Motor welding wire clamping device

By designing a motor wire bonding clamping device, the problems of cumbersome manual operation and difficulty in controlling welding quality during motor wire bonding were solved, achieving efficient and safe welding results.

CN223848445UActive Publication Date: 2026-01-30SAMEDAY IND AUTOMATION EQUIP (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202423313749.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The manual operation of motor wire bonding is cumbersome, the welding time is not fixed, the safety is low, and the welding quality is difficult to control.

Method used

Design a motor wire bonding clamping device, including a support component, a clamping component, a transmission component, and a pushing component. The transmission component drives the clamping component to rotate, thereby fixing and rotating the motor and motor wire, improving welding efficiency and quality.

Benefits of technology

This technology enables the simultaneous fixing and flipping of the motor and motor wires, improving welding efficiency and quality, and ensuring the safety and consistency of the welding process.

✦ Generated by Eureka AI based on patent content.

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Abstract

A motor welding wire clamping device comprises a supporting assembly, a plurality of clamping assemblies, a transmission assembly and a material pushing assembly, the multiple clamping assemblies are sequentially and rotatably installed on the supporting assembly, and the clamping assemblies are arranged at intervals; the transmission assembly and the pushing assembly are located on one sides of the clamping assemblies respectively, the supporting assembly is installed on the supporting assembly and connected with all the clamping assemblies, and the transmission assembly drives the clamping assemblies to rotate forwards or reversely relative to the supporting assembly. The clamping assembly is used for placing and fixing a motor and a motor wire, so that the motor wire is located at the welding position of a vertical foot of the motor, and the material pushing assembly moves relative to the clamping assembly, so that a wire guide groove of the clamping assembly is loosened. The motor welding quality and efficiency are improved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the field of motor manufacturing, and particularly relates to a motor wire welding clamping device. BACKGROUND

[0002] At present, in the motor wire welding process, the manual operation process is relatively cumbersome, and the specific steps are as follows: a motor is manually taken and placed on a fixed support block, a motor wire is taken and welded to the motor stand at the same time, and after one wire is welded, another wire is taken and welded. In this wire welding process, the welding time is not fixed, the product is frequently replaced, and the safety of the welding process is low. In order to solve these problems, the motor foot wire welding jig disclosed in Chinese patent CN206455347U is used to cooperate the installation cavity for placing the motor and the card hole for pressing the motor wire to position the motor and the motor wire, and then welding is performed. The structure can realize the positioning of the motor and the motor wire, but since the motor wire generally needs to be welded on the outer side surface of the motor stand, when the motor stand and the motor wire are fixed in position, the welding position is located on the side surface of the stand of each motor, which is very inconvenient for welding, and the welding quality is not easy to control. SUMMARY

[0003] The technical problem to be solved by the application is to provide a motor wire welding clamping device which can complete the wire welding work of a specified motor, fix the motor and the motor wire, and make the stand convenient to weld at a position through overturning, thereby improving the welding efficiency and the welding quality.

[0004] To solve the above technical problems, the technical scheme provided by the application is a motor wire welding clamping device, which comprises a support assembly, a plurality of clamping assemblies, a transmission assembly, and a pushing assembly, wherein: the plurality of clamping assemblies are sequentially and rotatably installed on the support assembly, and are arranged at intervals between the clamping assemblies; the transmission assembly and the pushing assembly are located on one side of the clamping assembly, and the support assembly is installed on the support assembly and connected with all the clamping assemblies, and the clamping assembly is driven by the transmission assembly to rotate forward or reverse relative to the support assembly; the clamping assembly is used for placing and fixing the motor and the motor wire, so that the motor wire is located at the motor stand welding position, and the pushing assembly is displaced relative to the clamping assembly to loosen the wire guide groove of the clamping assembly.

[0005] Preferably, the supporting assembly comprises two side panels vertically installed in parallel and at intervals, a sliding installation plate linearly displaceably installed at the bottom of the two side panels, a connecting handle provided on one side of the sliding installation plate, the connecting handle connected with a driving motor through one of the side panels, and the connecting handle connected with the workbench through a tension spring; the clamping assembly is rotatably installed on the two side panels, the transmission assembly is installed on the side panel through which the connecting handle passes, the pushing assembly is linearly displaceable outside the other side panel, and the sliding installation plate abuts against the clamping assembly.

