Cable production guide device
By designing a cable production guiding device, and utilizing an adjusting screw and a servo motor-driven guide wheel structure, the problems of deviation and swaying during cable transportation were solved, achieving stable cable guidance and efficient transportation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YITONGDA CABLE CO LTD
- Filing Date
- 2025-11-12
- Publication Date
- 2026-07-31
AI Technical Summary
The existing cable production and transportation equipment lacks a guiding mechanism, which makes the cables prone to deviation and shaking during transportation, affecting production efficiency and product quality.
A cable production guiding device was designed, comprising a guiding platform, a guiding component, a feeding and conveying component, and a positioning component. The guide wheel spacing is adjusted by adjusting the screw, and combined with servo motor drive and cylinder lifting limit block, stable guidance and limiting of the cable are achieved.
It improves the stability and efficiency of cable transportation, reduces cable swaying and deviation, and ensures the accuracy and surface quality of cable processing.
Smart Images

Figure CN224577775U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cable production technology, and in particular to a cable production guiding device. Background Technology
[0002] In industrialized production systems, cables serve as the core carriers for power transmission and signal communication. Their production quality and transportation efficiency directly affect the operational stability of downstream industries. Cable production and transportation equipment, as the link connecting key processes such as extrusion, cooling, traction, and take-up, plays a crucial role in accurately transporting continuously formed cables to the next stage. Its technical performance has a decisive impact on the geometric accuracy, surface quality, and production continuity of cables.
[0003] With the surge in demand for high-specification cables in fields such as new energy and rail transportation, cable production is showing a trend towards high speed and precision. This places higher demands on the stability of transportation equipment. However, existing cable production and transportation equipment generally suffers from limitations in structural design—a lack of targeted guiding mechanisms. In actual transportation, cables are easily deviated from the preset transport path due to factors such as fluctuations in traction speed, uneven distribution of their own weight, and external airflow disturbances, resulting in lateral deviation. At the same time, due to the lack of effective constraint and buffering mechanisms, cables will experience high-frequency shaking due to tension changes during high-speed transmission. This not only leads to unstable contact positions between the cable and the transport rollers, causing surface wear or local deformation, but may also cause production accidents such as cable entanglement and jamming, seriously restricting the improvement of production efficiency and product qualification rate. Utility Model Content
[0004] In order to overcome the problems of cable deviation and shaking during transportation caused by the lack of guiding mechanism in existing cable production and transportation devices, this utility model provides a cable production guiding device.
[0005] The technical solution is as follows: A cable production guiding device includes a guiding platform, a guiding component, a feeding and conveying component, and a positioning component; a feeding and conveying component is provided at the upper end of the guiding platform; a guiding component and a positioning component are respectively provided on both sides of the feeding and conveying component, and two guiding components are provided, with the two guiding components being fixed vertically and horizontally respectively; a guiding component includes a guiding block; a movable slider is provided inside the guiding block, and the movable slider is longitudinally slidably connected along the inner wall of the guiding block; cable guide wheels are provided at the front end of the movable slider and the front end of the guiding block; an adjusting screw is provided on the outside of the guiding block.
[0006] Furthermore, a cable feeder is provided on one side of the guide block, and two rollers are provided on the front end of the cable feeder; a servo motor is provided at the rear end of the cable feeder, and the output end of the servo motor is connected to one of the rollers of the cable feeder.
[0007] Furthermore, a cable feeding limit block is provided on one side of the cable feeding clamp, and a wire threading hole is provided inside the cable feeding limit block.
[0008] Furthermore, a cylinder is provided at the lower end of the cable conveying limit block, and the cylinder is located at the lower end of the guide platform, with the output end of the cylinder fixedly connected to the lower end face of the cable conveying limit block.
[0009] Furthermore, a base is provided on the outside of the cylinder housing, and the base is bolted to the cylinder, and the base is also fixedly connected to the lower end face of the guide platform.
[0010] Furthermore, the adjusting screw is threadedly connected to the guide block, and one end of the adjusting screw is internally rotatably connected to the movable slider.
[0011] Furthermore, the cable guide wheels are arranged in an alternating, staggered pattern.
[0012] The beneficial effects are as follows: This utility model adjusts the distance between the longitudinal cable guide wheels by adjusting the rotation of the screw to drive the moving slider to slide longitudinally along the inner wall of the guide block. This allows for adjustment of the clamping force of the cable between the cable guide wheels, improving the stability of cable transportation. The two guide components, one horizontally placed and one vertically placed, limit and guide the cable passing through the gap between the cable guide wheels, and also straighten the cable. Combined with the servo motor driving the rollers of the cable feeding clamp, the cable guiding and transportation functions are realized, greatly improving the guiding stability and conveying efficiency of cable processing.
[0013] By setting up the positioning component, the lifting and lowering of the cable conveying limit block is achieved by using the lifting and lowering of the output end of the cylinder. Thus, when the cable passes through the wire-passing hole inside the cable conveying limit block for transportation, it plays the role of guiding and limiting the cable, improving the stability of the cable's movement and transportation, and reducing the occurrence of cable vibration. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the overall rear-view three-dimensional structure of this utility model;
[0016] Figure 3 This is a three-dimensional structural diagram of the guide component of this utility model;
[0017] Figure 4 This is a three-dimensional structural diagram of the feeding and conveying assembly of this utility model;
[0018] Figure 5This is a three-dimensional structural diagram of the positioning component of this utility model.
