Winding device for electromagnetic wire production

The mechanism facilitates easy installation and removal of collection rollers using interlocking components and a drive system, addressing the challenge of manual lifting in confined spaces.

CN120308763APending Publication Date: 2025-07-15YANGZHOU SUCHANG ELECTROMECHANICAL CO LTD
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Patent Information

Application Number
CN202510481741.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-07-15

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Abstract

The invention relates to the technical field of winding, in particular to a winding device for electromagnetic wire production, comprising: a bottom plate, the end of which is provided with an inclined plate; a rolling shaft is arranged on the surface of the supporting plate, a fixing block is arranged at the end of the supporting plate, an arc-shaped rod is fixed to the surface of the fixing block, a first transverse moving block and a second transverse moving block are fixed to the end of the arc-shaped rod, a threaded pipe is fixed to the surface of the first transverse moving block, and a threaded rod is fixed to the surface of the second transverse moving block; the longitudinal plate and the transverse plate are arranged at the top of the bottom plate; the device has the beneficial effects that a limiting rod is inserted into an inserting hole to stabilize a limiting plate, a bearing block is located at the top of a bearing rod and is pushed by the bearing rod, so that a longitudinal plate and a transverse plate are located at the top of a through groove, a lifting plate is pushed by a lifting rod, the lifting plate ascends in the through groove, and the lifting plate is lifted in the through groove; after the lifting plate ascends, the pushing block abuts against the end of the stress rod, so that the stress rod drives the groove to move in the moving block.
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Description

Technical Field

[0001] The invention relates to the technical field of winding, in particular to a winding device for electromagnetic wire production. Background Art

[0002] Electromagnetic wire is an insulated wire used to make coils or windings in electrical products, also known as winding wire. Electromagnetic wire is generally used in motors, electrical appliances, instruments, transformers, etc., using the principle of electromagnetic induction to achieve the purpose of converting electrical energy into magnetic energy. Electromagnetic wire must be able to work at high temperatures for a long time and be resistant to chemical corrosion in special atmospheres. In the production process of electromagnetic wire, the electromagnetic wire needs to be wound;

[0003] In the prior art, the patent publication number is CN220200963U, and the name is a winding device for electromagnetic wire production, including a workbench, a winding roller and an anti-winding mechanism, the anti-winding mechanism includes a mounting frame, a driving assembly, a sleeve and a wire ring, the workbench provides installation conditions for the winding roller and the anti-winding mechanism, the mounting frame provides installation conditions for the driving assembly, the electromagnetic wire can be wound by the winding roller, when the electromagnetic wire needs to be wound, the electromagnetic wire is passed through the wire ring and connected to the winding roller, the winding roller and the driving assembly are started, the driving assembly drives the sleeve to reciprocate on the driving assembly, the sleeve drives the wire ring to do reciprocating motion to limit the electromagnetic wire, the electromagnetic wire is wound by the winding roller to prevent the electromagnetic wire from winding, thereby solving the problem that when the electromagnetic wire is wound, the electromagnetic wire is directly wound on the winding roller, which may cause the electromagnetic wire to twist and entangle itself before winding on the winding roller;

[0004] However, the existing winding roller needs to be fixed on the surface of the driving device, and then the winding roller is driven to rotate by the driving device. When replacing the winding roller, the winding roller needs to be removed from the surface of the driving device. Due to the heavy weight of the winding roller, it is normally necessary to use a lifting equipment for lifting. However, in a lower space, it is difficult to remove and install the winding roller when the lifting equipment is not used. Summary of the invention

[0005] The object of the present invention is to provide a winding device for producing electromagnetic wires to solve the problems raised in the above-mentioned background technology.

[0006] To achieve the above object, the present invention provides the following technical solution: a winding device for producing electromagnetic wires, comprising:

[0007] A bottom plate, with an inclined plate disposed at the end of the bottom plate;

[0008] Support plate, with rollers provided on the surface of the support plate, fixing blocks provided at the ends of the support plate, arc-shaped rods fixed to the surfaces of the fixing blocks, a first transverse movement block and a second transverse movement block fixed to the ends of the arc-shaped rods, a threaded tube fixed to the surface of the first transverse movement block, and a threaded rod fixed to the surface of the second transverse movement block; and a longitudinal plate and a transverse plate, provided on the top of the bottom plate.