[0006] Preferably, the clamping assembly comprises an installation support frame rotatably installed on the two side panels, a motor installation block fixedly provided on the installation support frame, and a magnet installed at the bottom of the motor installation block; a wire groove with adjustable tightness is provided on one side of the motor installation block.

[0007] Preferably, two linearly displaceable fold line blocks are provided outside one end of the motor installation block and outside the pushing assembly, the fold line blocks are located outside two legs of the motor, a linearly displaceable fixing block is provided outside the fold line blocks and faces the pushing assembly, the fixing block and the motor installation seat are connected through a spring, linearly displaceable pressing line blocks are provided on opposite sides of the fixing block, a stop block is provided outside the pressing line blocks, and a spring is provided between the pressing line blocks and the stop block; the fixing block is provided with wire grooves corresponding to the two legs, the pressing line blocks press the wire grooves; the fold line blocks abut against the sliding installation plate through a connecting piece in a clamping manner, when the sliding installation block displaces, the fold line blocks linearly displace along the leg outer sides of the motor and relative to the motor installation block; when the pushing assembly displaces towards the clamping assembly, the pushing assembly linearly displaces the fixing block towards the motor installation block, linearly displaces the pressing line blocks on both sides of the fixing block towards the stop block, and loosens the wire grooves; when the pushing assembly resets, the fixing block and the pressing line blocks reset under the elastic force of the spring, and the wire grooves are clamped.

[0008] Preferably, a displacement hole is formed in the installation support frame, linear guides are provided on opposite sides of the displacement hole, and the fold line blocks are fixedly provided on the linear guides; the connecting piece is provided in the displacement hole, a clamping groove is formed in the sliding installation plate, the lower end of the connecting piece is clamped in the clamping groove, the upper end of the connecting piece is connected with the fold line block, the sliding installation plate is displaced, the fold line block is displaced relative to the motor installation block, and the motor wire end outside the leg outer side and provided in the leg of the motor is bent.

[0009] Preferably, the wire pressing block is protruded towards the fixed block of the pushing assembly, and the side adjacent to the fixed block is provided with a slope structure; when the pushing assembly pushes the fixed block to displace towards the motor mounting block, the pushing assembly abuts against the slope structure of the wire pressing block, so that the wire pressing block is displaced away from the fixed block, and the wire groove is loosened.

[0010] Preferably, the pushing assembly comprises a wire placing box, a pushing head is arranged on one end of the wire placing box and protruded from the wire placing box, the pushing head is arranged corresponding to the fixed block, the wire placing box is arranged on the linear guide rail, and under the driving of the driving motor, the wire placing box is displaced along the linear guide rail towards the clamping assembly, the pushing head abuts against the fixed block, the fixed block is driven to displace towards the motor mounting block, and the wire pressing block is displaced away from the fixed block.

[0011] Preferably, a tension spring is arranged between the bottom of the wire placing box and the workbench.

[0012] Preferably, the transmission assembly comprises a driving wheel and a plurality of driven wheels, the driven wheels are arranged on the driven shaft of the clamping assembly, the driving wheel is arranged on the driving shaft, the driving shaft is connected with the driving motor, the driving wheel is connected with the driven wheels through a belt, and the belt is adjusted in tension and guided through a follow-up wheel; when working, the driving motor drives the driving wheel to drive the driven wheels to rotate synchronously, and the driven wheels drive the clamping assembly to rotate.

[0013] Preferably, the follow-up wheels on both sides of the driving wheel are arranged on an adjusting block, the positions of the follow-up wheels are adjusted through the adjusting block, and the adjusting block is arranged on the supporting assembly.

[0014] The motor wire welding and clamping device can fix a plurality of motors at one time, fix motor wires, and then turn over to a position convenient for welding, so that each motor foot and motor wire is welded at one time, the position of the motor and the motor wire is kept unchanged during the welding process, and the welding quality and efficiency are improved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a structure schematic view of the motor wire welding and clamping device.

