Winding device of tubular stranding machine

By introducing a cleaning component into the winding device of the tubular stranding machine and using a servo motor to drive the drum to rotate and sweep the hair for cleaning, the problem of dust accumulation on the cable surface is solved, automatic cleaning is achieved, and production efficiency and equipment adaptability are improved.

CN223321064UActive Publication Date: 2025-09-09SICHUAN LUFENG CABLE CO LTD
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Patent Information

Application Number
CN202422541193.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-09-09
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

During the winding process of existing tubular stranding machines, dust easily accumulates on the cable surface, affecting quality and increasing equipment maintenance costs. Existing cleaning methods are time-consuming and labor-intensive, affecting production efficiency.

Method used

A winding device for a tubular stranding machine is designed. It is equipped with a cleaning component, including a servo motor, a driving gear, a rotating drum and a sweeping brush. The servo motor drives the driving gear to rotate the rotating drum, and the sweeping brush automatically cleans the cable surface by means of a winding spring, which is suitable for cables of different diameters.

Benefits of technology

It realizes automatic cleaning of cable surface, reduces manual operation, improves production efficiency, reduces equipment maintenance cost, and adapts to the cleaning needs of cables with different diameters.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a winding device of a tubular stranding machine, and particularly relates to the technical field of tubular stranding machines, which comprises a belt linked with a stranding pipe to enable the stranding pipe to rotate so as to continuously convey a cable, a cleaning assembly arranged on one side of the output end of the stranding pipe, and a rotating drum rotating so as to clean the output end of the stranding pipe. Teeth evenly distributed on the surface of a rotating drum are meshed with a driving gear to enable the rotating drum to rotate stably, a coil spring enables sweeping bristles to be tightly attached to a cable through elastic force, under the action of the sweeping bristles, the sweeping bristles can move around the cable, and therefore effective cleaning is achieved, the sweeping bristles of the cleaning assembly are always tightly attached to the cable through the elastic force of the coil spring, and the cleaning efficiency is improved. Meanwhile, the rotating drum rotates to enable the sweeping bristles to move around the cable, thorough cleaning of the surface of the cable is ensured, manual operation is reduced, the production efficiency is improved, the cable cleaning device can adapt to cleaning of cables with different diameters, the sweeping bristles of the cleaning assembly can rotate along with the rotating drum to move around the cable, and therefore thorough cleaning of the cable is ensured; and the overall production efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of tubular stranding machines, in particular to a winding device of a tubular stranding machine. Background Art

[0002] A tubular stranding machine is a type of mechanical equipment that can be widely used for twisting various types of soft / hard conductor wires. It twists multiple single conductors into one strand to meet the process requirements of the wire. It has been widely used in cable production. Generally, after twisting multiple single conductors into one strand of cable, the cable needs to be wound, so a winding device for a tubular stranding machine for cables has emerged.

[0003] After searching, the utility model patent with Chinese patent application number CN201820449787.3 discloses a tubular stranding machine winding device, which is roughly described as including a winding frame, a horizontally rotatably connected winding drum, and a motor that drives the winding drum to rotate. It also includes a guide mechanism for laterally driving and guiding the transmitted cable. The guide mechanism includes a movable platform that reciprocates along the axis direction of the winding drum and a guide frame vertically fixed on the movable platform; the guide frame includes a frame body fixed on the movable platform and at least two guide shafts vertically arranged on the frame body.

[0004] Although the above-mentioned existing technical solutions solve the problem of uneven winding of the wire coils, dust will be present on the surface of the wound cable during the operation of the winding machine, which will affect the overall quality of the cable. If the cable surface is wiped, it will not only be time-consuming and labor-intensive, but will also affect production efficiency. The need for staff to wipe the cable surface increases the manpower requirements and operation time in the production process, affecting the overall production efficiency and cost. The dust or impurities generated during the winding process will also affect the equipment during the production process, increasing the maintenance cost and frequency of the equipment. For this reason, we propose a winding device for a tubular stranding machine to solve the above problems. Utility Model Content

[0005] The utility model aims to solve one of the technical problems existing in the prior art or related technologies.

[0006] To this end, the technical solution adopted in this utility model is:

[0007] The transmission gear of the present invention is a gear which is connected with the gear of the driven gear to the gear of the driven gear.

