processing equipment

By designing processing equipment that includes a positioning device and a bending device, and using contoured positioning blocks and anti-foolproofing components to achieve automatic anti-foolproofing positioning, the problems of inaccurate positioning and damage during cable bending processing are solved, and the processing accuracy and operational convenience are improved.

CN115722567BActive Publication Date: 2025-09-19GEER TECH CO LTD
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Patent Information

Application Number
CN202211501950.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-28
Publication Date
2025-09-19
Estimated Expiration
2042-11-28

AI Technical Summary

Technical Problem

In the prior art, the positioning effect of the cable during the bending process is poor, the cable is easily damaged by manual operation, and the processing accuracy cannot be guaranteed, resulting in inconvenience in operation.

Method used

A processing equipment is designed, which includes a machine body, a positioning device and a bending device. The automatic fool-proof positioning is realized by using a contoured positioning block and a fool-proof component, thereby improving the positioning accuracy and bending accuracy and avoiding manual operation.

Benefits of technology

It achieves accurate positioning and high-precision bending processing of the cable, avoids cable damage and improves operational convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a processing device, which includes a body, a positioning device, and a bending device. The tooling is provided with a placement slot for placing a cable. The positioning device includes a first base, a positioning assembly, and an anti-foolproofing assembly. The first base is provided on a mounting surface and adjacent to the tooling. The positioning assembly is movably provided on the first base. The positioning assembly is provided with a contoured positioning block and an anti-foolproofing rod. The anti-foolproofing assembly is provided on the first base and is located on the side of the positioning assembly facing the anti-foolproofing rod. The anti-foolproofing assembly is provided with a return channel and a stop arm movably provided in the return channel. The bending device is provided on the mounting surface and adjacent to the tooling. The bending device is spaced apart from the positioning device. The bending device is provided with a contoured pressure block for bending the cable in the placement slot. The processing device of the present invention not only realizes automatic anti-foolproofing positioning, but also effectively improves positioning accuracy and bending processing accuracy, avoids damage to the cable, and improves operational convenience.
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Description

Technical Field

[0001] The present invention relates to the technical field of cable bending processing equipment, and in particular to a processing equipment. Background Art

[0002] Currently, product cables need to be bent according to product assembly requirements before assembly, such as bending the cables at specific angles. Because the cables are internally wired, the bending position and angle are highly demanding. In related technologies, manual positioning and bending are often used during the bending process, resulting in poor positioning. Manual positioning is not only prone to damage, but also requires manual operation and foolproofing of the positioning device, making it inconvenient to operate. Furthermore, manually controlling the bending device during the bending process cannot guarantee the bending accuracy of the cables and is prone to damage. Summary of the Invention

[0003] The main purpose of the present invention is to provide a processing equipment, which aims to provide a processing equipment that is convenient for positioning and arranging cables. The processing equipment not only realizes automatic fool-proof positioning, but also effectively improves the positioning accuracy and bending processing accuracy, avoids damage to the cables, and improves operational convenience.

[0004] To achieve the above-mentioned object, the present invention provides a processing device for bending a cable, the processing device comprising:

[0005] A body, the body having a mounting surface, the mounting surface being provided with a tooling, the tooling being provided with a placement groove on a side facing away from the mounting surface, the placement groove being used for placing a cable;

[0006] A positioning device, the positioning device comprising a first base, a positioning assembly and an anti-foolproofing assembly, the first base being arranged on the mounting surface and adjacent to the tooling, the positioning assembly being movably arranged on the first base, the positioning assembly being provided with a contoured positioning block and an anti-foolproofing rod, the anti-foolproofing assembly being arranged on the first base and located on a side of the positioning assembly facing the anti-foolproofing rod, the anti-foolproofing assembly being provided with a return channel and a stop arm movably arranged in the return channel; and

[0007] A bending device, the bending device is provided on the mounting surface and adjacent to the tooling, the bending device is spaced apart from the positioning device, and the bending device is provided with a contoured pressing block, the contoured pressing block is used to bend the cable in the placement slot;

[0008] The positioning device comprises a positioning position where the contoured positioning block abuts against and positions the cable in the placement groove, and a release position where the contoured positioning block is away from the cable;

[0009] In the release position, the anti-foolproof rod is located on one side of the stop arm, and the stop arm stops the anti-foolproof rod from entering the return channel;

[0010] In the positioning position, the anti-foolproof rod is located on the other side of the stop arm, and the positioning assembly drives the anti-foolproof rod to move along the return channel and return to the release position.

[0011] The processing equipment of the technical solution of the present invention is provided with a tooling on the machine body and a placement groove on the tooling, so that the placement groove of the tooling is used to place and preliminarily position the cable, providing an operating space for the positioning and bending processing of the cable; by arranging a positioning device and a bending device at intervals on the mounting surface of the machine body, the positioning device is used to accurately position the cable in the placement groove, so that the contoured pressure block of the bending device bends the cable in the placement groove, thereby improving the bending processing accuracy; at the same time, by movably providing a positioning component on the first base of the positioning device, the positioning component drives the contoured positioning block to approach or move away from the cable in the placement groove, so that the contoured positioning block of the positioning component is used to position the cable, and the positioning position of the positioning component can be adjusted according to actual conditions; further, by providing an anti-foolproof component on the first base of the positioning device, and providing an anti-foolproof rod on the positioning component, the return channel and the stop arm of the anti-foolproof component cooperate to realize the limiting and anti-foolproof effect of the anti-foolproof rod of the positioning component. As can be understood, the positioning device has a positioning position in which the contoured positioning block abuts against the cable in the positioning placement groove, and a release position in which the contoured positioning block is away from the cable. When the positioning assembly is in the release position, the anti-foolproofing rod is located on one side of the stop arm, and the stop arm is used to stop the anti-foolproofing rod from entering the return channel, thereby ensuring that the positioning assembly is positioned on the first base, avoiding the need to manually move or fix the positioning assembly when the cable is not needed, which causes operational inconvenience. When the positioning assembly is in the positioning position, the anti-foolproofing rod is located on the other side of the stop arm, so that the contoured positioning block of the positioning assembly can be used to position the cable, thereby ensuring the accuracy and precision of the positioning of the cable. After positioning is completed, the positioning assembly can be used to drive the contoured positioning block to move on the first base, causing the anti-foolproofing rod to move along the return channel and return to the release position, thereby realizing the anti-foolproofing operation of the positioning assembly. This processing equipment not only realizes automatic anti-foolproofing positioning, but also effectively improves positioning accuracy and bending processing accuracy, avoids damage to the cable, and improves operational convenience. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0013] Figure 1 A schematic structural diagram of a processing device in one embodiment of the present invention;

[0014] Figure 2 This is a schematic structural diagram of a machine body in one embodiment of the present invention;

[0015] Figure 3 A schematic structural diagram of a positioning device according to an embodiment of the present invention;

[0016] Figure 4 This is an exploded schematic diagram of a positioning device in one embodiment of the present invention;

[0017] Figure 5 is a cross-sectional schematic diagram of a positioning device in one embodiment of the present invention;

[0018] Figure 6 Schematic diagram of an exploded view of a foolproof component in one embodiment of the present invention;

[0019] Figure 7 A schematic structural diagram of a bending device in one embodiment of the present invention;

[0020] Figure 8 is an exploded schematic diagram of a bending device in one embodiment of the present invention;

[0021] Figure 9 is a cross-sectional schematic diagram of a bending device in one embodiment of the present invention;

[0022] Figure 10 This is a schematic structural diagram of a bending device in one embodiment of the present invention;

[0023] Figure 11 A schematic structural diagram of a bending device from another perspective in one embodiment of the present invention;

[0024] Figure 12 A schematic cross-sectional view of a bending device according to an embodiment of the present invention;

[0025] Figure 13 A schematic diagram of a portion of the structure of a bending device in one embodiment of the present invention;

[0026] Figure 14 A schematic structural diagram of a bending device in another embodiment of the present invention;

[0027] Figure 15 A schematic structural diagram of a bending device from another perspective in another embodiment of the present invention;

[0028] Figure 16 is a first cross-sectional schematic diagram of a bending device in another embodiment of the present invention;

[0029] Figure 17 2 is a second cross-sectional schematic diagram of a bending device in another embodiment of the present invention.

[0030] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0032] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0033] At the same time, the meaning of "and / or" or "and / or" appearing in the full text includes three options. Taking "A and / or B" as an example, it includes option A, or option B, or an option in which both A and B are satisfied.

[0034] In addition, in the present invention, descriptions such as "first" and "second" are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0035] Currently, product cables need to be bent according to product assembly requirements before assembly, such as bending the cables at specific angles. Because the cables are internally wired, the bending position and angle are highly demanding. In related technologies, manual positioning and bending are often used during the bending process, resulting in poor positioning. Manual positioning is not only prone to damage, but also requires manual operation and foolproofing of the positioning device, making it inconvenient to operate. Furthermore, manually controlling the bending device during the bending process cannot guarantee the bending accuracy of the cables and is prone to damage.

[0036] At the same time, during the bending process of the cable, manual bending is usually used. Since the manual control force cannot always be kept consistent, the bending effect is poor. Manual operation is not only easy to damage the cable, but also cannot keep the bending force consistent, resulting in inconvenient operation and poor efficiency.

[0037] The present invention provides a processing device 100. As will be understood, processing device 100 is used to bend the cable 5 so that it meets assembly requirements during assembly. In this embodiment, processing device 100 first positions the cable 5 before bending it. This processing device 100 not only effectively prevents damage to the cable 5 but also improves the accurate positioning and positioning accuracy of the cable 5, enhances bending accuracy, and enhances operational convenience and simplifies operation.

[0038] Please refer to Figures 1 to 9 As shown, in the embodiment of the present invention, the processing equipment 100 includes a body 1, a positioning device 2 and a bending device 3. The body 1 has a mounting surface 11, the mounting surface 11 is provided with a tool 12, the tool 12 is provided with a placement groove 121 on the side facing away from the mounting surface 11, and the placement groove 121 is used to place the cable 5. The positioning device 2 includes a first base 21, a positioning component 22 and an anti-foolproof component 23. The first base 21 is provided on the mounting surface 11 and is adjacent to the tool 12. The positioning component 22 is movably provided on the first base 21. The positioning component 22 is provided with a simulated The anti-foolproofing component 23 is provided on the first base 21 and is located on the side of the positioning component 22 facing the anti-foolproofing rod 2224. The anti-foolproofing component 23 is provided with a return channel 2311 and a stop arm 2321 movably provided in the return channel 2311. The bending device 3 is provided on the mounting surface 11 and is arranged adjacent to the tooling 12. The bending device 3 is spaced apart from the positioning device 2. The bending device 3 is provided with a contoured pressure block 3221. The contoured pressure block 3221 is used to bend the cable 5 in the placement groove 121.

[0039] In this embodiment, if Figure 1 and Figure 2 As shown, the body 1 is used to install, fix, and support components such as the tooling 12, the positioning device 2, and the bending device 3. In other words, the body 1 provides a mounting base for the tooling 12, the positioning device 2, and the bending device 3. It is understood that the body 1 can be a mounting plate, a mounting seat, or other structure, which is not limited here.

[0040] It is understood that to prevent the cable 5 from falling from the placement slot 121 during processing, a suction device is provided within the placement slot 121 of the tooling 12, such as a suction nozzle, suction hole, suction cup, or other structure capable of achieving positioning and suction, which is not limited here. In this embodiment, the body 1 is also provided with a vacuum suction device, and the tooling 12 is provided with a suction chamber connected to the placement slot 121. The vacuum suction device is connected to the suction chamber via a pipeline, thereby achieving suction and fixation of the cable 5 within the placement slot 121.

[0041] In this embodiment, the positioning device 2 and the bending device 3 are spaced apart and arranged on the mounting surface 11 of the machine body 1, and are arranged adjacent to the tooling 12. Optionally, the tooling 12 is arranged in a square shape, and the positioning device 2 and the bending device 3 are arranged on different sides of the tooling 12. The specific installation method is determined according to actual conditions and is not limited here.

[0042] It can be understood that in order to achieve multi-angle bending processing and multi-angle positioning of the cable 5, the processing equipment 100 includes multiple positioning devices 2 and multiple bending devices 3, which are installed according to actual conditions and are not limited here.

[0043] In this embodiment, the positioning device 2 has a positioning position in which the contoured positioning block 2223 abuts against the cable 5 in the positioning placement groove 121 and a release position in which the contoured positioning block 2223 is away from the cable 5; in the release position, the anti-foolproof rod 2224 is located on one side of the stop arm 2321, and the stop arm 2321 stops the anti-foolproof rod 2224 from entering the return channel 2311; in the positioning position, the anti-foolproof rod 2224 is located on the other side of the stop arm 2321, and the positioning assembly 22 drives the anti-foolproof rod 2224 to move along the return channel 2311 and return to the release position.

[0044] As will be understood, the positioning assembly 22 of the positioning device 2 can move on the first base 21 and approach or move away from the tooling 12, causing the positioning assembly 22 to drive the contoured positioning block 2223 toward or away from the placement slot 121, thereby positioning or releasing the cable within the placement slot 121. In this embodiment, the direction in which the positioning assembly 22 can move on the first base 21 toward the tooling 12 is defined as the first direction, and the direction away from the tooling 12 is defined as the opposite direction of the first direction. In other words, when the positioning assembly 22 moves along the first direction on the first base 21, it has a positioning position and a release position.

[0045] The processing equipment 100 of the present invention is provided with a tool 12 on the machine body 1, and a placement groove 121 is provided on the tool 12, so that the placement groove 121 of the tool 2 is used to place and preliminarily position the cable 5, providing an operating space for positioning and bending processing of the cable 5; by providing a positioning device 2 and a bending device 3 spaced apart on the mounting surface 11 of the machine body 1, the positioning device 2 is used to accurately position the cable 5 in the placement groove 121, so that the contoured pressing block 2223 of the bending device 3 can bend the cable 5 in the placement groove 121, thereby improving the bending processing accuracy; at the same time, by A positioning assembly 22 is movably provided on the first base 21 of the positioning device 2, so that the positioning assembly 22 drives the contour positioning block 2223 to approach or move away from the cable 5 in the placement groove 121, thereby using the contour positioning block 2223 of the positioning assembly 22 to position the cable 5, and the positioning position of the positioning assembly 22 can be adjusted according to actual conditions; further, an anti-foolproofing assembly 23 is provided on the first base 21 of the positioning device 2, and an anti-foolproofing rod 2224 is provided on the positioning assembly 22, and the return channel 2311 and the stop arm 2321 of the anti-foolproofing assembly 34 cooperate with the anti-foolproofing rod 2224 of the positioning assembly 33 to achieve a limiting anti-foolproofing effect. It can be understood that the positioning device 2 has a positioning position where the contoured positioning block 2223 abuts against the cable 5 in the positioning placement groove 121 and a release position where the contoured positioning block 2223 is away from the cable 5. When the positioning component 22 is in the release position, the anti-fool rod 2224 is located on one side of the stop arm 2321, and the stop arm 2321 is used to stop the anti-fool rod 2224 from entering the return channel 2311, thereby ensuring that the positioning component 22 is positioned on the first base 21, avoiding the need to manually move or fix the positioning component when the cable 5 does not need to be positioned. Component 22 is not fixed, causing operational inconvenience. When the positioning assembly 22 is in the positioning position, the anti-foolproofing rod 2224 is located on the other side of the stop arm 2321. The contoured positioning block 2223 of the positioning assembly 22 can be used to position the cable 5, thereby ensuring the accuracy and precision of the positioning of the cable 5. After positioning is completed, the positioning assembly 22 can be used to drive the contoured positioning block 2223 to move on the first base 21, causing the anti-foolproofing rod 2224 to move along the return channel 2311 and return to the released position, thereby achieving the anti-foolproofing operation of the positioning assembly 22. This processing equipment 100 not only achieves automatic anti-foolproofing positioning, but also effectively improves positioning accuracy and bending processing accuracy, avoids damage to the cable 5, and enhances operational convenience.