[0016] Figure 2 It is a structure schematic view of the motor wire welding and clamping device from the direction of the pushing assembly.

[0017] Figure 3 It is a structure schematic view of the supporting assembly.

[0018] Figure 4Figure is a schematic view of the clamping assembly structure.

[0019] Figure 5 Figure is a schematic view of the clamping assembly exploded structure.

[0020] Figure 6 Figure is a schematic view of the transmission assembly structure.

[0021] Figure 7 Figure is a schematic view of the pushing assembly structure.

[0022] Reference signs:

[0023] Support assembly 1, clamping assembly 2, transmission assembly 3, pushing assembly 4, bottom mounting plate 5, right side panel 6, left side panel 7, adjustment block 8, sliding mounting plate 9, sliding connecting plate 10, bearing 11, linear guide rail 12, limit pin 13, driving wheel mounting block 14, tension spring 15, clamp mounting plate 18, front and rear rotating plate 19, driven shaft 20, bearing 21, base 22, mounting seat 23, stop block 24, left wire pressing block 25, wire folding block 26, motor mounting block 27, right wire pressing block 28, linear guide rail 29, connecting piece 30, linear guide rail 31, linear guide rail 32, spring 33, fixed mounting seat 34, fixed block 35, spring 36, motor 39, motor wire 40, driven wheel 41, belt 42, driving wheel 43, driven wheel 44, wire placement box bottom plate 52, baffle 53, pushing pressure head 54, linear guide rail 56, reinforcing rib 57, vertical plate 58, bearing 59, tension spring 61, magnet 64. DETAILED DESCRIPTION

[0024] For the above technical solutions, a preferred embodiment is described in detail in combination with the drawings. A motor wire clamping device includes a support assembly 1, a clamping assembly 2, a transmission assembly 3, and a pushing assembly 4. The clamping assembly 2 is rotatably mounted on the support assembly 1. The transmission assembly 3 and the pushing assembly 4 are located on opposite sides of the clamping assembly 2. The pushing assembly 4 supplies material to the clamping assembly 2. The transmission assembly 3 controls the rotation of the clamping assembly 2. The support assembly 1 and the pushing assembly 4 are installed on a workbench surface (not shown). Referring to Figures 1 to 7 , wherein:

[0025] The support assembly 1, referring to Figure 3 , includes a bottom mounting plate 5, a right side panel 6, a left side panel 7, an adjustment block 8, a sliding mounting plate 9, a sliding connecting plate 10, a bearing 11, a linear guide rail 12, a limit pin 13, a driving wheel mounting block 14, and a tension spring 15.

[0026] The right side panel 6 and the left side panel 7 are fixedly installed on the bottom installation plate 5 in a parallel spaced manner to form a U-shaped support, and the bottom installation plate 5 between the right side panel 6 and the left side panel 7 is provided with a sliding installation plate 9. The sliding installation plate 9 is connected with the bottom installation plate 5 through a linear guide rail 12, and a limiting pin 13 is arranged on the linear guide rail 12 to limit the sliding position of the sliding installation plate 9. The sliding installation plate 9 has a connecting handle which penetrates through the left side panel 7 and is located on the outer side of the left side panel 7 away from the right side panel 6. A sliding connecting plate 10 is connected with the sliding installation plate 9, and the sliding connecting plate 10 is provided with a bearing 11 and a tension spring 15 arranged on both sides of the sliding connecting plate 10. The bearing 11 can be connected with an external servo motor (not shown), and the force acting on the bearing 11 by the servo motor pushes the sliding installation plate 9 to slide along the linear guide rail 12. When the servo motor stops working and loses the acting force, the sliding installation plate 9 is pulled back along the linear guide rail 12 by the elastic force of the tension spring 15. A clamping groove is formed on the sliding installation plate 9. The bottom installation plate 5 is installed on a workbench.

