Winding device for bus production

By designing a busbar winding device including support components, solid wire components, wiring components and driving components, the problems of uneven, stacked and loose busbar winding in the prior art are solved, and efficient and stable busbar winding is achieved.

CN222947848UActive Publication Date: 2025-06-06ANHUI SHENGSAI REMANUFACTURING TECH CO LTD
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Patent Information

Application Number
CN202421983210.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-06-06
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

The existing bus winding device cannot achieve uniform winding of the bus, which can easily lead to the accumulation and looseness of the bus, affecting the winding efficiency and quality, and at the same time, it is cumbersome to disassemble and assemble.

Method used

A winding device for busbar production is designed, including support components, solid wire components, wiring components and drive components. Through the coordinated work of these components, the uniform winding and tight winding of the busbar are realized, ensuring stable installation and rapid disassembly of the winding drum.

Benefits of technology

The device can quickly clamp and remove the reel, ensuring that the busbar is evenly wound, avoiding stacking and loosening, and improving the reel efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a winding device for bus production, which comprises a control table, a plurality of supports fixed at four corners of the bottom of the control table, a support component arranged on the control table, a winding drum mounted on the support component, and two wire fixing components arranged on two end surfaces of the winding drum, according to the winding device for bus production, through the arrangement of the supporting assembly, a winding drum can be conveniently and rapidly disassembled and assembled, it is avoided that much time needs to be consumed for disassembling and assembling of the winding drum, the winding drum can be conveniently and rapidly disassembled and assembled, and the winding drum can be conveniently and rapidly disassembled and assembled; the overall winding efficiency of the bus is improved, under the cooperation of the wiring assembly and the wire fixing assembly, the bus can be stably and evenly wound on the winding drum, it is guaranteed that the winding quality of the bus is good, and the situation that the bus is loosened in winding is prevented.
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Description

Technical Field

[0001] The utility model relates to the technical field of busbar production, in particular to a winding device for busbar production. Background Art

[0002] A busbar refers to a common passage to which several devices are connected in the form of parallel branches.

[0003] The busbars need to be coiled and stored after production to save storage space and facilitate the subsequent transportation of the busbars.

[0004] However, the existing busbar winding device has some defects or shortcomings:

[0005] At present, when the busbar is wound, the busbar cannot be evenly distributed and wound on the winding drum, and it is easy to limit the end of the busbar after the busbar is wound, so that the busbar is easy to pile up on the winding drum during winding, and the winding space of the winding drum cannot be fully utilized, which affects the winding effect of the busbar. After the busbar is wound, the busbar is easy to become loose on the winding drum, which causes the subsequent use of the busbar to cause knots;

[0006] At the same time, the current winding drum is generally installed and disassembled by bolts, which makes the disassembly and assembly of the winding drum before and after the winding operation more complicated and inconvenient, thus affecting the overall winding efficiency of the busbar. Utility Model Content

[0007] The utility model aims to provide a winding device for busbar production to solve the above problems.

[0008] In order to achieve the above-mentioned purpose, the embodiment of the utility model provides a busbar production winding device, comprising: a console, a plurality of supports fixed at the four corners of the bottom of the console, a support assembly arranged on the console, a winding drum installed on the support assembly, two wire fixing assemblies arranged at both end surfaces of the winding drum, a wiring assembly and a wiring assembly arranged on the console in sequence, and a driving assembly installed on the wiring assembly and the support assembly;

[0009] The wiring assembly is located between the wiring assembly and the support assembly, wherein

[0010] The support assembly is suitable for clamping the winding drum to fix the winding drum;

[0011] The two wire fixing components are suitable for clamping the head and tail ends of the peripheral busbar respectively;

[0012] The driving assembly is suitable for driving the wiring assembly and the winding drum to move at the same frequency;

[0013] The wiring assembly is suitable for carrying the peripheral busbar to move back and forth laterally along the winding surface of the winding drum, so that the peripheral busbar is evenly attached to the winding surface of the winding drum.

[0014] Further, the support assembly includes a first support plate connected to the console, two limit slots provided on the console on a side away from the first support plate, an adjustment plate movably mounted in the two limit slots, a second support plate mounted on the adjustment plate, two rotating shafts respectively mounted on the first support plate and the second support plate at the same height, two support plates respectively mounted on opposite sides of the two rotating shafts, and a plurality of positioning blocks respectively mounted circumferentially on the two support plates;

[0015] A plurality of positioning blocks respectively penetrate through the two end surfaces of the winding drum.

[0016] Furthermore, the wire fixing assembly includes a wire fixing groove opened on the winding drum, a wire fixing frame installed in the wire fixing groove, positioning plates connected to both sides of the wire fixing frame, a wire pressing plate arranged in the wire fixing frame, two racks respectively fitted on opposite sides of the two positioning plates, tooth blocks connected to both sides of the wire pressing plate and meshing with the two racks, a lower tooth plate installed on the wire fixing frame, an upper tooth plate fixed to the bottom of the wire pressing plate, a control groove opened on the end surface of the winding drum and connected to the wire fixing groove, and an L-shaped control rod with one end connected to the wire pressing plate;

[0017] The other end of the L-shaped control rod can be movably extended to the outside of the control groove.

