New energy automobile drive motor production winding machine

By combining the support rod and the fixing rod, along with the sliding adjustment of the threaded rod, the problem of existing winding devices being unable to limit the winding width and quickly remove the coil is solved, thus achieving an efficient and convenient coil winding process.

CN120710319BActive Publication Date: 2026-04-14CHANGZHOU APULIS EQUIPMENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHANGZHOU APULIS EQUIPMENT TECHNOLOGY CO LTD
Filing Date
2025-06-30
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing winding devices cannot effectively limit the winding width, cannot quickly adjust the spacing between coils, and are difficult to quickly remove after winding is completed.

Method used

The winding width of the coil is limited and adjusted by the support rod and the fixing rod. The threaded rod drives the connecting block to slide and adjust the winding diameter. After the winding is completed, the coil can be quickly removed by sliding the fixing rod and the support rod.

Benefits of technology

It enables precise limiting of coil winding width and rapid unwinding, improving winding efficiency and ensuring the stability and convenience of the coil during the winding process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a new energy automobile driving motor production winding machine, which comprises a base, a motor seat and a fixed plate are fixed on the base respectively, a supporting assembly is movably installed on the side of the motor seat, a movable plate is movably installed on one side of the fixed plate, fixed grooves are formed in the inner walls of the movable plate and the fixed plate, clamping plates are movably installed on the inner walls of the fixed grooves, wire wheels are movably installed between the clamping plates, the supporting assembly comprises a mounting seat, and a fixing seat is fixed on the mounting seat. When the application is used, the supporting rod and the fixing rod are used for limiting and adjusting the winding width of the coil, in addition, the threaded rod drives the connecting block to slide in the connecting groove, the connecting block drives the arc-shaped block to move outward to adjust the diameter of the winding, and finally, the fixing rod and the supporting rod slide horizontally in the opening, and the sliding of the fixing rod and the supporting rod facilitates the quick dismounting of the coil from the arc-shaped seat.
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Description

Technical Field

[0001] This invention relates to the field of winding equipment, specifically a winding machine for producing drive motors for new energy vehicles. Background Technology

[0002] Drive motors are an indispensable part of automobiles. In the production process of drive motors, the wound coils need to be embedded into the wire slots of the stator of the motor, which contains insulating paper. Then the stator is installed on the motor. The coils need to be wound using a winding mechanism. In the early winding stage, different numbers of coils need to be wound using a winding device.

[0003] According to the patent document CN222654997U, an electric bicycle motor winding device includes a base plate, two sets of support plates, and two sets of unwinding rollers. The two sets of unwinding rollers are rotatably mounted on the two sets of support plates, and the two sets of support plates are fixedly mounted on the left and right sides of the base plate. It also includes two sets of upright plates, a rotating shaft, a drive mechanism, and two winding mechanisms. The two sets of upright plates are fixedly mounted on the left and right sides of the base plate, the rotating shaft is rotatably mounted on the two sets of upright plates, the drive mechanism drives the rotating shaft to rotate, and the two winding mechanisms are mounted on the left and right sides of the rotating shaft. This technical solution can wind two coils simultaneously. Compared with the prior art, it has high winding efficiency, is convenient to use, and has high practicality. However, although this solution completes the winding of two coils, it cannot limit the winding width during winding, nor can it quickly adjust the distance between the coils. Furthermore, after winding, the coils cannot be quickly removed from the winding device, which is inconvenient during use. Summary of the Invention

[0004] To address the shortcomings of existing technologies, the present invention aims to provide a winding machine for producing drive motors for new energy vehicles, thereby solving the problems mentioned in the background. The present invention features a novel structure. During use, the winding width of the coil is limited and adjusted by a support rod and a fixing rod. In addition, the threaded rod drives the connecting block to slide inside the connecting groove, and the connecting block pushes the arc-shaped block outward to adjust the diameter of the winding. After the winding is completed, the fixing rod and the support rod slide horizontally inside the opening. The sliding of the support rod and the fixing rod facilitates the quick removal of the coil from the arc-shaped seat.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a winding machine for producing a new energy vehicle drive motor, comprising a base, on which a motor base and a fixing plate are respectively fixed. A support assembly is movably mounted on the side of the motor base, and a movable plate is movably mounted on one side of the fixing plate. Fixing grooves are formed on the inner walls of both the movable plate and the fixing plate. Clamping plates are movably mounted on the inner walls of the fixing grooves. A wire wheel is movably mounted between the clamping plates. The support assembly includes a mounting base, on which a fixing base is fixed. A drive motor is fixed on the motor base, and the drive motor is fixed to the mounting base via an output shaft.