[0027] The right side panel 6 and the left side panel 7 are fixedly installed on the bottom installation plate 5 in a parallel spaced manner to form a U-shaped support, and the bottom installation plate 5 between the right side panel 6 and the left side panel 7 is provided with a sliding installation plate 9. The sliding installation plate 9 is connected with the bottom installation plate 5 through a linear guide rail 12, and a limiting pin 13 is arranged on the linear guide rail 12 to limit the sliding position of the sliding installation plate 9. The sliding installation plate 9 has a connecting handle which penetrates through the left side panel 7 and is located on the outer side of the left side panel 7 away from the right side panel 6. A sliding connecting plate 10 is connected with the sliding installation plate 9, and the sliding connecting plate 10 is provided with a bearing 11 and a tension spring 15 arranged on both sides of the sliding connecting plate 10. The bearing 11 can be connected with an external servo motor (not shown), and the force acting on the bearing 11 by the servo motor pushes the sliding installation plate 9 to slide along the linear guide rail 12. When the servo motor stops working and loses the acting force, the sliding installation plate 9 is pulled back along the linear guide rail 12 by the elastic force of the tension spring 15. A clamping groove is formed on the sliding installation plate 9. The bottom installation plate 5 is installed on a workbench.

[0028] The clamping assembly 2, referring to Figure 4 and Figure 5 , comprises a clamp installation plate 18, a front and rear rotating plate 19, a driven shaft 20, a bearing 21, a base 22, a mounting seat 23, a stop block 24, a left wire pressing block 25, a wire folding block 26, a motor installation block 27, a right wire pressing block 28, a linear guide rail 29, a connecting piece 30, a linear guide rail 31, a linear guide rail 32, a spring 33, a fixed mounting seat 34, a fixed block 35, a spring 36, a motor 39, a motor wire 40 and a magnet 64.

[0029] The front and rear rotating plates 19 are fixedly connected to the front and rear of the clamp mounting plate 18 to form a mounting support frame. Bearings 21 are respectively connected to the front and rear rotating plates 19. A driving shaft 20 is arranged on the upper portion of the rear rotating plate 19. The bearings 21 on the two sides are respectively arranged in the mounting holes on the right side plate 6 and the left side plate 7. The driving shaft 20 extends out of the left side plate 7, so that the clamping assembly 2 can rotate relative to the support assembly 1. A base 22 is arranged on the clamp mounting plate 18. A motor mounting block 27 is fixedly arranged on the base 22. A magnet 64 is arranged at the bottom of the motor mounting block 27, and is used to fix a motor arranged in the motor mounting block 27. A notch is arranged on the upper portion of one end of the motor mounting block 27, and the foot of the motor 39 passes through the notch. Square displacement holes are arranged on the clamp mounting plate 18 and the base 22 on the side where the foot of the motor 39 passes through. A connecting piece 30 passes through the square displacement holes. Straight guide rails 29 are arranged on the opposite sides of the square displacement holes. A broken line block 26 is fixedly arranged on the sliding blocks of the straight guide rails 29, and is located outside the two feet of the motor 39. The lower end of the connecting piece 30 is clamped on the clamping groove of the sliding mounting plate 9. The upper end of the connecting piece 30 is fixedly connected to the two broken line blocks 26. The base 22 on the side away from the motor mounting block 27 of the broken line block 26 is fixedly arranged with a mounting seat 23. The mounting seat 23 is arranged with a straight guide rail 31 at the center. Straight guide rails 32 are arranged on the opposite sides of the straight guide rail 31. The straight displacement directions of the straight guide rail 31 and the straight guide rails 32 are perpendicular to each other. The straight guide rail 31 straightly displaces towards the motor mounting block 27 and the pushing assembly 4. A mounting seat 34 and a fixed block 35 are sequentially fixedly arranged on the sliding blocks of the straight guide rail 31. The fixed block 35 is in an L-shaped structure, and is located between the two feet of the motor 39. The fixed block 35 is connected to the motor mounting block 27 through a spring 33. The fixed block 35 is arranged with wire grooves corresponding to the two feet of the motor.

