Electronic wire bending device
By incorporating a wire straightening and bending mechanism into the automated lighter assembly equipment, the problem of assembly defects caused by wire misalignment was solved, enabling precise wire straightening and bending, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202520586301.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-31
AI Technical Summary
In existing automated lighter assembly equipment, the wire may become misaligned during the bending process, making it impossible to accurately align and secure it in the lighter slot, resulting in substandard assembly.
A wire straightening mechanism is set at the entrance end of the electronic bending mechanism, including a wire clamping assembly and an electronic pushing assembly. The clamping and pushing devices ensure the wire is straightened, and work with the electronic guide seat and bending mechanism to achieve precise bending.
It improves the precision and reliability of wire assembly, reduces defective products, increases production efficiency and equipment automation, and ensures the positional accuracy and quality of wires during bending.
Smart Images

Figure CN223902818U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lighter assembly equipment technical field, especially an electronic wire bending device. BACKGROUND
[0002] The lighter on the market generally has the manual assembly, in order to improve production efficiency, the automatic assembly equipment of lighter appears on the market, and the existing assembly equipment needs to bend the electronic wire after the vibration tray feeding to ensure that the electronic wire assembled to the lighter can be aligned with the air nozzle to realize the ignition, but the electronic wire may be left and right inclined due to various reasons, and after feeding to the bending position and bending, it cannot be centered, resulting in that the wire head end cannot be fixed in the clamping groove of the lighter after being assembled to the lighter, and further resulting in that the wire head end cannot be aligned with the air nozzle to realize the ignition, and being identified as unqualified products in the subsequent detection. UTILITY MODEL CONTENTS
[0003] To solve the above problems, the utility model aims at providing an electronic wire bending device.
[0004] The utility model adopts the following method to realize: an electronic wire bending device, including frame and electronic bending mechanism set up on the frame, the frame is equipped with wire straightening mechanism on the entrance end of the electronic bending mechanism, the wire straightening mechanism includes wire clamping assembly and electronic push assembly, the electronic push assembly is installed on the frame, the wire clamping assembly is located above the electronic push assembly, the wire clamping assembly is used to clamp the current electronic wire when the electronic push assembly pushes the electronic wire to realize wire straightening.
[0005] Preferably, the wire clamping assembly includes wire left clamping block and wire right clamping block, the wire left clamping block and the wire right clamping block are connected with wire clamping drive, the wire clamping drive is installed above the electronic push assembly, the wire left clamping block and the wire right clamping block clamp the wire under the drive of the wire clamping drive.
[0006] Preferably, the electronic push assembly includes electronic guide seat, the electronic guide seat is equipped with electronic guide groove, the electronic push assembly further includes electronic push drive and electronic push piece, the electronic push piece is opposite the electronic guide groove and can move along the direction of the electronic guide groove under the drive of the electronic push drive.
[0007] Preferably, the electronic push assembly further comprises an electronic lifting drive, the electronic guide seat is mounted on the electronic lifting drive, the electronic lifting drive is used to drive the electronic guide seat to lift to pick up the electronic and align with the electronic bending mechanism, and the electronic push member is at the same height as the entrance of the electronic bending mechanism.
[0008] Preferably, the electronic guide groove is provided in plurality side by side, the electronic bending mechanism has a corresponding number of electronic bending grooves and is provided side by side, the electronic push member is provided in a corresponding number side by side, and each electronic push member is opposite to the corresponding electronic bending groove; the electronic push member is driven by the electronic push drive to approach or move away from the electronic bending groove; the wire left clamp block and the wire right clamp block are provided with a clamping position corresponding to the number of the electronic guide groove.
[0009] Preferably, the electronic push drive comprises an electronic push cylinder, the output end of the electronic push cylinder is connected with an electronic push plate, the electronic push plate is parallel to the side-by-side arrangement direction of the electronic guide groove, a plurality of electronic push members are provided side by side on the surface of the electronic push plate facing the electronic bending groove, and the electronic push plate is driven by the electronic push cylinder to approach or move away from the electronic bending groove.
[0010] Preferably, the electronic bending mechanism comprises a bending lower die set and a bending upper die set, the bending upper die set is arranged on the upper side of the bending lower die set, the bending lower die set is provided with an electronic bending groove, and the entrance end of the electronic bending mechanism is arranged in the electronic bending groove and opposite to the outlet of the wire straightening mechanism.
