Bunching mechanism of electrical lead

By designing an electrical lead wire harness mechanism, which utilizes a threaded push rod and a wire harness positioning component, the problem of lead wire entanglement inside the electrical equipment box is solved, thereby improving the stability of the lead wires and maintenance efficiency.

CN224153903UActive Publication Date: 2026-04-21FOSHAN FUSHIDA INTELLIGENT TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN FUSHIDA INTELLIGENT TECHNOLOGY DEVELOPMENT CO LTD
Filing Date
2025-05-15
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The lack of a cable management structure inside the electrical equipment box makes it easy for the electrical leads to become tangled. During maintenance, each lead must be checked individually, which increases the difficulty and time required for repairs.

Method used

Design a nested electrical lead wire harness mechanism, including a lower harness and an upper harness nested with threaded push rods. The threaded push rods push a strip slider, and through the nested connection of the threaded push rods, the threaded push rods push the strip slider to move, so that the lower harness block and the upper harness block are tightly nested. Combined with the harness positioning component, the lead wire is stabilized.

Benefits of technology

It ensures the stability of electrical leads, simplifies the maintenance process, and reduces repair time and difficulty.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a bunching mechanism of an electrical lead, comprising a lower bunching block and an upper bunching block, the lower bunching block and the upper bunching block are in nested connection, two sides of the inner wall of the lower bunching block are provided with strip-shaped chutes, the interiors of the two strip-shaped chutes are in sliding connection with strip-shaped slide blocks, and the strip-shaped slide blocks are in sliding connection with the strip-shaped slide blocks. The side faces of the two strip-shaped sliding blocks are fixedly connected with the ends of the two sides of an upper bunching block, the two sides of the top ends of the two lower bunching blocks are in threaded connection with threaded push rods, and the ends of the two threaded push rods extend into the strip-shaped sliding grooves to be in contact connection with the top ends of the strip-shaped sliding blocks. The bottom of the lower bunching block and the bottom of the upper bunching block are each detachably and fixedly provided with a wire harness positioning assembly. According to the utility model, the lower bunching block and the upper bunching block are tightly nested through nesting the lower bunching block and the upper bunching block and pushing the strip-shaped sliding block to move through the threaded push rod, so that the bunching stability of an electrical lead is ensured.
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Description

Technical Field

[0001] This utility model belongs to the field of electrical accessories technology and relates to a wire harnessing mechanism for electrical leads. Background Technology

[0002] Electrical leads are used in electrical equipment. The electrical controllers of electrical equipment are mainly installed inside the electrical equipment box, and multiple electrical controllers are mainly connected through electrical leads.

[0003] Currently, during the installation and connection of electrical equipment, the lack of a wire harnessing structure inside the electrical equipment box easily leads to the tangling of electrical leads. When electrical equipment malfunctions, it is necessary to check and find the leads one by one, which undoubtedly brings great difficulties to maintenance personnel and is time-consuming. To address this issue, we have designed a wire harnessing mechanism for electrical leads to solve the above-mentioned technical problems. Summary of the Invention

[0004] The purpose of this utility model is to provide a wire harnessing mechanism for electrical leads, so as to solve the problem mentioned in the background art that the lack of a wire harnessing structure inside the electrical equipment box easily causes the electrical leads to become tangled. When the electrical equipment malfunctions, it is necessary to check and find the leads one by one, which undoubtedly brings great difficulties to maintenance personnel and causes time-consuming repairs.

[0005] The objective of this utility model can be achieved through the following technical solution: a wire harnessing mechanism for electrical leads, comprising a lower wire harness block and an upper wire harness block, wherein the lower wire harness block and the upper wire harness block are nested together, and both sides of the inner wall of the lower wire harness block are provided with strip-shaped grooves, and strip-shaped sliders are slidably connected inside the two strip-shaped grooves, wherein the sides of the two strip-shaped sliders are fixedly connected to the ends of both sides of the upper wire harness block, and threaded push rods are threadedly connected to the top sides of the two lower wire harness blocks, wherein the ends of the two threaded push rods extend into the interior of the strip-shaped grooves and contact the top of the strip-shaped sliders, and wire harness positioning components are detachably and fixedly installed at the bottom of both the lower wire harness block and the upper wire harness block.

[0006] In the above-mentioned electrical lead wire harnessing mechanism, the wire harness positioning component includes a first fixing block, a connecting block, and a second fixing block. The connecting block is fixedly provided on the back of the first fixing block, and the second fixing block is provided on the front of the first fixing block. The front of the second fixing block is provided with a plurality of semi-circular grooves at equal intervals.