[0030] A left wire pressing block 25 and a right wire pressing block 28 are respectively fixedly arranged on the sliding blocks of the straight guide rails 32 on the opposite sides of the straight guide rail 31. The left wire pressing block 25 and the right wire pressing block 28 are respectively located on the opposite sides of the fixed block 35. The left wire pressing block 25 and the right wire pressing block 28 protrude from the fixed block 35 on the side away from the motor mounting block 27. The left wire pressing block 25 and the right wire pressing block 28 are respectively arranged with inclined surfaces on the side surfaces of the fixed block 35 adjacent to the fixed block 35. The mounting seat 23 on the outer side of the left wire pressing block 25 and the right wire pressing block 28 is respectively fixedly arranged with a stop block 24. The stop block 24 is connected to the left wire pressing block 25 and the right wire pressing block 28 through a spring 36. The left wire pressing block 25 and the right wire pressing block 28 are arranged with clamping blocks extending into one side of the wire grooves of the fixed block 35. When the left wire pressing block 25 and the right wire pressing block 28 are close to the fixed block 35, the motor wire arranged in the wire groove is pressed. When the left wire pressing block 25 and the right wire pressing block 28 are away from the fixed block 35, the motor wire is released.

[0031] The transmission assembly 3 is installed on the outer side of the left side panel 7, as shown in Figure 6 The transmission assembly 3 comprises a driven wheel 41, a belt 42, a driving wheel 43, and a driven wheel 44.

[0032] The driven wheel 44 is arranged on the driven shaft 20 extending out of the outer side of the left side panel 7, and the driving shaft is arranged at the driving wheel mounting block 14 of the left side panel 7. The driving wheel 43 is arranged on the driving shaft, and the driving wheel 43 is connected with the driven wheel 44 through the belt 42. The driven wheel 41 is arranged on the belt 42 to adjust the tension and guide of the belt. The driven wheels 41 on both sides of the driving wheel 43 are arranged on the adjusting block 8. By adjusting the position of the adjusting block 8, the position of the driven wheels 41 arranged on the adjusting block 8 is adjusted, and the tension of the belt is adjusted. The driving shaft is connected with an external servo motor (not shown), and the driving shaft is driven to rotate by the servo motor, thereby driving the clamping assembly 2 to rotate.

[0033] The pushing assembly 4 is arranged on the side of the fixing block 35 away from the motor mounting block 27, as shown in Figure 7 The pushing assembly 4 comprises a wire placement box bottom plate 52, a baffle 53, a pushing head 54, a linear guide rail 56, a reinforcing rib 57, a vertical plate 58, a bearing 59, and a tension spring 61.

[0034] The wire placement box bottom plate 52 is fixedly arranged on the arc-shaped side to form a wire placement box with the baffle 53. The wire placement box bottom plate 52 is arranged on the sliding block of the linear guide rail 56, and the reinforcing rib 57 and the vertical plate 58 are arranged below the wire placement box bottom plate 52. The reinforcing rib 57 and the vertical plate 58 pass through the through hole formed on the workbench and are arranged in the through hole. The linear guide rail 56 is arranged on the workbench. The tension spring 61 is arranged at the bottom of the wire placement box bottom plate 52, and one end of the tension spring 61 is connected with the bottom of the wire placement box bottom plate 52, and the other end is connected with the workbench. The bearing 59 is arranged on the vertical plate 58, and the bearing 59 is connected with an external servo motor (not shown) to drive the wire placement box bottom plate 52 to displace. The wire placement box bottom plate 52 is arranged on the workbench, and the wire placement box bottom plate 52 is arranged on the workbench.

[0035] When the pushing assembly 4 is displaced towards the clamping assembly 2, the pushing head 54 can abut against the inclined surface structure of the fixed block 35, the left wire pressing block 25 and the right wire pressing block 28, so that the fixed block 35 is displaced along the linear guide rail 31 towards the motor mounting block 27, the left wire pressing block 25 and the right wire pressing block 28 are respectively displaced along the linear guide rail 32 towards the direction away from the fixed block 35, the distance between the wire pressing blocks and the fixed block is pulled apart, the motor wire pressed in the wire groove is loosened, and the motor wire is conveniently taken out.

[0036] The motor wire clamping device of the application is connected with an external servo motor for driving when in use.