[0008] Preferably, a driving member for driving the stranded wire tube to rotate is provided on one side of the stranded wire tube, bases are installed on the driving member and the bottom of the stranded wire tube, and the stranded wire tube and the driving member are linked via a belt at the output end.

[0009] Preferably, the inner ring wall of the fixing seat is fixedly connected to the servo motor, and the bottom of the fixing seat is fixedly connected to the top platform of the driving member.

[0010] Preferably, the driving gear coincides with the axis of the servo motor.

[0011] Preferably, the plurality of teeth are evenly distributed around the axis of the drum, and the tooth gaps match the driving gear.

[0012] Preferably, the plurality of assembly grooves are evenly distributed around the axis of the rotating drum, and the fixing cylinders on both sides are symmetrically distributed along the axis of the rotating drum.

[0013] Preferably, both ends of the rotating roller are rotatably connected to the bottom of the inner cavity of the fixed cylinder, and the coil spring is placed in the fixed cylinder.

[0014] Preferably, one end of the coil spring is fixedly connected to the inner wall of the fixed cylinder, and the other end of the coil spring is fixedly connected to the surface of the rotating roller.

[0015] By adopting the above technical solution, the beneficial effects achieved by the utility model are as follows:

[0016] When the driving part of the utility model is started, its rotation is transmitted to the stranded wire tube through the belt, causing the stranded wire tube to rotate, thereby continuously conveying the cable. During the cable conveying process, the rotation of the servo motor drives the driving gear to rotate, and the driving gear engages with the multiple teeth on the drum, causing the drum to rotate. The engagement of the teeth evenly distributed on the surface of the drum with the driving gear enables the drum to maintain stable rotation. The inner wall of the drum is provided with multiple assembly grooves, and the fixed cylinder in the assembly groove is built with a rotating roller and a coil spring. The coil spring uses elastic force to enable the sweeping hair to be close to the cable, and under the action of the sweeping hair, the sweeping hair can move around the cable, thereby achieving effective cleaning. The sweeping hair of the cleaning component always remains close to the cable due to the elastic force of the coil spring, and at the same time, the rotation of the drum causes the sweeping hair to move around the cable, ensuring thorough cleaning of the cable surface. The automatic cleaning function of the device reduces manual operation, improves production efficiency, and can adapt to the cleaning of cables of different diameters.

[0017] The device operates automatically, and the bristles of the cleaning component can move around the cable as the drum rotates, thereby ensuring thorough cleaning of the cable and reducing the need for manual operation. The cleaning component is designed to adapt to cables of different diameters. Through the setting of winding springs and rotating rollers, effective cleaning of cables of different specifications can be achieved. The automated cleaning process improves the working efficiency of the production line. The winding device of the tubular stranding machine ensures the cleaning needs of the cable during the production process through an efficient automatic cleaning mechanism, adapts to the needs of different cable diameters, and improves the overall production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic structural diagram of the utility model as a whole.

[0019] Figure 2 For this utility model Figure 1 Enlarged structural diagram at point A in the middle.

[0020] Figure 3 This is a schematic diagram of the rotary drum structure of the utility model.

[0021] Figure 4 For this utility model Figure 3 Enlarged structural diagram at point B in the middle.

[0022] Figure 5 This is a cross-sectional view of the internal structure of the rotary drum of the present invention.

[0023] Figure 6 This is a schematic diagram of the assembly structure of the toggle seat and the bristle sweeper of the utility model.

[0024] In the figure: 1. Wire tube; 101. Driving part; 103. Base; 104. Belt; 2. Cleaning assembly; 201. Servo motor; 202. Fixed seat; 203. Driving gear; 204. Rotating drum; 205. Teeth; 206. Assembly groove; 207. Fixed drum; 208. Coil spring; 209. Rotating roller; 210. Toggle seat; 211. Brushing. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] Example: Figures 1-6 As shown, the utility model provides a winding device for a tubular stranding machine, including a stranding tube 1, a driving member 101 for driving the stranding tube 1 to rotate is provided on one side of the stranding tube 1, a base 103 is installed on the bottom of the driving member 101 and the stranding tube 1, the stranding tube 1 and the driving member 101 are linked by a belt 104 at the output end, a cleaning component 2 is provided on one side of the output end of the stranding tube 1, the stranding tube 1 is rotated by the driving member 101, the driving member 101 is fixed by the base 103, and is linked to the stranding tube 1 by the belt 104, and the rotation of the driving member 101 causes the stranding tube 1 to continuously transport cables for subsequent cleaning.