[0009] Preferably, support rods are fixed to the bottoms of the bottom plate and the inclined plate, through grooves are formed on the surface of the bottom plate, a limiting plate is provided on the top of the bottom plate, a first extension ring and a second extension ring are fixed to the surface of the limiting plate, the first extension ring and the second extension ring are located on both sides of the limiting plate, there are two groups of limiting plates, insertion holes are formed on the surface of the roller between the two groups of limiting plates, and a limiting rod is fixed to the surface of the bottom plate, and the limiting rod can be inserted into the interior of the insertion holes.

[0010] Preferably, a sliding groove is formed on the surface of the bottom plate, the transverse plate is located in the sliding groove, the transverse plate can move in the sliding groove, a longitudinal plate is fixed to the end of the transverse plate, the longitudinal plate moves along with the transverse plate, and the longitudinal plate is located on the top of the bottom plate.

[0011] Preferably, a lifting plate is provided in the through groove, a lifting rod is fixed to the surface of the lifting plate, the other end of the lifting rod is connected to a pushing device, the pushing device can drive the lifting rod to lift, the lifting plate moves up and down along with the lifting rod, and the lifting plate can lift in the through groove.

[0012] Preferably, a clamping groove is formed on the surface of the longitudinal plate, a supporting block is inserted into the clamping groove, the supporting block can move up and down in the clamping groove, a notch is formed at the bottom of the supporting block, a U-shaped rod is fixed to the surface of the supporting block, one end of the U-shaped rod is fixed to the surface of the supporting block, the other end of the U-shaped rod is inserted into the interior of the longitudinal plate, and the other end of the U-shaped rod can telescopically move in the interior of the longitudinal plate.

[0013] Preferably, a limiting ring is fixed to the surface of the U-shaped rod, the limiting ring moves along with the U-shaped rod, the U-shaped rod moves along with the supporting block, when the U-shaped rod is inserted into the interior of the longitudinal plate, the limiting ring abuts against the surface of the longitudinal plate, the supporting block is located on the surface of the bottom plate, the supporting block moves along with the longitudinal plate, the supporting block moves on the surface of the bottom plate, when the supporting block moves to the surface of the through groove, a supporting rod is fixed in the through groove, and the supporting block moves on the surface of the supporting rod, and the supporting rod plays a supporting role for the supporting block.

[0014] Preferably, a groove is formed on the surface of the supporting rod. A moving block is arranged in the groove and can move in the groove. A stress rod is fixed on the surface of the moving block. The end of the stress rod is inserted into the inside of the bottom plate. The stress rod can telescopically move inside the bottom plate. A pushing block is fixed on the surface of the lifting plate. The pushing block moves up and down with the lifting plate. After the pushing block rises, it abuts against the end of the stress rod, causing the stress rod to move. The stress rod drives the moving block to move. The supporting block is located at the top of the groove, and the moving block is located at the bottom of the supporting block. When the moving block moves, the supporting block drops into the groove.

[0015] Preferably, a gear is arranged on the surface of the lifting plate. The gear can rotate on the surface of the lifting plate. The end of the gear is connected to a driving device. The driving device is located inside the lifting plate and can drive the gear to rotate. When the supporting block is located at the top of the lifting plate, the gear is located at the bottom of the limiting plate. Teeth are arranged on the surface of the limiting plate. The teeth on the surface of the gear mesh with the teeth on the surface of the limiting plate, and the gear can drive the limiting plate to rotate.

[0016] Preferably, a plurality of rollers are arranged on the surface of the supporting plate. The rollers can rotate on the surface of the supporting plate. When the supporting plate is located at the bottom of the second extension ring, the second extension ring contacts the rollers on the surface of the supporting plate. Screws are arranged on the surface of the fixing block and are screwed on the surfaces of the fixing block and the supporting plate, so that both ends of the supporting plate are fixed on the surface of the fixing block.