[0037] The working process of the application is as follows:

[0038] 1) Turn on the power switch, connect the air source, manually place 8 motors 39 into the motor mounting block 27 in sequence, the magnet 64 makes the motors 39 be attracted and fixed, manually take two motor wires 40, press the wire heads into the wire grooves between the left wire pressing block 25, the right wire pressing block 28 and the fixed block 35, and make the wire heads of the motor wires 40 pass into the welding wire holes of the legs of the motors 39 along the wire grooves, the wire heads are located on the outer side of the legs, and the wire heads are located on the displacement path of the folding block 26, the motor wires are pressed and fixed in the wire grooves through the fixed block 35 and the wire pressing blocks. After the above operation, after 8 motors and motor wires are sequentially placed, the start button is pressed, the driving motor drives the sliding mounting plate 9 to displace along the linear guide rail 12 towards the pushing assembly 4, the sliding mounting plate 9 displaces with the connecting piece 30, the connecting piece 30 displaces with the folding block 26 along the linear guide rail 29, the folding block 26 makes the wire heads of the motor wires 40 displace towards the fixed block 35 in the displacement process, the motor wires 40 are hooked at the welding holes of the legs in a hook structure, and the wire heads of the motor wires are attached to the outer side of the legs of the motors 39, the driving motor stops working, and then the tension spring 15 pulls the sliding mounting plate 9 and the sliding connecting plate 10 back to the original position.

[0039] 2) After the sliding mounting plate 9 and the sliding connecting plate 10 are pulled back to the original position, the servo motor moves towards the driving wheel 43, the pin of the driving wheel is inserted into the pin hole of the external motor, the external motor is positively transmitted, the driving wheel 41 and the driven wheel 44 are rotated through the belt 42, and the eight clamp mounting plates 18 are integrally rotated 90° to the right, at this time, the wire welding part can weld the motor wires 40, after welding one leg, the external motor is reversely rotated, the eight clamp mounting plates 18 are integrally rotated 180° to the left, at this time, the wire welding part can weld the motor wires 40, and after welding, the external motor is positively rotated to drive the eight clamp mounting plates 18 to simultaneously rotate 90° to the right.

[0040] 3) make its flat state, the servo motor through the bearing 59 and push the assembly is connected, through the servo motor drive bearing 59 along the linear guide rail 56, drive push assembly 4 to the direction of clamping assembly 2 moves, push the head 54 and fixed block 35 collision, fixed block 35 and fixed mounting seat 34 is connected along the linear guide rail 31 to the motor 39 direction moves; push the head 54 both sides will left line block 25, right line block 28 along the linear guide rail 29 moves, loose wire groove, will be welded motor 39 and motor line out, complete welding, again put in the motor 39 and motor line, which has not been welded, start the next batch of this motor welding.

Claims

1. A motor wire bonding fixture, comprising: The utility model provides a motor wire fixing device, including support component, a plurality of clamping components, transmission component, push material component, wherein: a plurality of clamping components are rotatablely installed on the support component in sequence, and the clamping components are arranged at intervals, transmission component and push material component are located at one side of clamping component respectively, and the support component is installed on the support component and is connected with all clamping components, drives clamping component relative to the support component positive rotation or reverse rotation through transmission component, and clamping component is used for placing fixed motor and motor wire, and motor wire is located at motor foot welding position, and push material component is displaced relative to clamping component, and the wire groove of clamping component is loosened.

2. The motor wire bonding clamp apparatus of claim 1, wherein, The support component includes two side panels vertically installed and arranged in parallel at intervals, a sliding mounting plate is linearly displaceably installed at the bottom of the two side panels, a connecting handle is arranged on one side of the sliding mounting plate, the connecting handle is connected with a driving motor through one of the side panels, and the connecting handle is connected with a workbench through a tension spring, the clamping component is rotatably installed on the two side panels, the transmission component is installed on the side panel through which the connecting handle passes, the push material component is linearly displaceably arranged outside the other side panel, and the sliding mounting plate abuts against the clamping component.

