Wire passing device of wire manufacturing equipment

By using a rotating wire guide block and a resistance-increasing protrusion structure, the problem of cumbersome operation of the wire guide device in existing wire manufacturing equipment is solved, and stable synchronous wire output and cyclic wire guide are achieved, improving the adaptability and service life of the equipment.

CN224242401UActive Publication Date: 2026-05-15JIANGSU PROVINCE AONITE CABLE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU PROVINCE AONITE CABLE CO LTD
Filing Date
2025-06-26
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The existing wire-passing devices in wire manufacturing equipment are cumbersome to operate, requiring manual insertion of the wires, which may cause the wires to scrape against each other. The complex structure also makes it inconvenient for multiple sets of wires to pass simultaneously.

Method used

It adopts a rotating wire guide block and resistance-increasing protrusion structure, and realizes the synchronous output and cyclic wire passing of multiple sets of wires through the motor-driven rotating rod and splicing rotating rod. Combined with limit components and adjustment base, it has a wide range of compatibility and is easy to install.

Benefits of technology

It achieves stable and reliable synchronous output of wires, reduces friction damage, and improves wire passing efficiency and equipment lifespan.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire passing device of wire manufacturing equipment, and belongs to the technical field of wire and cable manufacturing, the output end of a motor is provided with a rotating rod, the outer end of the rotating rod is spliced with a splicing rotating rod I, the outer end of the splicing rotating rod I is spliced with a splicing rotating rod II, and the rotating rod and the splicing rotating rod II are provided with a splicing cavity in a penetrating manner; splicing threaded pipes are symmetrically installed at the two ends of the first splicing rotating rod, the splicing threaded pipes are arranged in the splicing cavities for splicing connection, first limiting splicing blocks are symmetrically installed on one side in the second limiting splicing block, and splicing rotating cavities are formed in the first limiting splicing blocks. The functions of synchronous lead-out and wire passing of multiple groups of wires can be achieved according to the number of the rotary wire passing blocks and the number of the resistance increasing protruding blocks, the rotary wire passing blocks are of a circulating rotating structure and can achieve the circulating wire passing function, the first limiting splicing block and the second limiting splicing block are of a split structure, installation is convenient, the adaptation range is wider, splicing pieces can be replaced, and cost is reduced. And the service life of equipment is prolonged.
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Description

Technical Field

[0001] This utility model relates to a wire-passing device for wire manufacturing equipment, belonging to the field of wire and cable manufacturing technology. Background Technology

[0002] Among the existing technologies, the closest is application number 202122638491.0. In this technology, the wire-passing device utilizes a bracket, a lower clamping shell, an elastic rubber plate, an upper clamping shell, and a hydraulic rod. The wire from the wire manufacturing device is pulled and moved by a traction device. First, the wire is placed on the lower clamping shell, and then the hydraulic rod moves the upper clamping shell to a position where it is movably connected to the outer surface of the wire for exiting. However, this existing technology, which involves pulling the wire, first placing it on the lower clamping shell, and then moving the upper clamping shell to a position where it is movably connected to the outer surface of the wire for exiting, requires manual insertion during wire passing. This cumbersome operation reduces speed and may cause wire rubbing, making it inconvenient for cyclic wire passing and pushing operations. Furthermore, the complex structure is difficult to operate and not suitable for multiple groups to pass wires simultaneously. Therefore, a wire-passing device for wire manufacturing equipment is needed to optimize the aforementioned existing technology. Utility Model Content

[0003] The main purpose of this utility model is to provide a wire-passing device for wire manufacturing equipment.

[0004] The objective of this utility model can be achieved by adopting the following technical solution:

[0005] A wire guiding device for wire manufacturing equipment includes a rotating wire guiding block for guiding wires.

[0006] The rotating wire block is driven and connected by a drive assembly;

[0007] The drive component is fixedly connected by the limit component;

[0008] The drive assembly consists of a motor, a rotating rod, a splicing cavity, a splicing rotating rod one, a splicing threaded pipe, and a splicing rotating rod two.

[0009] A rotating rod is installed at the output end of the motor. A first rotating rod is spliced ​​to the outer end of the rotating rod, and a second rotating rod is spliced ​​to the outer end of the first rotating rod.

[0010] Preferably, the rotating rod and the second splicing rotating rod are provided with a splicing cavity, and splicing threaded tubes are symmetrically installed at both ends of the first splicing rotating rod. The splicing threaded tubes are inserted into the splicing cavity for splicing connection.

[0011] Preferably, the limiting component package includes limiting splicing block one, limiting splicing block two, a driving cavity, and a splicing rotation cavity;

[0012] The motor is installed in the drive cavity of the second limiting splicing block. The first limiting splicing block is symmetrically installed on one side of the second limiting splicing block. The first limiting splicing block has a splicing rotation cavity.

[0013] Preferably, the first limiting splicing block and the second limiting splicing block are installed on the adjustment assembly, which includes an adjustment base and an adjustment groove. The first limiting splicing block and the second limiting splicing block are fixedly connected in the adjustment groove on the adjustment base.