[0017] Preferably, the threaded tube is inserted into the inside of the first transverse moving block and can rotate inside the first transverse moving block. The cross-section of the threaded tube located inside the first transverse moving block is T-shaped. The threaded rod is inserted into the inside of the second transverse moving block and can rotate inside the second transverse moving block. One end of the threaded rod located inside the second transverse moving block has a T-shaped cross-section. The threaded rod is screwed into the inside of the threaded tube. The inside of the threaded tube is empty and is provided with threads. The surface of the threaded rod is provided with threads.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0019] The limiting rod proposed by the present invention is inserted into the insertion hole to stabilize the limiting plate. Moreover, the supporting block is located at the top of the supporting rod and is pushed by the supporting rod, so that the longitudinal plate and the transverse plate are located at the top of the through groove. By pushing the lifting plate with the lifting rod, the lifting plate rises in the through groove. After the lifting plate rises, the pushing block holds against the end of the stress rod, so that the stress rod drives the groove to move in the moving block. After the groove moves out of the moving block, the supporting block falls into the moving block. After the supporting block falls, it no longer supports the bottom of the first extension ring, so that the supporting plate supports the bottom of the second extension ring. Moreover, the teeth on the surface of the gear mesh with the teeth on the surface of the limiting plate. By driving the gear to rotate with the driving device, the rotation of the limiting plate can be realized, so that the winding roller can be quickly installed and removed without the need to lift and without using lifting equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic three-dimensional structure diagram of the present invention.

[0021] Figure 2 It is a schematic structure diagram of another perspective of the present invention.

[0022] Figure 3 It is a schematic structure diagram of the limiting plate of the present invention.

[0023] Figure 4 It is a schematic structure diagram of the bottom plate of the present invention.

[0024] Figure 5 It is a schematic structure diagram of another perspective of the bottom plate of the present invention.

[0025] Figure 6 It is a schematic top view structure diagram of the bottom plate of the present invention.

[0026] Figure 7 For Figure 4 The enlarged schematic diagram of the structure at A in

[0027] Figure 8 For Figure 6 The enlarged schematic diagram of the structure at B in

[0028] Figure 9 It is a schematic structure diagram of the supporting plate of the present invention.

[0029] Figure 10 It is a schematic structure diagram of the transverse moving block of the present invention.

[0030] In the figure: bottom plate 1, support rod 2, inclined plate 3, limit plate 4, tooth 5, first extension ring 6, second extension ring 7, insertion hole 8, chute 9, limit rod 10, vertical plate 11, horizontal plate 12, lifting plate 13, lifting rod 14, through slot 15, limit ring 16, U-shaped rod 17, card slot 18, supporting block 19, notch 20, groove 21, stress rod 22, pushing block 23, moving block 24, supporting rod 25, gear 26, first transverse moving block 27, threaded tube 28, threaded rod 29, arc rod 30, fixed block 31, support plate 32, roller 33, screw 34, second transverse moving block 35, fixed frame 36, pushing plate 37, winch 38. Detailed implementation manners

[0031] In order to clearly and completely describe the objectives, technical solutions of the present invention and make the advantages more clearly understood, the following further elaborates on the embodiments of the present invention with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, rather than all of the embodiments, and are merely used to explain the embodiments of the present invention, not to limit the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of the present invention.

[0032] Please refer to Figures 1 to 10 , the present invention provides a technical solution:

[0033] Embodiment 1: A winding device for the production of electromagnetic wires, comprising: a bottom plate 1, with an inclined plate 3 provided at the end of the bottom plate 1; a support plate 32, with a roller 33 provided on the surface of the support plate 32, a fixed block 31 provided at the end of the support plate 32, an arc rod 30 fixed on the surface of the fixed block 31, a first transverse moving block 27 and a second transverse moving block 35 fixed at the end of the arc rod 30, a threaded tube 28 fixed on the surface of the first transverse moving block 27, and a threaded rod 29 fixed on the surface of the second transverse moving block 35; and a vertical plate 11 and a horizontal plate 12, provided on the top of the bottom plate 1. By pushing the vertical plate 11 and the horizontal plate 12, the horizontal plate 12 moves in the chute 9. After the vertical plate 11 and the horizontal plate 12 move, the limit plate 4 moves along with the vertical plate 11 and the horizontal plate 12. The limit rod 10 is inserted into the insertion hole 8 to stabilize the limit plate 4. And the supporting block 19 is located on the top of the supporting rod 25 and is pushed by the supporting rod 25, so that the vertical plate 11 and the horizontal plate 12 are located on the top of the through slot 15.