[0006] Furthermore, the mounting base has a limiting groove, and a limiting block is movably installed inside the limiting groove. A movable frame is fixed on the limiting block, and a tension mechanism is fixed between the limiting block and the limiting groove. When the arc-shaped seat moves outward, it pulls the tension mechanism to generate deformation. After deformation, the limiting block drives the arc-shaped seat to move inward at the same time. The tension mechanism generates an inward pulling force, which cooperates with the limiting block to complete the limiting adjustment of the arc-shaped seat position.

[0007] Furthermore, a fixed column is welded to the movable frame, and an arc-shaped seat is welded to one end of the fixed column. An opening is opened on the arc-shaped seat, and a fixed rod and a support rod are movably installed inside the opening. When the arc-shaped seat moves outward, it pulls the tension mechanism to generate deformation. After deformation, the limiting block drives the arc-shaped seat to move inward at the same time. The tension mechanism generates an inward pulling force, which cooperates with the limiting block to complete the limiting adjustment of the position of the arc-shaped seat.

[0008] Furthermore, a fixed tube is welded onto the fixed base, and a movable column is movably installed inside the fixed tube. One end of the movable column is installed inside the fixed tube through a limiting mechanism, and a support column is welded to one end of the movable column. Later, the support column moves through the movable column to push the support rod out from inside the opening, which facilitates the quick disassembly of the coil later.

[0009] Furthermore, a connecting seat is welded onto the support column, the connecting seat is fixed to one end of the fixed rod, an adjusting component is fixed to the connecting seat, a movable seat is fixed to one end of the adjusting component, the movable seat is fixed to one end of the support rod, the adjusting component includes an adjusting column, one end of the adjusting column is fixed to the connecting seat, an adjusting tube is movably installed at one end of the adjusting column, one end of the adjusting tube is fixed to the movable seat, and an adjusting spring is fixedly installed between the adjusting column and the adjusting tube.

[0010] Furthermore, the support column has external threads, and a threaded tube is rotatably installed on the external threads. One end of the threaded tube is in contact with the movable seat. The support rod has a connecting groove, and a connecting block is movably installed inside the connecting groove. The connecting block is in contact with the arc-shaped seat. One end of the rope is wound and installed between the threaded tube and the movable seat. By rotating the threaded tube, the threaded tube rotates on the external threads. The rotation of the threaded tube pushes the movable seat to move, thereby clamping and fixing one end of the rope.

[0011] Furthermore, a threaded rod is rotatably mounted on the support rod, and a ring seat is rotatably mounted on the threaded rod. One end of the connecting block is fixed on the ring seat, and one end of the threaded rod is rotatably mounted inside the connecting groove.

[0012] Furthermore, the base has a groove, and a slider is movably installed inside the groove. One end of the slider is fixed to the bottom of the movable plate. The fixed plate has a slot, and a rotating tube is movably installed inside the slot. A threaded column is rotatably installed on the fixed plate. The clamping plate is horizontally displaced by a reset mechanism and a horizontal component. The reset mechanism generates a reaction force to make the clamping plate clamp and limit the rotating seat. After the spool is installed, one end of the spool is pulled out through one end of the rotating tube. The rotating tube supports the spool while simultaneously squeezing and fixing the spool.

[0013] Furthermore, a fixing block is movably mounted on the threaded column, a support block is movably mounted on the top of the fixing block, a positioning column is installed between the support block and the fixing block, the positioning column is installed inside the support block through a support mechanism, the rotating tube is rotatably mounted on the support block, and one end of the threaded column is mounted on the movable plate through a bearing seat.

[0014] Furthermore, a reset mechanism and a horizontal assembly are fixedly installed on the side of the clamping plate. One end of the reset mechanism and the horizontal assembly is fixed to the inner wall of the fixing groove. A rotating seat is installed between the clamping plates. A connecting column is rotatably installed on the rotating seat. One end of the connecting column is fixed to a wheel. The support column is moved horizontally inside the fixed tube through the movable column. The horizontal movement of the support column causes the pulling limit mechanism to deform. The movement of the movable column provides the necessary space for the movement of the support column. After the fixed rod and the support rod drive the coil to be horizontally removed from the arc-shaped seat.