[0027] Furthermore, a servo motor 201 is provided in the cleaning component 2, and a fixing seat 202 is sleeved on the surface of the servo motor 201. The inner ring wall of the fixing seat 202 is fixedly connected to the servo motor 201, and the bottom of the fixing seat 202 is fixedly connected to the top platform of the driving member 101. The output end of the servo motor 201 is fixedly connected to a driving gear 203, and the driving gear 203 coincides with the axis of the servo motor 201. A rotating drum 204 is provided on one side of the driving gear 203, and the end of the rotating drum 204 close to the stranded wire tube 1 is also sleeved. A fixed base 202 is provided, with a rotating drum 204 rotatably connected to the fixed base 202. The bottom of the fixed base 202 is fixedly connected to the top platform of the driving member 101. A plurality of teeth 205 are fixedly connected to the surface of the rotating drum 204. The teeth 205 are evenly distributed around the axis of the rotating drum 204. The gaps between the teeth 205 match the driving gear 203. The driving gear 203 is meshed with the rotating drum 204 through the teeth 205. The core of the cleaning assembly 2 is the servo motor 201, whose output end is fixed with the driving gear 203. The driving gear 203 meshes with the teeth 205 of the rotating drum 204, causing the rotating drum 204 to rotate. The meshing of the evenly distributed teeth 205 on the surface of the rotating drum 204 and the driving gear 203 ensures the stable rotation of the rotating drum 204, facilitating the subsequent cleaning process of the sweeper 211 around the cable.

[0028] Furthermore, a plurality of assembly grooves 206 are provided on the inner wall of the rotating drum 204, and the plurality of assembly grooves 206 are evenly distributed around the axis of the rotating drum 204. Fixed cylinders 207 are fixedly connected to the inner walls of the assembly grooves 206 on both sides. The fixed cylinders 207 on both sides are symmetrically distributed along the axis of the rotating drum 204. A rotating roller 209 is built into the fixed cylinder 207. Both ends of the rotating roller 209 are rotatably connected to the bottom of the inner cavity of the fixed cylinder 207. Coil springs 208 are sleeved on both ends of the rotating roller 209. The coil spring 208 is placed in the fixed cylinder 207. One end of the coil spring 208 is fixedly connected to the inner wall of the fixed cylinder 207, and the other end of the coil spring 208 is fixed to the surface of the rotating roller 209. The rotating roller 209 is fixedly connected to the surface, and a toggle seat 210 is sleeved on the surface of the rotating roller 209. One end of the toggle seat 210 is fixedly connected to the rotating roller 209, and the end of the toggle seat 210 close to the center of the rotating drum 204 is fixedly connected with a sweeping bristle 211 for cleaning the cable. The coil spring 208 uses elastic force to make the sweeping bristle 211 close to the cable for cleaning, so that the sweeping bristle 211 can move around the cable while being close to the cable to ensure the cleaning effect of the cable, and realize the automatic cleaning function, reduce the need for manual operation, improve production efficiency, and at the same time adapt to cables of different diameters for subsequent cleaning to a certain extent.

[0029] Working principle:

[0030] The driving member 101 is fixed to one side of the device through a base 103 and is linked to the stranding tube 1 through a belt 104. When the driving member 101 is started, its rotation is transmitted to the stranding tube 1 through the belt 104, causing the stranding tube 1 to rotate, thereby continuously conveying the cable.

[0031] During cable transport, a cleaning assembly 2 is installed at the output end of the stranded wire tube 1. This assembly consists of a servo motor 201, a driving gear 203, and a rotating drum 204. The rotation of the servo motor 201 drives the driving gear 203. The driving gear 203 meshes with multiple teeth 205 on the rotating drum 204, causing it to rotate.

[0032] The meshing of teeth 205 evenly distributed on the surface of the rotating drum 204 with the driving gear 203 ensures stable rotation. The inner wall of the rotating drum 204 is provided with multiple mounting grooves 206. A fixed cylinder 207 within these grooves houses a rotating roller 209 and a coil spring 208. The spring 208 uses its elastic force to keep the bristles 211 in close contact with the cable. The bristles 211 then move around the cable, effectively cleaning it.