[0014] Preferably, the second splicing rotating rod is inserted into the splicing rotating cavity for rotatable connection. The rotating wire guide block is provided with resistance-increasing protrusions. The rotating wire guide block is provided with an installation cavity. The rotating wire guide block is rotatably connected to the rotating rod, the first splicing rotating rod, and the second splicing rotating rod through the installation cavity. Limiting baffles are symmetrically installed on both sides of the rotating wire guide block.

[0015] The beneficial technical effects of this utility model are as follows:

[0016] This utility model provides a wire guiding device for wire manufacturing equipment. At least one set of rotating wire guiding blocks and resistance-increasing protrusions are respectively sleeved on the rotating rod between the first limiting splicing block and the second limiting splicing block. The rotating wire guiding blocks and the rotating rod are driven by a motor to rotate. During the rotation, the rotating wire guiding blocks and the resistance-increasing protrusions drive the wire out. The function of synchronously leading out and guiding multiple sets of wires can be realized depending on the number of rotating wire guiding blocks and resistance-increasing protrusions. The rotating wire guiding blocks are a cyclic rotating structure to realize the cyclic wire guiding function. Moreover, the first limiting splicing block and the second limiting splicing block are separate structures, which are easy to install and have a wider range of applications.

[0017] A rotating rod is installed at the output end of the motor. A splicing cavity is opened inside the rotating rod. A splicing rotating rod one is spliced ​​to the outer end of the rotating rod. Splicing threaded tubes are symmetrically installed at both ends of the splicing rotating rod one. The splicing threaded tubes are inserted into the splicing cavity for splicing connection. A splicing rotating rod two is sleeved on the splicing threaded tube at the other end of the splicing rotating rod one. The splicing rotating rod two is rotatably connected to the splicing rotating cavity. This equipment can be assembled by splicing multiple sets of rotating rods, splicing rotating rod one, and splicing rotating rod two. The length of the rotating rods can be adjusted. As the length of the rotating rods, splicing rotating rod one, and splicing rotating rod two increases, the number of rotating wire blocks can be increased. The splicing parts can be replaced, increasing the service life of the equipment.

[0018] Limiting splicing block one and limiting splicing block two are installed in the adjustment cavity on the adjustment base. The distance can be adjusted according to the number of rotating blocks and the length of the rotating rod, splicing cavity and splicing rotating rod one, so as to realize the function of adjustable spacing. The adjustment base has a folding structure for easy storage. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall three-dimensional structure of a wire-passing device according to a preferred embodiment of the present invention for a wire manufacturing equipment;

[0020] Figure 2 This is a partial overall three-dimensional structural diagram of a preferred embodiment of a wire-passing device for wire manufacturing equipment according to the present utility model;

[0021] Figure 3 This is a partial three-dimensional exploded view of a preferred embodiment of a wire-passing device for wire manufacturing equipment according to the present utility model.

[0022] Figure 4 This is an exploded side view of a partial perspective structure of a wire-passing device according to a preferred embodiment of the present invention for a wire manufacturing equipment.

[0023] In the diagram: 1. Limiting splicing block one; 101. Limiting splicing block two; 102. Driving cavity; 103. Splicing rotation cavity;

[0024] 2. Motor; 201. Rotating rod; 202. Splicing cavity; 203. Splicing rotating rod one; 204. Splicing threaded pipe; 205. Splicing rotating rod two;

[0025] 3. Rotating guide block; 301. Resistance-increasing protrusion; 302. Mounting cavity; 303. Limiting baffle;

[0026] 4. Adjusting base; 401. Adjusting slot. Detailed Implementation

[0027] To enable those skilled in the art to understand the technical solution of this utility model more clearly, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings, but the implementation of this utility model is not limited thereto.

[0028] Example 1

[0029] like Figures 1-3 As shown in the figure, the wire guiding device of the wire manufacturing equipment provided in this embodiment has at least one set of rotating wire guiding blocks 3 and resistance increasing protrusions 301 respectively sleeved on the rotating rod between the first limiting splicing block 1 and the second limiting splicing block 201. The rotating wire guiding block 3 and the resistance increasing protrusions 301 are provided with a buffer structure. The buffer structure is made of silicone material and has good flexibility and wear resistance. When the wire is led out by the rotating wire guiding block 3 and the resistance increasing protrusions 301, the buffer structure can effectively reduce the friction between the wire and the rotating wire guiding block 3, avoid the wire sheath from being damaged due to excessive friction, and ensure the integrity and quality of the wire.

[0030] Meanwhile, the buffer structure can clamp the wire to a certain extent, preventing the wire from shifting or slipping during the lead-out process, thus improving the stability and reliability of the lead-out. The motor 2 drives the rotating lead-out block 3 and the rotating rod to rotate. During the rotation, the rotating lead-out block 3 and the resistance-increasing protrusion 301 drive the wire out. The number of rotating lead-out blocks 3 and resistance-increasing protrusions 301 can be used to realize the function of synchronous lead-out and lead-out of multiple groups of wires. The rotating lead-out block 3 is a cyclic rotating structure, which can realize the function of cyclic lead-out. Moreover, the limiting splicing block 1 and the limiting splicing block 2 101 are separate structures, which are easy to install and have a wider range of compatibility.