[0034] Embodiment 2: On the basis of Embodiment 1, support rods 2 are fixed to the bottom of the bottom plate 1 and the inclined plate 3. A through groove 15 is formed on the surface of the bottom plate 1. A limiting plate 4 is arranged on the top of the bottom plate 1. A first extension ring 6 and a second extension ring 7 are fixed to the surface of the limiting plate 4. The first extension ring 6 and the second extension ring 7 are located on both sides of the limiting plate 4. There are two groups of limiting plates 4. Insertion holes 8 are formed on the surface of the roller between the two groups of limiting plates 4. A limiting rod 10 is fixed to the surface of the bottom plate 1. The limiting rod 10 can be inserted into the interior of the insertion hole 8. Multiple rollers 33 are arranged on the surface of the support plate 32. The rollers 33 can rotate on the surface of the support plate 32. When the support plate 32 is located at the bottom of the second extension ring 7, the second extension ring 7 contacts the rollers 33 on the surface of the support plate 32. Screws 34 are arranged on the surface of the fixing block 31. The screws 34 are screwed on the surface of the fixing block 31 and the surface of the support plate 32, so that both ends of the support plate 32 are fixed to the surface of the fixing block 31. The threaded tube 28 is inserted into the first transverse block 27, and the threaded tube 28 can rotate inside the first transverse block 27. The cross-section of the threaded tube 28 located inside the first transverse block 27 is T-shaped. The threaded rod 29 is inserted into the second transverse block 35, and the threaded rod 29 can rotate inside the second transverse block 35. One end of the threaded rod 29 located inside the second transverse block 35 has a T-shaped cross-section. The threaded rod 29 is screwed into the interior of the threaded tube 28. The interior of the threaded tube 28 is empty, and threads are arranged inside the threaded tube 28. Threads are arranged on the surface of the threaded rod 29. By screwing the threaded tube 28 and the threaded rod 29, the first transverse block 27 and the second transverse block 35 are pushed by the threaded tube 28 and the threaded rod 29, so that the first transverse block 27 and the second transverse block 35 approach the longitudinal plates 11 on both sides respectively, so that the support plate 32 moves to the bottom of the second extension ring 7, and the support plate 32 is fixed to the surface of the fixing block 31 by the screws 34.

