Hard wire harness structure

By combining fasteners and locking bolts in the rigid wiring harness structure, the aesthetics and maintenance difficulties of traditional wiring harnesses in automobiles are solved, achieving stable fixing and convenient disassembly of the wiring harness, thus improving the aesthetics of the layout and the convenience of maintenance.

CN223764382UActive Publication Date: 2026-01-06JILIN ZHONG YING HIGH TECH CO LTD
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Patent Information

Application Number
CN202520442279.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-01-06
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Traditional automotive wiring harnesses have problems such as being difficult to bend, large size, heavy weight, easy deformation, and poor aesthetics, especially when they are laid on the car floor, making maintenance difficult.

Method used

The rigid wire harness structure includes a wire harness and a wire trough. The flat wire harness is fixed to the bottom of the wire trough by the first fastener, and the conventional wire harness is installed to the side wall of the wire trough by the second fastener. The combination of locking bolts and side wings is used to fix and remove the wire harness, which facilitates aesthetic layout and maintenance.

Benefits of technology

It improves the aesthetics and layout of the wire harness, while facilitating its disassembly and maintenance, and reducing material waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hardened wire harness structure, which comprises a wire harness arranged along a preset direction and a wire slot used for accommodating the wire harness, the wire harness comprises at least one flat wire harness and at least one conventional wire harness, the flat wire harness is laid at the bottom of the wire slot, the bottom of the wire slot and the flat wire harness are correspondingly provided with a second mounting hole and a first mounting hole, and the first mounting hole and the second mounting hole are communicated with each other. A first fixing piece used for fixing the flat wire harness to the bottom of the wire slot is arranged in the second mounting hole and the first mounting hole in a penetrating manner; and at least one conventional wire harness is mounted on the side wall of the wire slot through a second fixing piece. According to the hardened wire harness structure, the flat wire harness is fixed to the bottom of the wire groove through the first fixing piece, the conventional wire harness is installed on the side wall of the wire groove through the second fixing piece, the wire harness is contained by the wire groove, then the flat wire harness and the conventional wire harness are reasonably arranged, and the attractiveness of wire harness arrangement is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of automobile wiring harness, more particularly to a hard wire harness structure. BACKGROUND

[0002] In the traditional technology, the wiring harness in the automobile is often arranged and connected by the conventional wiring harness. However, the conventional wiring harness has the problems of not easy to bend, large volume, heavy weight, etc. Especially when the conventional wiring harness is arranged at the automobile floor, it is easy to be deformed due to extrusion. The above problems make the conventional wiring harness not easy to be arranged in the automobile and have poor arrangement aesthetics.

[0003] With the continuous development of automobile wiring harness, flat wiring harness appears. The flat wiring harness can be arranged at the automobile floor and partially replace the conventional wiring harness. However, when the flat wiring harness and the conventional wiring harness are arranged, there are problems of poor aesthetics and difficult maintenance. SUMMARY

[0004] An object of the utility model is to provide a new technical solution to solve the problems of poor aesthetics and difficult maintenance of automobile wiring harness arrangement.

[0005] According to the first aspect of the utility model, a hard wiring harness structure is provided, which comprises a wiring harness arranged along a predetermined direction and a wire slot for accommodating the wiring harness. The wiring harness comprises at least one flat wiring harness and at least one conventional wiring harness. The flat wiring harness is laid on the bottom of the wire slot. Second mounting holes and first mounting holes are provided on the bottom of the wire slot and the flat wiring harness. First fixing members for fixing the flat wiring harness to the bottom of the wire slot are arranged in the second mounting holes and the first mounting holes. At least one conventional wiring harness is installed on the side wall of the wire slot through a second fixing member.

[0006] Optionally, the flat wiring harness is provided with a plurality of flat wiring harnesses, and the plurality of flat wiring harnesses are stacked in the wire slot.