[0046] In this embodiment, if Figures 3 to 6As shown, the first base 21 is provided with a first sliding cavity 214; the positioning assembly 22 includes a first sliding seat 221 and a positioning member 222, the first sliding seat 221 is movably provided in the first sliding cavity 214, and moves along the first direction, the first sliding seat 221 is provided with a rotation groove 2216, one end of the positioning member 222 extends into the rotation groove 2216, and is rotatably connected to the groove wall of the rotation groove 2216, the other end of the positioning member 222 is provided with a contoured positioning block 2223, and the anti-foolproof rod 2224 is provided on the side of the positioning member 222 facing the anti-foolproof assembly 23, and is located between the contoured positioning block 2223 and the rotation groove 2216; wherein, the first sliding seat 221 moves in the first sliding cavity 214 to drive the positioning member 222 to move between the release position and the positioning position.

[0047] In this embodiment, if Figures 3 to 6 As shown, the first base 21 is used to install, fix and support components such as the positioning assembly 22 and the foolproof assembly 23. In other words, the first base 21 provides a mounting base for the positioning assembly 22 and the foolproof assembly 23. It is understood that the first base 21 can be a structure such as a base plate, a mounting frame, a bracket, a support frame or a mounting platform.

[0048] As will be appreciated, the positioning device 2 is mounted on the body 1 of the processing equipment 100 via the first base 21; alternatively, it is positioned adjacent to the body 1 of the processing equipment 100. Of course, the first base 21 can also be fixed to the body 1 of the processing equipment 100, for example, by welding or integrally forming the first base 21 onto the mounting surface 11 of the body 1. To enhance ease of assembly and disassembly of the positioning device 2, the positioning device 2 is detachably mounted on the mounting surface 11 of the body 1 via the first base 21.

[0049] It should be noted that the tooling 12 of the processing equipment 100 is provided with a placement groove 121 for placing the cable 5, and the positioning member 222 of the positioning device 2 is used to position the cable 5 in the placement groove 121 on the tooling 12 to facilitate bending processing of the cable 5.

[0050] In this embodiment, a first sliding cavity 214 is provided on the first base 21. The first sliding cavity 214 not only provides an installation space for the positioning component 22, but also provides a sliding guide space for the positioning component 22, so that the positioning component 22 can be adjusted according to the positioning position of the cable 5 in the slot 121 on the processing equipment 100 to achieve precise positioning, thereby improving the positioning accuracy.

[0051] Optionally, the first sliding cavity 214 on the first base 21 extends along a first direction. The first direction may be the direction in which the positioning assembly 22 moves toward the cable 5 within the placement slot 121 on the processing equipment 100. The specific configuration depends on actual needs and is not limited here. In this embodiment, the first sliding cavity 214 may have a concave cavity, a groove, or a through cavity, etc., which is not limited here.

[0052] In one embodiment, if Figures 3 to 5 As shown, the first base 21 includes a bottom plate 211, a first side plate 212 and a second side plate 213. The bottom plate 211 is provided with a slide rail extending along the first direction. The first sliding seat 221 is provided with a slide groove. The slide groove slides with the slide rail. The anti-foolproofing component 23 is provided on the bottom plate 211 and is located on one side of the slide rail. The first side plate 212 is provided on the bottom plate 211 and is located at one end of the slide rail. The second side plate 213 is provided on the bottom plate 211 and is located at the other end of the slide rail, so that the first side plate 212, the bottom plate 211 and the second side plate 213 are enclosed to form a first sliding cavity 214, and the slide rail is located in the first sliding cavity 214; wherein, the first sliding seat 221 drives the positioning member 222 and the anti-foolproofing rod 2224 to move along the slide rail, so that the positioning component 22 moves back and forth between the first position and the second position.

[0053] In this embodiment, the bottom plate 211 of the first base 21 can be a plate-like structure or a support plane, etc., which is not limited here. The first side plate 212 and the second side plate 213 are spaced apart on the bottom plate 211 and located at both ends of the slide rail. That is, the first side plate 212, the slide rail, and the second side plate 213 are spaced apart along the first direction, so that the first side plate 212, the bottom plate 211, and the second side plate 213 enclose a first sliding cavity 214. It can be understood that the slide rail is located in the first sliding cavity 214 and between the first side plate 212 and the second side plate 213.

[0054] It can be understood that by arranging a slide rail extending along the first direction in the first sliding cavity 214 and providing a slide groove in the first sliding seat 221 of the positioning assembly 22, the first sliding seat 221 can slide with the slide rail through the slide groove, and not only the slide rail is used to guide the positioning assembly 22 to slide along the first direction, but also the slide rail and the slide groove are used to cooperate to achieve the installation of the positioning assembly 22 in the first sliding cavity 214 of the first base 21.

[0055] It should be noted that the slide rail and the slide slot are further provided with mutually limiting grooves and limiting protrusions, allowing the slide slot to slide along the extension direction of the slide rail. However, the limiting grooves and limiting protrusions cooperate to prevent the slide slot from separating from the slide rail in a direction perpendicular to the first direction. It is understood that the first side plate 212 and the second side plate 213 limit the travel of the positioning assembly 22 along the first direction on the slide rail.

[0056] In this embodiment, the positioning assembly 22 has a release position and a positioning position for the first sliding seat 221 to move within the first sliding cavity 214, and the release position and the positioning position are spaced apart along the first direction. It can be understood that the first sliding seat 221 of the positioning assembly 22 moves along the first direction on the slide rail, so that the positioning assembly 22 has the release position and the positioning position spaced apart along the first direction.

[0057] It should be noted that the release position is defined as the position where the positioning member 222 of the positioning assembly 22 is separated from the cable 5 in the placement slot 121 on the processing equipment 100. The positioning position is defined as the position where the positioning member 222 of the positioning assembly 22 contacts and positions the cable 5 in the placement slot 121 on the processing equipment.

[0058] To achieve positioning and foolproofing of the positioning assembly 22 as it moves along the slide rail in the first direction, in this embodiment, a foolproofing assembly 23 is provided on the first base 21. A return channel 2311 and a stop arm 2321 movably disposed within the return channel 2311 are provided on the side of the foolproofing assembly 23 facing the foolproofing rod 2224 of the positioning assembly 22. As will be appreciated, the return channel 2311 extends along the first direction. The stop arm 2321 is optionally provided at one end of the return channel 2311 adjacent to the release position.

[0059] In this embodiment, when the positioning assembly 22 is in the released position, the anti-foolproof rod 2224 is located on one side of the stop arm 2321. At this time, the stop arm 2321 prevents the anti-foolproof rod 2224 from entering the return channel 2311, so that the positioning assembly 22 is positioned in the first sliding cavity 214. It can be understood that the stop arm 2321 can be used to prevent and limit the sliding of the positioning assembly 22. When the positioning member 222 of the positioning assembly 22 is no longer needed to position the cable 5, the positioning assembly 22 is prevented from sliding along the slide rail, which could cause the positioning member 222 to damage the cable 5.

[0060] When the positioning assembly 22 is in the positioning position, the anti-foolproofing rod 2224 is located on the other side of the stop arm 2321. The first sliding seat 221 then drives the positioning member 222 to move within the first sliding cavity 214 in a direction opposite to the first direction, causing the anti-foolproofing rod 2224 to move along the return channel 2311 and return to the released position. It is understood that the first direction is the direction from the release position to the positioning position, and the direction opposite to the first direction is the direction from the positioning position to the released position.

[0061] It should be noted that the positioning component 22 completes the positioning of the cable 5. After the cable 5 completes the bending process, in order to prevent the positioning component 22 from suddenly detaching from the cable 5, causing damage to the formed state of the cable 5 after the bending process, when the positioning component 22 needs to detach, the first sliding seat 221 of the positioning component 22 moves on the slide rail in the opposite direction of the first direction, and drives the positioning member 222 to gradually detach from the cable 5. At this time, the anti-stuck rod 2224 moves along the return channel 2311 and returns to the release position.

[0062] It can be understood that when the anti-foolproof rod 2224 returns to the release position from the positioning position, the anti-foolproof rod 2224 moves along the return channel 2311 and approaches the stop arm 2321 to push the stop arm 2321 to rotate, so that the anti-foolproof rod 2224 disengages from the return channel 2311 and is in the release position, and the stop arm 2321 will automatically reset to perform anti-foolproof positioning on the anti-foolproof rod 2224 to prevent the positioning assembly 22 from sliding from the release position to the positioning position.

[0063] The positioning device 2 of the present invention sets a first sliding cavity 214 on the first base 21, which not only uses the first sliding cavity 214 to realize the installation and positioning of the positioning component 22, but also uses the first sliding cavity 214 to provide a moving guide space for the first sliding seat 221 of the positioning component 22 to drive the positioning member 222, so that the positioning component 22 can use the first sliding seat 221 to drive the positioning member 222 to move according to the requirements of the product, so as to use the positioning member 222 to realize the positioning of the cable 5, thereby improving the positioning accuracy and precision; at the same time, by setting an anti-fool rod 2224 on the positioning member 222 and setting an anti-fool component 23 on the first base 21, the return channel 2311 and the stop arm 2321 of the anti-fool component 23 cooperate with the anti-fool rod 2224 of the positioning member 222 to realize the limiting and anti-fool effect. It can be understood that the positioning assembly 22 has a release position and a positioning position in which the first sliding seat 221 moves in the first direction in the first sliding cavity 214. When the positioning assembly 22 is in the release position, the anti-idiot rod 2224 is located on one side of the stop arm 2321, and the stop arm 2321 is used to stop the anti-idiot rod 2224 from entering the return channel 2311, thereby ensuring that the positioning assembly 22 is positioned in the first sliding cavity 214, avoiding the need to manually move or fix the positioning assembly 22 when the positioning cable 5 is not needed, When the positioning assembly 22 is in the positioning position, the anti-foolproof rod 2224 is located on the other side of the stop arm 2321. In this way, the positioning member 222 of the positioning assembly 22 can be used to position the cable 5, thereby ensuring the accuracy and precision of the positioning of the cable 5. After positioning, the first sliding seat 221 can be used to drive the positioning member 222 to move within the first sliding cavity 214, so that the anti-foolproof rod 2224 moves along the return channel 2311 and returns to the release position, thereby realizing the anti-foolproof operation of the positioning assembly 22. This positioning device 2 not only realizes automatic anti-foolproof positioning, but also effectively improves positioning accuracy and enhances operational convenience.

[0064] In one embodiment, the anti-foolproofing assembly 23 includes a mounting seat 231, a stop member 232 and a first elastic member. The mounting seat 231 is arranged on the first base 21 and is located on the side of the positioning assembly 22 facing the anti-foolproofing rod 2224. The mounting seat 231 is provided with a stop groove 2312 and a return channel 2311. The notch of the stop groove 2312 faces the return channel 2311 and is connected to the return channel 2311. The stop member 232 is rotatably arranged in the stop groove 2312. The stop member 232 is provided with a stop arm 2321. The stop arm 2321 passes through the notch of the stop groove 2312 and extends to the return channel 2311. The first elastic member is arranged in the stop groove 2312. The two ends of the first elastic member are elastically connected to the stop member 232 and the mounting seat 231 respectively; wherein, when the anti-foolproofing rod 2224 moves along the return channel 2311 and returns to the release position, the anti-foolproofing rod 2224 pushes the stop arm 2321 to rotate.

[0065] In this embodiment, if Figures 3 to 6 As shown, the foolproofing component 23 is fixed to the bottom plate 211 of the first base 21 through the mounting base 231. The mounting base 231 provides a mounting base for components such as the stopper 232 and the first elastic member. Optionally, the mounting base 231 can be a plate-like structure. It is understandable that the mounting base 231 and the first base 21 can be fixedly connected, such as by welding or integral molding, so as to improve the installation stability of the foolproofing component 23. Of course, in order to facilitate the disassembly and assembly of the foolproofing component 23, the mounting base 231 and the first base 21 can be detachably connected, such as by snap connection, plug-in fit, screw connection or pin connection, etc., which is not limited here.

[0066] It can be understood that by setting a return channel 2311 on the side of the mounting seat 231 facing the positioning assembly 22, the return channel 2311 extends along the first direction, thereby providing a guiding space for the anti-foolproof rod 2224 to return from the positioning position to the release position.

[0067] In this embodiment, the mounting base 231 further includes a stopper groove 2312 that communicates with the return channel 2311, thereby allowing the stopper 232 and the first elastic member to be mounted using the stopper groove 2312. It will be appreciated that the notch of the stopper groove 2312 faces the return channel 2311 and communicates with the return channel 2311. The stopper 232 is rotatably disposed within the stopper groove 2312 and is provided with a protruding stopper arm 2321, such that the stopper arm 2321 passes through the notch of the stopper groove 2312 and extends into the return channel 2311.

[0068] As will be understood, the stopper 232 is provided with a rotating shaft, and the wall of the stopper groove 2312 is provided with an axial hole. The rotating shaft of the stopper 232 is rotatably inserted into the axial hole to achieve the rotational connection of the stopper 232. In order to achieve the reset of the stopper 232 and ensure that the stopper 232 always stops and limits the anti-foolproof rod 2224 in the released position, a first elastic member is also provided in the stopper groove 2312.

[0069] It is understood that the first elastic member can be a reset spring. The first elastic member is sleeved on the rotating shaft of the stopper 232 and has two elastic arms, which elastically abut the stopper 232 and the groove wall of the stopper groove 2312, or two opposite groove walls of the stopper groove 2312. Of course, the first elastic member can also be arranged between the stopper 232 and the groove wall of the stopper groove 2312, so that the two ends of the first elastic member are elastically connected to the stopper 232 and the mounting seat 231, respectively. This is not limited here, and any structure that can achieve the reset of the stopper arm 2321 is suitable.

[0070] In this embodiment, the anti-foolproof rod 2224 moves along the return channel 2311 in the opposite direction of the first direction. When returning from the positioning position to the release position, the anti-foolproof rod 2224 approaches and pushes the stop arm 2321 to rotate to compress the first elastic member. When the anti-foolproof rod 2224 continues to move and disengages from the stop arm 2321, the stop arm 2321 is reset under the elastic force of the first elastic member.

[0071] In one embodiment, if Figures 3 to 6 As shown, the mounting base 231 has a stop boss 2314 protruding from the notch adjacent to the stop groove 2312, and the stop boss 2314 stops the stop arm 2321. Specifically, the mounting base 231 has a stop boss 2314 protruding from the notch adjacent to the stop groove 2312 toward the release position, and the stop boss 2314 stops the stop arm 2321. It will be appreciated that this arrangement allows the stop boss 2314 to further limit the stop arm 2321, preventing the anti-fool rod 2224 from pushing against the stop arm 2321 and entering the return channel 2311 when the anti-fool rod 2224 moves from the release position to the positioning position, thereby improving the anti-fool and stopping effects.

[0072] In one embodiment, if Figures 3 to 6 As shown, a notch of the mounting seat 231 adjacent to the stop groove 2312 is formed with an abutment slope 2315, the abutment slope 2315 faces the positioning position, and the angle formed by the plane where the abutment slope 2315 is located and the extension direction of the return channel 2311 is less than 90°, and the two ends of the first elastic member are elastically connected to the stop member 232 and the abutment slope 2315 respectively.