[0015] The beneficial effects of this invention are:

[0016] In use, the present invention uses a support rod and a fixing rod to limit and adjust the winding width of the coil. In addition, the threaded rod drives the connecting block to slide inside the connecting groove. The connecting block pushes the arc block to move outward to adjust the diameter of the winding. After the winding is completed, the fixing rod and the support rod slide horizontally inside the opening. The sliding of the support rod and the fixing rod makes it easy to quickly remove the coil from the arc seat.

[0017] This invention uses the rotation of a threaded column to move a movable plate. After the movable plate moves, it opens the space between the fixed plate and the movable plate, making it easier to install thread wheels of different widths between the fixed plate and the movable plate. When the rotation of the threaded column moves the movable plate, the threaded column pushes a rotating tube to move along with the movable plate. The movement of the rotating tube is adjusted to match the width of the thread wheel. The upward movement of the rotating tube achieves compression and limiting of the thread rope. When the thread rope is cut later, it is limited by the compression of the rotating tube to prevent the thread rope on the thread wheel from getting tangled at the loose part.

[0018] In this invention, the spool is mounted between clamping plates via bearing seats. The clamping plates move outward under the push of the bearing seats, and the clamping plates are clamped and fixed to the bearing seats under the push of the reset mechanism. The clamping plates and bearing seats cooperate to quickly install bearing seats of different diameters, which facilitates the normal rotation of the spool in the later stage. When the arc-shaped seat moves outward, it pulls the tension mechanism to generate deformation. After deformation, the limiting block drives the arc-shaped seat to move inward at the same time. The tension mechanism generates an inward pulling force, which cooperates with the limiting block to complete the limiting adjustment of the position of the arc-shaped seat. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of a winding machine for producing a new energy vehicle drive motor according to the present invention;

[0020] Figure 2 This is a schematic diagram of the structure of a support component for a winding machine for producing a new energy vehicle drive motor according to the present invention.

[0021] Figure 3 This is a top view cross-sectional structural diagram of the arc-shaped base of a winding machine for producing a new energy vehicle drive motor according to the present invention.

[0022] Figure 4 This is a schematic diagram of the positioning column of a winding machine for producing a new energy vehicle drive motor according to the present invention.

[0023] Figure 5 This is a schematic diagram of the clamping plate of a winding machine for producing a new energy vehicle drive motor according to the present invention.

[0024] Figure 6 This is a schematic diagram of the structure of a limiting block for a winding machine for producing a new energy vehicle drive motor according to the present invention.

[0025] Figure 7This is a schematic diagram of the ring seat structure of a winding machine for producing a new energy vehicle drive motor according to the present invention;

[0026] Figure 8 This is a top view cross-sectional structural diagram of the adjustment component of a winding machine for producing a new energy vehicle drive motor according to the present invention.

[0027] In the diagram: 1. Base; 2. Motor mount; 3. Support assembly; 4. Fixing plate; 5. Movable plate; 6. Fixing groove; 7. Clamping plate; 8. Threaded wheel; 9. Slide groove; 10. Slider; 11. Slot; 12. Rotating tube; 13. Threaded column; 14. Mounting seat; 15. Fixing seat; 16. Limiting groove; 17. Movable frame; 18. Drive motor; 19. Fixing column; 20. Arc-shaped seat; 21. Opening; 22. Fixing tube; 23. Support column; 24. Fixing rod; 25. Support rod; 26. Connecting groove; 2 7. Connecting block; 28. Threaded rod; 29. ​​Connecting seat; 30. Movable seat; 31. Threaded pipe; 32. External thread; 33. Fixed block; 34. Positioning pin; 35. Support block; 36. Support mechanism; 37. Bearing seat; 38. Reset mechanism; 39. Horizontal assembly; 40. Rotating seat; 41. Connecting pin; 42. Limiting block; 43. Pulling mechanism; 44. Movable pin; 45. Limiting mechanism; 46. Adjusting assembly; 47. Ring seat; 48. Adjusting pin; 49. Adjusting pipe; 50. Adjusting spring. Detailed Implementation

[0028] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0029] Please see Figures 1 to 8 This invention provides a technical solution: a winding machine for producing drive motors for new energy vehicles, comprising a base 1, on which a motor base 2 and a fixing plate 4 are respectively fixed. A support assembly 3 is movably installed on the side of the motor base 2, and a movable plate 5 is movably installed on one side of the fixing plate 4. Fixing grooves 6 are opened on the inner walls of both the movable plate 5 and the fixing plate 4. Clamping plates 7 are movably installed on the inner walls of the fixing grooves 6. A wire wheel 8 is movably installed between the clamping plates 7. The support assembly 3 includes a mounting base 14, on which a fixing base 15 is fixed. A drive motor 18 is fixed on the motor base 2. The drive motor 18 is fixed to the mounting base 14 through an output shaft. The drive motor 14 drives the mounting base 14 to rotate through the output shaft. The mounting base 14 completes the winding process in the rotating state.