[0007] Optionally, the first fixing member comprises a cylindrical main body, a locking bolt threadedly connected to the inner side of the main body, and a cap and a side wing arranged at opposite ends of the main body. A rotating groove for accommodating part of the side wing is provided on the side wall of the main body. The side wing is rotationally connected to the rotating groove. One end of the side wing partially protrudes to the inner side of the main body and is located on the moving path of the locking bolt in the natural state. By moving the locking bolt, the side wing can be driven to rotate, so that the other end of the side wing is offset towards the direction of the flat wiring harness, so as to clamp the flat wiring harness between the cap and the other end of the side wing.

[0008] Optionally, the side wing is in L shape, and in the natural state, the longer side of the side wing is accommodated in the rotating groove, and the shorter side of the side wing is suspended to the inner side of the main body and located on the moving path of the locking bolt; the side wing is driven to rotate by moving the locking bolt, so that the longer side of the side wing is offset to the direction of the flat wire harness, and the flat wire harness is clamped between the cap and the longer side of the side wing.

[0009] Optionally, when the flat wire harness is clamped between the cap and the longer side of the side wing, the shorter side of the side wing is accommodated in the rotating groove.

[0010] Optionally, the locking bolt comprises a bolt body and a base arranged at the end of the bolt body, and the base is threadedly matched with the inner wall of the main body to adjust the position of the locking bolt.

[0011] Optionally, the bottom of the wire slot is provided with a support plate to form a sandwich structure at the bottom of the wire slot, the second mounting hole is arranged on the support plate, and one end of the main body is sequentially passed through the first mounting hole and the second mounting hole and then enters the sandwich structure, and the side wing is driven to rotate by moving the locking bolt to clamp the flat wire harness and the support plate between the cap and the longer side of the side wing.

[0012] Optionally, the inner surface of the side wall of the wire slot is provided with a hanging position, and the second fixing member is hung on the hanging position through the hanging part to fix the conventional wire harness.

[0013] Optionally, the hanging position and the hanging part are in sliding fit, and a sliding groove and a sliding block structure matched with each other are arranged therebetween.

[0014] Optionally, the second fixing member is a cable tie, and the cable tie is integrally formed with the hanging part.

[0015] According to one embodiment of the present disclosure, the flat wire harness is fixed to the bottom of the wire slot through the first fixing member, and the conventional wire harness is mounted to the side wall of the wire slot through the second fixing member, the accommodation of the wire harness in the wire slot is completed, and then the flat wire harness and the conventional wire harness are reasonably arranged, and the appearance of the wire harness arrangement is improved. Meanwhile, the flat wire harness and the conventional wire harness can be disassembled from the wire slot through the first fixing member and the second fixing member respectively, and the maintenance of the flat wire harness and the conventional wire harness is facilitated.

[0016] Other features and advantages of the present disclosure will become apparent from the following detailed description of exemplary embodiments thereof, taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0017] The accompanying drawings incorporated in and forming a part of the specification illustrate embodiments of the application and, together with the description, serve to explain the principles of the application.

[0018] Figure 1 Structure schematic view of the cable tray of the present disclosure;

[0019] Figure 2 Structure schematic view of the hardening wire harness structure of the present disclosure;

[0020] Figure 3 Section structure schematic view of the hardening wire harness structure of the present disclosure;

[0021] Figure 4 Exploded schematic view of the first fixing member of the present disclosure;

[0022] Figure 5 Structure schematic view of the second fixing member of the present disclosure;

[0023] Figure 6 Exploded schematic view of the second fixing member of the present disclosure;

[0024] Figure 7 Section structure schematic view of the second fixing member of the present disclosure;

[0025] Figure 8 Section structure schematic view of the second fixing member of the present disclosure;

[0026] Figure 9 Section structure schematic view of the first fixing member of the present disclosure.