[0073] As can be understood, the abutting bevel 2315 and the stop boss 2314 are located on opposite sides of the notch of the stop groove 2312 along the first direction. The abutting bevel 2315 is inclined so that the anti-stuck rod 2224 approaches and pushes the stop arm 2321 to rotate, thereby compressing the first elastic member. The abutting bevel 2315 also limits the rotation angle of the stop arm 2321, preventing the stop arm 2321 from excessively rotating and being unable to return to its original position.

[0074] Optionally, in the release position, the distance between the stop arm 2321 and the bottom wall of the return channel 2311 is smaller than the diameter of the anti-foolproof rod 2224. That is, when the stop arm 2321 is in the reset or initial position, the distance between the stop arm 2321 and the bottom wall of the return channel 2311 is smaller than the diameter of the anti-foolproof rod 2224, thereby effectively ensuring that the stop arm 2321 can limit the anti-foolproof rod 2224.

[0075] In one embodiment, the mounting seat 231 is further provided with a blocking groove 2313 spaced from the stop groove 2312. The blocking groove 2313 is located on the side of the stop groove 2312 facing the tooling 12. The notch of the blocking groove 2313 faces the return channel 2311 and is connected to the return channel 2311. The foolproof assembly 23 also includes a blocking member 233 and a second elastic member 234. The blocking member 233 is rotatably disposed in the blocking groove 2313. The blocking member 233 is provided with a blocking arm 2331 and a support arm 2332, the support arm 2332 and the blocking arm 2331 are located on opposite sides of the blocking member 233, the second elastic member 234 is arranged in the blocking groove 2313, and the two ends of the second elastic member 234 are elastically connected to the support arm 2332 and the groove wall of the blocking groove 2313 respectively, so as to keep the blocking arm 2331 away from the return channel 2311; wherein, when in the positioning position, the anti-fool rod 2224 pushes the blocking arm 2331 to rotate, so that the anti-fool rod 2224 enters the return channel 2311.

[0076] In this embodiment, if Figures 3 to 6 As shown, the blocking groove 2313 and the stopping groove 2312 are spaced apart along the first direction, with the blocking groove 2313 adjacent to the positioning position and the stopping groove 2312 adjacent to the release position. The notch of the blocking groove 2313 faces the return channel 2311 and is in communication with the return channel 2311. By providing the blocking groove 2313 on the mounting base 231 and providing the blocking member 233 and the second elastic member 234 on the foolproof assembly 23, the blocking member 233 and the second elastic member 234 cooperate to limit the positioning assembly 22 at the positioning position, thereby preventing the positioning assembly 22 from suddenly separating from the flat cable 5 in a direction perpendicular to the first direction, thereby preventing the flat cable 5 from being damaged.

[0077] As will be appreciated, the blocking groove 2313 and the stopping groove 2312 are spaced apart along the first direction and positioned above the return channel 2311, such that the blocking groove 2313 is adjacent to the positioning position and the stopping groove 2312 is adjacent to the release position. In this embodiment, the notch of the blocking groove 2313 faces toward and communicates with the return channel 2311. A blocking arm 2331 is provided on the blocking member 233 so that the blocking arm 2331 passes through the notch of the blocking groove 2313. A support arm 2332 is provided on the blocking member 233 so that the support arm 2332 and the blocking arm 2331 are located on opposite sides of the blocking member 233, thereby utilizing the two ends of the second elastic member 234 to be elastically connected to the support arm 2332 and the groove wall of the blocking groove 2313 respectively, so that the blocking arm 2331 is in an initial state parallel to the extension direction of the return channel 2311, that is, the blocking arm 2331 does not affect the anti-fool rod 2224 from entering the return channel 2311, and does not affect the anti-fool rod 2224 from moving in the return channel 2311.

[0078] In this embodiment, the setting of the blocking arm 2331 can prevent the anti-fool rod 2224 from disengaging the return channel 2311 at the positioning position. It can be understood that when the positioning assembly 22 is in the positioning position, the anti-fool rod 2224 pushes the blocking arm 2331 to rotate so that the anti-fool rod 2224 enters the return channel 2311.

[0079] As will be understood, the blocking member 233 is provided with a rotating shaft, and the wall of the blocking groove 2313 is provided with an axial hole. The rotating shaft of the blocking member 233 is rotatably inserted into the axial hole, thereby achieving the rotational connection of the blocking member 233. In this embodiment, to limit the position of the second elastic member 234, at least one of the support arm 2332 and the wall of the blocking groove 2313 is provided with a groove, and the end of the second elastic member 234 is positioned in the groove.

[0080] In this embodiment, the second elastic member 234 may be a reset spring or a telescopic spring. The second elastic member 234 can be provided to reset the blocking arm 2331 or to place it in the initial position.

[0081] In one embodiment, if Figures 3 to 6 As shown, the mounting base 231 is provided with a support platform 2316 protruding from the notch of the blocking groove 2313 in the direction away from the stop groove 2312, and the support arm 2332 is supported on the support platform 2316. It can be understood that by providing the support platform 2316, the support platform 2316 is used to support the limiting support arm 2332, thereby preventing the anti-fool rod 2224 from pushing the blocking arm 2331 in the opposite direction and leaving the return channel 2311 after entering the return channel 2311.

[0082] In one embodiment, if Figures 3 to 6As shown, the mounting base 231 is formed with a stopper protrusion 2317 at a notch adjacent to the blocking groove 2313, facing the stopper groove 2312. The stopper protrusion 2317 stops the blocking arm 2331. It is understandable that such a configuration can utilize the rotation transition of the stopper protrusion 2317, so that after the anti-foolproof rod 2224 enters the return channel 2311, the anti-foolproof rod 2224 pushes the blocking arm 2331 in the reverse direction and leaves the return channel 2311.

[0083] In this embodiment, when the blocking arm 2331 is in the initial position or reset, the blocking arm 2331 is in limiting contact with the stopping protrusion 2317 , and the support arm 2332 is supported on the support platform 2316 .

[0084] In one embodiment, if Figures 3 to 5 As shown, at least one of the first sliding seat 221 and the first side plate 212 is provided with a first adsorption member 216 ; when in the release position, the first sliding seat 221 is adsorbed and connected to the first side plate 212 via the first adsorption member 216 .

[0085] It can be understood that the first adsorption member 216 can be an adsorption member or a magnetic member, such as a magnet or other structures. The first adsorption member 216 can be set on the first sliding seat 221, and in this case the first side plate 212 can be made of iron or magnetic material. The first adsorption member 216 can be set on the first side plate 212, and in this case the first sliding seat 221 can be made of iron or magnetic material. Of course, the first sliding seat 221 and the first side plate 212 are both provided with the first adsorption member 216. When in the release position, the first sliding seat 221 is adsorbed and connected to the first side plate 212 through the first adsorption member 216.

[0086] In one embodiment, if Figures 3 to 5 As shown, at least one of the first sliding seat 221 and the second side plate 213 is provided with a second adsorption member 217 ; when in the positioning position, the first sliding seat 221 is adsorbed and connected to the second side plate 213 via the second adsorption member 217 .

[0087] It can be understood that the second adsorption member 217 can be an adsorption member or a magnetic member, such as a magnet or other structures. The second adsorption member 217 can be set on the first sliding seat 221, and in this case the second side plate 213 can be made of iron or magnetic material. The second adsorption member 217 can be set on the second side plate 213, and in this case the first sliding seat 221 can be made of iron or magnetic material. Of course, the first sliding seat 221 and the second side plate 213 are both provided with the second adsorption member 217. When in the positioning position, the first sliding seat 221 is adsorbed and connected to the second side plate 213 through the second adsorption member 217.

[0088] In one embodiment, the first sliding seat 221 includes a fixed seat 2211, a rotating seat 2215 and a rotating shaft 2217. The fixed seat 2211 is movably arranged in the first sliding cavity 214. The fixed seat 2211 is provided with a fixed groove 2212 on the side facing away from the first base 21. The rotating seat 2215 is arranged in the fixed groove 2212. The rotating seat 2215 is provided with a rotating groove 2216. The rotating shaft 2217 is arranged in the rotating groove 2216; wherein, one end of the positioning member 222 extends into the rotating groove 2216 and is rotatably sleeved on the rotating shaft 2217, so that the positioning member 222 rotates around the rotating shaft 2217 relative to the first sliding seat 221.

[0089] In this embodiment, if Figures 3 to 5 As shown, a slide groove is provided on the side of the fixed seat 2211 facing the slide rail, and the fixed seat 2211 slides with the slide rail through the slide groove. By providing a fixed groove 2212 on the fixed seat 2211, the fixed rotating seat 2215 is installed using the fixed groove 2212. It can be understood that the first sliding seat 221 is configured as a two-part structure of the fixed seat 2211 and the rotating seat 2215, so as to facilitate the installation of the positioning member 222 on the rotating seat 2215, and the rotating seat 2215 and the fixed seat 2211 are configured as an adjustable structure, for example, an adjustment hole is provided on the fixed seat 2211, and the rotating seat 2215 is installed and fixed by passing an adjustment screw through the adjustment hole.

[0090] It is understood that, depending on the actual positioning position of the cable 5, the rotating seat 2215 and the positioning member 222 can be driven by the adjusting screw to move along the adjustment hole, thereby adjusting the position of the positioning member 222, which is not limited here. In this embodiment, by providing a rotating shaft 2217 within the rotating groove 2216, one end of the positioning member 222 is extended into the rotating groove 2216 and is rotated and sleeved on the rotating shaft 2217, so that the positioning member 222 rotates around the rotating shaft 2217 relative to the first sliding seat 221. This facilitates the operation of the positioning member 222 to achieve better positioning of the cable 5.

[0091] In this embodiment, the fixed seat 2211 may be a U-shaped structure. The rotating seat 2215 may also be a U-shaped structure. To support and position the positioning member 222 after the positioning member 222 rotates about the rotation axis 2217 relative to the first sliding seat 221, in one embodiment, the fixing groove 2212 is formed with a first supporting groove 2213 and a second supporting groove 2214 on opposite side walls along the first direction.

[0092] In this embodiment, if Figures 3 to 5 As shown, the fixing base 2211 includes a bottom plate and two side plates, which are arranged on the same side of the bottom plate and spaced apart along the first direction, so that the bottom plate and the two side plates enclose a fixing groove 2212. It can be understood that the ends of the two side plates away from the bottom plate are respectively provided with a first supporting groove 2213 and a second supporting groove 2214.

[0093] As can be understood, the positioning assembly 22 has a first state in which the positioning member 222 is supported within the first support groove 2213, and a second state in which the positioning member 222 is supported within the second support groove 2214. In this embodiment, when the positioning assembly 22 is in the first state, that is, when the positioning member 222 is supported within the first support groove 2213, the positioning member 222 is used to position one end of the flat cable 5 away from the positioning position. This prevents the positioning member 222 from contacting the flat cable 5 in the event of misoperation, thereby protecting the flat cable 5. When the positioning assembly 22 is in the second state, that is, when the positioning member 222 is supported within the second support groove 2214, the second support groove 2214 can be used to support and position the positioning member 222, thereby ensuring the positioning effect of the positioning member 222.

[0094] In this embodiment, in the first state, the anti-foolproof rod 2224 is in the release position, thereby effectively protecting the cable 5; in the positioning position, the positioning assembly 22 is in the second state, thereby ensuring the positioning effect of the positioning member 222 on the cable 5.

[0095] In one embodiment, if Figure 4 and Figure 5 As shown, the positioning assembly 22 further includes a first buffer member 223 disposed in the second supporting groove 2214 . The positioning member 222 is supported in the second supporting groove 2214 and elastically abuts against the first buffer member 223 .

[0096] It is understood that by providing the first buffer member 223, the first buffer member 223 provides a buffer for the positioning member 222, thereby preventing the positioning member 222 from contacting the flat cable 5 and damaging the flat cable 5. Optionally, the positioning member 222 is provided with a buffer groove corresponding to the first buffer member 223, so that the cooperation between the buffer groove and the first buffer member 223 can achieve both positioning and buffering functions.

[0097] In one embodiment, if Figure 5 As shown, the distance from the side of the second side plate 213 facing away from the bottom plate 211 to the bottom plate 211 is defined as the height of the second side plate 213. The height of the second side plate 213 is less than the distance from the notch of the second support groove 2214 to the bottom plate 211, and greater than the distance from the bottom wall of the second support groove 2214 to the bottom plate 211. It can be understood that such a configuration can not only utilize the second side plate 213 to support and limit the positioning member 222, but also prevent the second side plate 213 from being too high and thus failing to provide cushioning.

[0098] In one embodiment, if Figure 4 and Figure 5As shown, at least one of the second side plate 213 and the positioning member 222 is provided with a magnetic member 215. In the positioned position, the second side plate 213 is attracted and connected to the positioning member 222 via the magnetic member 215. It is understood that the provision of the magnetic member 215 improves the adsorption and positioning of the positioning member 222, thereby ensuring the positioning accuracy of the positioning member 222 in positioning the cable 5 and preventing the positioning member 222 from moving and causing damage to the cable 5 or affecting the positioning position.

[0099] Optionally, the magnetic member 215 can be a structure such as an adsorption member or a magnet. When the magnetic member 215 is provided on the second side plate 213, the positioning member 222 can be made of iron or magnetic material; alternatively, when the magnetic member 215 is provided on the positioning member 222, the second side plate 213 can be made of iron or magnetic material. Of course, both the second side plate 213 and the positioning member 222 are provided with the magnetic member 215, so that when the positioning assembly 22 is in the positioning position, the second side plate 213 is attracted and connected to the positioning member 222 via the magnetic member 215.

[0100] In one embodiment, the positioning member 222 includes a positioning rod 2221 and a positioning head 2222. One end of the positioning rod 2221 extends into the rotating groove 2216 and is rotatably connected to the groove wall of the rotating groove 2216. The positioning rod 2221 is provided with a handle and an anti-foolproof rod 2224. The positioning head 2222 is connected to the end of the positioning rod 2221 away from the rotating groove 2216. The positioning head 2222 is provided with a contoured positioning block 2223.

[0101] In this embodiment, if Figures 3 to 5 As shown, by configuring the positioning member 222 as a two-part structure consisting of a positioning rod 2221 and a positioning head 2222, the positioning head 2222 can be replaced according to the structure of the cable 5 to be positioned, thereby improving versatility and ease of use. It is understood that the contoured positioning block 2223 of the positioning head 2222 can be configured according to the structure of the cable 5, and this is not limited here.

[0102] It can be understood that by providing a handle on the positioning rod 2221 , it is convenient for the user to operate the positioning member 222 so that the positioning member 222 rotates around the rotation axis 2217 relative to the first sliding seat 221 .

[0103] In this embodiment, the positioning device 2 is configured such that when the positioning member 222 rotates relative to the first sliding seat 221 about the rotation axis 2217 until it abuts the first buffer member 223, and the positioning assembly 22 is in the positioned position, the contoured positioning block 2223 of the positioning member 222 positions the cable 5. It is understood that when the positioning member 222 rotates relative to the first sliding seat 221 about the rotation axis 2217 until it abuts the first buffer member 223, the positioning member 222 drives the anti-cracking rod 2224 to pass through the upper end of the mounting seat 231, causing the anti-cracking rod 2224 to push the blocking arm 2331 to rotate and enter the return channel 2311. At this time, the blocking arm 2331 stops the anti-cracking rod 2224 from disengaging from the return channel 2311, thereby preventing the positioning member 222 from rotating relative to the first sliding seat 221 about the rotation axis 2217 until it disengages from the first buffer member 223.

[0104] When the positioning is completed, the positioning member 222 and the first sliding seat 221 are driven by the handle member to return from the positioning position to the release position along the slide rail. At this time, the anti-fool rod 2224 moves along the return channel 2311 and pushes the stop arm 2321 to rotate, so that the anti-fool rod 2224 is separated from the stop arm 2321 and the return channel 2311 and is in the release position.