[0031] Example 2

[0032] like Figures 1-3 As shown in the figure, the wire-passing device of the wire manufacturing equipment provided in this embodiment has a rotating rod 201 installed at the output end of the motor 2. A splicing cavity 202 is opened in the rotating rod 201. A splicing rotating rod 1 203 is spliced ​​to the outer end of the rotating rod 201. A splicing threaded tube 204 is symmetrically installed at both ends of the splicing rotating rod 1 203. The splicing threaded tube 204 is inserted into the splicing cavity 202 for splicing connection. A splicing rotating rod 205 is sleeved on the splicing threaded tube 204 at the other end of the splicing rotating rod 1 203. The splicing rotating rod 205 is rotatably connected to the splicing rotating cavity 103.

[0033] This equipment can be assembled from multiple sets of rotating rods 201, spliced ​​rotating rod one 203, and spliced ​​rotating rod two 205. The length of the rotating rods is adjustable. As the length of the rotating rods 201, spliced ​​rotating rod one 203, and spliced ​​rotating rod two 205 increases, the number of rotating wire guide blocks 3 can also be increased. The rotating rods 201, spliced ​​rotating rod one 203, and spliced ​​rotating rod two 205 are internally equipped with reinforcing ribs. The reinforcing ribs are distributed in a mesh pattern, which enhances the overall structural strength of the rotating rods, making them less prone to deformation or breakage when subjected to large torque and tension. This ensures the stability and reliability of the equipment during the synchronous wire passing process of multiple sets of wires. Even if the number of rotating wire guide blocks 3 is increased, the rotating rods can still operate normally and stably. The splicing parts are replaceable, increasing the service life of the equipment.

[0034] Example 4

[0035] like Figure 1 As shown in the figure, the wire passing device of the wire manufacturing equipment provided in this embodiment has a limiting splicing block 1 and a limiting splicing block 201 installed in the adjusting cavity 401 on the adjusting base 4. The distance can be adjusted according to the number of rotating wire passing blocks 3 and the length of the rotating rod 201, splicing cavity 202 and splicing rotating rod 203, so as to realize the function of adjustable spacing. The adjusting base 4 has a folding structure for easy storage.

[0036] The above description is only a further embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the scope disclosed by the present utility model, based on the technical solution and concept of the present utility model, shall fall within the protection scope of the present utility model.

Claims

1. A wire-passing device for wire manufacturing equipment, comprising a rotating wire-passing block (3) for passing wires; Its features are: The rotating wire block (3) is driven and connected by the drive assembly; The drive component is fixedly connected by the limit component; The drive assembly is composed of a motor (2), a rotating rod (201), a splicing cavity (202), a splicing rotating rod one (203), a splicing threaded pipe (204), and a splicing rotating rod two (205); The output end of the machine (2) is equipped with a rotating rod (201), and the outer end of the rotating rod (201) is spliced ​​with a spliced ​​rotating rod one (203), and the outer end of the spliced ​​rotating rod one (203) is spliced ​​with a spliced ​​rotating rod two (205).

2. The wire guiding device for wire manufacturing equipment according to claim 1, characterized in that: The rotating rod (201) and the splicing rotating rod two (205) are connected through a splicing cavity (202). The two ends of the splicing rotating rod one (203) are symmetrically installed with splicing threaded tubes (204), and the splicing threaded tubes (204) are inserted into the splicing cavity (202) for splicing connection.

3. The wire-passing device for wire manufacturing equipment according to claim 1, characterized in that: The limiting component includes limiting splicing block one (1), limiting splicing block two (101), driving cavity (102) and splicing rotation cavity (103); The motor (2) is installed in the drive cavity (102) on the second limit splicing block (101). The first limit splicing block (1) is symmetrically installed on one side of the second limit splicing block (101). The first limit splicing block (11) has a splicing rotation cavity (103).

4. The wire guiding device for wire manufacturing equipment according to claim 3, characterized in that: Limiting splicing block one (1) and limiting splicing block two (101) are installed on the adjustment assembly. The adjustment assembly includes an adjustment base (4) and an adjustment groove (401). Limiting splicing block one (1) and limiting splicing block two (101) are fixedly connected in the adjustment groove (401) on the adjustment base (4).

5. The wire guiding device for wire manufacturing equipment according to claim 2, characterized in that: The second splicing rotating rod (205) is inserted into the splicing rotating cavity (103) for rotational connection, and the rotating line block (3) has resistance-increasing protrusions (301) distributed on it.

6. The wire guiding device for wire manufacturing equipment according to claim 1, characterized in that: The rotating wire guide block (3) has an installation cavity (302) inside. The rotating wire guide block (3) is rotated and connected to the rotating rod (201), the splicing rotating rod one (203) and the splicing rotating rod two (205) through the installation cavity (302). Limiting baffles (303) are symmetrically installed on both sides of the rotating wire guide block (3).