Wire harness plate tool

By designing a movable support frame structure, the problem of complex modification of the wiring harness board tooling when the size changes is solved, and adaptability and stability to wiring harness boards of different sizes are achieved.

CN223301514UActive Publication Date: 2025-09-05APTIV ELECTRIC SYST CO LTD
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Patent Information

Application Number
CN202421733067.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-09-05
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

The wiring harness board tooling is complicated to modify when the size changes, and it is difficult to adapt to wiring harness boards of different sizes.

Method used

A support frame is designed, comprising a first bracket and a second bracket, both of which can move along a first direction to change the maximum distance and adapt to wiring harness plates of different sizes.

Benefits of technology

The adjustable design of the support frame reduces the difficulty of modification, allowing the tooling to adapt to wiring harness boards of different sizes, reducing floor space and improving stability and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire harness plate tool, and belongs to the technical field of wire harness manufacturing, the wire harness plate tool comprises a support frame, the support frame comprises a first support and a second support, the first support is provided with a mounting groove, and the mounting groove extends along a first direction; at least part of the second support is arranged in the mounting groove, the second support is connected with the first support, the maximum distance l is formed between the second support and the first support in the first direction, and the second support can move relative to the first support in the first direction so as to change the maximum distance l; wherein the support frame can bear wire harness plates with different sizes according to the change of the maximum distance l. According to the supporting frame, the supporting frame is divided into the first support and the second support which can move relatively, the size of the supporting frame is changed by making the first support and the second support move relatively, the transformation difficulty of the wiring harness plate tool is reduced, and the supporting frame can adapt to wiring harness plate tools of different sizes.
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Description

Technical Field

[0001] The present application belongs to the field of wire harness manufacturing technology, and specifically relates to wire harness board tooling. Background Art

[0002] During the manufacturing process of the wiring harness, the use of wiring harness plates can fix and combine wires, cables or hoses, making the manufacturing of the wiring harness easier.

[0003] When the size of the wiring harness plate is changed according to the change of the wiring harness, the wiring harness plate tooling used to carry the wiring harness plate also needs to be modified accordingly so that the wiring harness plate tooling can carry the wiring harness plate with the changed size.

[0004] However, the modification of the wiring harness board tooling is relatively complicated. Utility Model Content

[0005] Purpose of the utility model: This application provides a wiring harness plate tooling to solve the more complex technical problems of the modification of wiring harness plate tooling.

[0006] Technical solution: This application provides a wiring harness plate tooling, including a support frame, the support frame including:

[0007] a first bracket, the first bracket having a mounting slot extending along a first direction;

[0008] a second bracket, at least a portion of the second bracket being disposed in the mounting slot, the second bracket being connected to the first bracket, a maximum distance l being defined between the second bracket and the first bracket along the first direction, and the second bracket being movable relative to the first bracket along the first direction to change the maximum distance l;

[0009] The support frame can carry wiring harness plates of different sizes according to the change of the maximum distance l.

[0010] Beneficial Effects: Compared to the prior art, the wiring harness plate tooling provided in the embodiments of the present application includes a support frame, the support frame including a first bracket and a second bracket, the first bracket having a mounting slot extending along a first direction; the second bracket being at least partially disposed in the mounting slot, the second bracket being connected to the first bracket, the second bracket and the first bracket having a maximum distance l between them along the first direction, the second bracket being movable relative to the first bracket along the first direction to change the maximum distance l; wherein the support frame can carry wiring harness plates of different sizes according to changes in the maximum distance l. By dividing the support frame into a first bracket and a second bracket that can move relative to each other, the present application reduces the difficulty of modifying the wiring harness plate tooling, and enables the support frame to adapt to wiring harness plate tooling of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] The following detailed description of the specific embodiments of the present application in conjunction with the accompanying drawings will make the technical solutions and other beneficial effects of the present application apparent.