[0105] In one embodiment, the bending device 3 includes a second base 31, a bending mechanism 32 and a locking assembly 33, wherein the second base 31 is arranged on the mounting surface 11 and is spaced apart from the positioning device 2, the second base 31 is provided with a first clamping platform 314, the bending mechanism 32 is movably provided on the second base 31 and is located on one side of the first clamping platform 314, the bending mechanism 32 is provided with a contoured pressure block 3221, the locking assembly 33 is connected to the bending mechanism 32, and the locking assembly 33 is provided with a first hook 3323, the first hook 3323 is engaged with or disengaged from the first clamping platform 314 to lock or unlock the bending mechanism 32.

[0106] In this embodiment, if Figures 7 to 9 As shown, the second base 31 is used to install, fix and support components such as the bending mechanism 32 and the locking assembly 33. In other words, the second base 31 provides a mounting base for the bending mechanism 32 and the locking assembly 33. It is understood that the second base 31 can be a structure such as a bottom plate, a mounting frame, a bracket, a support frame or a mounting platform.

[0107] As will be appreciated, the bending device 3 is mounted on the body 1 of the processing equipment 100 via the second base 31; alternatively, it is positioned adjacent to the body 1 of the processing equipment 100. Of course, the second base 31 can also be fixed to the mounting surface 11 of the body 1 of the processing equipment 100, for example, by welding or integral molding. To enhance assembly and disassembly convenience, the bending device 3 is detachably mounted on the mounting surface 11 of the body 1 via the second base 31.

[0108] It should be noted that the tooling 12 of the processing equipment 100 is provided with a placement slot 121 for placing the cable 5. The contoured pressure block 3221 of the bending device 3 is used to bend the cable 5 within the placement slot 121 on the processing equipment so that the cable 5 achieves the required bending shape for assembly. It is understood that the contoured pressure block 3221 can be adapted to the shape of the cable 5 to be bent during the actual assembly process. Of course, to improve the versatility and convenience of the bending device 3, the contoured pressure block 3221 is detachably mounted on the bending mechanism 32. In this way, different contoured pressure blocks 3221 can be replaced according to actual needs, thereby adapting to different cable 5 bending processes, which is not limited here.

[0109] In this embodiment, a sliding cavity or a sliding groove and other structures are provided on the second base 31. The sliding cavity or the sliding groove and other structures not only provide an installation space for the bending mechanism 32, but also provide a sliding guide space for the bending mechanism 32, so that the bending mechanism 32 can be adjusted according to the position of the cable 5 in the groove 121 on the processing equipment to achieve precise processing, thereby improving the processing accuracy.

[0110] It is understandable that the direction in which the bending mechanism 32 moves on the second base 31 toward the tooling 12 is defined as the second direction, and the direction away from the tooling 12 is defined as the opposite direction of the second direction. Optionally, the sliding cavity or sliding groove on the second base 31 extends along the second direction. The second direction can be the direction in which the bending mechanism 32 moves toward the cable 5 placed in the groove 121 on the processing equipment. The specific setting is based on actual needs and is not limited here. In this embodiment, the sliding cavity or sliding groove can be a concave cavity, a groove, or a through cavity, etc., which is not limited here.

[0111] In this embodiment, a first clamping platform 314 is provided on the second base 31, and a locking assembly 33 is installed on the bending mechanism 32, so that the locking assembly 33 is provided with a first hook 3323. When the first hook 3323 of the locking assembly 33 is clamped with the first clamping platform 314 of the second base 31, the bending mechanism 32 is locked to ensure that the bending force of the contoured pressure block 3221 of the bending mechanism 32 to bend the cable 5 placed in the slot 121 on the processing equipment remains consistent.

[0112] It should be noted that the bending mechanism 32 moves along the second direction relative to the second base 31 and has a first position and a second position. In the first position, the contoured pressing block 3221 of the bending mechanism 32 is away from the cable 5 in the slot 121 on the processing equipment, that is, the cable 5 is not processed or has been processed; in the second position, the contoured pressing block 3221 of the bending mechanism 32 is in contact with the cable 5 in the slot 121 on the processing equipment, and the cable 5 is bent.

[0113] It can be understood that in order to ensure that the bending mechanism 32 does not move in the second position, the first hook 3323 of the locking component 33 is engaged with the first engaging platform 314 of the second base 31, thereby locking the bending mechanism 32. This avoids the problem of poor bending processing accuracy caused by the inability to maintain consistent manual force when the bending mechanism 32 is manually pushed to perform processing at the second position.

[0114] The bending device 3 of the present invention is characterized by movably placing a bending mechanism 32 on the second base 31 and providing a profiling pressing block 3221 on the bending mechanism 32. In this way, the profiling pressing block 3221 can be driven to move closer to or away from the cable 5 to be bent by moving the bending mechanism 32 on the second base 31, thereby using the profiling pressing block 3221 to bend the cable 5. At the same time, a first clamping platform 314 is provided on the second base 31, and a locking assembly 33 is provided on the bending mechanism 32. A first hook 3323 is provided, so that the bending mechanism 32 moves along the second direction, so that when the contoured pressure block 3221 bends the cable 5, the first hook 3323 is used to engage the first engaging platform 314 to lock the bending mechanism 32 on the second base 31, thereby ensuring that the bending mechanism 32 can always maintain a consistent bending force to improve the bending process quality. This not only eliminates the need to manually control the bending force of the bending mechanism 32, but also improves operational convenience, thereby improving the bending process quality and efficiency.

[0115] In one embodiment, the locking assembly 33 includes a first positioning seat 331, a first clamping member 332 and a first resetting member 333. The first positioning seat 331 is arranged on the bending mechanism 32. The first clamping member 332 is rotatably connected to the first positioning seat 331. The first clamping member 332 is provided with a first hook 3323. One end of the first resetting member 333 is connected to the first positioning seat 331, and the other end of the first resetting member 333 is connected to the first clamping member 332 to reset the first clamping member 332; wherein the first clamping member 332 rotates relative to the first positioning seat 331 so that the first hook 3323 is engaged with or disengaged from the first clamping platform 314.

[0116] In this embodiment, if Figures 7 to 9 As shown, the first positioning seat 331 is used to install the first clamping member 332 on the bending mechanism 32 to ensure that the first clamping member 332 and the bending mechanism 32 move simultaneously, and when the first hook 3323 of the first clamping member 332 clamps the first clamping platform 314, the bending mechanism 32 is fixed.

[0117] It is understood that the first positioning seat 331 can be fixedly mounted on the bending mechanism 32 or integrally formed on the bending mechanism 32, thereby improving the connection stability between the locking assembly 33 and the bending mechanism 32. Of course, to facilitate assembly and disassembly and processing, the first positioning seat 331 and the bending mechanism 32 can be connected in a detachable manner, such as a snap connection, plug-in fit, screw connection, or pin connection, which is not limited here.

[0118] In this embodiment, the first clamping member 332 is rotatably connected to the first positioning seat 331, thereby facilitating the rotation of the first clamping member 332 relative to the first positioning seat 331, thereby enabling the first hook 3323 to engage with or disengage from the first clamping platform 314. Alternatively, the first clamping member 332 and the first positioning seat 331 may be connected by a hole-shaft connection, a hinge connection, or other structures capable of achieving a rotatable connection, which are not limited herein.

[0119] In one embodiment, the first positioning seat 331 is provided with a first rotating groove 3311, and a first rotating shaft 3312 is provided in the first rotating groove 3311. The first restoring member 333 is provided in the first rotating groove 3311 and is located on the side of the first rotating shaft 3312 away from the first hook 3323; the first clamping member 332 is provided with a first rotating platform, which extends into the first rotating groove 3311 and is rotatably sleeved on the first rotating shaft 3312.

[0120] In this embodiment, if Figures 7 to 9 As shown, the first rotating groove 3311 can be a groove structure recessed in the first positioning seat 331, and the two ends of the first rotating shaft 3312 can be fixedly or movably connected to the two opposite groove walls of the first rotating groove 3311. The first rotating platform of the first clamping member 332 can be a protrusion or lug structure, and the first rotating platform is provided with an axial hole. The first rotating platform extends into the first rotating groove 3311, and the first rotating shaft 3312 is passed through the axial hole so that the first rotating platform is rotatably sleeved on the first rotating shaft 3312.

[0121] In order to ensure the clamping effect between the first hook 3323 of the first clamping member 332 and the first clamping platform 314, in one embodiment, the locking assembly 33 also includes a first reset member 333, one end of the first reset member 333 is connected to the first positioning seat 331, and the other end of the first reset member 333 is connected to the first clamping member 332 to reset the first clamping member 332.

[0122] In this embodiment, if Figures 7 to 9 As shown, the first reset member 333 may be a reset spring. The first reset member 333 utilizes its elastic force to always keep the first hook 3323 engaged with the first engaging platform 314 at the second position without external force, thereby effectively eliminating or relieving manual operation and improving convenience.

[0123] It can be understood that the first restoring member 333 can be disposed between the first hook 3323 and the first rotating shaft 3312; or, the first restoring member 333 is located on the side of the first rotating shaft 3312 away from the first hook 3323. Figure 8 and Figure 9 As shown, the first restoring member 333 is disposed in the first rotating groove 3311 and is located on a side of the first rotating shaft 3312 away from the first hook 3323 .

[0124] In one embodiment, if Figures 7 to 9 As shown, the first clamping member 332 includes a clamping section 3321 and a handle member 3322 arranged at an angle, a first hook 3323 is provided at one end of the clamping section 3321 away from the handle member 3322, a rotating platform is provided on the clamping section 3321, and is located between the first hook 3323 and the handle member 3322, and the first reset member 333 is elastically connected to the clamping section 3321, and is located between the rotating platform and the handle member 3322.

[0125] In this embodiment, by setting the first clamping member 332 as a clamping section 3321 and a handle member 3322 set at an angle, the clamping section 3321 extends along the second direction, and the handle member 3322 extends along a direction at an angle to the second direction. In this way, the user can conveniently rotate the first clamping member 332 relative to the first positioning seat 331 by operating the handle member 3322, thereby unlocking the bending mechanism 32.

[0126] As will be appreciated, the engaging section 3321 and the handle section 3322 can optionally be arranged perpendicularly. The first hook 3323 is located at the end of the engaging section 3321 away from the handle section 3322, and the first rotating platform is disposed between the first hook 3323 and the handle section 3322. To facilitate installation and securing of the first return member 333, the first return member 333 is disposed within the first rotating groove 3311 and between the first rotating platform and the handle section 3322.

[0127] In order to smoothly rotate the first clamping member 332 by the handle 3322, in this embodiment, as shown in FIG. Figure 8 and Figure 9 As shown, the first positioning seat 331 is also provided with a avoidance groove connected to the first rotating groove 3311, and the avoidance groove is located on the side of the first rotating shaft 3312 away from the first hook 3323; wherein, the first clamping member 332 is pressed into the avoidance groove to rotate the first clamping member 332 around the first rotating shaft 3312 to compress the first restoring member 333, so that the first hook 3323 is separated from the first clamping platform 314.

[0128] It can be understood that the avoidance groove passes through the side of the first positioning seat 331 adjacent to the handle portion 3322. Optionally, the avoidance groove is recessed in the bottom wall of the first rotation groove 3311 moving away from the rotation axis.

[0129] In order to realize that the first hook 3323 is automatically engaged with the first engaging platform 314 when the bending mechanism 32 moves along the second direction, in one embodiment, as shown in FIG. Figures 7 to 9 As shown, the first positioning seat 331 further has a positioning surface, which is located on the side of the first rotating shaft 3312 facing the first hook 3323 for supporting the first clamping member 332 and is flush with the side of the first clamping platform 314 facing away from the second base 31.

[0130] In this embodiment, when the first engaging member 332 is in its initial position, it is acted upon by the elastic force of the first restoring member 333, causing the engaging segment 3321 to abut against the positioning surface. To unlock the bending mechanism 32, the handle is pressed into the avoidance groove, causing the engaging segment 3321 to rotate about the first rotation axis 3312, thereby compressing the first restoring member 333 and disengaging the first hook 3323 from the first engaging platform 314. When the external force is removed, the engaging segment 3321 is reset under the elastic force of the first restoring member 333, thereby returning to its initial position, i.e., the engaging segment 3321 abuts against the positioning surface.

[0131] In order to facilitate the automatic connection of the first hook 3323 to the first connecting platform 314, in this embodiment, Figures 7 to 9 As shown, a mating surface is provided on the side of the first hook 3323 facing the first engaging platform 314, and a guide surface is provided on the side of the first engaging platform 314 facing the first hook 3323. When the bending mechanism 32 moves in the second direction, the mating surface slides along the guide surface, so that the first hook 3323 is engaged with the first engaging platform 314. It is understood that both the mating surface and the guide surface are arranged at an angle.

[0132] In one embodiment, the second base 31 is also provided with a first slide rail 315 and a stop platform 316. The first slide rail 315 extends toward the tooling 12, the stop platform 316 is located at the end of the first slide rail 315 away from the tooling 12, and the first clamping platform 314 is located on one side of the first slide rail 315; the bending mechanism 32 is provided with a first slide groove 3215, and the first slide groove 3215 slides in cooperation with the first slide rail 315.

[0133] In this embodiment, if Figures 7 to 9As shown, by providing a first slide rail 315 on the second base 31 and providing a first slide groove 3215 on the bending mechanism 32, the bending mechanism 32 can be slidably engaged with the first slide rail 315 through the first slide groove 3215, thereby being slidably arranged on the second base 31. It can be understood that the first slide groove 3215 and the first slide rail 315 can not only achieve a sliding connection between the bending mechanism 32 and the second base 31, but also ensure that the bending mechanism 32 does not separate from the second base 31. Optionally, the first slide groove 3215 and the first slide rail 315 are provided with mutually cooperating limiting grooves and limiting protrusions, so that the bending mechanism 32 moves along the first slide rail 315 through the first slide groove 3215, and is positioned on the second base 31 at an upper limit in a direction perpendicular to the first slide rail 315.

[0134] It is understood that the stop platform 316 is disposed on the second base 31 and is located at one end of the first slide rail 315. Optionally, the stop platform 316 is disposed adjacent to the first position. In this embodiment, the stop platform 316 can be fixedly disposed on the second base 31, for example, by welding, bonding, or integrally formed structures. Of course, the stop platform 316 can also be connected to the second base 31 in a detachable manner, for example, by a snap connection, plug-in fit, screw connection, pin connection, threaded connection, etc., so that the position of the stop platform 316 can be easily adjusted to increase or decrease the sliding stroke of the bending mechanism 32.

[0135] In this embodiment, the bending mechanism 32 has a first position and a second position, movable along the second direction on the first slide rail 315. In the first position, the bending mechanism 32 abuts against the stopper 316. In the second position, the first hook 3323 engages the first engaging platform 314, locking the bending mechanism 32 and enabling the contoured pressing block 3221 to bend the cable 5. It is understood that the provision of the stopper 316 facilitates limiting the travel of the bending mechanism 32.

[0136] In one embodiment, the second base 31 is also provided with a fixing rod 317, the bending mechanism 32 is provided with a connecting rod 3212, and the bending device 3 also includes a stretching member 34, the two ends of the stretching member 34 are elastically connected to the fixing rod 317 and the connecting rod 3212 respectively, and the stretching member 34 is used to reset the bending mechanism 32.