[0007] In the above-mentioned electrical lead wire harnessing mechanism, the bottom of both the lower harness block and the upper harness block are provided with connecting grooves, and the connecting blocks are embedded and connected to the connecting grooves.

[0008] In the above-mentioned electrical lead wire harnessing mechanism, positioning holes are provided at both corners of the connecting block, and positioning pins are inserted at both corners of the inner wall of the connecting groove, with the ends of the positioning pins inserted into the positioning holes.

[0009] In the above-mentioned electrical lead wire harnessing mechanism, the front of the first fixing block and the back of the second fixing block are provided with a plurality of convex fixing holes at equal intervals. An I-shaped post is nested between two convex fixing holes that are aligned. A spring is nested on the surface of the I-shaped post. One end of the spring is fixedly connected to the front of the first fixing block, and the other end of the spring is fixedly connected to the back of the second fixing block.

[0010] In the above-mentioned electrical lead wire harnessing mechanism, the bottom of both sides of the lower harness block are fixedly provided with an integral mounting edge, and the top of the two mounting edges are provided with assembly holes.

[0011] Compared with the prior art, the advantages of the electrical lead wire bundling mechanism of this utility model are as follows:

[0012] 1. By nesting the lower and upper wire harness blocks and moving the strip slider through the threaded push rod, the lower and upper wire harness blocks are tightly nested, thereby ensuring the stability of the electrical lead wires.

[0013] 2. Both the lower and upper wire harness blocks have removable wire harness positioning components installed inside. Different types of wire harness positioning components can be replaced according to the number of electrical leads, effectively improving the practicality of the wire harness mechanism. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of a wire harnessing mechanism for electrical leads according to this utility model.

[0015] Figure 2 This is a cross-sectional structural schematic diagram of a wire harnessing mechanism for electrical leads according to this utility model.

[0016] Figure 3 This is a cross-sectional structural diagram of the wire harness positioning component of an electrical lead wire harnessing mechanism according to this utility model.

[0017] In the diagram, 1. Lower wire harness block; 2. Upper wire harness block; 3. Mounting edge; 4. Assembly hole; 5. Positioning pin; 6. Wire harness positioning assembly; 601. First fixing block; 602. Connecting block; 603. Second fixing block; 604. Semicircular groove; 605. Positioning hole; 606. Convex fixing hole; 607. Spring; 608. I-shaped post; 7. Connecting groove; 8. Strip slide groove; 9. Strip slider; 10. Threaded push rod. Detailed Implementation

[0018] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0019] like Figure 1-3 As shown, this utility model discloses a wire harnessing mechanism for electrical leads, comprising a lower wire harness block 1 and an upper wire harness block 2. The lower wire harness block 1 and the upper wire harness block 2 are nested together. Both sides of the inner wall of the lower wire harness block 1 are provided with strip-shaped grooves 8. Strip-shaped sliders 9 are slidably connected inside the two strip-shaped grooves 8. The sides of the two strip-shaped sliders 9 are fixedly connected to the ends of the two sides of the upper wire harness block 2. Threaded push rods 10 are threadedly connected to the top sides of the two lower wire harness blocks 1. The ends of the two threaded push rods 10 extend into the interior of the strip-shaped grooves 8 and contact the top of the strip-shaped sliders 9. Wire harness positioning components 6 can be detachably and fixedly installed at the bottom of both the lower wire harness block 1 and the upper wire harness block 2.

[0020] Specifically, by nesting the lower wire harness block 1 and the upper wire harness block 2, and by pushing the strip slider 9 with the threaded push rod 10, the lower wire harness block 1 and the upper wire harness block 2 are tightly nested, thereby ensuring the stability of the electrical lead wire harness.

[0021] like Figure 1 , Figure 2 and Figure 3 As shown, the present invention discloses a wire harnessing mechanism for electrical leads. The wire harness positioning component 6 includes a first fixing block 601, a connecting block 602, and a second fixing block 603. The connecting block 602 is fixedly provided on the back of the first fixing block 601, and the second fixing block 603 is provided on the front of the first fixing block 601. A plurality of semi-circular grooves 604 are equidistantly provided on the front of the second fixing block 603.

[0022] Both the lower wire harness block 1 and the upper wire harness block 2 have connecting grooves 7 at their bottoms, and the connecting block 602 is embedded in and connected to the connecting grooves 7.

[0023] Positioning holes 605 are provided at both corners of the connecting block 602, and positioning pins 5 are inserted at both corners of the inner wall of the connecting groove 7. The ends of the positioning pins 5 are inserted into the positioning holes 605.

[0024] Specifically, the insertion and separation of the positioning pin 5 and the positioning hole 605 facilitates the assembly between the wire harness positioning assembly 6 and the lower wire harness block 1 and the upper wire harness block 2.