[0012] Figure 1 A schematic diagram of the structure of the wiring harness plate tooling provided in an embodiment of the present application when carrying the wiring harness plate;

[0013] Figure 2 A schematic diagram of the structure of the wiring harness plate tooling provided in an embodiment of the present application;

[0014] Figure 3 A schematic structural diagram of the wiring harness plate tooling provided in an embodiment of the present application from another angle;

[0015] Figure 4 A front view of the wiring harness plate tooling provided in an embodiment of the present application;

[0016] Figure 5 A side view of the wiring harness plate tooling provided in an embodiment of the present application;

[0017] Figure 6 for Figure 2 Detailed view of the center circle A;

[0018] Figure 7 for Figure 2 Detail of the center circle B;

[0019] Figure 8 for Figure 2 Detail of the center circle C;

[0020] Figure 9 for Figure 4 Detailed view of point D in the middle circle;

[0021] Figure 10 for Figure 5 Detail of the center circle E;

[0022] Figure 11 for Figure 3 Detail of point F in the center circle.

[0023] Figure markings, 100-support frame, 110-first bracket, 111-mounting groove, 112-first connecting member, 113-second connecting member, 114-third connecting member, 120-second bracket, 121-fourth connecting member, 122-fifth connecting member, 123-sixth connecting member, 124-support member, 130-first limiting member, 200-base, 210-first component, 211-first supporting part, 212-first base, 2121-first surface, 2122-second surface, 220-second component, 221-second supporting part, 222-second base, 2221-third surface, 2222-fourth surface, 230-first moving member, 240-third moving member, 250-second limiting member, 260-first rotating member, 270-second rotating member, 280-second moving member, 300-wiring harness plate, 400-stop member. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative efforts are within the scope of protection of this application.

[0025] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or mutual communication; it can be directly connected, or indirectly connected through an intermediate medium, or it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to the specific circumstances. In the description of this application, the meaning of "multiple" is two or more, unless otherwise clearly specified and specifically limited. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more features.

[0026] It should also be noted that in the drawings of the embodiments of the present application, the arrow marked X represents the first direction X. The description of the present application introduces the first direction X in order to more clearly express the relative positional relationship involved in the present application.

[0027] The disclosure below provides many different embodiments or examples to realize the different structures of the present application. In order to simplify the disclosure of the present application, the components and settings of specific examples are described below. Of course, they are only examples, and the purpose is not to limit the present application.

[0028] In order to solve the technical problem of the complex transformation of the above-mentioned harness plate tooling, the first embodiment of the present application provides a harness plate tooling for carrying the harness plate 300, see Figure 1 The wiring harness plate tooling includes a support frame 100, which includes a first bracket 110 and a second bracket 120. The first bracket 110 has a mounting groove 111, which extends along the first direction X; at least a portion of the second bracket 120 is disposed in the mounting groove 111, and the second bracket 120 is connected to the first bracket 110. The maximum distance l between the second bracket 120 and the first bracket 110 along the first direction X is shown in FIG. Figure 3 The second bracket 120 can move relative to the first bracket 110 along the first direction X to change the maximum distance l; wherein the support frame 100 can carry wiring harness plates 300 of different sizes according to the change of the maximum distance l.

[0029] It can be understood that the support frame 100 is used to support the wiring harness plate 300, and the first bracket 110 and the second bracket 120 are both used to support part of the wiring harness plate 300. The first bracket 110 and the second bracket 120 form a bearing area for supporting the support plate. The larger the maximum distance l is, the larger the size of the bearing area in the first direction X is, and the support frame 100 can support a larger wiring harness plate 300; the smaller the maximum distance l is, the smaller the size of the bearing area in the first direction X is, and the support frame 100 can support a smaller wiring harness plate 300, and the size of the support frame 100 is smaller.

[0030] It can be understood that the more the second bracket 120 is located in the installation groove 111, the smaller the maximum distance l is, the smaller the wiring harness plate 300 can be carried, and the wiring harness plate tooling occupies a smaller area; the less the second bracket 120 is located in the installation groove 111, the larger the maximum distance l is, the wiring harness plate tooling can carry a larger wiring harness plate 300, and the wiring harness plate tooling occupies a larger area.

[0031] In the above embodiment, the size of the support frame 100 can be adjusted simply by relative movement of the first bracket 110 and the second bracket 120, reducing the difficulty of modifying the support frame 100. Furthermore, by dividing the support frame 100 into the first bracket 110 and the second bracket 120, which are movable relative to each other along the first direction X, the maximum distance l of the support frame 100 can be changed, thereby enabling the support frame 100 to carry wiring harness panels 300 of different sizes. Furthermore, it will be appreciated that when the wiring harness panel fixture is not required, by minimizing the maximum distance l, the footprint of the support frame 100 and, consequently, the footprint of the wiring harness panel fixture can be reduced, thereby reducing the difficulty of storing the wiring harness panel fixture.