[0030] In this embodiment, a limiting groove 16 is opened on the mounting base 14, and a limiting block 42 is movably installed inside the limiting groove 16. A movable frame 17 is fixed on the limiting block 42, and a tension mechanism 43 is fixed between the limiting block 42 and the limiting groove 16. A fixed column 19 is welded on the movable frame 17, and an arc-shaped seat 20 is welded to one end of the fixed column 19. An opening 21 is opened on the arc-shaped seat 20, and a fixed rod 24 and a support rod 25 are movably installed inside the opening 21. A fixed tube 22 is welded on the fixed base 15, and a movable column 44 is movably installed inside the fixed tube 22. One end of the movable column 44 is installed inside the fixed tube 22 through a limiting mechanism 45, and a support column 23 is welded to one end of the movable column 44. The limiting mechanism 45 is a limiting spring, which drives the movable column 44 to move in the direction of the mounting base 14. Later, the support column 23 moves through the movable column 44 to push the support rod 25 out from inside the opening 21, which facilitates the quick disassembly of the coil later.

[0031] In this embodiment, a connecting seat 29 is welded onto the support column 23. The connecting seat 29 is fixed to one end of the fixed rod 24. An adjusting component 46 is fixed to the connecting seat 29. A movable seat 30 is fixed to one end of the adjusting component 46. The movable seat 30 is fixed to one end of the support rod 25. The adjusting component 46 includes an adjusting column 48. One end of the adjusting column 48 is fixed to the connecting seat 29. An adjusting tube 49 is movably installed on one end of the adjusting column 48. One end of the adjusting tube 49 is fixed to the movable seat 30. An adjusting spring 50 is fixedly installed between the adjusting column 48 and the adjusting tube 49. An external thread 32 is opened on the support column 23. A threaded tube 31 is rotatably installed on the external thread 32. One end of the threaded tube 31 movably contacts the movable seat 30. A connecting groove 26 is opened on the support rod 25. A connecting block 27 is movably installed inside the connecting groove 26. The connecting block 27 is in movable contact with the arc-shaped seat 20. A threaded rod 28 is rotatably installed on the support rod 25. A ring seat 47 is rotatably installed on the threaded rod 28. One end of the connecting block 27 is fixed on the ring seat 47, and one end of the threaded rod 28 is rotatably installed inside the connecting groove 26. The rotation of the threaded rod 28 causes the ring seat 47 to move inside the connecting groove 26. The connecting block 27 pushes the arc-shaped seat 20 outward to complete the diameter adjustment. The arc-shaped seat 20 moves outward under the push of the connecting block 27. The tension mechanism 43 cooperates with the limiting block 42 to push and limit the arc-shaped block 20 in the opposite direction to the connecting block 27. Thus, the limiting block 42 and the connecting block 27 cooperate to complete the rapid adjustment of the position of the arc-shaped seat 20.

[0032] In this embodiment, a groove 9 is formed on the base 1, and a slider 10 is movably installed inside the groove 9. One end of the slider 10 is fixed to the bottom of the movable plate 5. A slot 11 is formed on the fixed plate 4, and a rotating tube 12 is movably installed inside the slot 11. A threaded column 13 is rotatably installed on the fixed plate 4, and a fixing block 33 is movably installed on the threaded column 13. A support block 35 is movably installed on the top of the fixing block 33. A positioning column 34 is installed between the support block 35 and the fixing block 33. The positioning column 34 is installed inside the support block 35 through a support mechanism 36. The rotating tube 12 is rotatably installed on the support block 35. One end of the threaded column 13 is installed on the movable plate 5 through a bearing seat 37. On plate 5, a reset mechanism 38 and a horizontal component 39 are fixedly installed on the side of clamping plate 7. One end of the reset mechanism 38 and the horizontal component 39 is fixed on the inner wall of the fixing groove 6. A rotating seat 40 is installed between clamping plates 7. A connecting column 41 is rotatably installed on the rotating seat 40. One end of the connecting column 41 is fixed on the thread wheel 8. Both the support mechanism 36 and the reset mechanism 38 are springs. The support mechanism 36 pushes the support block 35 to move upward. The support block 35 pushes the rotating tube 12 to always squeeze and limit the line on the thread wheel 8. In addition, the rotating tube 12 provides a support auxiliary point for the movement of the line, which facilitates the later winding and installation of the line between the arc-shaped seats 20.