[0025] Multiple convex fixing holes 606 are equally spaced on the front of the first fixing block 601 and the back of the second fixing block 603. An I-shaped post 608 is nested between two aligned convex fixing holes 606. A spring 607 is nested on the surface of the I-shaped post 608. One end of the spring 607 is fixedly connected to the front of the first fixing block 601, and the other end of the spring 607 is fixedly connected to the back of the second fixing block 603.

[0026] Specifically, the spring 607 nested on the surface of the I-shaped column 608 provides good elasticity between the first fixing block 601 and the second fixing block 603, thereby ensuring the tightness of the lead wire while avoiding deformation of the lead wire due to excessive pressure when the lead wire is squeezed.

[0027] The bottom of both sides of the lower wire harness block 1 is fixed with an integral mounting edge 3, and the top of the two mounting edges 3 are provided with mounting holes 4.

[0028] Specifically, the mounting holes 4 provided along the mounting edge 3 facilitate the installation of the wire harness mechanism.

[0029] In specific implementation, when using the electrical lead wire harnessing mechanism, firstly, the harnessing mechanism is installed on the side of the electrical lead wire by inserting screws into the mounting holes 4 of the mounting edge 3. Then, the electrical lead wire is passed between the lower harness block 1 and the upper harness block 2, and the lead wire is aligned with the semi-circular groove 604. The above steps are repeated to pass multiple leads wires through the harnessing mechanism, ensuring that the leads wires are aligned with the semi-circular groove 604. Next, the threaded push rods 10 on both sides of the top of the lower harness block 1 are manually rotated. The threaded push rods 10 push the strip slider 9 to move, and the strip slider 9 drives the upper harness block 2 to move, causing the upper harness block 2 to move into the lower harness block 1. The upper harness block 2 then moves into the lower harness block 1, where the harness positioning component 6 abuts against the two sides of the lead wire, thus completing the fixing of the electrical lead wire.

[0030] Contents not described in detail herein are existing technologies known to those skilled in the art. The specific embodiments described herein are merely illustrative examples illustrating the spirit of this invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this invention or exceeding the scope defined by the appended claims.

Claims

1. A bunching mechanism of electrical leads, comprising a lower bunching block (1) and an upper bunching block (2), said lower bunching block (1) being connected in nesting with the upper bunching block (2), characterized in that, The inner walls of the lower wire harness block (1) are provided with strip grooves (8) on both sides. The two strip grooves (8) are slidably connected to the inside of the two strip grooves (8). The sides of the two strip sliders (9) are fixedly connected to the ends of the upper wire harness block (2) on both sides. The top ends of the two lower wire harness blocks (1) are threadedly connected to threaded push rods (10). The ends of the two threaded push rods (10) extend into the inside of the strip grooves (8) and contact the top ends of the strip sliders (9). The bottom of the lower wire harness block (1) and the upper wire harness block (2) can be detachably and fixedly installed with wire harness positioning components (6).

2. A harness mechanism for electrical leads according to claim 1, wherein The wire harness positioning assembly (6) includes a first fixing block (601), a connecting block (602), and a second fixing block (603). The connecting block (602) is fixedly provided on the back of the first fixing block (601), and the second fixing block (603) is provided on the front of the first fixing block (601). The front of the second fixing block (603) is provided with a plurality of semi-circular grooves (604) at equal intervals.

3. A harness mechanism for electrical leads according to claim 2, wherein The bottom of both the lower wire harness block (1) and the upper wire harness block (2) are provided with connecting grooves (7), and the connecting block (602) is embedded and connected to the connecting grooves (7).

4. The electrical lead bundle mechanism of claim 3, wherein, Positioning holes (605) are provided at both corners of the connecting block (602), and positioning pins (5) are inserted at both corners of the inner wall of the connecting groove (7). The end of the positioning pin (5) is inserted into the positioning hole (605).

5. The electrical lead bundle mechanism of claim 2, wherein, The front of the first fixing block (601) and the back of the second fixing block (603) are provided with a plurality of convex fixing holes (606) at equal intervals. An I-shaped post (608) is nested between two convex fixing holes (606) that are aligned. A spring (607) is nested on the surface of the I-shaped post (608). One end of the spring (607) is fixedly connected to the front of the first fixing block (601), and the other end of the spring (607) is fixedly connected to the back of the second fixing block (603).

6. The electrical lead bundle mechanism of claim 1, wherein, The bottom of both sides of the lower wire harness block (1) is fixedly provided with an integral mounting edge (3), and the top of the two mounting edges (3) are provided with assembly holes (4).