[0032] In some embodiments, see Figure 2 、 Figure 3 and Figure 4 The first bracket 110 includes a first connecting member 112, a second connecting member 113 and a third connecting member 114, the first connecting member 112 extends along the first direction X; the second connecting member 113 extends along the first direction X; the third connecting member 114 is located between the first connecting member 112 and the second connecting member 113, and the third connecting member 114 connects the first connecting member 112 and the second connecting member 113 respectively; the first connecting member 112, the second connecting member 113 and the third connecting member 114 form a mounting groove 111, the second bracket 120 is located between the first connecting member 112 and the second connecting member 113, and the second bracket 120 is connected to the first connecting member 112 and the second connecting member 113 respectively.

[0033] In some embodiments, the maximum distance l is the maximum distance between the third connector 114 and the second bracket 120 along the first direction X. Specifically, the maximum distance l is the maximum distance between the surface of the third connector 114 facing away from the second bracket 120 and the second bracket 120 along the first direction X.

[0034] Specifically, in some embodiments, the first connecting member 112 is a plate extending along the first direction X; the second connecting member 113 is a plate extending along the first direction X, and the opposing surfaces of the first connecting member 112 and the second connecting member 113 form the groove wall of the mounting groove 111, which is used to connect the second bracket 120.

[0035] It can be understood that by setting the third connecting member 114, the first connecting member 112 and the second connecting member 113 can be fixed to fix the distance between the first connecting member 112 and the second connecting member 113, so as to avoid the distance between the first connecting member 112 and the second connecting member 113 gradually decreasing in the direction away from the second bracket 120, thereby making it impossible for the second bracket 120 to move in the installation groove 111 and unable to change the maximum distance l; it can be understood that the reason why other components are not needed to fix the distance between the first connecting member 112 and the second connecting member 113 close to the second bracket 120 side is because part of the second bracket 120 is always located in the installation groove 111, which can avoid the distance between the first connecting member 112 and the second connecting member 113 close to the second bracket 120 side from decreasing.

[0036] In the above embodiment, the first connector 112 and the second connector 113 are provided for connecting the second bracket 120, and the third connector 114 is provided to fix the distance between the first connector 112 and the second connector 113, so that the first bracket 110 can be stably connected to the second bracket 120. In addition, it can be understood that only using the first connector 112, the second connector 113, and the third connector 114 to enclose the first bracket 110 can reduce the weight of the first bracket 110.

[0037] In some embodiments, see Figure 2 and Figure 3 The second bracket 120 includes a fourth connecting member 121, a fifth connecting member 122 and a sixth connecting member 123. The fourth connecting member 121 extends along the first direction X, at least a portion of the fourth connecting member 121 is disposed in the mounting groove 111, and the fourth connecting member 121 is connected to the first connecting member 112; the fifth connecting member 122 extends along the first direction X, at least a portion of the fifth connecting member 122 is disposed in the mounting groove 111, and the fifth connecting member 122 is connected to the second connecting member 113; the sixth connecting member 123 is located between the fourth connecting member 121 and the fifth connecting member 122, and the sixth connecting member 123 is connected to the fourth connecting member 121 and the fifth connecting member 122 respectively; the maximum distance between the third connecting member 114 and the sixth connecting member 123 along the first direction X is the maximum distance l.

[0038] Specifically, in some embodiments, the maximum distance l is the distance along the first direction X between a surface of the third connector 114 facing away from the sixth connector 123 and a surface of the sixth connector 123 facing away from the third connector 114 .

[0039] Specifically, in some embodiments, the fourth connecting member 121 is a plate extending along the first direction X; the fifth connecting member 122 is a plate extending along the first direction X, and the surfaces of the fourth connecting member 121 and the fifth connecting member 122 facing away from each other are connected to the groove wall of the installation groove 111, that is, connected to the surfaces opposite to the first connecting member 112 and the second connecting member 113.

[0040] It can be understood that by setting the sixth connecting member 123, the fourth connecting member 121 and the fifth connecting member 122 can be fixed to fix the distance between the fourth connecting member 121 and the fifth connecting member 122, thereby avoiding the situation where the distance between the first connecting member 112 and the second connecting member 113 gradually decreases in the direction away from the first bracket 110, thereby making it impossible for the second bracket 120 to better support the wiring harness plate 300.