[0011] Preferably, the bending lower die set comprises a bending lower die plate, the electronic bending groove is downwardly formed on the upper surface of the bending lower die plate, and a bending rod is arranged on the inner wall of the electronic bending groove close to the top of the side of the wire straightening mechanism; the bending upper die set comprises a bending pressing block, the bending pressing block is located directly above the electronic bending groove, the bending pressing block is connected with a bending drive, the bending drive drives the bending pressing block to lift to approach or move away from the electronic bending groove, and the wire of the electronic moving downward along the electronic bending groove is extruded and bent by the bending pressing block and the bending rod when the bending pressing block pushes the electronic.
[0012] Preferably, the bending lower die set further comprises a bending elastic pressing block arranged in the electronic bending groove, an electronic bending elastic member is arranged between the bottom surface of the electronic bending groove and the bending elastic pressing block, and the bending pressing block and the bending elastic pressing block jointly drive the electronic to move downward; a V-shaped guide block with an opening downward is arranged on the bottom of the bending pressing block on the side facing the wire straightening mechanism.
[0013] Preferably, the bending lower die plate is provided with an adjusting cavity communicated with the electronic bending groove and located at the lower side of the entrance of the electronic bending groove, the bending rod is arranged in the adjusting cavity, the bending rod is connected with an adjusting spring at the side away from the wire straightening mechanism, the surface of the bending lower die plate towards the wire straightening mechanism is provided with a clearance hole connected with the adjusting cavity, an adjusting cylinder is installed on the rack at a position avoiding the wire straightening mechanism, the output end of the adjusting cylinder can penetrate into the clearance hole, the adjusting cylinder can extend into the clearance hole to push the bending rod away from the wire straightening mechanism in the adjusting cavity to adjust the bending position of the wire; the inner wall of the electronic bending groove close to the wire straightening mechanism is provided with a longitudinal wire clearance groove.
[0014] The utility model discloses an electronic wire bending device, compared with prior art, the utility model has at least the following technical effects: 1. by setting up the wire straightening mechanism at the entrance end of electronic bending mechanism, can straighten processing to electronic wire before entering the bending procedure, this design effectively solved the problem that the wire in prior art cannot be accurately centered and the wire head cannot be fixed in the lighter slot after assembly due to the inclination, thereby the precision and reliability of wire assembly are improved significantly, and the number of unqualified products caused by wire inclination is reduced. 2. the design of left clamping block and right clamping block cooperation clamping driving piece can realize accurate clamping of wire, this structure is simple and reliable, can ensure that wire keeps stable during pushing, further improves straightening effect, and provides reliable positioning basis for subsequent bending procedure. 3. by setting up electronic guide seat and electronic guide groove, provide stable conveying path for electronic, ensure the position precision of electronic during pushing, meanwhile, the cooperation design of electronic pushing piece and electronic guide groove can realize accurate pushing electronic under the drive of pushing driving piece, further improve the efficiency and quality of wire straightening and bending, and reduce the wire inclination problem caused by unstable pushing. 4. electronic guide seat is installed on electronic lifting driving piece, so that electronic guide seat can be lifted, which can avoid that electronic pushing assembly blocks electronic feeding to electronic guide seat, and electronic rises to opposite electronic pushing assembly after entering electronic guide seat, so that electronic can be pushed into electronic bending mechanism from electronic guide seat, thereby avoiding interference of electronic pushing assembly to electronic feeding. 5. by setting up multiple side-by-side electronic guide grooves and corresponding bending grooves and multiple electronic pushing pieces, the device can process multiple electronic simultaneously, which significantly improves production efficiency, and the multiple clamping position design of clamping assembly can correspond to electronic guide groove one by one, ensuring that the wire of each electronic can be accurately straightened, further improving the automation degree and production efficiency of the equipment. 6. multiple electronic pushing pieces are installed side by side on the same electronic pushing plate, and the two ends of the electronic pushing plate are connected to an electronic pushing cylinder, which can realize synchronous pushing of multiple electronic. 7. the electronic bending mechanism adopts the design of upper and lower mold sets cooperation, which can realize accurate bending action, and this structure ensures the position precision and accuracy of bending angle of wire during bending. 8. by the cooperation of bending pressing block and bending rod, accurate bending of wire is realized, this design can ensure that the wire is stressed evenly during bending, avoid inaccurate bending angle or wire damage caused by uneven stress, further improve the bending quality and reliability of products, and reduce the scrap rate caused by bending problems. 9. the setting of bending elastic pressing block and electronic bending elastic piece can provide stable supporting force, buffer impact force during bending, reduce hard collision between equipment parts, and prolong the service life of the equipment. Meanwhile, the design of V-shaped guide block can further guide the bending direction of wire, ensure the accuracy of bending angle, and improve the stability of product quality.10. By adjusting the cooperation of the air cylinder and the adjusting spring, the adjustable function of the bending rod is realized, and the bending position of the wire can be flexibly adjusted. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is a three-dimensional structural schematic diagram of an electronic wire bending device of the utility model.
