Wire harness processing tool

By designing a combination of multiple static and dynamic clamps on the wire harness processing fixture, and using a drive component to achieve synchronous clamping of multiple sets of wire harnesses, the problem of existing fixtures being unable to clamp multiple sets of wire harnesses at the same time and adapt to various sizes is solved, thus improving adaptability and ease of operation.

CN224102785UActive Publication Date: 2026-04-10CHENGDU JINGYUE KAIBO ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHENGDU JINGYUE KAIBO ELECTRONICS CO LTD
Filing Date
2025-05-07
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing wire harness processing fixtures cannot clamp multiple wire harnesses simultaneously and are difficult to adapt to the positioning of wire harnesses of various sizes, resulting in low adaptability.

Method used

A wire harness processing fixture was designed, with multiple stationary clamps spaced apart on the mounting base and a movable clamp movably mounted on one side. The movable clamp is synchronously driven to move towards the stationary clamps by a drive component, thereby achieving clamping and positioning of multiple sets of wire harnesses. Various sizes of wire harnesses can be adapted by using progressively smaller clamping slots and locking screws.

Benefits of technology

It improves the adaptability and ease of operation of the tooling for wire harness processing and positioning, and can clamp multiple sets of wire harnesses of different sizes at the same time, enhancing clamping stability and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire harness processing tool, which relates to the technical field of wire harness processing, and comprises a mounting seat, the top end of which is provided with a plurality of linear through holes at intervals along the same straight line; the plurality of static clamps are fixedly connected to the top end of the mounting seat in parallel at intervals, and one side of each static clamp is movably provided with a movable clamp; and the driving assembly is arranged in the mounting base, and the driving assembly is used for synchronously driving the multiple movable clamps to move towards the static clamp so as to clamp the wire harness. According to the utility model, the plurality of static clamps are fixedly arranged on the mounting seat at intervals, the movable clamps are movably arranged on one sides of the static clamps, and the movable clamps are translated and driven through the driving assembly on the mounting seat, so that the plurality of movable clamps and the plurality of static clamps are matched to clamp and position a plurality of groups of wire harnesses with different sizes; therefore, the adaptability of the tool to wire harness processing and positioning is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of wiring harness processing, especially to a wiring harness processing tool. BACKGROUND

[0002] At present, in the wiring harness processing, clamping tool is needed to position the wiring harness, to ensure the stability of the wiring harness in the processing and improve the processing quality of the wiring harness.

[0003] In the prior art, most of the wiring harness tools used today can only clamp and position a single wiring harness, and cannot adapt to the simultaneous clamping and processing of multiple wiring harnesses. Moreover, most of the existing wiring harness processing tools can only position wiring harnesses of the same specification, and cannot simultaneously position wiring harnesses of multiple sizes, resulting in low adaptability of the tool. Therefore, a wiring harness processing tool is proposed. SUMMARY

[0004] The utility model discloses a wiring harness processing tool to solve the problems raised in the background.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a wiring harness processing tool, comprising:

[0006] A mounting seat is provided with a plurality of straight through holes at the top end along the same straight line;

[0007] A plurality of static clamps are fixedly connected to the top end of the mounting seat in parallel and at intervals, and each static clamp is movably provided with a dynamic clamp on one side;

[0008] A driving assembly is arranged inside the mounting seat, and the driving assembly is used to synchronously drive the dynamic clamps to move towards the static clamps for clamping the wiring harness.

[0009] Preferably, the static clamp is composed of a static stop plate and a static clamp block, the dynamic clamp is composed of a dynamic stop plate and a dynamic clamp block, and a connecting assembly is arranged between the static stop plate and the static clamp block and between the dynamic stop plate and the dynamic clamp block.

[0010] Preferably, the dynamic clamp block and the static clamp block are provided with clamp grooves on opposite sides, and the sizes of the clamp grooves on the static clamp block and the dynamic clamp block gradually decrease along the axial direction.

[0011] Preferably, the connecting assembly comprises:

[0012] A positioning groove is arranged on the top and bottom of the dynamic stop plate and the static stop plate, and a settling hole is formed in the top and bottom of the static clamp block and the dynamic clamp block.

[0013] A locking screw is threadedly connected with the internal screw hole through the settling hole.

[0014] Preferably, the connecting assembly further comprises positioning protrusions fixed to the side walls of the static and dynamic stop plates and positioning recesses formed in the side walls of the static and dynamic clamping blocks, the positioning protrusions and the positioning recesses are arranged in a rectangular array, and the outer wall of the positioning protrusions is movably inserted into the corresponding positioning recess.

[0015] Preferably, the driving assembly comprises:

[0016] A plurality of connecting sliding seats are slidably connected to the inner cavity of the mounting seat, and the top of the connecting sliding seat is fixedly connected to the dynamic clamp through the linear through hole at the corresponding position.

[0017] A single screw is rotatably connected to the inner cavity of the mounting seat, the outer wall of the single screw is threadedly connected to the middle part of the connecting sliding seat, and the single screw is fixedly connected with a driving member at one end and extends to the outside of the mounting seat.