[0041] In the above embodiment, the fourth connector 121 and the fifth connector 122 are provided for connecting the first bracket 110, and the sixth connector 123 is provided to fix the distance between the fourth connector 121 and the fifth connector 122, so that the first bracket 110 can be stably connected to the second bracket 120 and stably support the wiring harness plate 300. In addition, it can be understood that only using the fourth connector 121, the fifth connector 122, and the sixth connector 123 to enclose the second bracket 120 can reduce the weight of the second bracket 120.

[0042] In some embodiments, see Figure 2 、 Figure 3 and Figure 4 The second bracket 120 further includes a support member 124 , which is located between the fourth connecting member 121 and the fifth connecting member 122 . The support member 124 is connected to the fourth connecting member 121 and the fifth connecting member 122 , respectively. The support member 124 is spaced apart from the sixth connecting member 123 .

[0043] It is understood that, unlike the first bracket 110, the fourth connector 121 and the fifth connector 122 in the second bracket 120 have no support between their ends away from the sixth connector 123, and may bend under the action of gravity. In the above embodiment of the present application, by providing support members 124 at the ends of the fourth connector 121 and the fifth connector 122 away from the sixth connector 123 to fix the distance between the ends of the fourth connector 121 and the fifth connector 122 away from the sixth connector 123, the second bracket 120 is less likely to deform when the first bracket 110 and the second bracket 120 are separated, thereby reducing the difficulty of relative movement of the first bracket 110 and the second bracket 120.

[0044] In some embodiments, see Figure 6 and Figure 7The support frame 100 further includes a first limiting member 130, which is connected to the first bracket 110 and the second bracket 120 respectively. The first limiting member 130 is used to limit the movement of the second bracket 120 relative to the first bracket 110 to fix the maximum distance l.

[0045] Specifically, in some embodiments, see Figure 6 The first connecting member 112 has a plurality of first connecting member 112 mounting holes, and the plurality of first connecting member 112 mounting holes are spaced apart along the first direction X. The fourth connecting member 121 has a plurality of fourth connecting member 121 mounting holes, and the plurality of fourth connecting member 121 mounting holes are spaced apart along the first direction X. The first limiting member 130 is passed through the first connecting member 112 mounting holes and the fourth connecting member 121 mounting holes. The plurality of first limiting members 130 are used to connect the first connecting member 112 and the fourth connecting member 121 to define the relative position between the first bracket 110 and the second bracket 120. In other embodiments, please refer to Figure 7 The second connecting member 113 has a plurality of second connecting member 113 mounting holes, and the plurality of second connecting member 113 mounting holes are arranged at intervals along the first direction X. The fifth connecting member 122 has a plurality of fifth connecting member 122 mounting holes, and the plurality of fifth connecting member 122 mounting holes are arranged at intervals along the first direction X. The first limiting member 130 is passed through the second connecting member 113 mounting hole and the fifth connecting member 122 mounting hole. The plurality of first limiting members 130 are used to connect the second connecting member 113 and the fifth connecting member 122 to limit the relative position between the first bracket 110 and the second bracket 120. In some other embodiments, based on the aforementioned embodiments, part of the plurality of first limiting members 130 connects the first connecting member 112 and the fourth connecting member 121, and another part of the plurality of first limiting members 130 connects the second connecting member 113 and the second connecting member 113 to limit the relative position between the first bracket 110 and the second bracket 120.

[0046] Specifically, the first limiting member 130 is a threaded connection pair, a pin shaft, etc., so as to realize the detachable connection between the first bracket 110 and the second bracket 120 .

[0047] In the above embodiment, the first limit member 130 is provided to limit the relative movement between the first bracket 110 and the second bracket 120, thereby fixing the maximum distance l and preventing the maximum distance l from changing during use of the wiring harness plate tooling, thereby making the wiring harness plate tooling more reliable.

[0048] In some embodiments, see Figure 1 、 Figure 2 、 Figure 3 and Figure 4The wiring harness plate tooling also includes a base 200, which is connected to the support frame 100. The base 200 includes a first component 210 and a second component 220. The first component 210 is connected to the first bracket 110; the second component 220 is connected to the second bracket 120, and the second component 220 is connected to the first component 210. The second component 220 can move relative to the first component 210 along the first direction X to change the maximum distance L between the first component 210 and the second component 220 along the first direction X; wherein, the base 200 can carry support frames 100 with different maximum distances l according to the change of the maximum distance L.