[0027] The figures are marked as follows:

[0028] 100, cable tray; 110, support plate; 120, hanging position; 210, flat wire harness; 211, first mounting hole; 220, conventional wire harness; 300, first fixing member; 310, main body; 320, locking bolt; 321, bolt main body; 322, base; 322a, external thread; 330, cap; 340, side wing; 350, rotation groove; 360, rotation hole; 370, rotation shaft; 400, second fixing member; 410, hanging part; 420, tie main body; 421, protruding block; 430, pressing wedge; 432, cantilever lock; 440, locking wedge; 450, reset spring; 460, tie hole; 470, tie; 471, tie teeth. DETAILED DESCRIPTION

[0029] Various exemplary embodiments of the present application will now be described in detail with reference to the accompanying drawings. Note that the relative arrangement, numerical expressions, and numerical values of components and steps set forth in these embodiments are not limiting to the scope of the present application unless otherwise specifically stated.

[0030] The following description of at least one exemplary embodiment is merely exemplary in nature and is in no way intended to limit the scope of the application, its application, or uses.

[0031] Techniques, methods, and apparatus known to those of ordinary skill in the relevant art can not be discussed in detail herein. However, where appropriate, such techniques, methods, and apparatus should be considered as being part of the specification.

[0032] In all of the examples shown and discussed herein, any specific values should be interpreted as merely exemplary, and not as a limitation. Thus, other examples of exemplary embodiments can have different values.

[0033] See Figures 1 to 3 The present embodiment provides a hard wiring harness structure, comprising a wiring harness arranged along a predetermined direction and a wire slot 100 for accommodating the wiring harness, the wiring harness comprising at least one flat wiring harness 210 and at least one conventional wiring harness 220, the flat wiring harness 210 being laid on the bottom of the wire slot 100, the bottom of the wire slot 100 and the flat wiring harness 210 being provided with a second mounting hole and a first mounting hole 211 corresponding to each other, and a first fixing member 300 being arranged in the second mounting hole and the first mounting hole 211 for fixing the flat wiring harness 210 to the bottom of the wire slot 100; and the at least one conventional wiring harness 220 being arranged on the side wall of the wire slot 100 through a second fixing member 400.

[0034] The wire slot 100 is used for accommodating the wiring harness, and the wiring harness comprises the flat wiring harness 210 and the conventional wiring harness 220. Therefore, the wire slot 100 is used for accommodating the flat wiring harness 210 and the conventional wiring harness 220. The flat wiring harness 210 comprises a flexible flat cable (FFC), a flexible printed circuit (FPC), and a printed circuit board (PCB).

[0035] At least one means one or more than one, and the number of the flat wiring harness 210 and the conventional wiring harness 220 included in the wiring harness is not specifically limited herein. Meanwhile, the size of the wire slot 100 can be matched with the number of the wiring harness, so as to accommodate the flat wiring harness 210 and the conventional wiring harness 220.

[0036] The flat wiring harness 210 can be laid on the bottom of the wire slot 100. As an example, the flat wiring harness 210 can be provided with a plurality of flat wiring harnesses 210, and the plurality of flat wiring harnesses 210 are arranged in a stacked manner in the wire slot 100. For example, the plurality of flat wiring harnesses 210 can be laid on the bottom of the wire slot 100 in a stacked manner.

[0037] The bottom of the wire slot 100 is provided with second mounting holes, and the flat wire harness 210 is provided with first mounting holes 211. For example, the first mounting holes 211 pass through the flat wire harness 210, and the second mounting holes pass through the bottom of the wire slot 100. The number of the first mounting holes 211 provided on the flat wire harness 210 and the number of the second mounting holes provided on the bottom of the wire slot 100 are not specifically limited herein. The first mounting holes 211 correspond to the second mounting holes, and it can be understood that the positions of the two correspond, and / or the number of the two correspond. For example, the first mounting holes 211 and the second mounting holes are through holes.