[0016] Figure 2 is a three-dimensional structural schematic diagram of another view of an electronic wire bending device of the utility model.
[0017] Figure 3 is a transverse cross-sectional structural schematic diagram of an electronic wire bending device of the utility model.
[0018] Figure 4 is Figure 3 a partial enlarged schematic diagram of position A in figure 1.
[0019] Figure 5 is a longitudinal cross-sectional structural schematic diagram of an electronic wire bending device of the utility model.
[0020] Figure 6 is Figure 5 a cross-sectional structural schematic diagram of position B in figure 1.
[0021] Figure 7 is a schematic diagram of the connection of an electronic wire bending device of the utility model with an electronic conveying track.
[0022] BRIEF DESCRIPTION OF DRAWINGS: 1, rack; 2, wire clamping assembly; 21, wire left clamping block; 22, wire right clamping block; 23, wire clamping driving piece; 3, electronic pushing assembly; 31, electronic guide seat; 311, electronic guide groove; 32, electronic pushing driving piece; 33, electronic pushing piece; 34, electronic lifting driving piece; 4, bending lower die set; 41, electronic bending groove; 42, bending lower die plate; 43, bending rod; 44, bending elastic block; 45, electronic bending elastic piece; 46, adjusting spring; 47, adjusting air cylinder; 48, wire accommodation groove; 49, bending limiting plate; 5, bending upper die set; 51, bending block; 511, V-shaped guide block; 52, bending driving piece; 6, sensing optical fiber; 7, electronic; 8, electronic conveying track. DETAILED DESCRIPTION
[0023] The utility model will be further described in connection with the drawings and specific embodiments.
[0024] Please refer to Figures 1 to 7The utility model provides an electronic wire bending device, including frame 1 and electronic bending mechanism set up on frame 1, and the entrance end of electronic bending mechanism is equipped with wire straightening mechanism on frame 1, and wire straightening mechanism includes wire clamping assembly 2 and electronic push assembly 3, electronic push assembly 3 is installed on frame 1, wire clamping assembly 2 is located above electronic push assembly 3, and wire clamping assembly 2 is used to clamp the current electronic wire when electronic push assembly 3 pushes electronic 7 to realize wire straightening, by setting wire straightening mechanism on the entrance end of electronic bending mechanism, the straightening treatment can be carried out to electronic wire before entering the bending process, and the design effectively solves the problem that wire cannot be accurately centered and wire head end cannot be fixed in lighter slot after assembly due to the inclination in prior art, thereby significantly improving the precision and reliability of wire assembly and reducing the number of unqualified products due to wire inclination.
[0025] Please refer to Figure 1 、 Figure 2 、 Figure 5 、 Figure 6 Preferably, wire clamping assembly 2 includes wire left clamping block 21 and wire right clamping block 22, wire left clamping block 21 and wire right clamping block 22 are connected with wire clamping driving part 23, wire clamping driving part 23 is installed above electronic push assembly 3, and wire left clamping block 21 and wire right clamping block 22 clamp wire under the drive of wire clamping driving part 23. The design of left clamping block and right clamping block cooperating with clamping driving part can realize accurate clamping of wire, and the simple and reliable structure can ensure that wire remains stable during pushing, further improve straightening effect and provide reliable positioning basis for subsequent bending process.