[0018] A guide sliding rod is fixedly connected to the bottom of the inner cavity of the mounting seat, and the outer wall of the guide sliding rod is slidably connected to the bottom of the connecting sliding seat.

[0019] Compared with the prior art, the technical effects of the utility model are:

[0020] The utility model discloses a plurality of static clamping blocks are fixedly arranged on the mounting seat, the dynamic clamping block is movably arranged on one side of the static clamping block, and the driving assembly on the mounting seat is used for driving the dynamic clamping block to translate, so that the static clamping block and the dynamic clamping block are combined to realize the clamping and positioning of a plurality of wire harnesses with different sizes, and the adaptability of the tool to the wire harness positioning is improved. BRIEF DESCRIPTION OF DRAWINGS

[0021] Fig. 1 It is the overall structure schematic diagram of the utility model.

[0022] Fig. 2 It is the partial three-dimensional sectional structure schematic diagram of the mounting seat of the utility model.

[0023] Fig. 3 It is the split structure schematic diagram of the dynamic clamping block of the utility model.

[0024] In the drawing: 100, mounting seat;101, static clamping block;102, dynamic clamping block;103, connecting sliding seat;104, one-way screw;105, guide sliding rod;106, linear through hole;107, driving member;108, static stop plate;109, dynamic stop plate;110, clamping groove;111, positioning protrusion;112, positioning recess;113, internal screw hole;114, settlement hole;115, locking screw. DETAILED DESCRIPTION

[0025] 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.

[0026] This utility model provides, for example Figs. 1-3 The wire harness processing fixture shown includes a mounting base 100. Multiple straight through holes 106 are spaced apart along the same straight line at the top of the mounting base 100. Multiple stationary clamps are fixedly connected to the top of the mounting base 100 in a parallel and spaced manner. A movable clamp is movably mounted on one side of each of the stationary clamps. A drive assembly is disposed inside the mounting base 100. The drive assembly is used to synchronously drive the multiple movable clamps to move towards the stationary clamps to clamp the wire harness. By arranging multiple stationary clamps fixed to the top of the mounting base 100 at intervals, and cooperating with the movable clamps movably mounted on one side of each stationary clamp, and using the drive assembly inside the mounting base 100 to translate and drive the movable clamps towards the stationary clamps to achieve clamping and positioning of the wire harness, the fixture can simultaneously clamp multiple sets of wire harnesses and achieve one-click clamping, eliminating the need for individual operation for each harness and thus improving operational convenience.

[0027] Furthermore, the stationary clamp consists of a stationary baffle 108 and a stationary clamping block 101, and the movable clamp consists of a movable baffle 109 and a movable clamping block 102. Connecting components are provided between the stationary baffle 108 and the stationary clamping block 101, and between the movable baffle 109 and the movable clamping block 102. A clamping groove 110 is provided on one side of both the movable clamping block 102 and the stationary clamping block 101, and the dimensions of the clamping grooves 110 on the stationary clamping block 101 and the movable clamping block 102 gradually decrease along the axial direction. A clamping groove 110 is provided on one side of both the stationary clamping block 101 and the movable clamping block 102. The clamping groove 110 is provided so that the opposite side of the stationary clamping block 101 and the moving clamping block 102 can fit with the outer wall of the wire harness through the clamping groove 110, thereby enhancing the stability of the wire harness clamping. In addition, a protective pad can be added to the inside of the clamping groove 110 to increase the protection of the wire harness clamping process. The size of the clamping groove 110 on the opposite side of each set of stationary clamping blocks 101 and moving clamping blocks 102 gradually decreases in the same order, so as to meet the synchronous clamping of a variety of different wire harnesses, thereby further improving the adaptability of the tooling.

[0028] The connecting assembly comprises positioning grooves 112 arranged on the top and bottom of the dynamic baffle 109 and the static baffle 108, and the top and bottom of the static clamp block 101 and the dynamic clamp block 102 are provided with sinking holes 114, and the locking screw 115 is screwed with the internal screw hole 113 through the sinking hole 114, and after the dynamic clamp block 102 and the dynamic baffle 109 and the static clamp block 101 and the static baffle 108 are aligned and spliced, the locking screw 115 is screwed with the internal screw hole 113 through the sinking hole 114, and the locking and fixing between the two adjacent ones can be realized, so that the detachable connection of the static clamp block 101 and the dynamic clamp block 102 at the side position of the dynamic baffle 109 and the dynamic baffle 109 is realized, so as to facilitate the separate disassembly and replacement of the static clamp block 101 and the dynamic clamp block 102, and the static clamp block 101 and the dynamic clamp block 102 with different size clamp grooves 110 can also be replaced according to the use requirement.