[0049] It can be understood that since the maximum distance l of the support frame 100 is adjustable, in order to enable the base 200 to be connected to the support frame 100, the base 200 is configured to have a first part and a second part that can move relative to each other along the first direction X to adjust the maximum distance L of the base 200, so that the base 200 can change its size according to the size of the support frame 100, so that the base 200 can always be connected to the support frame 100.

[0050] In the above embodiment, the base 200 is provided to elevate the support frame 100, thereby reducing the likelihood of an operator bending or squatting when using the wiring harness plate 300, thereby improving the usability of the wiring harness plate tooling. Furthermore, the base 200 is provided to expand the base area between the wiring harness plate tooling and the bottom surface, thereby improving the stability of the wiring harness plate tooling and preventing it from tipping over during use.

[0051] In some embodiments, please pay the monthly Figure 2 、 Figure 3 、 Figure 4 and Figure 5 The first component 210 includes a first support portion 211 and a first base 212, the first support portion 211 is connected to the first base 212, and the first support portion 211 is connected to the first bracket 110 along the first direction X; the second component 220 includes a second support portion 221 and a second base 222, the second support portion 221 is connected to the second base 222, the second support portion 221 is connected to the second bracket 120 along the first direction X, the first base 212 is connected to the second base 222, and the second base 222 can move relative to the first base 212 along the first direction X to change the maximum distance between the first support portion 211 and the second support portion 221 along the first direction X. The maximum distance between the first support portion 211 and the second support portion 221 along the first direction X is the maximum distance L.

[0052] It can be understood that the maximum distance between the first support portion 211 and the second support portion 221 along the first direction X is the maximum distance L, that is, the maximum distance between the first support portion 211 and the second support portion 221 along the first direction X is greater than or equal to the maximum distance between the first base 212 and the second base 222 along the first direction X, so as to minimize the size of the first base 212 and the second base 222 in the first direction X while ensuring that the base 200 can be connected to the support frame 100, so as to reduce the footprint of the wiring harness plate tooling.

[0053] Among them, the first support part 211 and the second support part 221 are used to connect the first bracket 110 and the second bracket 120 respectively, and the first base 212 and the second base 222 connected to each other can avoid the change in the distance between the first support part 211 and the second support part 221 to ensure the connection stability of the first support part 211 and the second support part 221.

[0054] In the above embodiment, the support frame 100 is raised by setting the first support part 211 and the second support part 221, and the stability of the base 200 is improved by setting the first base 212 and the second base 222 connected to each other, and the distance between the first support part 211 and the second support part 221 is maintained to improve the connection stability of the first support part 211 and the second support part 221.

[0055] In some embodiments, see Figure 5 and Figure 10 The first base 212 has a first surface 2121 and a second surface 2122, the first surface 2121 is opposite to the second surface 2122, and the first surface 2121 faces the first bracket 110; the second base 222 has a third surface 2221 and a fourth surface 2222, the third surface 2221 and the fourth surface 2222 are opposite to each other, and the third surface 2221 faces the second bracket 120, a portion of the second base 222 is located between the first base 212 and the first bracket 110, and the fourth surface 2222 is connected to the first surface 2121; the base 200 also includes a first moving member 230 and a second moving member 280, the first moving member 230 is connected to the second surface 2122, and the second moving member 280 is connected to the fourth surface 2222; the first supporting portion 211 is connected to the first surface 2121, and the second supporting portion 221 is connected to the third surface 2221.

[0056] Specifically, in some embodiments, the first movable member 230 includes a plurality of universal casters, and the universal casters in the first movable member 230 are arranged along a direction inclined to the first direction X, and the second movable member 280 includes a plurality of universal casters, and the universal casters in the second movable member 280 are arranged along a direction inclined to the first direction X.

[0057] It can be understood that since the second base 222 is connected to the side of the first base 212 facing the first bracket 110, there is a distance between the fourth surface 2222 and the second surface 2122, and the size of the second movable member 280 connected to the fourth surface 2222 in the direction perpendicular to the ground is larger than the size of the first movable member 230 connected to the second surface 2122.