3. The motor wire bonding clamp apparatus of claim 2, wherein, The clamping component includes a mounting support frame rotatably installed on the two side panels, a motor mounting block is fixedly arranged on the mounting support frame, and a magnet is installed at the bottom of the motor mounting block, and a wire groove with adjustable tightness is arranged on one side of the motor mounting block.

4. The motor wire bonding clamp apparatus of claim 3, wherein, Two linearly displaceable folding blocks are arranged at intervals outside the end of the motor mounting block facing the push material component, the folding blocks are arranged at the outer sides of the two feet of the motor, a linearly displaceable fixing block is arranged outside the folding blocks facing the push material component, the fixing block and the motor mounting block are connected through a spring, linearly displaceable pressing blocks are arranged on the opposite sides of the fixing block, a stop block is arranged outside the pressing blocks, and a spring is arranged between the pressing blocks and the stop block, the fixing block is provided with wire grooves corresponding to the two feet, the pressing blocks press the wire grooves, the folding blocks are in abutment with the sliding mounting plate in a clamping manner through a connecting piece, when the sliding mounting plate is displaced, the folding blocks are linearly displaced along the outer sides of the feet of the motor relative to the motor mounting block, when the push material component is displaced towards the clamping component, the push material component linearly displaces the fixing block towards the motor mounting block, the pressing blocks on the opposite sides of the fixing block are displaced towards the stop blocks, the wire grooves are loosened, and when the push material component is reset, the fixing block and the pressing blocks are respectively reset under the elastic force of the spring, and the wire grooves are clamped.

5. The motor wire bonding clamp apparatus of claim 3, wherein, Displacement holes are formed in the mounting support frame, linear guides are arranged on opposite sides of the displacement holes, and a broken-line block is fixedly arranged on the linear guides; a connecting piece is arranged in the displacement hole, a clamping groove is formed in the sliding mounting plate, the lower end of the connecting piece is clamped in the clamping groove, the upper end of the connecting piece is connected with the broken-line block, the sliding mounting plate is displaced to drive the broken-line block to displace relative to the motor mounting block, and the wire end portion outside the motor leg and outside the outer side surface of the leg is bent.

6. The motor wire bonding clamp apparatus of claim 3, wherein, The convex fixed block of the pushing assembly is adjacent to the pressing block, and the side adjacent to the fixed block is provided with a slope structure; when the pushing assembly pushes the fixed block to displace toward the motor mounting block, the pushing assembly abuts against the slope structure of the pressing block, so that the pressing block is displaced away from the fixed block to loosen the wire groove.

7. The motor wire bonding clamp apparatus of claim 6, wherein, The pushing assembly comprises a wire placing box, a pushing head is arranged on one end of the wire placing box facing the clamping assembly, the upper end of the pushing head protrudes out of the wire placing box, the pushing head is arranged corresponding to the fixed block, the wire placing box is arranged on the linear guide, and under the driving of the driving motor, the wire placing box is displaced along the linear guide toward the clamping assembly, the pushing head abuts against the fixed block to drive the fixed block to displace toward the motor mounting block, so that the pressing block is displaced away from the fixed block.

8. The motor wire bonding clamp apparatus of claim 7, wherein, A tension spring is arranged between the bottom of the wire placing box and the workbench surface.

9. The motor wire bonding clamp apparatus of claim 1, wherein, The transmission assembly comprises a driving wheel and a plurality of driven wheels, the driven wheels are arranged on the driven shaft of the clamping assembly, the driving wheel is arranged on a driving shaft, the driving shaft is connected with the driving motor, the driving wheel is connected with the driven wheels through a belt, and the belt is adjusted in tension and guided through a follow-up wheel; when working, the driving motor drives the driving wheel to drive the driven wheels to rotate synchronously, and the driven wheels drive the clamping assembly to rotate.

10. The motor wire bonding clamp apparatus of claim 9, wherein, The follow-up wheels are arranged on adjusting blocks on both sides of the driving wheel, the positions of the follow-up wheels are adjusted through the adjusting blocks, and the adjusting blocks are arranged on the support assembly.

Citation Information

Patent Citations

  • Motor payment to a porter welding jig

    CN206455347U