[0038] The first mounting holes 211 and the second mounting holes are provided with the first fixing member 300. The inner diameter of the first mounting hole 211 can be equal to the inner diameter of the second mounting hole, but in other embodiments, the inner diameters of the first mounting hole 211 and the second mounting hole can also be different, and the specific limitation is not made herein. The inner diameters of the first mounting hole 211 and the second mounting hole can be greater than or equal to the outer diameter of the first fixing member 300. At the same time, the shapes of the first mounting hole 211 and the second mounting hole are not limited herein, and both can be circular, or both can be rectangular, or one of the two can be circular and the other can be rectangular, and the specific limitation is not made herein.

[0039] As an example, a plurality of flat wire harnesses 210 can be provided with first mounting holes 211 at corresponding positions for the first fixing member 300 to pass through.

[0040] In the hard wire harness structure of the embodiment, the flat wire harness 210 is fixed to the bottom of the wire slot 100 by the first fixing member 300, and the conventional wire harness 220 is installed to the side wall of the wire slot 100 by the second fixing member 400, the accommodation of the wire harness by the wire slot 100 is completed, and the flat wire harness 210 and the conventional wire harness 220 are reasonably arranged, and the beauty of the wire harness arrangement is increased. At the same time, the flat wire harness 210 and the conventional wire harness 220 can be disassembled from the wire slot 100 by the first fixing member 300 and the second fixing member 400 respectively, so as to facilitate the maintenance of the flat wire harness 210 and the conventional wire harness 220.

[0041] In one embodiment, please refer to Figure 4 and Figure 9The first fixing member 300 can include a main body 310 in a cylindrical shape, a locking bolt 320 threadedly connected to the inside of the main body 310, and a cap 330 and a side wing 340 provided at opposite ends of the main body 310. A rotation groove 350 for receiving a portion of the side wing 340 is formed in the side wall of the main body 310, and the side wing 340 is rotationally connected to the rotation groove 350. One end of the side wing 340 partially protrudes to the inside of the main body 310 and is located on the movement path of the locking bolt 320 in a natural state. The side wing 340 is rotated by moving the locking bolt 320 to shift the other end of the side wing 340 toward the direction in which the flat wire bundle 210 is located, thereby clamping the flat wire bundle 210 between the cap 330 and the other end of the side wing 340.

[0042] The inner diameters of the first mounting hole 211 and the second mounting hole can be greater than or equal to the outer diameter of the main body 310. The cross-sectional shape of the main body 310 can be consistent with the shapes of the first mounting hole 211 and the second mounting hole, i.e., all of them are circular, or all of them are rectangular. Alternatively, the cross-sectional shape of the main body 310 can be consistent with the shape of one of the first mounting hole 211 and the second mounting hole, i.e., the cross-sectional shape of the main body 310 and the shape of the first mounting hole 211 are both circular, the shape of the second mounting hole is rectangular, or the cross-sectional shape of the main body 310 and the shape of the second mounting hole are both circular, and the shape of the first mounting hole 211 is rectangular. Alternatively, the cross-sectional shape of the main body 310 can be different from the shapes of the first mounting hole 211 and the second mounting hole, i.e., the cross-sectional shape of the main body 310 is circular, the shapes of the first mounting hole 211 and the second mounting hole are rectangular, or the cross-sectional shape of the main body 310 is rectangular, and the shapes of the first mounting hole 211 and the second mounting hole are circular.

[0043] The inside of the main body 310 can be provided with internal threads, and the locking bolt 320 can be provided with external threads 322a, which are threadedly connected.

[0044] As an example, the locking bolt 320 can include a bolt body 321 and a base 322 provided at the end of the bolt body 321. The base 322 threadedly cooperates with the inner wall of the main body 310 to adjust the position of the locking bolt 320. The base 322 can be provided with external threads 322a to threadedly cooperate with the internal threads of the inner wall of the main body 310. The diameter of the base 322 can be equal to the inner diameter of the main body 310. A cross-shaped groove can be provided on the bolt body 321, and a user can use a cross-shaped screwdriver to tighten or loosen the bolt body 321, so that the base 322 moves in the main body 310.