[0058] It is understandable that, in order to stabilize the connection, the multiple casters in the first movable member 230 and the multiple casters in the second movable member 280 are not located in a straight line, so as to stably support the base and prevent the base 200 from tipping over.

[0059] In some embodiments, the first moving member 230 includes two casters disposed in a direction perpendicular to the first direction X, and the second moving member 280 includes two casters disposed in a direction perpendicular to the first direction X.

[0060] In the above embodiment, since the second base 222 is connected to the first base 212, that is, only the portion of the fourth surface 2222 connected to the first surface 2121 generates friction, and the remaining portion does not generate friction, the resistance of the second base 222 to movement can be reduced compared to the first base 212. In addition, by providing a second movable member 280 to reduce the friction between the portion of the second base 222 not connected to the first base 212 and the ground, the resistance to movement of the second base 222 is further reduced. In addition, the first movable member 230 and the second movable member 280 can reduce the resistance to movement of the wiring harness plate tooling, making the movement of the wiring harness plate tooling more convenient.

[0061] In some embodiments, see Figure 3 The base 200 further includes a third moving member 240 , which is connected to the second surface 2122 , and is located between the first moving member and the second moving member.

[0062] Specifically, in some embodiments, the first moving member 230 is connected to a side of the first base 212 away from the second base 222 along the first direction X, and the second moving member 280 is connected to the second base 222, that is, the center of gravity of the first base 212 is located on one side of the first moving member in the first direction X. When the first base 212 and the second base 222 are not separated, the center of gravity of the first base 212 is located between the first moving member 230 and the second moving member 280 along the first direction, and the first moving member 230 and the second moving member 280 can simultaneously support the first base 212; however, when the first base 212 and the second base 222 are separated, the second moving member 280 can no longer support the first base 212, and the first base 212 falls over after being separated from the second base 222.

[0063] It is understood that in the above embodiment, by providing the third movable member 240 so that the center of gravity of the first base 212 is located between the first movable member 230 and the third movable member 240 in the first direction X, even after the first base 212 is separated from the second base 222, the first base 212 will not fall over due to the support of the first movable member 230 and the third movable member 240; and because the first base 212 will not fall over, the second base 222 will not fall over when supported by the first base 212 and the second movable member 280. The third movable member 240 reduces the difficulty of adjusting the maximum distance L of the wiring harness plate tooling, thereby improving the ease of use of the wiring harness plate tooling.

[0064] In some embodiments, see Figure 11 The base 200 further includes a second limiting member 250, which connects the first component 210 and the second component 220. The second limiting member 250 is used to limit the movement of the second component 220 relative to the first component 210 to fix the maximum distance L.

[0065] In some embodiments, the first base 212 has a first base 212 mounting hole, and multiple first base 212 mounting holes are arranged at intervals along the first direction X. The second base 222 has multiple second base 222 mounting holes, and multiple second base 222 mounting holes are arranged at intervals along the first direction X. The second limiting member 250 is passed through the first base 212 mounting hole and the second base 222 mounting hole. The multiple second limiting members 250 are used to connect the first base 212 and the second base 222 to limit the relative position between the first component 210 and the second component 220, thereby fixing the maximum distance L.

[0066] Specifically, the second limiting member 250 is a threaded connection pair, a pin shaft, etc., so as to realize the detachable connection between the first base 212 and the second base 222 .

[0067] In the above embodiment, a second limiter 250 is provided to limit the relative movement between the first base 212 and the second base 222, thereby fixing the maximum distance L and preventing the maximum distance L of the wiring harness plate tooling from changing during use, thereby making the wiring harness plate tooling more reliable.

[0068] In some embodiments, see Figure 8 and Figure 9 The base 200 also includes a first rotating member 260 and a second rotating member 270. The first rotating member 260 connects the first bracket 110 and the first component 210 so that the first bracket 110 can rotate relative to the first component 210; the second rotating member 270 connects the second bracket 120 and the second component 220 so that the second bracket 120 can rotate following the first bracket 110.