[0137] In this embodiment, if Figures 7 to 9As shown, by providing a stretching member 34, the bending mechanism 32 is reset using the stretching member 34. It can be understood that by providing a fixing rod 317 on the second base 31 and providing a connecting rod 3212 on the bending mechanism 32, the fixing rod 317 and the connecting rod 3212 are respectively connected to the two ends of the stretching member 34. In this way, when the travel of the bending mechanism 32 along the first slide rail 315 exceeds the normal extension and contraction range of the stretching member 34, the stretching member 34 is stretched. In this way, when the external force is removed or the bending mechanism 32 is unlocked, the stretching member 34 pulls the bending mechanism 32 to reset due to the tension elasticity.

[0138] It is understood that the fixing rod 317 is disposed adjacent to the stop platform 316, that is, adjacent to the first position. The fixing rod 317 and the connecting rod 3212 can be plate-shaped, column-shaped, or rod-shaped structures. The tension member 34 can be a tension spring.

[0139] It should be noted that, in the first position, the bending mechanism 32 abuts against the stop platform 316 , and at this time, the tensile member 34 may be in a normal extension and contraction range, neither stretched nor compressed. When external force is applied to push the bending mechanism 32 to move along the first slide rail 315 from the first position to the second position, the first hook 3323 is used to clamp on the first clamping platform 314, thereby locking the bending mechanism 32 at the second position of the second base 31, so that the contoured pressure block 3221 can be used to bend the cable 5; when the bending process is completed, external force is applied to the handle means 3322 of the first clamping member 332, and the handle means is pressed into the avoidance groove, so that the clamping section 3321 rotates around the first rotating shaft 3312 to compress the first reset member 333, so that the first hook 3323 disengages from the first clamping platform 314 to unlock the bending mechanism 32. At this time, the bending mechanism 32 is reset by the pulling force of the tensile member 34, and is reset from the second position range to the first position. This can greatly simplify the operation of the bending device 3 and improve the operational convenience.

[0140] In one embodiment, at least one of the bending mechanism 32 and the stopping platform 316 is provided with a third adsorption member 318 ; in the first position, the bending mechanism 32 is attracted and connected to the stopping platform 316 via the third adsorption member 318 .

[0141] In this embodiment, if Figures 7 to 9 As shown, the third suction member 318 can be disposed on the bending mechanism 32, in which case the stopper 316 can be made of iron or magnetic material; the third suction member 318 can be disposed on the stopper 316, in which case the bending mechanism 32 can be made of iron or magnetic material. Of course, to improve the suction connection effect, both the bending mechanism 32 and the stopper 316 are provided with the third suction member 318.

[0142] It can be understood that when the bending mechanism 32 is in the first position, the bending mechanism 32 is connected to the stop platform 316 by the third adsorption member 318, thereby fixing and positioning the position of the bending mechanism 32, and preventing the bending mechanism 32 from sliding along the first slide rail 315 at will, thereby causing damage to the cable 5 or contacting the cable 5 in advance before reaching the processing position, resulting in poor bending processing accuracy and other problems.

[0143] In one embodiment, if Figures 7 to 9 As shown, the second base 31 includes a base plate 311, a first support plate 312 and a sliding plate 313. The first support plate 312 is arranged on the base plate 311 and is inclined along the second direction. The sliding plate 313 is arranged on the side of the first support plate 312 facing away from the base plate 311. The first slide rail 315, the stop platform 316 and the fixing rod 317 are all arranged on the side of the sliding plate 313 facing away from the first support plate 312.

[0144] It is understandable that the sliding plate 313 is also tilted under the support of the first support plate 312, so that the angle formed by the plane of the sliding plate 313 and the plane of the base plate 311 is greater than 0° and less than 90°. For example, the angle is 15°, 20°, 25°, 30°, 35°, 40°, 45°, 50°, 55°, 60°, 65°, etc. The specific setting depends on actual conditions and is not limited here.

[0145] In one embodiment, the bending mechanism 32 includes a second sliding seat 321 and a bending pressure head 322. The second sliding seat 321 is slidably arranged on the second base 31. The bending pressure head 322 is arranged on the side of the second sliding seat 321 facing away from the stop platform 316. The bending pressure head 322 is provided with a contoured pressure block 3221.

[0146] It can be understood that a first sliding groove 3215 is provided on the side of the second sliding seat 321 facing the first sliding rail 315, and the bending pressure head 322 and the second sliding seat 321 can be connected in a detachable manner, such as a snap connection, plug-in connection, screw connection or pin connection, etc., which is not limited here.

[0147] In one embodiment, the bending mechanism 32 includes a second sliding seat 321, a bending pressure head 322 and a buffer assembly 323. The second sliding seat 321 includes a first sliding seat 3211 and a second sliding seat 3214 that are spaced apart. The first sliding seat 3211 and the second sliding seat 3214 are both movably arranged on the second base 31. The locking assembly 33 is connected to the first sliding seat 3211. The bending pressure head 322 is connected to the side of the second sliding seat 3214 that is away from the first sliding seat 3211. The bending pressure head 322 is connected to the side of the second sliding seat 3214 that is away from the first sliding seat 3211. A contoured pressure block 3221 is provided, and the buffer assembly 323 includes a guide rod 3231 and a third elastic member 3232. One end of the guide rod 3231 is connected to the second slide 3214, and the other end of the guide rod 3231 is movably connected to the first slide 3211. The third elastic member 3232 is sleeved on the guide rod 3231 and is located between the first slide 3211 and the second slide 3214, and the two ends of the elastic member are elastically abutted against the first slide 3211 and the second slide 3214 respectively.

[0148] In this embodiment, if Figures 7 to 9 As shown, by setting the second sliding seat 321 as the first slide 3211 and the second slide 3214 arranged at intervals, the first slide 3211 and the second slide 3214 are slidably connected to the first slide rail 315 along the second direction, and the bending pressure head 322 is connected to the second slide 3214, so that the first slide 3211 and the second slide 3214 are connected through the buffer assembly 323, so that the bending mechanism 32 can be ensured to move along the first slide rail 315, so that when the profiling pressure block 3221 approaches the cable 5, due to the buffering effect of the buffer assembly 323, the profiling pressure block 3221 is prevented from hard contact with the cable 5, thereby damaging the cable 5.

[0149] As will be understood, the buffer assembly 323 includes a guide rod 3231 and a third elastic member 3232. By connecting one end of the guide rod 3231 to the second slide 3214 and the other end of the guide rod 3231 to the first slide 3211, the third elastic member 3232 is sleeved on the guide rod 3231 and positioned between the first slide 3211 and the second slide 3214. As a result, when the first slide 3211 of the bending mechanism 32 is pushed to slide in the second direction, the first slide 3211 compresses the third elastic member 3232, thereby driving the second slide 3214 to slide in the second direction. When the contoured pressure block 3221 contacts the cable 5, the contoured pressure block 3221 stops the second slide 3214, and the second slide 3214, under the elastic reaction force of the third elastic member 3232, stops the first slide 3211.

[0150] Of course, when the stretching member 34 pulls the first slide 3211 to reset, the first slide 3211 drives the second slide 3214 to move and reset via the guide rod 3231. Optionally, the third elastic member 3232 is a spring.

[0151] In one embodiment, if Figures 7 to 9 As shown, the first slide 3211 is provided with a connecting platform 3213, which is provided with a guide hole, through which the guide rod 3231 moves, and is provided with a stop boss. It is understood that the diameter of the guide hole is larger than the diameter of the guide rod 3231, and the hole area of ​​the guide hole is smaller than the outer circumferential area of ​​the stop boss.

[0152] The bending mechanism 32 of the bending device 3 of the present invention is composed of a second sliding seat 321, a bending pressure head 322 and a buffer assembly 323. Its main function is to use the shape of the profiling pressure block 3221 to flexibly compress the third elastic member 3232 and the guide rod 3231 of the buffer assembly 323 to deform the cable 5; the forward and backward movement is guided by the first slide rail 315 and the second sliding seat 321 to ensure the direction, and the bending mechanism 32 as a whole moves through the first clamping member 332 and the first fixed member 33 of the locking assembly 33. The position seat 331 is connected to the first slide seat 3211 of the second sliding seat 321. When the contoured pressure block 3221 reaches the bending position, it is fixedly clamped on the first clamping platform 314 through the first hook 3323 of the first clamping member 332 to form a bending state; after the bending is completed, the first hook 3323 is opened and the bending mechanism 32 is brought to the initial position through the stretching member 34, and abuts against the stop platform 316. The second base 31 is used to lock the bending device 3 on the processing equipment to form a module for easy maintenance.

[0153] In one embodiment, the processing equipment 100 also includes a bending device 4, which includes a base 41, a flipping mechanism 42, a bending mechanism 43 and a self-locking component 44. The base 41 is arranged on the mounting surface 11 and is adjacent to the tooling 12. The base 41 is spaced apart from the positioning device 2 and the bending device 3. The flipping mechanism 42 is arranged on the base 41. The bending mechanism 43 includes a connecting component 431 and a pressing component 432. The connecting component 431 is connected to the flipping mechanism 42. The pressing component 432 is movably connected to the connecting component 431. The pressing component 432 is provided with a contouring pressure head 4324. The contouring pressure head 4324 is used to bend the cable 5 in the placement groove 121. The self-locking component 44 is arranged on the connecting component 431. The self-locking component 44 is used to lock or release the pressing component 432. wherein, the flipping mechanism 42 is used to drive the bending mechanism 43 to flip relative to the base 41.

[0154] In this embodiment, if Figures 10 to 17 As shown, the base 41 is used to install, fix and support components such as the flip mechanism 42, the bending mechanism 43 and the self-locking assembly 44. In other words, the base 41 provides a mounting base for the flip mechanism 42, the bending mechanism 43 and the self-locking assembly 44. It is understood that the base 41 can be a structure such as a bottom plate, a mounting frame, a bracket, a support frame or a mounting platform.

[0155] As will be appreciated, the bending device 4 is mounted on the body 1 of the processing equipment 100 via the base 41; alternatively, it may be located adjacent to the body 1 of the processing equipment 100. Of course, the base 41 may also be fixed to the mounting surface 11 of the body 1, for example, by welding or integral molding. To enhance assembly and disassembly convenience, the bending device 4 is detachably mounted on the mounting surface 11 of the body 1 via the base 41.

[0156] It should be noted that the tooling 12 of the processing equipment 100 is provided with a placement slot 121 for placing the cable 5. The profiling head 4324 of the bending device 4 is used to bend the cable 5 within the placement slot 121 on the processing equipment to achieve the required bending shape of the cable 5 for assembly. It is understood that the profiling head 4324 can be adapted to the shape of the cable 5 to be bent during the actual assembly process. Of course, to improve the versatility and convenience of the bending device 4, the profiling head 4324 is detachably mounted on the bending mechanism 43. In this way, different profiling heads 4324 can be replaced according to actual needs to adapt to different cable 5 bending processes, which is not limited here.

[0157] In this embodiment, a positioning device 2, a bending device 3 and a folding device 4 are simultaneously provided on the body 1 of the processing equipment 100. The positioning device 2 can be used to position the wiring in the placement groove 121, and the bending device 3 and the folding device 4 can be used to perform multi-angle bending processing on the wiring in the placement groove 121 respectively. The specific installation is based on the processing requirements and is not limited here.

[0158] In this embodiment, the base 41 may also be integrally provided on the flipping mechanism 42, that is, the base 41 is a part of the flipping mechanism 42, for example, the base 41 is integrally formed on the flipping mechanism 42. It can be understood that the flipping mechanism 42 is used to flip the bending mechanism 43 and the self-locking assembly 44 relative to the base 41, provide a flipping driving force, or a structure that can realize flipping.

[0159] It should be noted that the flip mechanism 42 may be an automatic flipping structure, such as a flip cylinder, a flip robot arm, or other structure capable of automatic flipping, and is not limited here. Of course, the flip mechanism 42 may also be a manual flipping structure, that is, the flip mechanism 42 and the base 41 may be connected by a rotational connection, a swing connection, or a hinged connection, etc., as long as the flip mechanism 42 can drive the bending mechanism 43 and the self-locking assembly 44 to flip relative to the base 41, and is not limited here.

[0160] In this embodiment, the bending mechanism 43 is configured as a two-part structure consisting of a connecting component 431 and a pressing component 432, so that the bending mechanism 43 is mounted and fixed on the flipping mechanism 42 through the connecting component 431, and the pressing component 432 is movably connected to the connecting component 431, so that the pressing component 432 can move relative to the connecting component 431, so that the pressing component 432 drives the contour pressing head 4324 to move according to the position of the cable 5 in the slot 121 on the processing equipment, and perform bending processing.

[0161] The direction in which the pressing assembly 432 drives the profiling head 4324 along the connecting assembly 431 toward the tooling 12 is defined as the third direction, and the direction away from the tooling 12 is defined as the opposite direction of the third direction. It is understandable that the pressing assembly 432 can drive the profiling head 4324 to move along the connecting assembly 431 along the third direction, so that the pressing assembly 432 has a first position and a second position relative to the connecting assembly 431. In the first position, the profiling head 4324 of the bending mechanism 43 is away from the cable 5 in the placement groove 121 on the processing equipment, that is, the cable 5 is not processed or has been processed, that is, the first position is the initial position of the pressing assembly 432 and the profiling head 4324; in the second position, the profiling head 4324 of the bending mechanism 43 abuts against the cable 5 in the placement groove 121 on the processing equipment and bends the cable 5, that is, the second position is the bending position of the pressing assembly 432 and the profiling head 4324.

[0162] To ensure that the pressing assembly 432 and the contour pressing head 4324 of the bending mechanism 43 do not move in the second position, a self-locking assembly 44 is provided on the connecting assembly 431. The self-locking assembly 44 locks the pressing assembly 432 in the bending position. This avoids the problem of poor bending accuracy caused by inconsistent manual force when the bending mechanism 43 is manually pushed to perform processing in the second position. When the bending process is completed, the self-locking assembly 44 releases the pressing assembly 432, allowing the pressing assembly 432 to return to its original position for the next bending process.

[0163] It can be understood that in order to realize the movement of the pressing component 432 relative to the connecting component 431, a slide rail, a sliding cavity or a sliding groove and other structures can be set on the connecting component 431, so that the pressing component 432 can be installed on the connecting component 431 through a slide seat, a slide groove and other structures. Not only the slide rail, the sliding cavity or the sliding groove and other structures are used to provide an installation space for the pressing component 432, but also a sliding guide space is provided for the pressing component 432, so that the bending mechanism 43 is adjusted according to the position of the cable 5 in the groove 121 on the processing equipment to achieve precise processing, thereby improving the processing accuracy.

[0164] The bending device 4 of the present invention is provided with a turning mechanism 42 on the base 41, and the bending mechanism 43 is provided on the turning mechanism 42, so that the turning mechanism 42 is used to drive the bending mechanism 43 to turn over relative to the base 41, so as to adjust the position of the bending mechanism 43 and the cable 5 to be processed, so as to facilitate the bending process of the cable 5; at the same time, by providing the bending mechanism 43 with a connecting component 431 and a pressing component 432, and connecting the connecting component 431 to the turning mechanism 42, so that the pressing component 432 is movably connected to the connecting component 431, and a contour pressing head 4324 is provided on the pressing component 432, so that the pressing component 43 can be moved. 2, and drives the profiling press head 4324 to move relative to the connecting component 431, so that the profiling press head 4324 is close to or away from the cable 5 to be bent, thereby using the profiling press head 4324 to bend the cable 5; further, by arranging a self-locking component 44 on the connecting component 431, the pressing component 432 is self-locked and locked on the connecting component 431, thereby ensuring that the pressing component 432 and the profiling press head 4324 can always maintain the same bending force to improve the bending quality, not only eliminating the manual control of the bending force of the pressing component 432, but also improving the operational convenience, thereby improving the bending quality and efficiency.