[0033] The sweeping bristles 211 of the cleaning assembly 2 are kept in close contact with the cable by the elastic force of the coil spring 208. The rotation of the drum 204 causes the sweeping bristles 211 to move around the cable, ensuring thorough cleaning of the cable surface. The automatic cleaning function of this device reduces manual operation, improves production efficiency, and can adapt to cleaning cables of different diameters.

[0034] Since the device can operate automatically and the bristles 211 of the cleaning assembly 2 can move around the cable as the drum 204 rotates, the cable is ensured to be thoroughly cleaned and the need for manual operation is reduced.

[0035] The cleaning assembly 2 is designed to adapt to cables of different diameters. By configuring the coil spring 208 and the rotating roller 209 , it can effectively clean cables of different specifications.

[0036] The automated cleaning process improves the efficiency of the production line, reduces the time and labor intensity of manual cleaning, and thus improves overall production efficiency.

[0037] Obviously, those skilled in the art may make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if such modifications and variations fall within the scope of the claims of the present invention and their equivalents, the present invention is intended to include such modifications and variations.

Claims

1. A winding device for a tubular stranding machine, characterized in that: The invention comprises a stranded wire tube (1), wherein a cleaning assembly (2) is provided on one side of an output end of the stranded wire tube (1), wherein the cleaning assembly (2) comprises a servo motor (201), wherein a fixed seat (202) is sleeved on the surface of the servo motor (201), wherein a driving gear (203) is fixedly connected to the output end of the servo motor (201), wherein a rotating drum (204) is provided on one side of the driving gear (203), wherein an end of the rotating drum (204) close to the stranded wire tube (1) is also sleeved on the fixed seat (202), wherein the rotating drum (204) is rotatably connected to the fixed seat (202), wherein the bottom of the fixed seat (202) is fixedly connected to the top platform of the driving member (101), and wherein the surface of the rotating drum (204) is fixedly connected to the fixed seat (202). A plurality of teeth (205) are provided, wherein the driving gear (203) is meshedly connected to the rotating drum (204) via the teeth (205); a plurality of assembly grooves (206) are provided on the inner wall of the rotating drum (204); fixed cylinders (207) are fixedly connected to both sides of the inner wall of the assembly grooves (206); a rotating roller (209) is built into the fixed cylinder (207); a coil spring (208) is sleeved on both ends of the rotating roller (209); a toggle seat (210) is sleeved on the surface of the rotating roller (209); one end of the toggle seat (210) is fixedly connected to the rotating roller (209); and a sweeping bristle (211) for cleaning the cable is fixedly connected to one end of the toggle seat (210) close to the center of the rotating drum (204).

2. The winding device of a tubular stranding machine according to claim 1, characterized in that: A driving member (101) for driving the stranded wire tube (1) is provided on one side thereof, and a base (103) is installed on the bottom of the driving member (101) and the stranded wire tube (1). The stranded wire tube (1) and the driving member (101) are linked via a belt (104) at the output end.

3. The winding device of a tubular stranding machine according to claim 1, characterized in that: The inner ring wall of the fixing seat (202) is fixedly connected to the servo motor (201), and the bottom of the fixing seat (202) is fixedly connected to the top platform of the driving member (101).

4. The winding device of a tubular stranding machine according to claim 1, characterized in that: The driving gear (203) coincides with the axis of the servo motor (201).

5. The winding device of a tubular stranding machine according to claim 1, characterized in that: The plurality of teeth (205) are evenly distributed around the axis of the rotating drum (204), and the gaps between the teeth (205) match the driving gear (203).

6. The winding device of a tubular stranding machine according to claim 1, characterized in that: The plurality of assembly grooves (206) are evenly distributed around the axis of the rotating drum (204), and the fixed drums (207) on both sides are symmetrically distributed along the axis of the rotating drum (204).

7. The winding device of a tubular stranding machine according to claim 1, characterized in that: The two ends of the rotating roller (209) are rotatably connected to the bottom of the inner cavity of the fixed cylinder (207), and the coil spring (208) is placed in the fixed cylinder (207).

8. The winding device of a tubular stranding machine according to claim 7, characterized in that: One end of the coil spring (208) is fixedly connected to the inner wall of the fixed cylinder (207), and the other end of the coil spring (208) is fixedly connected to the surface of the rotating roller (209).

Citation Information

Patent Citations

  • Tubular stranding machine winding device

    CN208249523U