[0026] Please refer to Figures 1 to 7 Preferably, electronic push assembly 3 includes electronic guide seat 31, electronic guide groove 311 is arranged in electronic guide seat 31, electronic push assembly 3 further includes electronic push driving part 32 and electronic push part 33, electronic push part 33 is opposite to electronic guide groove 311 and can move along the direction of electronic guide groove 311 under the drive of electronic push driving part 32. By arranging electronic guide seat 31 and electronic guide groove 311, a stable conveying path is provided for electronic 7, and the position accuracy of electronic 7 during pushing is ensured, and the cooperation of electronic push part 33 and electronic guide groove 311 can realize accurate pushing of electronic 7 under the drive of push driving part, further improve the efficiency and quality of wire straightening and bending, and reduce the problem of wire inclination caused by unstable pushing.
[0027] Please refer to Figures 1 to 7, preferably, the electronic push assembly 3 further comprises an electronic lifting drive 34, the electronic guide seat 31 is installed on the electronic lifting drive 34, the electronic lifting drive 34 is used to drive the electronic guide seat 31 to ascend and descend to pick up the electronic 7 and align with the electronic 7 bending mechanism, and the electronic push piece 33 is at the same height with the entrance of the electronic bending mechanism. The electronic guide seat 31 is installed on the electronic lifting drive 34, so that the electronic guide seat 31 can ascend and descend, which can avoid that the electronic push assembly 3 blocks the feeding of the electronic 7 to the electronic guide seat 31. After the electronic 7 enters the electronic guide seat 31, the electronic 7 rises to be opposite to the electronic push assembly 3, so that the electronic 7 can be pushed from the electronic guide seat 31 into the electronic bending mechanism, thereby avoiding the interference of the electronic push assembly 3 with the feeding of the electronic 7.
[0028] Please refer to Figures 1 to 7 , preferably, the electronic guide groove 311 is provided in plurality side by side, the electronic bending mechanism has a corresponding number of electronic bending grooves 41 which are provided side by side, the electronic push piece 33 is provided in corresponding number side by side, and each of the electronic push piece 33 is opposite to the corresponding electronic bending groove 41; the electronic push piece 33 is driven by the electronic push drive 32 to approach or move away from the electronic bending groove 41; the wire left clamp block and the wire right clamp block are provided with a clamping position corresponding to the number of the electronic guide groove 311. By providing a plurality of electronic guide grooves 311 and corresponding bending grooves side by side, and a plurality of electronic push pieces 33, the device can process a plurality of electronic 7 at the same time, which significantly improves the production efficiency; at the same time, the multiple clamping positions of the clamping assembly can correspond to the electronic guide groove 311 one by one, which ensures that the wire of each electronic 7 can be accurately straightened, further improving the automation degree and production efficiency of the equipment.
[0029] Please refer to Figures 1 to 7 , preferably, the electronic push drive 32 comprises an electronic push cylinder, the output end of the electronic push cylinder is connected with an electronic push plate, the electronic push plate is parallel to the side-by-side arrangement direction of the electronic guide groove 311, a plurality of electronic push pieces 33 are provided side by side on the surface of the electronic push plate which faces the electronic bending groove 41, and the electronic push plate is driven by the electronic push cylinder to approach or move away from the electronic bending groove 41. A plurality of electronic push pieces 33 are installed side by side on the same electronic push plate, and the two ends of the electronic push plate are connected with an electronic push cylinder, so that the plurality of electronic 7 can be pushed synchronously. The discharge opening of the electronic vibration feeding disc is connected with the electronic guide seat 31 through the electronic conveying track 8 (connected when the electronic lifting drive is lowered to the initial position) to convey the electronic 7 to the electronic guide groove 311 of the electronic guide seat 31, and the electronic push plate is arranged in the form of a gantry above the electronic conveying track 8, and the two electronic push cylinders are arranged on the two sides of the electronic conveying track 8. The electronic push piece 33 is an electronic push rod.
[0030] Referring to Figures 1 to 7 , preferably, the electronic bending mechanism comprises a bending lower die set 4 and a bending upper die set 5, the bending upper die set 5 is arranged on the upper side of the bending lower die set 4, the electronic bending mechanism is arranged at the entrance of the electronic bending groove 41 opposite to the outlet of the wire straightening mechanism. The electronic bending mechanism adopts the design of upper and lower die sets matched, which can realize precise bending action. This structure ensures the position accuracy of the wire in the bending process and the accuracy of the bending angle.