[0165] In one embodiment, the pressing component 432 is provided with a card slot 4327; the self-locking component 44 includes a second positioning seat 441, a second clamping member 442 and a second reset member 443, the second positioning seat 441 is provided on the connecting component 431, the second clamping member 442 is rotatably connected to the second positioning seat 441, one end of the second clamping member 442 is provided with a second hook 4421, the second reset member 443 is provided on the second positioning seat 441, and the second reset member 443 is elastically connected to the other end of the second clamping member 442 to reset the second clamping member 442; wherein, the second clamping member 442 rotates relative to the second positioning seat 441 to enable the second hook 4421 to engage or disengage from the card slot 4327.

[0166] It can be understood that the bending mechanism 43 has an initial position and a bending position in which the pressing component 432 moves relative to the connecting component 431; in the initial position, the second hook 4421 is disengaged from the slot 4327; in the bending position, the second hook 4421 is engaged with the slot 4327, so that the contoured press head 4324 bends the cable 5.

[0167] In this embodiment, if Figures 10 to 17As shown, the first clamping member 442 rotates relative to the second positioning seat 441 to allow the second hook 4421 to engage with or disengage the slot 4327. The second positioning seat 441 is used to mount the first clamping member 442 on the connecting assembly 431 of the bending mechanism 43, ensuring that the first clamping member 442 and the bending mechanism 43 are flipped simultaneously, and when the second hook 4421 of the first clamping member 442 engages with the slot 4327, the pressing assembly 432 of the bending mechanism 43 is fixed.

[0168] It is understood that the second positioning seat 441 can be fixedly mounted on the connecting assembly 431 of the bending mechanism 43 or integrally formed on the connecting assembly 431 of the bending mechanism 43, thereby improving the connection stability between the self-locking assembly 44 and the connecting assembly 431 of the bending mechanism 43. Of course, to facilitate disassembly and processing, the second positioning seat 441 and the connecting assembly 431 of the bending mechanism 43 can be connected in a detachable manner, such as a snap connection, plug-in fit, screw connection, or pin connection, which is not limited here.

[0169] In this embodiment, the first clamping member 442 is rotatably connected to the second positioning seat 441, thereby facilitating the rotation of the first clamping member 442 relative to the second positioning seat 441, thereby enabling the second hook 4421 to engage with or disengage from the locking groove 4327. Alternatively, the first clamping member 442 and the second positioning seat 441 may be connected by a hole-shaft connection, a hinge connection, or other structures capable of achieving a rotatable connection, which are not limited herein.

[0170] In one embodiment, the second positioning seat 441 is provided with a second rotating groove 4411, a second rotating shaft 4412 is provided in the second rotating groove 4411, and the second reset member 443 is provided in the second rotating groove 4411 and is located on the side of the second rotating shaft 4412 away from the second hook 4421; the second clamping member 442 is provided with a second rotating platform, the second rotating platform extends into the second rotating groove 4411, and is rotatably sleeved on the second rotating shaft 4412.

[0171] In this embodiment, if Figures 10 to 17 As shown, the second rotating groove 4411 can be a groove structure recessed in the second positioning seat 441, and the two ends of the second rotating shaft 4412 can be fixedly or movably connected to the two opposite groove walls of the second rotating groove 4411. The second rotating platform of the first clamping member 442 can be a protrusion or lug structure, and the second rotating platform is provided with an axial hole. The second rotating platform extends into the second rotating groove 4411, and the second rotating shaft 4412 is passed through the axial hole so that the second rotating platform is rotatably sleeved on the second rotating shaft 4412.

[0172] In order to ensure the locking effect between the second hook 4421 of the first clamping member 442 and the clamping slot 4327, in one embodiment, the self-locking assembly 44 also includes a second reset member 443, one end of the second reset member 443 is connected to the second positioning seat 441, and the other end of the second reset member 443 is connected to the first clamping member 442 to reset the first clamping member 442.

[0173] In this embodiment, if Figures 10 to 17 As shown, the second reset member 443 may be a reset spring. The second reset member 443 utilizes its elastic force to always maintain the engagement between the second hook 4421 and the latching slot 4327 at the second position, i.e., the bent position, without the action of external force, thereby effectively eliminating or relieving manual operation and improving convenience.

[0174] It can be understood that the second restoring member 443 can be disposed between the second hook 4421 and the second shaft 4412; or, the second restoring member 443 is located on the side of the second shaft 4412 away from the second hook 4421. Figure 13 As shown, the second restoring member 443 is disposed in the second rotation slot 4411 and is located on a side of the second rotation shaft 4412 away from the second hook 4421 .

[0175] In one embodiment, if Figures 10 to 17 As shown, the first clamping member 442 includes a clamping portion and a handle portion connected to each other, a second hook 4421 is provided at one end of the clamping portion away from the handle portion, the second rotating platform is provided at the clamping portion, and is located between the second hook 4421 and the handle portion, and the second reset member 443 is elastically connected to the clamping portion and is located between the second rotating platform and the handle portion.

[0176] In this embodiment, by setting the first clamping member 442 as a clamping portion and a handle portion, the clamping portion and the handle portion extend along the third direction, so that the user can conveniently rotate the first clamping member 442 relative to the second positioning seat 441 by operating the handle portion, thereby unlocking the bending mechanism 43.

[0177] It is understood that the second hook 4421 is located at the end of the clamping portion away from the handle portion, and the second rotating platform is provided between the second hook 4421 and the handle portion. In order to facilitate the installation and fixing of the second reset member 443, the second reset member 443 is provided in the second rotating groove 4411 and is located between the second rotating platform and the handle portion.

[0178] In order to smoothly rotate the first clamping member 442 through the handle, in this embodiment, Figure 13As shown, the second positioning seat 441 is also provided with a avoidance groove connected to the second rotating groove 4411, and the avoidance groove is located on the side of the second rotating shaft 4412 away from the second hook 4421; wherein, the first clamping member 442 is pressed into the avoidance groove to rotate the first clamping member 442 around the second rotating shaft 4412 to compress the second reset member 443, so that the second hook 4421 disengages from the slot 4327.

[0179] It is understood that the avoidance groove extends through the side of the second positioning seat 441 adjacent to the handle portion. Optionally, the avoidance groove is recessed in the bottom wall of the second rotation groove 4411, which moves away from the rotation axis. In this embodiment, the extension length of the second rotation groove 4411 and the avoidance groove along the third direction is greater than the extension length of the handle portion.

[0180] In order to realize that when the pressing component 432 of the bending mechanism 43 moves along the third direction, the second hook 4421 is automatically engaged with the slot 4327, in one embodiment, as shown in FIG. Figure 13 As shown, the second positioning seat 441 further has a positioning surface, which is located on the side of the second rotating shaft 4412 facing the second hook 4421 for supporting the first clamping member 442 , and the positioning surface is flush with one edge of the pressing component 432 .

[0181] In this embodiment, when the first engaging member 442 is in its initial state, it is subjected to the elastic force of the second restoring member 443, causing the engaging portion to abut against the positioning surface. When the pressing assembly 432 of the bending mechanism 43 is unlocked, the handle is pressed into the avoidance groove, causing the engaging portion to rotate about the second rotation axis 4412, thereby compressing the second restoring member 443 and disengaging the second hook 4421 from the engaging groove 4327. When the external force is removed, the engaging portion is reset under the elastic force of the second restoring member 443, thereby returning to its initial position, i.e., the engaging portion abuts against the positioning surface.

[0182] In order to facilitate the automatic engagement of the second hook 4421 with the slot 4327, in this embodiment, Figures 10 to 17 As shown, a guide surface is provided on the side of the second hook 4421 facing the slot 4327. When the pressing assembly 432 of the bending mechanism 43 moves along the third direction, the mating surface slides along the edge sidewall of the pressing assembly 432, so that the second hook 4421 is engaged with the slot 4327. It can be understood that the guide surfaces are all arranged at an angle.

[0183] In one embodiment, the connecting component 431 includes a shell 4311, a guide column 4312 and a fourth elastic member 4313. The shell 4311 is connected to the flip mechanism 42. A second sliding cavity is provided in the shell 4311. The self-locking component 44 is provided in the shell 4311. One end of the guide column 4312 is connected to the pressing component 432. The other end of the guide column 4312 is slidably provided in the second sliding cavity. The fourth elastic member 4313 is provided in the second sliding cavity and is sleeved on the guide column 4312. The two ends of the fourth elastic member 4313 are elastically connected to the shell 4311 and the guide column 4312 respectively; wherein, pressing the pressing component 432 causes the guide column 4312 to slide along the second sliding cavity and compress the fourth elastic member 4313, and the self-locking component 44 locks the pressing component 432.

[0184] As can be understood, pressing the pressing assembly 432 causes the guide post 4312 to slide along the second sliding cavity, compressing the fourth elastic member 4313, and locking the self-locking assembly 44. Specifically, pressing the pressing assembly 432 causes it to move in the third direction, driving the contour pressing head 4324 from its initial position to a bent position. At this point, the guide post 4312 slides along the second sliding cavity and compresses the fourth elastic member 4313. When the pressing assembly 432 reaches the bent position, the second hook 4421 of the self-locking assembly 44 engages with the slot 4327, causing the contour pressing head 4324 to bend the flat cable 5.

[0185] When the bending process is completed, when the pressing component 432 of the bending mechanism 43 is unlocked, the handle part of the first clamping part 442 is pressed into the avoidance groove, so that the clamping part rotates around the second rotating shaft 4412 to compress the second reset part 443, so that the second hook 4421 disengages from the clamping groove 4327. At this time, the guide column 4312 slides along the second sliding cavity under the elastic action of the fourth elastic part 4313 to drive the pressing component 432 to move from the bending position to the initial position, and when the external force of the handle is removed, the clamping part is reset under the elastic force of the second reset part 443, thereby restoring the initial state, that is, the clamping part is supported on the positioning surface.

[0186] In this embodiment, the housing 4311 can be fixed to the flip mechanism 42, for example, by welding, bonding, or integral molding, which can improve the connection stability between the bending mechanism 43 and the flip mechanism 42. Of course, the housing 4311 can also be detachably provided on the flip mechanism 42, for example, by a snap connection, plug-fit connection, screw connection, or pin connection, which can facilitate the assembly and disassembly of the bending mechanism 43 and improve ease of use.

[0187] It should be noted that in order to facilitate the adjustment of the angle of the profiling head 4324 of the bending mechanism 43, so that the profiling head 4324 can more precisely and accurately perform bending angle processing on the cable 5, the bending mechanism 43 can also be set to an angle-adjustable rotation or movable connection through the shell 4311, which is not limited here.

[0188] In this embodiment, to improve the stability of the movement of the pressing assembly 432 relative to the connecting assembly 431, two guide posts 4312 and two fourth elastic members 4313 are provided. The two guide posts 4312 are spaced apart, and the two guide posts 4312 and the two fourth elastic members 4313 are provided in a one-to-one correspondence, which is not limited here. Optionally, the fourth elastic member 4313 may be a spring, an elastic sleeve, or other structure capable of achieving elastic reset, which is not limited here.

[0189] In one embodiment, the pressing assembly 432 includes a pressing plate 4321, a bending pressure head 4323 and a fifth elastic member 4326. The pressing plate 4321 is connected to the end of the guide column 4312 away from the fourth elastic member 4313. The pressing plate 4321 is also provided with a connecting shaft 4322. The bending pressure head 4323 is connected to the end of the connecting shaft 4322 away from the pressing plate 4321. The bending pressure head 4323 is provided with a contoured pressure head 4324. The fifth elastic member 4326 is sleeved on the connecting shaft 4322. The two ends of the fifth elastic member 4326 are elastically connected to the bending pressure head 4323 and the connecting shaft 4322 respectively.

[0190] In this embodiment, if Figures 10 to 17 As shown, the pressing plate 4321 can be a plate-like structure. To facilitate the engagement and disengagement of the second hook 4421 of the self-locking assembly 44 with the engaging slot 4327, an engaging slot 4327 is provided on the periphery of the pressing plate 4321 corresponding to the self-locking assembly 44. It is understood that the engaging slot 4327 can be a groove or an L-shaped groove. Of course, it can also be a boss, a boss, or a boss structure, which is not limited here.

[0191] It should be noted that the connecting shaft 4322 is disposed on one side of the pressing plate 4321. In order to prevent the movement of the bending press head 4323 driven by the connecting shaft 4322 from interfering with the self-locking assembly 44, the connecting shaft 4322 and the locking slot 4327 are disposed on different sides of the pressing plate 4321.

[0192] In this embodiment, a fifth elastic member 4326 is provided on the connecting shaft 4322 and elastically connected to the bending press head 4323. This ensures that when the connecting shaft 4322 of the pressing plate 4321 drives the contoured press head 4324 of the bending press head 4323 into contact with the flat cable 5, a soft contact is generated rather than a hard contact, thereby preventing damage to the flat cable 5. Alternatively, the fifth elastic member 4326 may be a spring, a buffer, or other structure capable of achieving an elastic and flexible connection, which is not limited here.

[0193] It is understandable that in order to process different bending angles according to different cables 5, the contouring head 4324 on the bending head 4323 can be replaced, that is, the contouring head 4324 and the bending head 4323 can adopt a detachable connection structure, which is not limited here.

[0194] It should be noted that in order to further ensure the sliding path of the bending press head 4323 when pressing the pressing plate 4321 and prevent the bending press head 4323 from tilting, thereby causing the contoured press head 4324 to damage the flat cable 5, in one embodiment, the housing 4311 is provided with a second slide rail 4314, and the bending press head 4323 is provided with a second slide groove 4325, which slides in cooperation with the second slide rail 4314.

[0195] It can be understood that the setting of the second slide rail 4314 not only provides a sliding guide for the sliding of the bending press head 4323, but also can ensure that the bending press head 4323 does not detach from the second slide rail 4314 by setting a limiting matching structure of a limiting protrusion and a limiting groove on the second slide rail 4314 and the second slide groove 4325.

[0196] In this embodiment, the flip mechanism 42 can drive the bending mechanism 43 to flip relative to the base 41. In order to lock the flip position of the flip mechanism 42, in one embodiment, as shown in FIG. Figures 10 to 17 As shown, the bending device 4 further includes a locking assembly 45 . The locking assembly 45 is disposed on the flipping mechanism 42 and spaced apart from the bending mechanism 43 .

[0197] As will be understood, the bending device 4 has a first state and a second state, in which the flipping mechanism 42 drives the bending mechanism 43 to flip relative to the base 41. In the first state, the locking assembly 45 unlocks the flipping mechanism 42; in the second state, the locking assembly 45 locks the flipping mechanism 42. In this embodiment, when the bending device 4 is in the second state, the locking assembly 45 locks the flipping mechanism 42 to prevent the flipping mechanism 42 from driving the bending mechanism 43 to move. This facilitates the bending mechanism 43 to bend the cable 5 within the placement slot 121 on the processing equipment. After the processing is completed, to prevent the bending mechanism 43 of the bending device 4 from interfering with other process steps on the processing equipment, the flipping mechanism 42 can be unlocked, allowing the flipping mechanism 42 to drive the bending mechanism 43 to flip relative to the base 41, thereby moving it away from the cable 5 on the processing equipment.

[0198] In one embodiment, the base 41 is provided with a second clamping platform 411, and the locking assembly 45 includes a third positioning seat 451, a third clamping member 452 and a third reset member 453. The third positioning seat 451 is provided on the flip mechanism 42, and the third clamping member 452 is rotatably connected to the third positioning seat 451. One end of the third clamping member 452 is provided with a third hook 4521, and the third reset member 453 is provided on the third positioning seat 451. The third reset member 453 is elastically connected to one end of the third clamping member 452 away from the third hook 4521; wherein, the third clamping member 452 rotates relative to the third positioning seat 451 so that the third hook 4521 is clamped into or disengaged from the second clamping platform 411.

