Wire harness processing guide frame

By designing snap-fit ​​components and guide components for wire harness processing guide frames, the problem of existing guide frames being unable to adapt to multi-branch wire harnesses was solved. This enabled rapid adjustment of the guide frame's angle and path, adapting to the guidance requirements of wire harnesses of different specifications, and improving the flexibility and efficiency of wire harness processing.

CN223638163UActive Publication Date: 2025-12-05HEFEI DEYU ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422958379.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-12-05
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

Existing wire harness processing guide frames cannot adapt to wire harnesses of different diameters, cannot adjust the guide angle or path according to actual processing needs, cannot adapt to the needs of multi-branch wire harnesses, and cannot adapt to changing production needs.

Method used

Design a wire harness processing guide frame, including mounting posts, snap-fit ​​components, a guide frame, and snap-fit ​​grooves. By snapping the snap-fit ​​components into the guide frame, the angle and path of the guide frame can be adjusted to adapt to the guiding requirements of wire harnesses of different specifications.

Benefits of technology

By using the snap-fit ​​components of the guide frame and the guide components, the guide angle and path can be quickly adjusted to meet the guidance requirements of multi-branch wire harnesses, prevent wire harness offset and tangling, and improve the flexibility and efficiency of wire harness processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire harness processing guide frame which comprises a mounting column, a clamping piece arranged at one end of the mounting column, a guide frame rotationally arranged on the mounting column and a clamping groove formed in the bottom of the guide frame. And the guide frame can be clamped with the clamping piece through the clamping groove. Through cooperation of the power piece, the clamping block and the guiding opening, the wire harness guiding device can adapt to wire harnesses of different specifications, through cooperation of the guiding piece and the clamping piece, a user can rapidly adjust the guiding angle and path according to actual machining requirements, and machining requirements of different directions or complex circuits are met. By arranging the plurality of guide ports, effective support and guide are provided for the plurality of branch wire harnesses, and the branch wire harnesses are prevented from deviating and intertwining.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of harness processing especially relates to a harness processing guide frame. BACKGROUND

[0002] As an important component in electronic equipment, communication system and automation control system, the main function of harness is to realize efficient transmission and distribution of electrical signal or energy. In modern industrial production, the quality and efficiency of harness processing directly affect the performance and reliability of terminal equipment. In the process of harness processing, the design of guide device is crucial, which needs to bear the tasks of harness fixing and guiding. The current harness fixing device mostly adopts fixed size clamping device, which is difficult to adapt to different diameter harness. The structure of existing guide frame is usually fixed, and the guide angle or path cannot be adjusted according to actual processing requirements. In the process of harness processing, the guide requirement of multi-branch harness is often encountered. The existing guide device is usually only suitable for straight line or single direction harness guiding, and lacks effective support structure for multi-branch harness. SUMMARY

[0003] This section aims to outline some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract of the specification and the utility model name to avoid obscuring the purpose of this section, the abstract of the specification and the utility model name. Such simplifications or omissions cannot be used to limit the scope of the utility model.

[0004] In view of the above problems existing in the existing harness processing guide frame, a kind of harness processing guide frame is presented.

[0005] To solve the above technical problems, the utility model provides the following technical scheme: a kind of harness processing guide frame, characterized by: including, installation column, the clamping piece of being set to the installation column one end, rotationally arranged on the guide frame of the installation column and the clamping groove of being set to the bottom of the guide frame;The guide frame can be clamped with the clamping piece by the clamping groove.

[0006] As a preferred scheme of the utility model described harness processing guide frame, wherein: the clamping piece includes, the clamping box of being set to the installation column one end, rotationally arranged in the rotating piece of the clamping box, the first sliding part of being set to the one side of the clamping box, the second sliding part of being set to the other side of the clamping box.

[0007] As a preferred scheme of the utility model described harness processing guide frame, wherein: the rotating piece includes, rotating protrusion being set in the clamping box, rotating block being rotationally arranged on the rotating protrusion;The upper portion of the rotating block is provided with first protrusion;The lower portion of the rotating block is provided with second protrusion.

[0008] As a preferred scheme of the harness processing guide frame, the first sliding piece comprises a first sliding groove arranged on one side of the clamping box, a first sliding block slidingly arranged in the first sliding groove, and a compression spring arranged between the first sliding block and the clamping box; the first protrusion is in abutment with the first sliding block.

[0009] As a preferred scheme of the harness processing guide frame, the second sliding piece comprises a second sliding groove arranged on one side of the clamping box, a second sliding block slidingly arranged in the second sliding groove, and a tensile spring arranged between the second protrusion and the clamping box; the second sliding block is in abutment with the second protrusion.