[0035] The surface of the bottom plate 1 is provided with a chute 9. The cross plate 12 is located in the chute 9 and can move in the chute 9. A longitudinal plate 11 is fixed at the end of the cross plate 12. The longitudinal plate 11 moves along with the cross plate 12. The longitudinal plate 11 is located on the top of the bottom plate 1. A clamping groove 18 is provided on the surface of the longitudinal plate 11. A supporting block 19 is inserted into the clamping groove 18. The supporting block 19 can move up and down in the clamping groove 18. A notch 20 is provided at the bottom of the supporting block 19. A U-shaped rod 17 is fixed on the surface of the supporting block 19. One end of the U-shaped rod 17 is fixed on the surface of the supporting block 19. The other end of the U-shaped rod 17 is inserted into the inside of the longitudinal plate 11. The other end of the U-shaped rod 17 can telescopically move inside the longitudinal plate 11. A limiting ring 16 is fixed on the surface of the U-shaped rod 17. The limiting ring 16 moves along with the U-shaped rod 17. The U-shaped rod 17 moves along with the supporting block 19. When the U-shaped rod 17 is inserted into the inside of the longitudinal plate 11, the limiting ring 16 abuts against the surface of the longitudinal plate 11. The supporting block 19 is located on the surface of the bottom plate 1 and moves along with the longitudinal plate 11. When the supporting block 19 moves to the surface of the through groove 15, a supporting rod 25 is fixed in the through groove 15. The supporting block 19 moves on the surface of the supporting rod 25. The supporting rod 25 plays a supporting role for the supporting block 19. A groove 21 is provided on the surface of the supporting rod 25. A moving block 24 is arranged in the groove 21. The moving block 24 can move in the groove 21. A stress rod 22 is fixed on the surface of the moving block 24. The end of the stress rod 22 is inserted into the inside of the bottom plate 1. The stress rod 22 can telescopically move inside the bottom plate 1. A top push block 23 is fixed on the surface of the lifting plate 13. The top push block 23 moves up and down along with the lifting plate 13. After the top push block 23 rises, it abuts against the end of the stress rod 22, causing the stress rod 22 to move. The stress rod 22 drives the moving block 24 to move. The supporting block 19 is located on the top of the groove 21, and the moving block 24 is located at the bottom of the supporting block 19. When the moving block 24 moves, the supporting block 19 drops into the groove 21. After the groove 21 moves out of the moving block 24, the supporting block 19 drops into the moving block 24. After the supporting block 19 drops, it no longer supports the bottom of the first extension ring 6, enabling the support plate 32 to support the bottom of the second extension ring 7, and the teeth on the surface of the gear 26 mesh with the teeth 5 on the surface of the limiting plate 4.

[0036] A lifting plate 13 is arranged in the through groove 15. A lifting rod 14 is fixed on the surface of the lifting plate 13. The other end of the lifting rod 14 is connected to a pushing device which can drive the lifting rod 14 to lift. The lifting plate 13 moves up and down along with the lifting rod 14. The lifting plate 13 can lift in the through groove 15. A gear 26 is arranged on the surface of the lifting plate 13. The gear 26 can rotate on the surface of the lifting plate 13. The end of the gear 26 is connected to a driving device which is located inside the lifting plate 13 and can drive the gear 26 to rotate. When the supporting block 19 is located at the top of the lifting plate 13, the gear 26 is located at the bottom of the limiting plate 4. Teeth 5 are arranged on the surface of the limiting plate 4. The teeth on the surface of the gear 26 mesh with the teeth 5 on the surface of the limiting plate 4. The gear 26 can drive the limiting plate 4 to rotate.

[0037] Pull the inclined plate 3 to the surface of the bottom plate 1 through the winch 38 on the surface of the fixing frame 36 for the limiting plate 4. The first extension ring 6 on the surface of the limiting plate 4 rolls onto the surface of the supporting block 19. The supporting block 19 supports at the bottom of the first extension ring 6, making the limiting plate 4 suspended. When the limiting plate 4 moves to the top position of the supporting plate 32, screw the threaded pipe 28 and the threaded rod 29. Push the first transverse moving block 27 and the second transverse moving block 35 through the threaded pipe 28 and the threaded rod 29, making the first transverse moving block 27 and the second transverse moving block 35 approach the longitudinal plates 11 on both sides respectively, making the supporting plate 32 move to the bottom of the second extension ring 7. The supporting plate 32 is fixed on the surface of the fixing block 31 through the screw 34. Due to the limitation of the supporting plate 32, the limiting plate 4 is stabilized on the top of the supporting plate 32. A pushing device is connected to the surface of the longitudinal plate 11. The pushing device pushes the longitudinal plate 11 and the transverse plate 12, making the transverse plate 12 move in the sliding groove 9. After the longitudinal plate 11 and the transverse plate 12 move, the limiting plate 4 moves along with the longitudinal plate 11 and the transverse plate 12. The limiting rod 10 is inserted into the insertion hole 8 to stabilize the limiting plate 4. And the supporting block 19 is located at the top of the supporting rod 25. Pushed by the supporting rod 25, the longitudinal plate 11 and the transverse plate 12 are located at the top of the through groove 15. Push the lifting plate 13 through the lifting rod 14, making the lifting plate 13 rise in the through groove 15. After the lifting plate 13 rises, the top block 23 holds against the end of the stress rod 22, making the stress rod 22 drive the groove 21 to move in the moving block 24. After the groove 21 moves out of the moving block 24, the supporting block 19 drops into the moving block 24. After the supporting block 19 drops, it no longer supports at the bottom of the first extension ring 6, making the supporting plate 32 support at the bottom of the second extension ring 7. And the teeth on the surface of the gear 26 mesh with the teeth 5 on the surface of the limiting plate 4. Driving the gear 26 to rotate through the driving device can realize the rotation of the limiting plate 4. Push the top plate 37 against the surface of the winding roller through the cylinder inside the fixing frame, and the winding roller can be taken off from the inclined plate 3 through the winch 38, so that the winding roller can be quickly installed and removed without lifting.