[0199] It can be understood that the bending device 4 has a first state and a second state in which the flipping mechanism 42 drives the bending mechanism 43 to flip relative to the base 41; in the first state, the third hook 4521 is disengaged from the second clamping platform 411; in the second state, the third hook 4521 is clamped to the second clamping platform 411 to lock the flipping mechanism 42.

[0200] In this embodiment, if Figures 10 to 17 As shown, the third positioning seat 451 is used to install the third clamping member 452 on the flipping mechanism 42 to ensure that the third clamping member 452 and the flipping mechanism 42 move simultaneously, and when the third hook 4521 of the third clamping member 452 is clamped to the second clamping platform 411, the flipping mechanism 42 is fixed.

[0201] It is understood that the third positioning seat 451 can be fixedly mounted on the flip mechanism 42 or integrally formed on the flip mechanism 42, thereby improving the connection stability between the locking assembly 45 and the flip mechanism 42. Of course, to facilitate assembly and disassembly and processing, the third positioning seat 451 and the flip mechanism 42 can be connected in a detachable manner, such as a snap connection, plug-in fit, screw connection, or pin connection, which is not limited here.

[0202] In this embodiment, the third clamping member 452 is rotatably connected to the third positioning seat 451, thereby facilitating the rotation of the third clamping member 452 relative to the third positioning seat 451, thereby enabling the third hook 4521 to engage with or disengage from the second clamping platform 411. Optionally, the third clamping member 452 and the third positioning seat 451 may be connected by a hole and shaft, a hinge, or other structures capable of achieving a rotatable connection, which are not limited herein.

[0203] In one embodiment, the third positioning seat 451 defines a third rotation slot 4511 , a third rotation shaft 4512 is disposed in the third rotation slot 4511 , and the third clamping member 452 is rotatably sleeved on the third rotation shaft 4512 .

[0204] In this embodiment, if Figures 13 to 17As shown, the third rotation groove 4511 can be a groove structure recessed in the third positioning seat 451, and the two ends of the second rotation shaft 4512 can be fixedly or movably connected to the two opposite groove walls of the third rotation groove 4511. The third clamping member 452 can be provided with a second rotation platform, which can be a protrusion or lug structure. The second rotation platform has an axial hole, which extends into the third rotation groove 4511, and the second rotation shaft 4512 is passed through the axial hole, so that the second rotation platform is rotatably sleeved on the second rotation shaft 4512. Of course, the axial hole can also be directly provided on the third clamping member 452, and this is not limited here.

[0205] In order to ensure the clamping effect between the third hook 4521 of the third clamping member 452 and the second clamping platform 411, in one embodiment, the locking assembly 45 also includes a third reset member 453, one end of the third reset member 453 is connected to the third positioning seat 451, and the other end of the third reset member 453 is connected to the third clamping member 452 to reset the third clamping member 452.

[0206] In this embodiment, if Figures 10 to 17 As shown, the third reset member 453 may be a reset spring. The third reset member 453 utilizes its elastic force to always maintain the engagement between the third hook 4521 and the second engaging platform 411 in the second state without external force, thereby effectively eliminating or relieving manual operation and improving convenience.

[0207] It can be understood that the third restoring member 453 can be disposed between the third hook 4521 and the second shaft 4512; or, the third restoring member 453 is located on the side of the second shaft 4512 away from the third hook 4521. Figure 13 As shown, the third restoring member 453 is disposed in the third rotation slot 4511 and is located on a side of the second rotation shaft 4512 away from the third hook 4521 .

[0208] In this embodiment, if Figures 10 to 17 As shown, the third clamping member 452 is provided with a reset block 4522 corresponding to the third reset member 453 , and two ends of the third reset member 453 are elastically connected to the reset block 4522 and the third positioning seat 451 respectively.

[0209] In one embodiment, if Figures 10 to 17 As shown, the third clamping member 452 includes a connected clamping portion and a handle portion. A third hook 4521 is provided at the end of the clamping portion away from the handle portion. An axial hole is provided in the clamping portion and is located between the third hook 4521 and the handle portion. A reset block 4522 is protruding from the connection between the clamping portion and the handle portion. The third reset member 453 is elastically connected to the reset block 4522 and is located between the axial hole and the handle portion. This allows the user to easily rotate the third clamping member 452 relative to the third positioning seat 451 by operating the handle portion, thereby unlocking the flip mechanism 42.

[0210] In order to smoothly rotate the third clamping member 452 through the handle, in this embodiment, Figure 13 As shown, the third positioning seat 451 is further provided with an avoidance groove connected to the third rotation groove 4511, and the avoidance groove is located on the side of the second rotation axis 4512 away from the third hook 4521; wherein, the third clamping member 452 is pressed into the avoidance groove, so that the third clamping member 452 rotates around the second rotation axis 4512, thereby compressing the third reset member 453, so that the third hook 4521 disengages from the second clamping platform 411.

[0211] In order to realize that when the flipping mechanism 42 flips from the first state to the second state, the third hook 4521 is automatically connected to the second connecting platform 411, in one embodiment, as shown in FIG. Figure 17 As shown, the third positioning seat 451 further has a positioning surface, which is located on the side of the second rotating shaft 4512 facing the third hook 4521 for supporting the third clamping member 452 , and the positioning surface is flush with one side of the second clamping platform 411 .

[0212] In this embodiment, when the third engaging member 452 is in its initial position, it is subjected to the elastic force of the third restoring member 453, causing the engaging portion to abut against the positioning surface. To unlock the flip mechanism 42, the handle is pressed into the avoidance groove, causing the engaging portion to rotate about the second rotation axis 4512, thereby compressing the third restoring member 453 and disengaging the third hook 4521 from the second engaging platform 411. When the external force is removed, the engaging portion is reset under the elastic force of the third restoring member 453, thereby returning to its initial position, i.e., the engaging portion abuts against the positioning surface.

[0213] In order to facilitate the automatic connection of the third hook 4521 to the second connecting platform 411, in this embodiment, Figure 15 and Figure 17 As shown, a mating surface is provided on the side of the third hook 4521 facing the second engaging platform 411, and a guide surface is provided on the side of the second engaging platform 411 facing the third hook 4521. When the flip mechanism 42 moves in the third direction, the mating surface slides along the guide surface, so that the third hook 4521 is engaged with the second engaging platform 411. It is understood that both the mating surface and the guide surface are arranged at an angle.

[0214] In one embodiment, the flipping mechanism 42 includes a flipping seat 421, a flipping shaft 423 and a flipping plate 424. The flipping seat 421 is arranged on the base 41 and is adjacent to the second clamping platform 411. The flipping seat 421 is provided with a flipping groove 422. The flipping shaft 423 is arranged in the flipping groove 422. One end of the flipping plate 424 extends into the flipping groove 422 and is rotatably sleeved on the flipping shaft 423. The bending mechanism 43 is arranged at the other end of the flipping plate 424. The locking assembly 45 is arranged on the flipping plate 424 and is located between the bending mechanism 43 and the flipping shaft 423. The flipping plate 424 rotates around the flipping shaft 423 to drive the bending mechanism 43 to flip relative to the base 41.

[0215] In this embodiment, if Figures 10 to 17 As shown, the flip mechanism 42 is mounted on the base 41 via a flip seat 421. Specifically, the flip seat 421 provides a mounting and fixing base and a flipping space for the flip shaft 423 and flip plate 424. As will be appreciated, a flip groove 422 is defined on the side of the flip seat 421 facing away from the base 41. The ends of the flip shaft 423 are connected to opposite side walls of the flip groove 422. Optionally, the axial direction of the flip shaft 423 is perpendicular to the extension direction of the flip plate 424.

[0216] It is understood that the flip plate 424 can be a plate-like structure or a bracket. The end of the flip plate 424 that extends into the flip groove 422 is provided with an axial hole, and the flip shaft 423 is disposed within the axial hole. Thus, the flip plate 424 is rotatably connected to the flip seat 421 through the cooperation of the axial hole and the flip shaft 423. In this embodiment, the flip plate 424 rotates about the flip shaft 423 to cause the bending mechanism 43 to flip relative to the base 41, allowing the bending device 4 to have a first state and a second state.

[0217] In this embodiment, the locking assembly 45 is disposed on the flip plate 424 and adjacent to the flip seat 421. The second engaging platform 411 is disposed on the base 41, such that when the flip plate 424 rotates about the flip axis 423 to the second position, the third hook 4521 of the locking assembly 45 engages with the second engaging platform 411. It will be appreciated that the flip groove 422 of the flip seat 421 is configured as a through-slot structure in the rotational direction of the flip plate 424.

[0218] In one embodiment, the flip mechanism 42 further includes a third support plate 425. A mounting slot is provided on the side of the flip seat 421 facing away from the second clamping platform 411. The mounting slot is located adjacent to the flip slot 422. One end of the third support plate 425 is disposed within the mounting slot, and the other end of the third support plate 425 is used to support the position-limiting flip plate 424. In the first state, the flip plate 424 supports the other end of the third support plate 425.

[0219] In this embodiment, if Figures 10 to 17As shown, by providing a third support plate 425 on the flip seat 421, the third support plate 425 is used to support and fix the flip plate 424, thereby limiting the flip angle and position of the flip plate 424. It is understood that the flip seat 421 has a mounting groove on the side facing away from the second clamping platform 411. In this case, the mounting groove can be a groove structure convexly provided on the flip seat 421. Of course, the mounting groove can also be a groove structure concavely provided on the flip seat 421, which is not limited here.

[0220] It will be appreciated that the opening of the mounting slot is oriented toward the side of the flip seat 421 facing away from the base 41, and the depth of the mounting slot is perpendicular to the direction in which the flip plate 424 rotates within the flip slot 422. In this embodiment, the third support plate 425 can be fixedly mounted within the mounting slot, for example, by welding, bonding, or integral molding. Of course, to facilitate adjustment of the flip support angle of the flip plate 424, the third support plate 425 can be removably mounted within the mounting slot, for example, by plug-fitting, snap-fitting, screwing, or pinning, without limitation herein.

[0221] Alternatively, as Figure 12 、 Figure 14 and Figure 16 As shown, one end of the third support plate 425 protruding from the mounting slot is provided with a support slope. In this embodiment, the support slope is tilted toward the inside of the flip slot 422.

[0222] In one embodiment, if Figure 11 、 Figure 12 and Figure 16 As shown, the flip mechanism 42 further includes a second buffer 426, which is disposed in the flip groove 422 and between the flip shaft 423 and the second clamping platform 411. The second buffer 426 is used to buffer the flip plate 424. In the second state, the flip plate 424 elastically abuts against the second buffer 426.

[0223] As will be appreciated, the provision of the second buffer member 426 provides a buffer for the flip plate 424, thereby preventing the contoured pressing head 4324 of the bending mechanism 43 from contacting the flat cable 5 when the flip plate 424 flips, thereby preventing damage to the flat cable 5. Alternatively, damage to the bending device 4 may occur due to the excessive weight of the flip mechanism 42 and the bending mechanism 43 when the flip plate 424 flips. Optionally, the flip plate 424 may be provided with a buffer groove corresponding to the second buffer member 426, so that the cooperation between the buffer groove and the second buffer member 426 achieves both a positioning function and a buffering function.

[0224] In one embodiment, if Figures 10 to 17As shown, the base 41 is also provided with a second support plate 412, the second support plate 412 is provided with a third support groove 413, and the second clamping platform 411 is provided on the side of the second support plate 412 facing away from the flip seat 421; wherein, in the second state, the flip plate 424 is supported in the second support groove 413, and the third hook 4521 is clamped on the second clamping platform 411.

[0225] In this embodiment, by providing the second support plate 412, the second support plate 412 can be used to limit the flip angle of the flip plate 424 and can also be used to support the flip plate 424. It can be understood that the bending device 4 has a first state in which the flip plate 424 of the flip mechanism 42 is supported on the third support plate 425 and a second state in which the flip plate 424 is supported in the second support groove 413.

[0226] Optionally, the second support plate 412 is perpendicular to the base 41 and is located on the side of the flip seat 421 facing away from the third support plate 425. In this embodiment, the second clamping platform 411 is located on the side of the second support plate 412 facing away from the flip seat 421.

[0227] It should be noted that when the bending device 4 is in the first state, that is, when the flip plate 424 is supported on the third support plate 425, the bending mechanism 43 is away from the cable 5 on the processing equipment to avoid interference between other equipment on the processing equipment and the bending device 4. When the bending device 4 is in the second state, that is, when the flip plate 424 is supported in the second support groove 413 of the second support plate 412, the second support groove 413 can be used to support and position the flip plate 424, thereby ensuring the positioning effect of the flip plate 424. At the same time, the bending mechanism 43 is placed close to the cable 5 in the placement groove 121 of the processing equipment to facilitate the bending process of the cable 5.

[0228] In one embodiment, an adjustment seat 427 is provided at one end of the flip plate 424 away from the flip axis 423, and the adjustment seat 427 is provided with an adjustment groove 4271 and an adjustment hole 4272 connected to the adjustment groove 4271; a rotating shaft 4315 and an adjustment shaft 4316 are spaced apart at one end of the connecting component 431 away from the pressing component 432, the rotating shaft 4315 is rotatably connected to the groove wall of the adjustment groove 4271, and the adjustment shaft 4316 is movably arranged in the adjustment hole 4272; wherein, the adjustment shaft 4316 moves along the adjustment hole 4272 to adjust the connecting component 431 to be arranged in an arc shape around the rotating shaft 4315.

[0229] In this embodiment, if Figures 14 to 17As shown, by setting an adjustment seat 427 and setting an adjustment hole 4272 on the adjustment seat 427, one end of the connecting component 431 of the bending mechanism 43 is rotatably connected to the adjustment seat 427, and an adjustment shaft 4316 is set on the connecting component 431, so that the adjustment shaft 4316 is movably arranged in the adjustment hole 4272, so that the position of the adjustment shaft 4316 is moved along the adjustment hole 4272 by limiting the adjustment shaft 4316, thereby realizing the adjustment of the rotation angle of the connecting component 431 around the rotating axis 4315, so that the actual processing position of the contour pressing head 4324 of the bending mechanism 43 and the cable 5 can be conveniently adjusted to provide processing accuracy and processing convenience.

[0230] It can be understood that the adjustment seat 427 has an adjustment groove 4271, and the opposite side walls of the adjustment groove 4271 are provided with an axis hole and an adjustment hole 4272, and the axis hole and the adjustment hole 4272 are arranged at intervals. The shell 311 of the connecting component 431 is away from the pressing plate 4321. The end is provided with a rotating shaft 4315 and an adjustment shaft 4316 that are arranged at intervals, so that the rotating shaft 4315 rotates and passes through the axis hole, and the adjustment shaft 4316 is movably arranged in the adjustment hole 4272, so that the adjustment shaft 4316 moves along the adjustment hole 4272 to adjust the rotation angle of the connecting component 431 around the rotating shaft 4315.

[0231] Optionally, the adjustment hole 4272 is arranged in an arc shape. In this embodiment, the arc shape of the adjustment hole 4272 takes the shaft hole as the center.

[0232] In order to conveniently lock the rotation angle of the bending mechanism 43, in one embodiment, the flip mechanism 42 includes a locking member connected to the adjustment shaft 4316 to lock the adjustment shaft 4316 in the adjustment hole 4272. It is understood that the locking member can be a locking handwheel or a locking nut, etc., which is not limited here.