[0031] Referring to Figures 1 to 7 , preferably, the bending lower die set 4 comprises a bending lower die plate 42, the electronic bending groove 41 is opened downward from the upper surface of the bending lower die plate 42, and the bending rod 43 is arranged on the inner wall of the electronic bending groove 41 close to the top of the side of the wire straightening mechanism. The bending upper die set 5 comprises a bending pressing block 51, the bending pressing block 51 is located directly above the electronic bending groove 41, the bending pressing block 51 is connected with a bending driving member 52, the bending driving member 52 drives the bending pressing block 51 to ascend or descend to approach or move away from the electronic bending groove 41, and the bending pressing block 51 pushes the electronic 7 downward along the electronic bending groove 41. When the wire of the electronic 7 moves downward, the wire is extruded and bent by the bending pressing block 51 and the bending rod 43. Through the cooperation of the bending pressing block 51 and the bending rod 43, the precise bending of the wire is realized. This design can ensure that the wire is uniformly stressed during bending, avoid inaccurate bending angle or wire damage caused by uneven stress, further improve the bending quality and the reliability of the product, and reduce the scrap rate caused by bending problems. The bending driving member 52 is a pneumatic cylinder.
[0032] Referring to Figures 1 to 7 , preferably, the bending lower die set 4 further comprises a bending elastic pressing block 44 arranged in the electronic bending groove 41, an electronic bending elastic member 45 is arranged between the bottom surface of the electronic bending groove and the bending elastic pressing block 44, and the bending pressing block 51 and the bending elastic pressing block 44 jointly drive the electronic 7 to move downward. The bottom of the bending pressing block 51 is provided with a V-shaped guide block 511 with an opening downward on the side facing the wire straightening mechanism. The arrangement of the bending elastic pressing block 44 and the electronic bending elastic member 45 can provide stable supporting force, buffer the impact force in the bending process, reduce the hard collision between the equipment components, and prolong the service life of the equipment. At the same time, the design of the V-shaped guide block 511 can further guide the bending direction of the wire, ensure the accuracy of the bending angle, and improve the stability of the product quality.
[0033] Referring to Figures 1 to 7Preferably, the bending lower die plate 42 is provided with an adjusting cavity communicated with the electronic bending groove 41 and located at the lower side of the entrance of the electronic bending groove, the bending rod 43 is arranged in the adjusting cavity, the bending rod 43 is connected with an adjusting spring 46 at the side of the adjusting cavity away from the wire straightening mechanism, the surface of the bending lower die plate 42 towards the wire straightening mechanism is provided with a clearance hole connected with the adjusting cavity, an adjusting cylinder 47 is arranged on the rack 1 at a position avoiding the wire straightening mechanism, the output end of the adjusting cylinder 47 can penetrate into the clearance hole, and the adjusting cylinder 47 can extend into the clearance hole to push the bending rod 43 away from the wire straightening mechanism in the adjusting cavity, so as to adjust the bending position of the wire; and the inner wall of the electronic bending groove 41 close to the wire straightening mechanism is provided with a longitudinal wire clearance groove 48. Through the cooperation of the adjusting cylinder 47 and the adjusting spring 46, the pushing-out or retraction of the adjusting cylinder 47 can control the bending rod 43 to be closer to or farther away from the bending elastic pressing block 44, so that the adjustable function of the bending rod 43 is realized, and the bending position of the wire can be flexibly adjusted. The design makes the device adapt to electronic wires of different specifications. The wire clearance groove 48 provides a descending path for the bending part of the electronic wire, so that the electronic wire can be smoothly bent.
[0034] Please refer to Figures 3 to 6 、 Figure 1 、 Figure 2 、 Figure 5 Preferably, the upper surface of the bending lower die plate 42 is provided with a bending limiting plate 49 on both sides of the electronic bending groove 41, the side surface of the bending limiting plate 49 is provided with a bending guide groove, and the left and right side surfaces of the bending pressing block 51 are provided with corresponding guide convex parts. The movement of the bending pressing block 51 is guided, so that the electronic wire can be accurately bent.