[0038] Although the above-described illustrative specific embodiments of the present application have been described to enable those skilled in the art to understand the present application, the present application is not limited to the scope of the specific embodiments. For those of ordinary skill in the art, as long as various changes are within the spirit and scope of the present application defined and determined by the appended claims, all applications and creations using the concept of the present application are within the scope of protection.

Claims

1. A coiling device for electromagnetic wire production, characterized in that: Including: A bottom plate (1), with an inclined plate (3) provided at the end of the bottom plate (1); A support plate (32), with rollers (33) provided on the surface of the support plate (32), a fixing block (31) provided at the end of the support plate (32), an arc-shaped rod (30) fixed on the surface of the fixing block (31), a first transverse movement block (27) and a second transverse movement block (35) fixed at the end of the arc-shaped rod (30), a threaded tube (28) fixed on the surface of the first transverse movement block (27), and a threaded rod (29) fixed on the surface of the second transverse movement block (35); and a longitudinal plate (11) and a transverse plate (12), provided on the top of the bottom plate (1).

2. The winding device for electromagnetic wire production according to claim 1, wherein: Support rods (2) are fixed to the bottom of the bottom plate (1) and the inclined plate (3). A through groove (15) is formed on the surface of the bottom plate (1). A limiting plate (4) is provided on the top of the bottom plate (1). A first extension ring (6) and a second extension ring (7) are fixed on the surface of the limiting plate (4). The first extension ring (6) and the second extension ring (7) are located on both sides of the limiting plate (4). There are two groups of limiting plates (4). Insertion holes (8) are formed on the surface of the roller between the two groups of limiting plates (4). A limiting rod (10) is fixed on the surface of the bottom plate (1), and the limiting rod (10) can be inserted into the interior of the insertion hole (8).

3. The rewinding device for electromagnetic wire production according to claim 2, characterized in that: A sliding groove (9) is formed on the surface of the bottom plate (1). The transverse plate (12) is located in the sliding groove (9). The transverse plate (12) can move in the sliding groove (9). A longitudinal plate (11) is fixed at the end of the transverse plate (12). The longitudinal plate (11) moves along with the transverse plate (12). The longitudinal plate (11) is located on the top of the bottom plate (1).

4. The rewinding device for electromagnetic wire production according to claim 3, characterized in that: A lifting plate (13) is provided in the through groove (15). A lifting rod (14) is fixed on the surface of the lifting plate (13). The other end of the lifting rod (14) is connected to a pushing device. The pushing device can drive the lifting rod (14) to lift. The lifting plate (13) moves up and down along with the lifting rod (14). The lifting plate (13) can lift in the through groove (15).

5. The rewinding device for electromagnetic wire production according to claim 4, characterized in that: A clamping groove (18) is formed on the surface of the longitudinal plate (11). A supporting block (19) is inserted in the clamping groove (18). The supporting block (19) can move up and down in the clamping groove (18). A notch (20) is formed at the bottom of the supporting block (19). A U-shaped rod (17) is fixed on the surface of the supporting block (19). One end of the U-shaped rod (17) is fixed on the surface of the supporting block (19). The other end of the U-shaped rod (17) is inserted into the interior of the longitudinal plate (11), and the other end of the U-shaped rod (17) can telescopically move in the interior of the longitudinal plate (11).