[0045] The cap 330 is arranged at one end of the main body 310, and the side wing 340 and the rotating groove 350 are arranged at the other end of the main body 310. The cap 330 can be umbrella-shaped. The rotating groove 350 can be in communication with the inside of the main body 310. It can be understood that, at this time, the rotating groove 350 does not have a bottom wall. As an example, the side wing 340 can be rotationally connected with the rotating groove 350 through a rotating shaft 370 arranged on the side wall opposite to the rotating groove 350. For example, the middle part of the side wing 340 can be provided with a rotating hole 360, so as to be connected with the rotating shaft 370. In the natural state, one end of the side wing 340 can extend out of the rotating groove 350 and be located in the inside of the main body 310, and the other end of the side wing 340 can be completely accommodated in the rotating groove 350.

[0046] The moving path of the locking bolt 320 is the inside of the main body 310 which is in a cylindrical shape. Moving the locking bolt 320 drives the side wing 340 to rotate, and the one end of the side wing 340 extending into the inside of the main body 310 rotates into the rotating groove 350 and is completely accommodated in the rotating groove 350, and the other end of the side wing 340 rotates out of the rotating groove 350 and deviates towards the direction where the flat wire harness 210 is located. The first fixing member 300 passes through the first mounting hole 211 and the second mounting hole, so as to clamp the flat wire harness 210 and the bottom of the wire slot 100 between the cap 330 and the side wing 340.

[0047] In the embodiment, the main body 310 is threadedly connected with the locking bolt 320, and the locking bolt 320 can be detached from the main body 310, so that the flat wire harness 210 can be detached from the wire slot 100, and the flat wire harness 210 is convenient to overhaul. The first fixing member 300 can be recycled, which effectively reduces waste.

[0048] In an embodiment, the side wing 340 can be L-shaped, and in the natural state, the longer side of the side wing 340 is accommodated in the rotating groove 350, and the shorter side of the side wing 340 extends to the inside of the main body 310 and is located on the moving path of the locking bolt 320. The side wing 340 can be driven to rotate by moving the locking bolt 320, so that the longer side of the side wing 340 deviates towards the direction where the flat wire harness 210 is located, so as to clamp the flat wire harness 210 between the cap 330 and the longer side of the side wing 340. Figure 9 A cross-sectional structure diagram of the first fixing member 300 is shown when the flat wire harness 210 is clamped between the cap 330 and the longer side of the side wing 340.

[0049] As an example, the side wing 340 can include a bending part and two sides extending in different directions, and the rotating shaft 370 passes through the bending part of the side wing 340 to rotationally connect the side wing 340 with the rotating groove 350.

[0050] As an example, when the flat wire harness 210 is clamped between the cap 330 and the longer edge of the side wing 340, the shorter edge of the side wing 340 is accommodated in the rotating groove 350.

[0051] In the embodiment, the side wing 340 is arranged in an L shape, the longer edge of which can cooperate with the cap 330 to clamp the flat wire harness 210 more stably, and the shorter edge of which can be accommodated by the main body 310, so as to reduce the diameter of the main body 310 and the diameter of the first mounting hole 211, thereby making the area of the circuit region of the flat wire harness 210 larger.

[0052] In one embodiment, referring to Figure 1 , the bottom of the wire slot 100 is provided with a support plate 110 to form a sandwich structure at the bottom of the wire slot 100, the second mounting hole is opened on the support plate 110, and the one end of the main body 310 provided with the side wing 340 passes through the first mounting hole 211 and the second mounting hole in sequence and then enters the sandwich structure, and the side wing 340 is driven to rotate by moving the locking bolt 320, so as to clamp the flat wire harness 210 and the support plate 110 between the cap 330 and the longer edge of the side wing 340.