[0035] Please refer to Figure 6 Preferably, the entrance of the electronic bending groove is in the shape of an expanding horn, so that the electronic wire can enter the electronic bending groove.
[0036] Please refer to Figures 3 to 6 Figures 5 to 6 Preferably, the electronic guide seat 31 is provided with a detection clearance groove adjacent to the electronic guide groove 311 at the side towards the electronic bending mechanism, and the detection clearance groove is provided with an inductive optical fiber 6. The electronic guide groove 311 is used for detecting whether the electronic wire 7 enters the electronic bending groove.
[0037] The utility model has the following working principle:
[0038] The electronic 7 is fed into the electronic guide groove 311 of the electronic guide base 31 through the electronic vibration disc, then the electronic lifting drive 34 drives the electronic guide base 31 to ascend until the electronic guide groove 311 is aligned with the entrance of the electronic bending groove 41 of the bending lower die plate 42, the wire left clamp block 21 and the wire right clamp block 22 are clamped to the wire of the electronic 7 in the electronic guide groove 311 by the wire clamping drive 23, then the electronic push cylinder pushes the electronic push plate to move, so that the electronic pusher 33 is driven to move and push into the electronic guide groove 311, so that the straightening of the wire of the electronic 7 is realized, then the electronic lifting drive 34 and the electronic push cylinder reset, the bending drive 52 drives the bending pressing block 51 to move downwards and push into the electronic bending groove 41, at this time, the electronic 7 is just located on the upper end of the bending elastic pressing block 44, because the bending elastic pressing block 44 and the bottom surface of the electronic bending groove 41 are provided with the electronic bending elastic element 45, so that the bending elastic pressing block 44 can be pushed and moved downwards together, and the V-shaped guide block of the bending pressing block 51 can fix the wire when the electronic 7 moves downwards, the tail of the wire contacts the bending rod 43 when the electronic 7 moves downwards, the bending rod 43 generates an upward pushing force on the wire, the bending pressing block 51 generates a downward pushing force on the wire, and the wire can be bent at the joint of the two, then the bending pressing block 51 is driven to reset by the bending drive 52, the bending elastic pressing block 44 is driven to reset and ascend to the initial position by the bending elastic element, the electronic guide base 31 ascends, the electronic pusher 33 works to push the new electronic 7 into the electronic bending groove 41, and the new electronic 7 pushes the electronic 7, which has completed the wire bending in the electronic bending groove 41, out of the electronic bending groove 41.
[0039] It should be noted that, in the description of the present application, unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood in a broad sense, which can be mechanical connection or electrical connection, or the communication between two elements, or direct connection, and "up", "down", "left" and "right" are only used to represent the relative positional relationship, and when the absolute position of the described object changes, the relative positional relationship may change.
[0040] Secondly, in the drawings of the utility model, only the structures related to the embodiments of the present disclosure are involved, and other structures can be referred to the general design, and in the case of no conflict, the same embodiments and different embodiments of the utility model can be combined with each other.
[0041] Finally, the above-mentioned is only the preferred embodiment of the utility model, and the protection scope of the utility model is not limited to the above-mentioned embodiment, and any technical scheme belonging to the idea of the utility model belongs to the protection scope of the utility model.
[0042] It should be noted that for those skilled in the art, some improvements and decorations without departing from the principles of the present application should also be considered as the protection scope of the present application.
Claims
1. An electronic wire bending device, comprising a frame and an electronic bending mechanism arranged on the frame, characterized in that: The entrance end of the electronic bending mechanism on the rack is provided with a wire straightening mechanism, the wire straightening mechanism comprises a wire clamping assembly and an electronic pushing assembly, the electronic pushing assembly is installed on the rack, the wire clamping assembly is arranged above the electronic pushing assembly, and the wire clamping assembly is used for clamping the current electronic wire when the electronic pushing assembly pushes the electronic wire to achieve wire straightening.
2. The electronic wire bending device according to claim 1, wherein: The wire clamping assembly comprises a wire left clamping block and a wire right clamping block, the wire left clamping block and the wire right clamping block are connected with a wire clamping driving piece, the wire clamping driving piece is installed above the electronic pushing assembly, and the wire left clamping block and the wire right clamping block clamp the wire under the drive of the wire clamping driving piece.