[0010] As a preferred scheme of the harness processing guide frame, a slope is arranged on the first protrusion.

[0011] As a preferred scheme of the harness processing guide frame, a guide piece is arranged on the guide frame, and the guide piece comprises a guide disc arranged on the guide frame, a power piece rotatably arranged in the middle of the guide disc, guide openings arranged on both sides of the power piece, an opening groove arranged in the middle of the guide disc, and a clamping block arranged in the opening groove; the clamping block is sleeved on the power piece; the clamping block moves towards the guide opening through rotation of the power piece, so that the size of the guide opening is adjusted.

[0012] As a preferred scheme of the harness processing guide frame, the power piece comprises a through hole arranged in the middle of the guide disc, a rotating screw rod rotatably arranged in the through hole, a limiting block arranged on the rotating screw rod, a limiting groove arranged on the guide disc, and a rocker arranged at one end of the rotating screw rod; the limiting block is rotatably arranged in the limiting groove.

[0013] As a preferred scheme of the harness processing guide frame, the rotating screw rod is divided into two sections through the limiting block, and opposite threads are arranged on the two sections respectively.

[0014] The harness processing guide frame has the following beneficial effects: the cooperation between the power piece, the clamping block and the guide opening can adapt to harnesses of different specifications; the cooperation between the guide piece and the clamping piece can quickly adjust the guide angle and the path according to actual processing requirements, so that the processing requirements of harnesses in different directions or complex lines can be met; the multiple guide openings provide effective support and guidance for multi-branch harnesses, so that the multi-branch harnesses are prevented from deviating and entangling. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings. Among them:

[0016] Figure 1 It is a whole structure schematic view of the harness processing guide frame of the present application.

[0017] Figure 2 It is an explosion view of the clamping piece structure of the harness processing guide frame of the present application.

[0018] Figure 3 It is a guide piece structure schematic view of the harness processing guide frame of the present application.

[0019] Figure 4 It is a guide piece structure sectional view of the harness processing guide frame of the present application. DETAILED DESCRIPTION

[0020] In order to make the above-mentioned purpose, features and advantages of the present application more apparent and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings of the specification.

[0021] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the connotation of the present application, therefore the present application is not limited by the specific embodiments disclosed below.

[0022] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. In this specification, "in one embodiment" does not mean the same embodiment, nor is it an independent or alternative embodiment.

[0023] Thirdly, the present application is described in detail in conjunction with the schematic view, and in order to facilitate the description, the sectional view of the device structure will be partially enlarged without the general proportion, and the schematic view is only an example, which should not limit the scope of protection of the present application. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in actual manufacture.

[0024] Embodiment 1

[0025] Reference Figures 1 to 2Provided are a schematic diagram of the overall structure of a harness processing guide frame, a harness processing guide frame, comprising a mounting column 100, a clamping piece 101 arranged at one end of the mounting column 100, a guide frame 102 rotatably arranged on the mounting column 100, and a clamping groove 103 arranged at the bottom of the guide frame 102; the guide frame 102 can be clamped with the clamping piece 101 through the clamping groove 103. In this embodiment, the clamping groove 103 has multiple circumferential arrays at the bottom of the guide frame 102, and in order to tightly mount the guide frame 102 on the mounting column 100, the clamping piece 101 is arranged on both sides of the mounting column 100.

[0026] Further, the clamping piece 101 comprises a clamping box 101a arranged at one end of the mounting column 100, a rotating piece 101b rotatably arranged in the clamping box 101a, a first sliding piece 101c arranged on one side of the clamping box 101a, and a second sliding piece 101d arranged on the other side of the clamping box 101a. In this embodiment, the first sliding piece 101c is arranged on the side of the clamping box 101a close to the mounting column 100, and the second sliding piece 101d is arranged on the side of the clamping box 101a away from the mounting column 100.

[0027] Further, the rotating piece 101b comprises a rotating protrusion 101b-1 arranged in the clamping box 101a, and a rotating block 101b-2 rotatably arranged on the rotating protrusion 101b-1; the upper part of the rotating block 101b-2 is provided with a first protrusion 101b-3; the lower part of the rotating block 101b-2 is provided with a second protrusion 101b-4.

[0028] The first sliding piece 101c comprises a first sliding groove 101c-1 arranged on one side of the clamping box 101a, a first sliding block 101c-2 slidingly arranged in the first sliding groove 101c-1, and a compression spring 101c-3 arranged between the first sliding block 101c-2 and the clamping box 101a; the first protrusion 101b-3 is in abutment with the first sliding block 101c-2. In this embodiment, the upper surface of the first sliding block 101c-2 is in abutment with the lower surface of the first protrusion 101b-3 through the elastic force of the compression spring 101c-3.