[0069] Specifically, in some embodiments, the first rotating member 260 is a pin shaft, and the first rotating member 260 is passed through the first component 210. Specifically, one end of the first rotating member 260 is rotatably passed through the first support portion 211, and the other end of the first rotating member 260 is connected to the first bracket 110, so that the first bracket 110 is rotatably connected to the first support portion 211; the second rotating member 270 is also a pin shaft, and the second rotating member 270 is passed through the second component 220. Specifically, one end of the second rotating member 270 is rotatably passed through the second support portion 221, and the other end of the second rotating member 270 is connected to the second bracket 120, so that the second bracket 120 is rotatably connected to the second support portion 221.

[0070] In the above embodiment, by enabling the support frame 100 to rotate relative to the base 200, the operator can adjust the angle of the support frame 100, thereby adjusting the angle of the wiring harness plate 300 located on the support frame 100, which can improve the operator's comfort in using the wiring harness plate 300.

[0071] In some embodiments, see Figure 5 、 Figure 8 and Figure 9 The wiring harness plate tooling also includes a stopper 400, which is connected to at least one of the first component 210 and the second component 220. The stopper 400 can be connected to at least one of the first bracket 110 and the second bracket 120 to limit the rotation of at least one of the first bracket 110 and the second bracket 120.

[0072] Specifically, in some embodiments, the stop member 400 is connected to the first component 210, and the stop member 400 is used to limit the first bracket 110; in other embodiments, the stop member 400 is connected to the second component 220, and the stop member 400 is used to limit the second bracket 120; in still other embodiments, the wiring harness plate tooling includes a plurality of stop members 400, a portion of the plurality of stop members 400 is connected to the first component 210 to limit the first bracket 110, and another portion of the plurality of stop members 400 is connected to the second component 220 to limit the second bracket 120.

[0073] Specifically, in some embodiments, the stop member 400 is a limit pin that can move along the first direction X, and a limit hole is opened on the first bracket 110 and the second bracket 120. Specifically, a limit hole is opened on the third connecting member 114 and the fourth connecting member 121. The limit pin can be inserted into the limit hole to limit the rotation of the support frame 100 relative to the base 200.

[0074] It is understandable that in some embodiments, the first bracket 110 and the second bracket 120 have multiple limiting holes so that the stop member 400 can limit the support frame 100 to different angles, so that the operator can limit the support frame 100 to an ideal angle.

[0075] The above is a detailed introduction to a wiring harness plate tooling provided in an embodiment of the present application. Specific examples are used in this application to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the technical solutions and core ideas of the present application; ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A wiring harness plate tooling, characterized in that, The invention comprises a support frame (100), wherein the support frame (100) comprises: A first bracket (110), the first bracket (110) having a mounting groove (111), the mounting groove (111) extending along a first direction (X); a second bracket (120), at least a portion of the second bracket (120) being disposed in the mounting groove (111), the second bracket (120) being connected to the first bracket (110), a maximum distance l being provided between the second bracket (120) and the first bracket (110) along the first direction (X), and the second bracket (120) being movable relative to the first bracket (110) along the first direction (X) to change the maximum distance l; The support frame (100) is capable of carrying wiring harness plates (300) of different sizes according to the change of the maximum distance l.

2. The wiring harness plate tooling according to claim 1, characterized in that: The first bracket (110) comprises: a first connecting member (112), the first connecting member (112) extending along the first direction (X); a second connecting member (113), the second connecting member (113) extending along the first direction (X); a third connecting member (114), the third connecting member (114) being located between the first connecting member (112) and the second connecting member (113) and connecting the first connecting member (112) and the second connecting member (113) respectively; The first connecting member (112), the second connecting member (113) and the third connecting member (114) form the mounting groove (111); the second bracket (120) is located between the first connecting member (112) and the second connecting member (113) and is connected to the first connecting member (112) and the second connecting member (113) respectively.

3. The wiring harness plate tooling according to claim 2, characterized in that: The second bracket (120) comprises: a fourth connecting member (121), the fourth connecting member (121) extending along the first direction (X), at least a portion of the fourth connecting member (121) being disposed in the mounting groove (111), and the fourth connecting member (121) being connected to the first connecting member (112); a fifth connecting member (122), the fifth connecting member (122) extending along the first direction (X), at least a portion of the fifth connecting member (122) being disposed in the mounting groove (111), and the fifth connecting member (122) being connected to the second connecting member (113); a sixth connecting member (123), the sixth connecting member (123) being located between the fourth connecting member (121) and the fifth connecting member (122), the sixth connecting member (123) being connected to the fourth connecting member (121) and the fifth connecting member (122) respectively; The maximum distance between the third connecting member (114) and the sixth connecting member (123) along the first direction (X) is the maximum distance l.