[0233] The bending device 4 of the present invention is composed of a flip seat 421 of a flip mechanism 42 combined on a base 41 to form a module for easy maintenance; the flip mechanism 42 is mainly used to support the bending mechanism 43, which is mainly composed of a guide column 4312 of a connecting assembly 431, a linear bearing, and a fourth elastic member 4313. When flipped to the bending position, the flip seat 421 is limited in the Z direction by the second support plate 412 and self-locked by the locking assembly 45. During the bending process, the bending pressure head 4323 moves in the Z direction through the pressing plate 4321 of the pressing assembly 432 using the second slide rail 4314 and the slider. When reaching the bending position, the self-locking assembly 44 will lock the pressing plate 4321. At the same time, the bending pressure head of the bending mechanism 43 will compress the fifth elastic member 4326 to form a bending state. The structure is simple to operate, stable, and can quickly form a self-locking state.

[0234] As will be appreciated, the adjustable hole 4272 provided on the adjustment seat 427 of the flip plate 424 allows for fine-tuning of the angle of the bending mechanism 43. The bending head 4323 is connected to the guide post 4312 of the connecting assembly 431 of the bending mechanism 43 via a connecting shaft 4322 and a pressing plate 4321. When the contoured head 4324 of the bending head 4323 reaches the bending position, the self-locking assembly 44 locks the pressing plate 4321, while the bending head of the bending mechanism 43 compresses the fifth elastic member 4326 to form the bending state. This structure is simple to operate, stable, and can quickly achieve self-locking.

[0235] In one embodiment, if Figure 1 and Figure 2 As shown, the tooling 12 is further provided with a first positioning groove 122 , a second positioning groove 123 , a first bending groove 124 and a second bending groove 125 connected to the placement groove 121 . The first positioning groove 122 , the second positioning groove 123 , the first bending groove 124 and the second bending groove 125 are arranged around the placement groove 121 .

[0236] It can be understood that the positioning device 2 includes two, and the two positioning devices 2 are arranged at intervals on the mounting surface 11, and are respectively arranged corresponding to the first positioning groove 122 and the second positioning groove 123; the bending device 3 is arranged corresponding to the first bending groove 124; the bending device 4 includes two, and the two bending devices 4 are arranged at intervals on the mounting surface 11, and are respectively arranged corresponding to the second positioning groove 123.

[0237] In this embodiment, multiple positioning devices 2 are provided to achieve multi-angle positioning of the cable 5 in the placement groove 121, thereby improving positioning accuracy. At the same time, a bending device 3 and multiple bending devices 4 are provided to achieve angle bending processing of the cable 5 in the placement groove 121.

[0238] Due to the soft nature of the cable 5, the processing equipment 100 of the present invention first places the cable 5 in the placement groove 121 of the tooling 12 of the body 1, and then turns on the vacuum to fix the cable 5; after the cable 5 is fixed, the positioning device 1 is moved forward, and then the contoured positioning block 2223 of the positioning member 222 is flipped to press the cable 5; after the cable 5 is pressed, the bending device 3 is moved to the bending position, and the cable 5 is pressed to form a bend through the self-locking feature of the locking component 33; then the bending device 4 is flipped to reach the bending position, and the flip mechanism 42 is locked by the locking component 45, and then the pressing component 432 of the bending mechanism 43 is pressed downward to make the contoured pressure head 4324 reach the bending position, and the bend is formed by self-locking through the self-locking component 44. After completion, the bending device 4 is restored to its initial state; then the other positioning device is moved forward Set to 1, then flip the contour positioning block 2223 of the positioning member 222 to press the cable 5; after the cable 5 is pressed, flip the other bending device 4 to reach the bending position, use the locking assembly 45 to lock the flipping mechanism 42, and then push the pressing assembly 432 of the bending mechanism 43 to make the contour pressing head 4324 reach the bending position, and complete the self-locking through the self-locking assembly 44; after the bending is completed, unlock the other bending device 4 in turn to restore it to the initial state, first open the self-locking assembly 44 of the bending mechanism 43, then unlock the locking assembly 45 and flip the flipping mechanism 42 to restore it to the initial state; then move the positioning device 1 backward to the initial position, flip the positioning member 222 to the initial position; finally, move the other positioning device 1 backward to the initial position, flip the positioning member 222 to the initial position, and complete the multi-angle bending processing of the cable 5.

[0239] It should be noted that the cable 5 has built-in circuitry and is flexible, making manual bending impossible and potentially damaging. Furthermore, the bending angle of the cable 5 is subject to process requirements and cannot be guaranteed manually. The processing equipment 100 of the present invention can control the pressure of the cable 5 according to the force requirements, and the bending angle can be controlled according to process precision. It is simple to operate, highly stable, and can also provide a foolproofing effect.

[0240] Because the cable 5 is made of a soft material and requires a high bending angle, the processing equipment 100 of the present invention features a flexible design, employing vacuum positioning and a multi-angle bending mechanism to meet the requirements of product bending at various angles. Bending the cable 5 requires ensuring that it does not damage the cable. The processing equipment 100 of the present invention utilizes a flexible mechanism for non-destructive bending, improving both the bending effect and the yield rate. Furthermore, the processing equipment 100 of the present invention utilizes a foolproof and self-locking mechanism to prevent unauthorized operation, resulting in simple operation and high stability.

[0241] The above descriptions are merely optional embodiments of the present invention and do not limit the patent scope of the present invention. All equivalent structural transformations made based on the contents of the present invention's description and drawings, or direct / indirect applications in other related technical fields, are included in the patent protection scope of the present invention.

Claims

1. A processing device for bending a cable, characterized in that: The processing equipment includes: A body, the body having a mounting surface, the mounting surface being provided with a tooling, the tooling having a placement groove on a side facing away from the mounting surface, the placement groove being used to place a cable, the tooling further having a first positioning groove, a second positioning groove, a first bending groove, and a second bending groove communicating with and surrounding the placement groove; Two positioning devices, each of the positioning devices includes a first base, a positioning assembly and an anti-foolproofing assembly, the first base is provided on the mounting surface and is adjacent to the tooling, the positioning assembly is movably provided on the first base, the positioning assembly is provided with a contoured positioning block and an anti-foolproofing rod, the anti-foolproofing assembly is provided on the first base and is located on the side of the positioning assembly facing the anti-foolproofing rod, the anti-foolproofing assembly is provided with a return channel and a stop arm movably provided in the return channel, the two positioning devices are spaced apart and correspond to the first positioning slot and the second positioning slot respectively; and A bending device, the bending device is provided on the mounting surface and adjacent to the tooling, the bending device is provided corresponding to the first bending groove, the bending device is spaced apart from the positioning device, the bending device is provided with a profiling pressing block, the profiling pressing block is used to bend the cable in the placement groove; wherein the positioning device has a positioning position where the profiling positioning block abuts against the cable in the placement groove and a release position where the profiling positioning block is away from the cable; In the release position, the anti-foolproof rod is located on one side of the stop arm, and the stop arm stops the anti-foolproof rod from entering the return channel; In the positioning position, the anti-foolproof rod is located on the other side of the stop arm, and the positioning assembly drives the anti-foolproof rod to move along the return channel and return to the release position; Two bending devices, the two bending devices are arranged at intervals on the mounting surface and corresponding to the second positioning groove, the bending device includes a base, a flipping mechanism, a bending mechanism and a self-locking component, the base is arranged on the mounting surface and adjacent to the tooling, the base is arranged at intervals from the positioning device and the bending device, the flipping mechanism is arranged on the base, the bending mechanism includes a connecting component and a pressing component, the connecting component is connected to the flipping mechanism, the pressing component is movably connected to the connecting component, the pressing component is provided with a profiling pressure head, the profiling pressure head is used to bend the cable in the placement groove, the self-locking component is arranged on the connecting component, the self-locking component is used to lock or release the pressing component, and the flipping mechanism is used to drive the bending mechanism to flip relative to the base.

2. The processing equipment according to claim 1, characterized in that The foolproof component includes: A mounting seat is provided on the first base and is located on a side of the positioning assembly facing the anti-foolproof rod, the mounting seat is provided with a stop groove and the return channel, the notch of the stop groove faces the return channel and is in communication with the return channel; a stopper, the stopper being rotatably disposed in the stopper groove, the stopper being provided with the stopper arm, the stopper arm passing through the notch of the stopper groove and extending to the return channel; and a first elastic member, the first elastic member being disposed in the stopping groove, and two ends of the first elastic member being elastically connected to the stopping member and the mounting seat respectively; Wherein, when the anti-foolproof rod moves along the return channel and returns to the release position, the anti-foolproof rod pushes the stop arm to rotate.

3. The processing equipment according to claim 2, characterized in that The mounting seat is further provided with a blocking groove spaced apart from the stopping groove, the blocking groove being located on a side of the stopping groove facing the tooling, the notch of the blocking groove facing the return channel and being in communication with the return channel; The foolproof component also includes: a blocking member rotatably disposed in the blocking groove, the blocking member being provided with a blocking arm and a support arm, the support arm and the blocking arm being located on opposite sides of the blocking member; and a second elastic member, the second elastic member being disposed in the blocking groove, with two ends of the second elastic member being elastically connected to the support arm and a groove wall of the blocking groove, respectively, so as to keep the blocking arm away from the return channel; Wherein, when in the positioning position, the anti-foolproof rod pushes the blocking arm to rotate, so that the anti-foolproof rod enters the return channel.

4. The processing equipment according to claim 1, characterized in that The first base is provided with a first sliding cavity; the positioning assembly comprises: a first sliding seat, the first sliding seat being movably disposed in the first sliding cavity, the first sliding seat being provided with a rotation groove; and A positioning member, one end of which extends into the rotating groove and is rotatably connected to the groove wall of the rotating groove, the other end of which is provided with the contoured positioning block, the fool-proofing rod is provided on a side of the positioning member facing the fool-proofing assembly and is located between the contoured positioning block and the rotating groove; The first sliding seat moves in the first sliding cavity to drive the positioning member to move between the release position and the positioning position.

5. The processing equipment according to claim 1, characterized in that The bending device comprises: a second base, the second base being disposed on the mounting surface and spaced apart from the positioning device, the second base being provided with a first clamping platform; a bending mechanism, the bending mechanism being movably mounted on the second base and located on one side of the first clamping platform, the bending mechanism being provided with the contoured pressing block; and A locking assembly is connected to the bending mechanism. The locking assembly is provided with a first hook. The first hook is engaged with or disengaged from the first engaging platform to lock or unlock the bending mechanism.

6. The processing equipment according to claim 5, characterized in that The locking assembly comprises: a first positioning seat, the first positioning seat being arranged on the bending mechanism; A first clamping member, the first clamping member is rotatably connected to the first positioning seat, and the first clamping member is provided with the first hook; and a first resetting member, one end of which is connected to the first positioning seat, and the other end of which is connected to the first clamping member to reset the first clamping member; Wherein, the first clamping member rotates relative to the first positioning seat to enable the first clamping hook to be engaged with or disengaged from the first clamping platform.

7. The processing equipment according to claim 5, characterized in that The second base is further provided with a first slide rail and a stop platform, the first slide rail extends toward the tooling, the stop platform is located at an end of the first slide rail away from the tooling, and the first clamping platform is located on one side of the first slide rail; the bending mechanism is provided with a first slide groove, and the first slide groove is slidably engaged with the first slide rail; And / or, the second base is further provided with a fixing rod, the bending mechanism is provided with a connecting rod, and the bending device further includes a stretching member, the two ends of the stretching member are elastically connected to the fixing rod and the connecting rod respectively, and the stretching member is used to reset the bending mechanism.

8. The processing equipment according to claim 5, characterized in that The bending mechanism comprises: a second sliding seat, the second sliding seat comprising a first sliding seat and a second sliding seat spaced apart from each other, the first sliding seat and the second sliding seat being movably mounted on the second base, the locking assembly being connected to the first sliding seat; a bending press head connected to a side of the second slide facing away from the first slide, the bending press head being provided with the contoured pressing block; and A buffer assembly, the buffer assembly includes a guide rod and a third elastic member, one end of the guide rod is connected to the second slide, the other end of the guide rod is movably connected to the first slide, the third elastic member is sleeved on the guide rod and located between the first slide and the second slide, and the two ends of the elastic member are elastically abutted against the first slide and the second slide respectively.

9. The processing equipment according to claim 1, characterized in that The pressing component is provided with a card slot; the self-locking component comprises: a second positioning seat, the second positioning seat being provided on the connecting assembly; A second clamping member, the second clamping member is rotatably connected to the second positioning seat, and a second hook is provided at one end of the second clamping member; and a second reset member, the second reset member being disposed on the second positioning seat and elastically connected to the other end of the second clamping member to reset the second clamping member; Wherein, the second engaging member rotates relative to the second positioning seat so that the second hook engages with or disengages from the engaging slot.

10. The processing equipment according to claim 1, characterized in that The connection component includes: a housing connected to the flip mechanism, a second sliding cavity being provided in the housing, and the self-locking assembly being provided in the housing; a guide post, one end of which is connected to the pressing assembly, and the other end of which is slidably disposed in the second sliding cavity; and a fourth elastic member, the fourth elastic member being disposed in the second sliding cavity and sleeved on the guide post, with two ends of the fourth elastic member being elastically connected to the housing and the guide post respectively; The pressing assembly is pressed to make the guide post slide along the second sliding cavity and compress the fourth elastic member, and the self-locking assembly locks the pressing assembly.

11. The processing equipment according to claim 10, characterized in that The pressing component includes: A pressing plate, the pressing plate being connected to an end of the guide post away from the fourth elastic member, the pressing plate further being provided with a connecting shaft; A bending press head, the bending press head is connected to an end of the connecting shaft away from the pressing plate, and the bending press head is provided with the contouring press head; and A fifth elastic member is sleeved on the connecting shaft, and two ends of the fifth elastic member are elastically connected to the bending pressure head and the connecting shaft respectively.

12. The processing equipment according to claim 1, characterized in that The base is provided with a second clamping platform, and the bending device further comprises a locking assembly, wherein the locking assembly is provided on the flipping mechanism and is spaced apart from the bending mechanism; The locking assembly comprises: a third positioning seat, the third positioning seat being arranged on the flipping mechanism; A third clamping member, the third clamping member is rotatably connected to the third positioning seat, and one end of the third clamping member is provided with a third hook; and a third restoring member, the third restoring member being disposed on the third positioning seat and elastically connected to an end of the third clamping member away from the third hook; Wherein, the third clamping member rotates relative to the third positioning seat to enable the third clamping hook to be engaged with or disengaged from the second clamping platform.

13. The processing equipment according to claim 12, characterized in that The turning mechanism comprises: A flip seat, which is arranged on the base and adjacent to the second clamping platform, and is provided with a flip groove; a turning shaft, the turning shaft being disposed in the turning groove; and a flip plate, one end of which extends into the flip groove and is rotatably sleeved on the flip shaft, the bending mechanism is provided at the other end of the flip plate, and the locking assembly is provided on the flip plate and located between the bending mechanism and the flip shaft; Wherein, the flip plate rotates around the flip axis to drive the bending mechanism to flip relative to the base.

14. The processing equipment according to claim 13, characterized in that An adjustment seat is provided at one end of the flip plate away from the flip axis, and the adjustment seat is provided with an adjustment groove and an adjustment hole communicating with the adjustment groove; A rotating shaft and an adjusting shaft are spaced apart at one end of the connecting component away from the pressing component, the rotating shaft is rotatably connected to the groove wall of the adjusting groove, and the adjusting shaft is movably arranged in the adjusting hole; Wherein, the adjustment shaft moves along the adjustment hole to adjust the connecting component to be arranged in an arc shape around the rotation axis.

Citation Information

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