cloth. Similarly, a three-section groove with rotating shaft one rotatably connected to its upper and lower ends is fixed to a bracket two. A three-section groove two is located on one side of the bracket two, with rotating shaft two rotatably connected to its front and rear ends. Rotating shaft two is fixed to rotating drum one, which winds up the data cable body. When it is necessary to improve the tensile strength of the data cable body, one end of the wear-resistant and tensile-resistant cloth is wrapped around the data cable body. Then, motor one is started, causing the data cable body and rotating drum one to rotate. Simultaneously, motor two starts, rotating drum one rotates, and the data cable body is transmitted. The wear-resistant and tensile-resistant cloth can wrap around the data cable body, achieving the effect of easily wrapping the wear-resistant and tensile-resistant cloth around data cable bodies of different lengths, improving the tensile strength of the data cable body, and saving time and effort. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0015] Figure 2 This is a cross-sectional view of the bracket of this utility model;
[0016] Figure 3 This is a schematic diagram of the two-section structure of the bracket of this utility model;
[0017] Figure 4 This is a schematic diagram of the three-section structure of the bracket of this utility model.
[0018] In the diagram: 1. Support column; 2. Groove 1; 3. Bracket 1; 4. Control switch box; 5. Shaft 1; 6. Hole 1; 7. Motor 1; 8. Bracket 2; 9. Shaft 2; 10. Data cable body; 11. Rotary drum 1; 12. Hole 2; 13. Motor 2; 14. Groove 2; 15. Wear-resistant and tensile-resistant cloth; 16. Rotary drum 2; 17. Hole 3; 18. Motor 3; 19. Bracket 3; 20. Groove 3; 21. Shaft 3. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Please see Figures 1 to 4This utility model provides an embodiment of a high-speed tensile data cable processing device, including a bracket 3, a bracket 8, a rotating drum 11 and a rotating drum 26. The front end of the bracket 3 has a groove 2. The lower surface of the bracket 3 is fixed with four pillars 1 arranged in a rectangular array. A control switch box 4 is fixed on one side of the bracket 3. A display screen and buttons are installed sequentially from top to bottom on one side of the control switch box 4. The four pillars 1 can support the bracket 3, making the device stable. The control switch box 4 can control the start and stop of motor 7, motor 2 13 and motor 3 18.
[0021] A bracket 19 is fixed to one side of the inner wall of the groove 12. A groove 20 is opened at the front end of the bracket 19. The upper and lower ends of the inner wall of the groove 20 are respectively rotatably connected to the shaft 21. A round hole 17 is opened on the upper surface of the bracket 19. A motor 18 is fixed on the upper surface of the bracket 19. The bottom end of the drive shaft of the motor 18 extends into the round hole 17. The bottom end of the drive shaft of the motor 18 is fixed to the shaft 21. The shaft 21 is fixed by the drive shaft of the motor 18, which provides power for the rotation of the shaft 21, the wear-resistant and tensile cloth 15 and the rotating drum 16. This allows the wear-resistant and tensile cloth 15 to be fed out, making it easy to wind the wear-resistant and tensile cloth 15 onto the data cable body 10. The shaft 21 is fixed to the rotating drum 16, and the wear-resistant and tensile cloth 15 is wound up on the rotating drum 16.
[0022] The upper and lower ends of the inner wall of the groove 2 are respectively rotatably connected to the rotating shaft 5. The upper and lower ends of the bracket 3 are respectively provided with round holes 6. The upper and lower ends of the bracket 3 are respectively fixed with motor 7. The bottom end of the drive shaft of the motor 7 extends into the round hole 6. The bottom end of the drive shaft of the motor 7 is fixed with the rotating shaft 5. The rotating shaft 5 is fixed by the drive shaft of the motor 7, which provides power for the rotation of the rotating shaft 5, the bracket 2 8 and the data cable body 10. It is convenient to wrap the wear-resistant and tensile-resistant cloth 15 around the data cable body 10, saving time and effort, and improving the tensile strength of the data cable body 10. The rotating shaft 5 is fixed with the bracket 2 8.