[0053] The support plate 110 is parallel to the bottom wall of the wire slot 100 and is connected between the side walls of the wire slot 100. The one end of the main body 310 provided with the side wing 340 passes through the first mounting hole 211 and the second mounting hole in sequence and then enters the sandwich structure, and it can be understood that when the flat wire harness 210 and the support plate 110 are clamped between the cap 330 and the longer edge of the side wing 340, the one end of the side wing 340 and the main body 310 where the side wing 340 is located is located in the sandwich structure.

[0054] In the embodiment, the support plate 110 increases the structural strength of the wire slot 100, so that the wire slot 100 can better protect the flat wire harness 210 and the conventional wire harness 220.

[0055] In one embodiment, referring to Figure 1 and Figure 5 , the inner surface of the side wall of the wire slot 100 is provided with a hanging position 120, and the second fixing member 400 is hung on the hanging position 120 through the hanging part 410, so as to realize the fixation of the conventional wire harness 220.

[0056] As an example, the hanging position 120 and the hanging portion 410 are in sliding fit, and a sliding groove and a sliding block structure that are in cooperation with each other are arranged therebetween. The sliding groove is arranged at one of the hanging position 120 and the hanging portion 410, and the sliding block structure is arranged at the other of the hanging position 120 and the hanging portion 410. For example, the sliding groove is arranged at the hanging position 120, and the sliding block structure is arranged at the hanging portion 410. The sliding block structure is in sliding connection with the sliding groove, so that the hanging portion 410 is in sliding fit with the hanging position 120, and then the second fixing member 400 is detachably connected to the side wall of the wire duct 100.

[0057] In the present example, the second fixing member 400 is detachably connected to the side wall of the wire duct 100, and the conventional wire harness 220 can be detached from the wire duct 100, so that the conventional wire harness 220 is conveniently maintained.

[0058] In an embodiment, the second fixing member 400 can be a cable tie, which can be integrally formed with the hanging portion 410.

[0059] Please refer to Figure 6 The cable tie can include a cable tie body 420, a pressing wedge 430, a locking wedge 440, a reset spring 450, a cable tie hole 460, and a cable tie band 470. The cable tie hole 460 can be arranged at a side of the cable tie body 420 away from the hanging portion 410. The cable tie band 470 is arranged in the cable tie hole 460, and one end of the cable tie band 470 can be provided with a cable tie tooth 471. The cable tie band 470 directly fixes the conventional wire harness 220.

[0060] As an example, the hanging portion 410 can be integrally formed with the cable tie body 420. The cable tie body 420 can be provided with a first recess and a second recess. The second recess extends from a surface of the cable tie body 420 away from the hanging portion 410 to the inside of the cable tie body 420, and the first recess extends from a surface of the cable tie body 420 adjacent to the hanging portion 410 to the inside of the cable tie body 420. The first recess and the second recess have a coincident portion, and form a through groove. As an example, the extension direction of the first recess is perpendicular to the extension direction of the second recess. The second recess can be in communication with the cable tie hole 460.

[0061] Please refer to Figure 7 The pressing wedge 430 can have a stepped structure, and include a first stepped portion and a second stepped portion connected to each other. The first stepped portion can be provided with a cantilever lock 432 at an end thereof away from the second stepped portion. The cantilever lock 432 cooperates with a protrusion 421 arranged on the cable tie body 420, so that the pressing wedge 430 is locked with the cable tie body 420. The second stepped portion is provided with a first inclined surface at an end thereof away from the first stepped portion.

[0062] Please refer to Figure 7When the pressing wedge 430 is placed in the first groove, the reset spring 450 abuts against the stepped surface of the stepped structure and the bottom of the first groove.

[0063] Please refer to Figure 8 The locking wedge 440 is arranged in the second groove. The locking wedge 440 is provided with a second inclined surface, which is slidably in contact with the first inclined surface. The pressing wedge 430 is pressed, so that the locking wedge 440 moves in the second groove towards the direction of the cable tie hole 460, thereby cooperating with the cable tie teeth 471 on the cable tie 470 to fix the cable tie 470.