[0029] Further, the second sliding member 101d includes a second sliding groove 101d-1 arranged on one side of the clamping box 101a, a second sliding block 101d-2 slidingly arranged in the second sliding groove 101d-1, and a tension spring 101d-3 arranged between the second protrusion 101b-4 and the clamping box 101a; the second sliding block 101d-2 is in abutment with the second protrusion 101b-4. In this embodiment, the upper surface of the second protrusion 101b-4 can be in abutment with the lower surface of the second sliding block 101d-2 by the elastic force of the tension spring 101d-3, and since there are two clamping members 101, the second sliding blocks 101d-2 in the two clamping members 101 can be connected and can be simultaneously moved in the second sliding groove 101d-1.

[0030] Operation process: the guide member 104 is adjusted to a suitable angle, the guide frame 102 is connected with the mounting column 100 through the clamping member 101, the guide frame 102 is moved downward, slides over the inclined surface of the first protrusion 101b-3, and is in abutment with the first sliding block 101c-2, the first sliding block 101c-2 extrudes and compresses the compression spring 101c-3, the first protrusion 101b-3 of the rotating block 101b-2 is clamped in the clamping groove 103, the direction of the guide member 104 is fixed, the second sliding block 101d-2 is pressed, the second sliding block 101d-2 rotates the rotating block 101b-2 through the second protrusion 101b-4, the first protrusion 101b-3 is separated from the clamping groove 103, and the compression spring 101c-3 pops out the guide frame 102 from the clamping member 101 through the first sliding block 101c-2.

[0031] Beneficial effect: when the processing path or the wire harness direction changes, the user does not need to replace or disassemble the guide device, only needs to rotate the guide member 104 to adjust to the required angle, and then quickly locks through the clamping member 101, which is suitable for variable production scenes, such as complex wire harness layout or multi-branch guide scenes, and can reduce the debugging time.

[0032] Embodiment 2

[0033] Reference Figures 3 to 4The difference between the embodiment and the first embodiment is that the guide frame 102 is provided with a guide 104, the guide 104 comprises a guide disc 104a provided on the guide frame 102, a power member 104b rotatably provided in the middle of the guide disc 104a, guide openings 104c opened on both sides of the power member 104b, an opening slot 104d opened in the middle of the guide disc 104a, and a clamping block 104e provided in the opening slot 104d; the clamping block 104e is sleeved on the power member 104b; by rotating the power member 104b, the clamping block 104e moves towards the guide opening 104c, and the size of the guide opening 104c is adjusted. In this embodiment, four guide openings 104c are opened in the guide disc 104a, the guide openings 104c can also be provided in different sizes, and two limiting slots 104b-4 are opened in the middle of the guide disc 104a, and the two clamping blocks 104e can move in the two limiting slots 104b-4 respectively through the power member 104b.

[0034] Further, the power member 104b comprises a through hole 104b-1 opened in the middle of the guide disc 104a, a rotating screw rod 104b-2 rotatably provided in the through hole 104b-1, a limiting block 104b-3 provided on the rotating screw rod 104b-2, a limiting slot 104b-4 opened on the guide disc 104a, and a rocker 104b-5 provided at one end of the rotating screw rod 104b-2; the limiting block 104b-3 is rotatably provided in the limiting slot 104b-4.

[0035] The rotating screw rod 104b-2 is divided into two sections by the limiting block 104b-3, and opposite threads are respectively arranged on the two sections. By rotating the rotating screw rod 104b-2, the two clamping blocks 104e can move towards each other.

[0036] The remaining structures are the same as those of the first embodiment.

[0037] Operation process: Put the wire harness into the guide opening 104c, and shake the rocker 104b-5 to slowly tighten the wire harness by the clamping block 104e.

[0038] Beneficial effects: The cooperation among the power member 104b, the clamping block 104e and the guide opening 104c can adapt to different specifications of wire harnesses, and by providing a plurality of guide openings 104c, effective support and guidance are provided for multi-branch wire harnesses, so as to prevent the multi-branch wire harnesses from deviating and entangling.