6. A winding device for the production of electromagnetic wires according to claim 5, characterized in that: A limiting ring (16) is fixed on the surface of the U-shaped rod (17). The limiting ring (16) moves along with the U-shaped rod (17). The U-shaped rod (17) moves along with the supporting block (19). When the U-shaped rod (17) is inserted into the inside of the longitudinal plate (11), the limiting ring (16) abuts against the surface of the longitudinal plate (11). The supporting block (19) is located on the surface of the bottom plate (1). The supporting block (19) moves along with the longitudinal plate (11). The supporting block (19) moves on the surface of the bottom plate (1). When the supporting block (19) moves to the surface of the through groove (15), a supporting rod (25) is fixed in the through groove (15). The supporting block (19) moves on the surface of the supporting rod (25). The supporting rod (25) plays a supporting role for the supporting block (19).

7. A winding device for the production of electromagnetic wires according to claim 6, characterized in that: A groove (21) is formed on the surface of the supporting rod (25). A moving block (24) is arranged in the groove (21). The moving block (24) can move in the groove (21). A stress rod (22) is fixed on the surface of the moving block (24). The end of the stress rod (22) is inserted into the inside of the bottom plate (1). The stress rod (22) can telescopically move in the inside of the bottom plate (1). A pushing block (23) is fixed on the surface of the lifting plate (13). The pushing block (23) moves up and down along with the lifting plate (13). After the pushing block (23) rises, it abuts against the end of the stress rod (22), causing the stress rod (22) to move. The stress rod (22) drives the moving block (24) to move. The supporting block (19) is located at the top of the groove (21). The moving block (24) is located at the bottom of the supporting block (19). When the moving block (24) moves, the supporting block (19) drops into the groove (21).

8. A winding device for electromagnetic wire production according to claim 7, characterized in that: A gear (26) is arranged on the surface of the lifting plate (13). The gear (26) can rotate on the surface of the lifting plate (13). The end of the gear (26) is connected to a driving device. The driving device is located inside the lifting plate (13). The driving device can drive the gear (26) to rotate. When the supporting block (19) is located at the top of the lifting plate (13), the gear (26) is located at the bottom of the limiting plate (4). Teeth (5) are arranged on the surface of the limiting plate (4). The teeth on the surface of the gear (26) mesh with the teeth (5) on the surface of the limiting plate (4). The gear (26) can drive the limiting plate (4) to rotate.

9. A winding device for the production of electromagnetic wires according to claim 8, characterized in that: A plurality of rollers (33) are arranged on the surface of the supporting plate (32). The rollers (33) can rotate on the surface of the supporting plate (32). When the supporting plate (32) is located at the bottom of the second extension ring (7), the second extension ring (7) contacts the rollers (33) on the surface of the supporting plate (32). Screws (34) are arranged on the surface of the fixing block (31). The screws (34) are screwed on the surface of the fixing block (31) and the surface of the supporting plate (32), so that both ends of the supporting plate (32) are fixed on the surface of the fixing block (31).

10. The winding device for electromagnetic wire production according to claim 9, characterized in that: The threaded pipe (28) is inserted into the inside of the first transverse movement block (27), and the threaded pipe (28) can rotate inside the first transverse movement block (27). The cross-section of the threaded pipe (28) located inside the first transverse movement block (27) is T-shaped. The threaded rod (29) is inserted into the inside of the second transverse movement block (35), and the threaded rod (29) can rotate inside the second transverse movement block (35). One end of the threaded rod (29) located inside the second transverse movement block (35) has a T-shaped cross-section. The threaded rod (29) is screwed into the inside of the threaded pipe (28). The inside of the threaded pipe (28) is empty, and threads are provided inside the threaded pipe (28). Threads are provided on the surface of the threaded rod (29). A fixing frame (36) is fixed on the surface of the bottom plate (1). A winch (38) is provided on the surface of the fixing frame (36). A cylinder is provided inside the fixing frame (36), and the piston rod of the cylinder is connected to a pushing plate (37).

Citation Information

Patent Citations

  • Winding device for electromagnetic wire production

    CN220200963U