[0064] In the embodiment, the cable tie 470 can be detached from the cable tie hole 460 by the locking wedge 440, and the cable tie 470 can be reused, effectively avoiding the waste of the cable tie 470 after one-time use.

[0065] Although some specific embodiments of the utility model have been described in detail through examples, those skilled in the art should understand that the above examples are only for illustration, and are not intended to limit the scope of the utility model. Those skilled in the art should understand that the above embodiments can be modified without departing from the scope and spirit of the utility model. The scope of the utility model is defined by the appended claims.

Claims

1. A rigidized wiring harness structure comprising a wiring harness arranged along a predetermined course and a wire duct for accommodating the wiring harness, the wiring harness comprising at least one flat wiring harness and at least one regular wiring harness, the flat wiring harness being laid on a bottom of the wire duct, characterized in that: The bottom of the wire slot and the flat wire bundle are provided with second mounting holes and first mounting holes, and first fixing members are arranged in the second mounting holes and the first mounting holes to fix the flat wire bundle to the bottom of the wire slot.

2. The rigidized wire harness structure of claim 1, wherein, The flat wire bundle is provided with a plurality of flat wire bundles, and the plurality of flat wire bundles are stacked in the wire slot.

3. The rigidized wire harness structure of claim 1, wherein, The first fixing member comprises a cylindrical main body, a locking bolt threadedly connected to the inner side of the main body, and a cap and a side wing arranged at opposite ends of the main body. A rotating groove for accommodating part of the side wing is arranged on the side wall of the main body. The side wing is rotationally connected to the rotating groove, and one end of the side wing partially protrudes to the inner side of the main body and is located on the moving path of the locking bolt in a natural state. The side wing is driven to rotate by moving the locking bolt, so that the other end of the side wing is offset towards the direction of the flat wire bundle, so as to clamp the flat wire bundle between the cap and the other end of the side wing.

4. The rigidized wire harness structure of claim 3, wherein, The side wing is L-shaped. In a natural state, the longer side of the side wing is accommodated in the rotating groove, and the shorter side protrudes to the inner side of the main body and is located on the moving path of the locking bolt. The side wing is driven to rotate by moving the locking bolt, so that the longer side of the side wing is offset towards the direction of the flat wire bundle, so as to clamp the flat wire bundle between the cap and the longer side of the side wing.

5. The rigidized wire harness structure of claim 4, wherein, When the flat wire bundle is clamped between the cap and the longer side of the side wing, the shorter side of the side wing is accommodated in the rotating groove.

6. The rigidized wire harness structure of claim 3, wherein, The locking bolt comprises a bolt body and a base arranged at the end of the bolt body. The base is threadedly connected to the inner wall of the main body, so as to adjust the position of the locking bolt.

7. The rigidized wire harness structure of claim 4, wherein, The bottom of the wire slot is provided with a support plate to form a sandwich structure on the bottom of the wire slot. The second mounting hole is arranged on the support plate. One end of the main body provided with the side wing passes through the first mounting hole and the second mounting hole in sequence and then enters the sandwich structure. The side wing is driven to rotate by moving the locking bolt, so as to clamp the flat wire bundle and the support plate between the cap and the longer side of the side wing.

8. The rigidized wire harness structure of claim 1, wherein, The inner surface of the side wall of the wire slot is provided with a hanging position. The second fixing member is hung on the hanging position through the hanging part, so as to fix the conventional wire bundle.

9. The rigidized wire harness structure of claim 8, wherein, The hanging position and the hanging part are in sliding connection. A sliding groove and a sliding block structure are arranged between the hanging position and the hanging part.

10. The rigidized wire harness structure of claim 8, wherein, The second fixing member is a cable tie, and the cable tie is integrally formed with the hanging part.