[0039] It is important to note that the construction and arrangements of the application shown in the various exemplary embodiments are illustrative only. Although only a few embodiments have been described in detail in this disclosure, those skilled in the art who review this disclosure will readily appreciate that many modifications can be made to the embodiments without departing from the novel teachings and advantages of the subject matter described herein. For example, elements described as integrated in a single unit can be separated, elements described as separate can be integrated, and the position, number, shape, and arrangements of elements can be varied. Accordingly, all such modifications are intended to be included within the scope of the present inventive subject matter. The order or sequence of any process or method steps can be varied or re-sequenced without departing from the general nature of the claims. Any "means plus function" clauses are intended to cover the structures described herein as performing the recited functionality and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes, and omissions can be made in the design, operating conditions, and arrangement of the exemplary embodiments without departing from the scope of the present inventive subject matter. Accordingly, the present inventive subject matter is not limited to the particular embodiments described and illustrated herein, but extends to equivalents of which the foregoing describes are intended to cover.

[0040] Furthermore, in order to provide a concise description of the exemplary embodiments, not all features of an actual implementation can be described (i.e., those pertaining to the

[0041] It is understood that in the development of any actual implementation, as in any engineering or design project, numerous implementation-specific decisions can be made. Such development efforts can inevitably lead to a number of substitutions, modifications, changes, and omissions of parts illustrated as having a specific configuration. Such are the natural consequences of research and development efforts, and

[0042] It should be noted that the above examples are intended to illustrate the technical solutions of the present application but not limit the present application, and although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the present application, and all should be included in the scope of the claims of the present application.

Claims

1. A harness processing guide, characterized by: The utility model provides a kind of installation column (100), the clamping piece (101) being arranged at one end of the installation column (100), the guide frame (102) being rotatably arranged on the installation column (100), and the clamping groove (103) being arranged at the bottom of the guide frame (102); The guide frame (102) can be clamped with the clamping piece (101) through the clamping groove (103).

2. The harness manufacturing guide of claim 1, wherein: The clamping piece (101) includes a clamping box (101a) arranged at one end of the installation column (100), a rotating piece (101b) rotatably arranged in the clamping box (101a), a first sliding piece (101c) arranged on one side of the clamping box (101a), and a second sliding piece (101d) arranged on the other side of the clamping box (101a).

3. The harness manufacturing guide of claim 2, wherein: The rotating piece (101b) includes a rotating protrusion (101b-1) arranged in the clamping box (101a) and a rotating block (101b-2) rotatably arranged on the rotating protrusion (101b-1). A first protrusion (101b-3) is arranged on the upper part of the rotating block (101b-2). A second protrusion (101b-4) is arranged on the lower part of the rotating block (101b-2).

4. The harness manufacturing guide of claim 3, wherein: The first sliding piece (101c) includes a first sliding groove (101c-1) arranged on one side of the clamping box (101a), a first sliding block (101c-2) slidingly arranged in the first sliding groove (101c-1), and a compression spring (101c-3) arranged between the first sliding block (101c-2) and the clamping box (101a). The first protrusion (101b-3) is in contact with the first sliding block (101c-2).

5. The harness manufacturing guide of claim 3, wherein: The second sliding piece (101d) includes a second sliding groove (101d-1) arranged on one side of the clamping box (101a), a second sliding block (101d-2) slidingly arranged in the second sliding groove (101d-1), and a tensile spring (101d-3) arranged between the second protrusion (101b-4) and the clamping box (101a). The second sliding block (101d-2) is in contact with the second protrusion (101b-4).

6. The harness manufacturing guide of claim 4, wherein: An inclined surface is formed on the first protrusion (101b-3).

7. The harness manufacturing guide of claim 1, wherein: The guide frame (102) is provided with a guide piece (104), and the guide piece (104) includes a guide disc (104a) arranged on the guide frame (102), a power piece (104b) rotatably arranged in the middle of the guide disc (104a), guide openings (104c) formed on both sides of the power piece (104b), an opening groove (104d) formed in the middle of the guide disc (104a), and a clamping block (104e) arranged in the opening groove (104d). The clamping block (104e) is sleeved on the power piece (104b). Through the rotation of the power piece (104b), the clamping block (104e) moves towards the guide opening (104c), and the size of the guide opening (104c) is adjusted.

8. The harness manufacturing guide of claim 7, wherein: The power element (104b) comprises a through hole (104b-1) opened in the middle of the guide disc (104a), a rotating screw rod (104b-2) rotatably arranged in the through hole (104b-1), a limiting block (104b-3) arranged on the rotating screw rod (104b-2), a limiting groove (104b-4) opened on the guide disc (104a), and a rocker (104b-5) arranged at one end of the rotating screw rod (104b-2). The limiting block (104b-3) is rotatably arranged in the limiting groove (104b-4).

9. The harness manufacturing guide of claim 8, wherein: The rotating screw rod (104b-2) is divided into two sections by the limiting block (104b-3), and opposite threads are arranged on the two sections, respectively.