[0023] A groove 14 is provided on one side of the bracket 2 8. The front and rear ends of the inner wall of the groove 14 are respectively rotatably connected to the rotating shaft 9. A round hole 12 is provided at the front end of the bracket 2 8. A motor 13 is fixed at the front end of the bracket 2 8. The rear end of the drive shaft of the motor 13 extends into the round hole 12. The rear end of the drive shaft of the motor 13 is fixed to the rotating shaft 9. The rotating shaft 9 is fixed by the drive shaft of the motor 13, which provides power for the rotation of the rotating shaft 9, the data cable body 10 and the rotating drum 11. This allows the data cable body 10 to transmit data as needed and facilitates the winding of the wear-resistant and tensile-resistant cloth 15 around the data cable body 10 of different lengths. The rotating shaft 2 9 is fixed to the rotating drum 11, and the rotating drum 11 winds up the data cable body 10.
[0024] When it is necessary to improve the tensile strength of the data cable body 10, the data cable body 10 is wound around the rotating drum 11, and the wear-resistant and tensile-resistant cloth 15 is wound around the rotating drum 2 16. Then, the control switch box 4 is operated to start the motor 3 18, the rotating drum 2 16 rotates, and the wear-resistant and tensile-resistant cloth 15 is fed out. One end of the wear-resistant and tensile-resistant cloth 15 is wound around the data cable body 10. Then, the motor 1 7 is started to rotate the bracket 2 8 and the data cable body 10. Finally, the motor 2 13 is started to rotate the rotating drum 11, and the data cable body 10 transmits data. This achieves the effect of easily winding the wear-resistant and tensile-resistant cloth 15 around the data cable body 10 of different lengths, improving the tensile strength of the data cable body 10, and saving time and labor.
[0025] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A processing device for high-speed tensile data cables, comprising a first bracket (3), a second bracket (8), a first rotating drum (11), and a second rotating drum (16), characterized in that: The bracket 1 (3) has a groove 1 (2) at its front end. A bracket 3 (19) is fixed on one side of the inner wall of the groove 1 (2). A groove 3 (20) is opened at the front end of the bracket 3 (19). The upper and lower ends of the inner wall of the groove 3 (20) are respectively rotatably connected to the shaft 3 (21). The shaft 3 (21) is fixed to the rotating drum 2 (16). The rotating drum 2 (16) winds up the wear-resistant and tensile-resistant cloth (15). The upper and lower ends of the inner wall of the groove 1 (2) are respectively rotatably connected to the shaft 1 (5). The shaft 1 (5) is fixed to the bracket 2 (8). A groove 2 (14) is opened on one side of the bracket 2 (8). The front and rear ends of the inner wall of the groove 2 (14) are respectively rotatably connected to the shaft 2 (9). The shaft 2 (9) is fixed to the rotating drum 1 (11). The rotating drum 1 (11) winds up the data cable body (10).
2. The processing equipment for high-speed tensile data cables according to claim 1, characterized in that: The lower surface of the bracket (3) is fixed with four pillars (1) arranged in a rectangular array.
3. The processing equipment for high-speed tensile data cables according to claim 2, characterized in that: A control switch box (4) is fixed on one side of the bracket (3), and a display screen and buttons are installed sequentially from top to bottom on one side of the control switch box (4).
4. The processing equipment for high-speed tensile data cables according to claim 1, characterized in that: The bracket (3) has a circular hole (6) at both the top and bottom ends. A motor (7) is fixed at both the top and bottom ends of the bracket (3). The bottom end of the drive shaft of the motor (7) extends into the circular hole (6). A rotating shaft (5) is fixed at the bottom end of the drive shaft of the motor (7).
5. The processing equipment for high-speed tensile data cables according to claim 1, characterized in that: The upper surface of the bracket three (19) is provided with a circular hole three (17), and a motor three (18) is fixed on the upper surface of the bracket three (19). The bottom end of the transmission shaft of the motor three (18) extends into the circular hole three (17), and the bottom end of the transmission shaft of the motor three (18) is fixed with a rotating shaft three (21).
6. The processing equipment for high-speed tensile data cables according to claim 1, characterized in that: The bracket 2 (8) has a round hole 2 (12) at its front end. A motor 2 (13) is fixed at the front end of the bracket 2 (8). The rear end of the transmission shaft of the motor 2 (13) extends into the round hole 2 (12). A rotating shaft 2 (9) is fixed at the rear end of the transmission shaft of the motor 2 (13).
Citation Information
Patent Citations
Data cable
CN210925547U