[0033] In use, the threaded column 13 is first rotated. As the threaded column 13 rotates on the fixed plate 4, one end of the threaded column 13 pushes the movable plate 5 to move via the bearing seat 37. When the movable plate 5 moves, the slider 10 moves inside the groove 9. When the movable plate 5 and the fixed plate 4 are opened, it is convenient to install the wire wheel 8 inside the clamping plate 7 via the connecting column 41 and the rotating seat 40. The width between the fixed plate 4 and the movable plate 5 is adjusted according to the width of the wire wheel 8. After the wire wheel 8 is installed between the clamping plates 7, the rotating seat 40 pushes the clamping plate 7. The clamping plate 7 is then water-controlled by the reset mechanism 38 and the horizontal assembly 39. The horizontal displacement and reset mechanism 38 generate a reaction force to make the clamping plate 7 complete the clamping and limiting of the rotating seat 40. After the thread wheel 8 is installed, one end of the thread rope on the thread wheel 8 is pulled out through one end of the rotating tube 12. The rotating tube 12 is adjusted synchronously according to the width between the movable plate 5 and the fixed plate 4, so that the rotating tube 12 completes the limiting support of the thread rope according to the width of the thread wheel 8. One end of the thread rope is wound and installed between the threaded tube 31 and the movable seat 30. By rotating the threaded tube 31, the threaded tube 31 rotates on the external thread 32. The rotation of the threaded tube 31 pushes the movable seat 30 to move, and at the same time, it completes the clamping and fixing of one end of the thread rope.

[0034] By adjusting the width between the fixed rod 24 and the support rod 25 to adjust the width of the coil, when the threaded tube 31 is pushed to move the movable seat 30, the support rod 25 moves towards the connecting seat 29 under the drive of the movable seat 30. When the movable seat 30 moves towards the connecting seat 29, the adjusting column 48 retracts inside the adjusting tube 49, and the adjusting column 48 completes the compression and contraction of the adjusting spring 50. The adjustment of the distance between the movable seat 30 and the connecting seat 29 is completed by the contraction of the adjusting column 48 in the adjusting tube 49. After the position of the movable seat 30 is adjusted, the support rod 25 moves towards the connecting seat 29. The distance between the support rod 25 and the fixed rod 24 is fixed. When it is necessary to adjust the diameter between the arc-shaped seats 20, the threaded rod 28 is rotated. The threaded rod 28 drives the ring seat 47 to move inside the connecting groove 26. The ring seat 47 drives the connecting block 27 to move. After the connecting block 27 moves outward, it pushes the arc-shaped seats 20 to expand outward to adjust the diameter. When the arc-shaped seats 20 move outward, it pulls the tension mechanism 43 to deform. After deformation, the limiting block 42 drives the arc-shaped seats 20 to move inward at the same time. The tension mechanism 43 generates an inward pulling force, which cooperates with the limiting block 42 to complete the adjustment. To limit the position adjustment of the arc-shaped seat 20, during the winding of the rope, the drive motor 18 is started to drive the mounting seat 14 to rotate. The mounting seat 14 rotates slowly, causing the rope to slowly wind between the arc-shaped seats 20 in the early stage. When the winding quantity can be limited and fixed by the arc-shaped seat 20, the rotation speed of the arc-shaped seat 20 is increased. Through the rotation of the arc-shaped seat 20, the coil is wound between the support rod 25 and the fixed rod 24. After the winding is completed, the support column 23 is moved horizontally inside the fixed tube 22 through the movable column 44. The horizontal movement of the support column 23 pulls the limiting mechanism 45. Pulling and deforming, the movement of the movable column 44 provides the necessary space for the movement of the support column 23. As the fixed rod 24 and the support rod 25 drive the coil to be horizontally removed from the arc-shaped seat 20, the support rod 25 moves out from the inside of the opening 21, and the coil is quickly disassembled from the support rod 25 by moving it left and right. After the coil is wound, the rope on the spool 8 is cut. After the rope is cut, it loses its support force. The support mechanism 36 pushes the rotating tube 12 to move upward and squeezes and fixes one end of the rope on the spool 8 for limiting and fixing, thereby avoiding the rope from loosening on the spool 8 and causing entanglement later.