[0019] In the attached diagram, the following are the reference numerals: 1. Guide platform; 2. Guide assembly; 3. Feeding and conveying assembly; 4. Positioning assembly; 201. Guide block; 202. Moving slider; 203. Cable guide wheel; 204. Adjusting screw; 301. Cable feed clamp; 302. Servo motor; 401. Base; 402. Cylinder; 403. Cable conveying limit block. Detailed Implementation
[0020] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments.
[0021] Example 1
[0022] like Figures 1-5 As shown, the cable production guiding device includes a guiding platform 1, a guiding component 2, a feeding and conveying component 3, and a positioning component 4. The feeding and conveying component 3 is provided at the upper end of the guiding platform 1. The guiding component 2 and the positioning component 4 are respectively provided on both sides of the feeding and conveying component 3. There are two guiding components 2, which are fixed vertically and horizontally, respectively. The guiding component 2 includes a guiding block 201. A movable slider 202 is provided inside the guiding block 201, and the movable slider 202 is longitudinally slidably connected along the inner wall of the guiding block 201. Cable guide wheels 203 are provided at the front end of the movable slider 202 and the front end of the guiding block 201. An adjusting screw 204 is provided on the outside of the guiding block 201.
[0023] A cable feeder 301 is provided on one side of the guide block 201. Two rollers are provided on the front end of the cable feeder 301. A servo motor 302 is provided at the rear end of the cable feeder 301, and the output end of the servo motor 302 is connected to one of the rollers of the cable feeder 301.
[0024] The adjusting screw 204 is threadedly connected to the guide block 201, and one end of the adjusting screw 204 is rotatably connected to the inside of the movable slider 202.
[0025] The cable guide wheels 203 are arranged alternately and staggered.
[0026] By adjusting the rotation of the screw 204, the moving slider 202 is driven to slide longitudinally along the inner wall of the guide block 201, thereby realizing the function of adjusting the spacing between the longitudinal cable guide wheels 203. This allows the clamping force of the cable being transported between the cable guide wheels 203 to be adjusted, improving the stability of cable transport. The setting of two guide components 2, one horizontally placed and one vertically placed, allows the cable passing through the gap between the cable guide wheels 203 to be limited and guided, and also serves to straighten the cable. In conjunction with the servo motor 302 driving the rollers of the cable feeding clamp 301 to rotate, the functions of cable guidance and transport are realized, greatly improving the guiding stability and conveying efficiency of cable processing.
[0027] Example 2
[0028] Based on Example 1, such as Figures 1-5 As shown, a cable feeding clamp 301 is provided with a cable conveying limit block 403 on one side, and a wire threading hole is provided inside the cable conveying limit block 403.
[0029] A cylinder 402 is provided at the lower end of the cable conveying limit block 403, and the cylinder 402 is located at the lower end of the guide platform 1. The output end of the cylinder 402 is fixedly connected to the lower end face of the cable conveying limit block 403.
[0030] A base 401 is provided on the outside of the housing of cylinder 402, and the base 401 is bolted to cylinder 402, and the base 401 is fixedly connected to the lower end face of guide platform 1.
[0031] By setting the positioning component 4, the lifting and lowering of the output end of the cylinder 402 is used to realize the lifting and lowering of the cable conveying limit block 403. Thus, when the cable passes through the wire hole inside the cable conveying limit block 403 for transportation, it plays the role of guiding and limiting the cable, improving the stability of the cable movement and transportation, and reducing the occurrence of cable vibration.
Claims
1. A cable production guiding device, comprising a guiding platform (1), characterized in that: It also includes a guide assembly (2), a feeding and conveying assembly (3), and a positioning assembly (4); the upper end of the guide platform (1) is provided with a feeding and conveying assembly (3); the two sides of the feeding and conveying assembly (3) are respectively provided with a guide assembly (2) and a positioning assembly (4), and there are two guide assemblies (2), and the two guide assemblies (2) are fixed in the vertical direction and fixed in the horizontal direction, respectively; the guide assembly (2) includes a guide block (201); a movable slider (202) is provided inside the guide block (201), and the movable slider (202) slides longitudinally along the inner wall of the guide block (201); the front end of the movable slider (202) and the front end of the guide block (201) are both provided with cable guide wheels (203); the outside of the guide block (201) is provided with an adjusting screw (204).
2. The cable production guiding device according to claim 1, characterized in that: A cable feeder (301) is provided on one side of the guide block (201), and two rollers are provided on the front end face of the cable feeder (301); a servo motor (302) is provided at the rear end of the cable feeder (301), and the output end of the servo motor (302) is connected to one of the rollers of the cable feeder (301) for transmission.
3. The cable production guiding device according to claim 2, characterized in that: A cable feeding clamp (301) is provided with a cable conveying limit block (403) on one side, and a wire threading hole is provided inside the cable conveying limit block (403).
4. The cable production guiding device according to claim 3, characterized in that: A cylinder (402) is provided at the lower end of the cable conveying limit block (403), and the cylinder (402) is located at the lower end of the guide platform (1), and the output end of the cylinder (402) is fixedly connected to the lower end face of the cable conveying limit block (403).
5. The cable production guiding device according to claim 4, characterized in that: A base (401) is provided on the outside of the housing of the cylinder (402), and the base (401) is bolted to the cylinder (402), and the base (401) is fixedly connected to the lower end face of the guide platform (1).
6. The cable production guiding device according to claim 1, characterized in that: The adjusting screw (204) is threadedly connected to the guide block (201), and one end of the adjusting screw (204) is internally rotatably connected to the movable slider (202).
7. The cable production guiding device according to claim 1, characterized in that: The cable guide wheels (203) are arranged alternately and staggered.