4. The wiring harness plate tooling according to claim 3, characterized in that: The second bracket (120) further includes a support member (124), wherein the support member (124) is located between the fourth connecting member (121) and the fifth connecting member (122) and is connected to the fourth connecting member (121) and the fifth connecting member (122) respectively, and the support member (124) is spaced apart from the sixth connecting member (123).

5. The wiring harness plate tooling according to claim 1, characterized in that: The support frame (100) further comprises a first limiting member (130) and is connected to the first bracket (110) and the second bracket (120) respectively, wherein the first limiting member (130) is used to limit the movement of the second bracket (120) relative to the first bracket (110) to fix the maximum distance l.

6. The wiring harness plate tooling according to claim 1, characterized in that: The wiring harness plate tooling further includes a base (200), the base (200) being connected to the support frame (100), and the base (200) including: a first component (210), the first component (210) being connected to the first bracket (110); a second component (220), the second component (220) being connected to the second bracket (120), the second component (220) being connected to the first component (210), the second component (220) being capable of moving relative to the first component (210) along the first direction (X) to change a maximum distance L between the first component (210) and the second component (220) along the first direction (X); Wherein, the base (200) can carry the support frame (100) with different maximum distances l according to the change of the maximum distance L.

7. The wiring harness plate tooling according to claim 6, characterized in that: The first component (210) comprises a first supporting portion (211) and a first base (212), the first supporting portion (211) being connected to the first base (212), and the first supporting portion (211) being connected to the first bracket (110) along the first direction (X); The second component (220) includes a second supporting portion (221) and a second base (222), the second supporting portion (221) is connected to the second base (222), the second supporting portion (221) is connected to the second bracket (120) along the first direction (X), the first base (212) is connected to the second base (222), and the second base (222) can move relative to the first base (212) along the first direction (X) to change the maximum distance between the first supporting portion (211) and the second supporting portion (221) along the first direction (X), and the maximum distance between the first supporting portion (211) and the second supporting portion (221) along the first direction (X) is the maximum distance L.

8. The wiring harness plate tooling according to claim 7, characterized in that: The first base (212) has a first surface (2121) and a second surface (2122), the first surface (2121) and the second surface (2122) are opposite to each other, the first surface (2121) faces the first bracket (110), and the first supporting portion (211) is connected to the first surface (2121); The second base (222) has a third surface (2221) and a fourth surface (2222), the third surface (2221) and the fourth surface (2222) are opposite to each other, the third surface (2221) faces the second bracket (120), the second supporting portion (221) is connected to the third surface (2221), a portion of the second base (222) is located between the first base (212) and the first bracket (110), and the fourth surface (2222) is connected to the first surface (2121); The base (200) further includes a first moving member (230) and a second moving member (280), wherein the first moving member (230) is connected to the second surface (2122), and the second moving member (280) is connected to the fourth surface (2222).

9. The wiring harness plate tooling according to claim 8, characterized in that: The base (200) further includes a third moving member (240), the third moving member (240) being connected to the second surface (2122), and the third moving member (240) being located between the first moving member (230) and the second moving member (280).

10. The wiring harness plate tooling according to claim 6, characterized in that: The base (200) further includes a second limiting member (250), the second limiting member (250) connecting the first component (210) and the second component (220), the second limiting member (250) being used to limit the movement of the second component (220) relative to the first component (210) to fix the maximum distance L.

11. The wiring harness plate tooling according to claim 6, characterized in that: The base (200) further comprises a first rotating member (260) and a second rotating member (270), wherein the first rotating member (260) connects the first bracket (110) and the first component (210) so that the first bracket (110) can rotate relative to the first component (210); and the second rotating member (270) connects the second bracket (120) and the second component (220) so that the second bracket (120) can rotate following the first bracket (110).

12. The wiring harness plate tooling according to claim 11, characterized in that: The wiring harness plate tooling further includes a stopper (400), the stopper (400) being connected to at least one of the first component (210) and the second component (220), and the stopper (400) being capable of being connected to at least one of the first bracket (110) and the second bracket (120) to limit the rotation of at least one of the first bracket (110) and the second bracket (120).