3. The electronic wire bending device according to claim 2, wherein: The electronic pushing assembly comprises an electronic guide seat, the electronic guide seat is provided with an electronic guide groove, the electronic pushing assembly further comprises an electronic pushing driving piece and an electronic pushing piece, the electronic pushing piece is opposite to the electronic guide groove and can move along the direction of the electronic guide groove under the drive of the electronic pushing driving piece.
4. The electronic wire bending device according to claim 3, wherein: The electronic pushing assembly further comprises an electronic lifting driving piece, the electronic guide seat is installed on the electronic lifting driving piece, the electronic lifting driving piece is used for driving the electronic guide seat to lift and pick up the electronic wire and align with the electronic bending mechanism, and the electronic pushing piece is at the same height as the entrance of the electronic bending mechanism.
5. The electronic wire bending device according to claim 3, wherein: The electronic guide groove is provided in parallel with a plurality of electronic guide grooves, the electronic bending mechanism has a corresponding number of electronic bending grooves, and the electronic bending grooves are arranged in parallel; the electronic pushing piece is provided in parallel with a corresponding number of electronic pushing pieces, and each electronic pushing piece is opposite to the corresponding electronic bending groove; the electronic pushing piece approaches or moves away from the electronic bending groove under the drive of the electronic pushing driving piece; the wire left clamping block and the wire right clamping block are provided with a corresponding number of clamping positions corresponding to the electronic guide groove.
6. The electronic wire bending device according to claim 5, wherein: The electronic pushing driving piece comprises an electronic pushing cylinder, the output end of the electronic pushing cylinder is connected with an electronic pushing plate, the electronic pushing plate is parallel to the parallel arrangement direction of the electronic guide groove, the surface of the electronic pushing plate facing the electronic bending groove is provided with a plurality of electronic pushing pieces in parallel, and the electronic pushing plate approaches or moves away from the electronic bending groove under the drive of the electronic pushing cylinder.
7. The electronic wire bending device according to claim 1, wherein: The electronic bending mechanism comprises a bending lower die set and a bending upper die set, the bending upper die set is arranged on the upper side of the bending lower die set, the bending lower die set is provided with an electronic bending groove, and the entrance end of the electronic bending mechanism is arranged in the electronic bending groove and opposite to the outlet of the wire straightening mechanism.
8. The electronic wire bending device according to claim 7, wherein: The bending lower die set comprises a bending lower die plate, an electronic bending groove is formed downward on the upper surface of the bending lower die plate, and a bending rod is arranged on the top of the inner wall of the electronic bending groove close to one side of the wire straightening mechanism; the bending upper die set comprises a bending pressing block, the bending pressing block is located directly above the electronic bending groove, the bending pressing block is connected with a bending driving member, the bending driving member drives the bending pressing block to move close to or away from the electronic bending groove, and the bending pressing block pushes down the electronic to make the wire of the electronic bent when the electronic moves downward along the electronic bending groove.
9. The electronic wire bending device according to claim 8, wherein: The bending lower die set further comprises a bending elastic pressing block arranged in the electronic bending groove, an electronic bending elastic member is arranged between the bottom surface of the electronic bending groove and the bending elastic pressing block, and the bending pressing block and the bending elastic pressing block jointly drive the electronic to move downward; the bottom of the bending pressing block is provided with a V-shaped guide block with an opening downward on the side facing the wire straightening mechanism.
10. The electronic wire bending device according to claim 9, wherein: An adjusting cavity capable of communicating with the electronic bending groove is formed in the bending lower die plate, the adjusting cavity is located on the lower side of the entrance of the electronic bending groove, the bending rod is arranged in the adjusting cavity, the bending rod is connected with an adjusting spring on the side of the adjusting cavity away from the wire straightening mechanism, the surface of the side of the bending lower die plate facing the wire straightening mechanism is provided with a clearance hole connected with the adjusting cavity, an adjusting cylinder is installed on the rack at a position avoiding the wire straightening mechanism, the output end of the adjusting cylinder can penetrate into the clearance hole, the adjusting cylinder can extend into the clearance hole to push the bending rod away from the wire straightening mechanism in the adjusting cavity, so as to adjust the bending position of the wire; the inner wall of the electronic bending groove close to the wire straightening mechanism is provided with a longitudinal wire clearance groove.