[0035] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0036] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A winding machine for producing drive motors for new energy vehicles, comprising a base (1), characterized in that: A motor base (2) and a fixing plate (4) are fixed on the base (1). A support assembly (3) is movably installed on the side of the motor base (2). A movable plate (5) is movably installed on one side of the fixing plate (4). Fixing grooves (6) are opened on the inner walls of both the movable plate (5) and the fixing plate (4). A clamping plate (7) is movably installed on the inner wall of the fixing groove (6). A wire wheel (8) is movably installed between the clamping plates (7). The support assembly (3) includes a mounting base (14). A fixing base (15) is fixed on the mounting base (14). A drive motor (18) is fixed on a motor base (2). The drive motor (18) is fixed on a mounting base (14) via an output shaft. A limit groove (16) is opened on the mounting base (14). A limit block (42) is movably installed inside the limit groove (16). A movable frame (17) is fixed on the limit block (42). A tension mechanism (43) is fixed between the limit block (42) and the limit groove (16). A fixed column (19) is welded on the movable frame (17). An arc-shaped seat (20) is welded to one end of the fixed column (19). An opening (21) is provided on the shaped base (20). A fixed rod (24) and a support rod (25) are movably installed inside the opening (21). A fixed column (19) is welded onto the movable frame (17). An arc-shaped base (20) is welded to one end of the fixed column (19). An opening (21) is provided on the arc-shaped base (20). A fixed rod (24) and a support rod (25) are movably installed inside the opening (21). A connecting seat (29) is welded onto the support column (23). The connecting seat (29) is fixed to one end of the fixed rod (24). An adjustment component (46) is fixed on (29). One end of the adjustment component (46) is fixed with a movable seat (30). The movable seat (30) is fixed to one end of the support rod (25). The adjustment component (46) includes an adjustment column (48). One end of the adjustment column (48) is fixed on the connecting seat (29). An adjustment tube (49) is movably installed on one end of the adjustment column (48). One end of the adjustment tube (49) is fixed on the movable seat (30). An adjustment spring (50) is fixedly installed between the adjustment column (48) and the adjustment tube (49).

2. The winding machine for producing a new energy vehicle drive motor according to claim 1, characterized in that: The support column (23) has an external thread (32), and a threaded tube (31) is rotatably installed on the external thread (32). One end of the threaded tube (31) is in contact with the movable seat (30). The support rod (25) has a connecting groove (26), and a connecting block (27) is movably installed inside the connecting groove (26). The connecting block (27) is in contact with the arc-shaped seat (20).

3. A winding machine for producing drive motors for new energy vehicles according to claim 1, characterized in that: A threaded rod (28) is rotatably mounted on the support rod (25), and a ring seat (47) is rotatably mounted on the threaded rod (28). One end of the connecting block (27) is fixed on the ring seat (47), and one end of the threaded rod (28) is rotatably mounted inside the connecting groove (26).

4. A winding machine for producing drive motors for new energy vehicles according to claim 1, characterized in that: The base (1) has a groove (9), and a slider (10) is movably installed inside the groove (9). One end of the slider (10) is fixed to the bottom of the movable plate (5). The fixed plate (4) has a slot (11), and a rotating tube (12) is movably installed inside the slot (11). A threaded column (13) is rotatably installed on the fixed plate (4).

5. A winding machine for producing drive motors for new energy vehicles according to claim 4, characterized in that: A fixing block (33) is movably mounted on the threaded column (13). A support block (35) is movably mounted on the top of the fixing block (33). A positioning column (34) is installed between the support block (35) and the fixing block (33). The positioning column (34) is installed inside the support block (35) through a support mechanism (36). The rotating tube (12) is rotatably mounted on the support block (35). One end of the threaded column (13) is mounted on the movable plate (5) through a bearing seat (37).

6. A winding machine for producing drive motors for new energy vehicles according to claim 1, characterized in that: A reset mechanism (38) and a horizontal component (39) are fixedly installed on the side of the clamping plate (7). One end of the reset mechanism (38) and the horizontal component (39) is fixed on the inner wall of the fixing groove (6). A rotating seat (40) is installed between the clamping plates (7). A connecting column (41) is rotatably installed on the rotating seat (40). One end of the connecting column (41) is fixed on the wheel (8).

Citation Information

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