[0029] In addition, the connecting assembly further comprises positioning protrusions 111 fixedly connected to the side walls of the dynamic baffle 109 and the static baffle 108 and positioning grooves 112 arranged on the side walls of the static clamp block 101 and the dynamic clamp block 102, the positioning protrusions 111 and the positioning grooves 112 are arranged in a rectangular array, and the outer wall of the positioning protrusion 111 is movably inserted into the inner side of the corresponding positioning groove 112; by arranging the positioning protrusions 111 and the positioning grooves 112 between the static clamp block 101 and the static baffle 108 and between the dynamic baffle 109 and the dynamic clamp block 102, when the dynamic clamp block 102 and the dynamic baffle 109 and the static clamp block 101 and the static baffle 108 are spliced, the positioning of the static clamp block 101 or the static clamp block 101 can be realized by inserting the positioning protrusion 111 into the corresponding positioning groove 112, so that the installation position of the static clamp block 101 and the dynamic clamp block 102 on the side walls of the static baffle 108 and the dynamic baffle 109 is more accurate, thereby improving the installation quality and installation efficiency of the static clamp block 101 and the dynamic clamp block 102.

[0030] The driving assembly comprises a plurality of connecting sliding seats 103 and a single screw 104, the connecting sliding seats 103 are slidingly connected to the inner cavity of the mounting seat 100, the top of the connecting sliding seat 103 is fixedly connected with the movable clamp through the linear through hole 106 at the corresponding position, the single screw 104 is rotationally connected to the inner cavity of the mounting seat 100, the outer wall of the single screw 104 is threadedly connected with the middle part of the connecting sliding seat 103, one end of the single screw 104 extends to the outside of the mounting seat 100 and is fixedly connected with a driving piece 107, a guide sliding rod 105 is fixedly connected to the bottom of the inner cavity of the mounting seat 100, and the outer wall of the guide sliding rod 105 is slidingly connected with the bottom of the connecting sliding seat 103; the connecting sliding seat 103 can move axially along the outer wall of the guide sliding rod 105 through the sliding connection between the guide sliding rod 105 fixedly arranged in the mounting seat 100 and the connecting sliding seat 103, so that the stability of the movable clamp 102 in the movement driven by the connecting sliding seat 103 is ensured, then the single screw 104 can drive the connecting sliding seat 103 to move in translation when the single screw 104 rotates clockwise or counterclockwise through the threaded connection between the single screw 104 and the connecting sliding seat 103, and the stability of the moving position of the connecting sliding seat 103 is realized, so that the movable clamp 102 can keep the stable clamping of the cable.

[0031] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it still can be modified to the technical solutions recorded in the foregoing embodiments, or equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A harness processing tool characterized by comprising: Include: Mounting seat (100), the top end of mounting seat (100) is provided with a plurality of linear through holes (106) along the same straight line; A plurality of static clamps, a plurality of the static clamps are fixedly connected to the top end of the mounting seat (100) in parallel and spaced apart, and one side of the plurality of static clamps is movably provided with a dynamic clamp; The driving assembly is arranged in the mounting seat (100), and the driving assembly is used for synchronously driving the plurality of dynamic clamps to move towards the static clamp to clamp the wire harness.

2. The harness processing tool according to claim 1, wherein The static clamp is composed of a static stop plate (108) and a static clamp block (101), the dynamic clamp is composed of a dynamic stop plate (109) and a dynamic clamp block (102), and the static stop plate (108) and the static clamp block (101) and the dynamic stop plate (109) and the dynamic clamp block (102) are provided with a connecting assembly.

3. The harness processing tooling of claim 2, wherein, The dynamic clamp block (102) and the static clamp block (101) are provided with clamp grooves (110) on opposite sides, and the sizes of the clamp grooves (110) on the static clamp block (101) and the dynamic clamp block (102) gradually decrease along the axial direction.

4. The harness processing tooling of claim 2, wherein, The connecting assembly comprises: Positioning grooves (112) are arranged on the top and bottom of the dynamic stop plate (109) and the static stop plate (108), and the top and bottom of the static clamp block (101) and the dynamic clamp block (102) are provided with sinking holes (114); The locking screw (115) is threadedly connected with the internal screw hole (113) through the sinking hole (114).

5. The harness processing tooling of claim 4, wherein, The connecting assembly further comprises positioning protrusions (111) fixedly connected to the side walls of the dynamic stop plate (109) and the static stop plate (108), and positioning grooves (112) arranged in the side walls of the static clamp block (101) and the dynamic clamp block (102), the positioning protrusions (111) and the positioning grooves (112) are arranged in a rectangular array, and the outer wall of the positioning protrusion (111) is movably inserted into the inner side of the corresponding positioning groove (112).

6. The harness processing tooling of claim 1, wherein, The driving assembly comprises: A plurality of connecting sliding seats (103) are slidably connected in the inner cavity of the mounting seat (100), the top of the connecting sliding seat (103) is fixedly connected with the dynamic clamp through the corresponding linear through hole (106); A single screw rod (104) is rotatably connected in the inner cavity of the mounting seat (100), the outer wall of the single screw rod (104) is threadedly connected with the middle part of the connecting sliding seat (103), and one end of the single screw rod (104) extends to the outside of the mounting seat (100) and is fixedly connected with a driving piece (107); A guide sliding rod (105) is fixedly connected to the bottom of the inner cavity of the mounting seat (100), and the outer wall of the guide sliding rod (105) is slidably connected with the bottom of the connecting sliding seat (103).