[0018] Further, the wiring assembly includes a first bracket mounted on the upper surface of the console, a reciprocating screw rod rotatably connected to the first bracket, a control block with an upper end spirally mounted on the reciprocating screw rod, a crossbar mounted in the first bracket and located below the reciprocating screw rod, a control frame connected to the upper surface of the control block, and two control pulleys rotatably mounted in the control frame in parallel;

[0019] The lower end of the control block is slidably mounted on the cross bar.

[0020] Furthermore, the support assembly also includes a positioning seat installed on the adjustment plate, a movable groove provided on the positioning seat and the adjustment plate, a plug plate movably installed in the movable groove, one end of which is fixedly connected to two return springs on the top of the plug plate, and the other ends of the two return springs are connected to the positioning seat in the movable groove, a slot provided on the console, a through groove provided on the positioning seat, and a fastener connected to the outer wall of the plug plate through the through groove;

[0021] The inserting plate passes through the adjusting plate and is slidably inserted into the slot.

[0022] Further, the driving assembly includes a mounting seat mounted on the first support plate, a driving motor arranged on the mounting seat, two toothed wheels respectively fixedly sleeved on one of the rotating shafts and one end of the reciprocating screw rod, and a toothed belt meshingly sleeved on the two toothed wheels;

[0023] The output end of the driving motor is connected to the toothed wheel on the back side of the first supporting plate.

[0024] Further, the alignment assembly includes a second bracket mounted on the upper surface of the console, two guide rods fixed in the second bracket, two guide rings movably mounted on the two guide rods, a positioning frame connected between the two guide rings, two positioning pulleys rotatably connected to the positioning frame, a plurality of ball grooves provided on the inner walls of the two guide rings, a plurality of rotating beads movably mounted in the plurality of ball grooves, and a plurality of guide grooves provided outside the two guide rods;

[0025] A plurality of the rotating balls are respectively and movably clamped in a plurality of the guide grooves.

[0026] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:

[0027] The busbar production winding device can quickly complete the clamping of the winding drum through the support assembly, and can ensure that the installation of the winding drum before the busbar is wound up, and the removal of the winding drum after the busbar is wound up are convenient and quick, avoiding the need to spend a lot of time on the disassembly and installation of the winding drum, thereby improving the overall winding efficiency of the busbar.

[0028] The busbar production winding device can clamp the end of the busbar before winding and the tail end after winding through the wire fixing assembly, so that when the winding drum rotates to wind the busbar, the busbar can be tightly wound around the winding drum, avoiding the busbar winding being affected by the unstable fixing of the end of the busbar during winding, and the busbar becoming loose due to the unstable fixing of the tail end during the transportation process after winding, thereby ensuring the winding quality of the busbar by the winding drum and preventing the busbar from being tangled due to looseness during subsequent use.

[0029] The busbar production winding device drives the busbar to move back and forth through the wiring assembly, so that the busbar can be evenly wound and distributed on the winding drum during the movement, avoiding the busbar being wound and wound at a fixed position of the winding drum during winding, resulting in accumulation of the busbar, and efficiently utilizing the storage space of the winding drum, thereby improving the winding effect and quality of the busbar by the winding drum. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The utility model is further described below in conjunction with the accompanying drawings and embodiments.

[0031] Figure 1 Shows a stereogram of the utility model;

[0032] Figure 2 A three-dimensional view of the utility model at another angle is shown;

[0033] Figure 3 Shows a partial stereoscopic view of the utility model Figure 1 ;

[0034] Figure 4 Shows a partial stereoscopic view of the utility model Figure 2 ;

[0035] Figure 5 A partially cutaway perspective view of the utility model is shown;

[0036] Figure 6 A partially exploded stereogram of the utility model is shown;

[0037] Figure 7 The utility model is shown Figure 3 A magnified image of point A;

[0038] Figure 8 The utility model is shown Figure 3 Enlarged view of point B.

[0039] In the figure

[0040] 1. Console; 2. Support; 3. Support assembly; 4. Winding drum; 5. Wire fixing assembly; 7. Wiring assembly; 8. Wire fixing assembly; 9. Driving assembly; 10. First support plate; 11. Second support plate; 12. Rotating shaft; 13. Support plate; 14. Positioning block; 16. Adjusting plate; 17. Limiting groove; 18. Guide; 19. Positioning seat; 20. Movable groove; 21. Insert plate; 22. Reset spring; 23. Slot; 24. Through slot; 25. Fast dial; 26. Wire fixing slot; 27. Wire fixing frame; 28. Positioning plate; 2 9. Pressing plate; 30. Rack; 31. Tooth block; 32. Lower tooth plate; 33. Upper tooth plate; 34. Control groove; 35. L-shaped control rod; 36. First bracket; 37. Reciprocating screw rod; 38. Control block; 40. Cross bar; 41. Control frame; 42. Mounting seat; 43. Drive motor; 44. Toothed wheel; 45. Toothed belt; 46. Second bracket; 47. Guide rod; 48. Guide ring; 49. Positioning frame; 50. Positioning pulley; 51. Ball groove; 52. Turning ball; 53. Guide groove; 54. Control pulley. DETAILED DESCRIPTION

[0041] Now the utility model is further described in detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, which only illustrate the basic structure of the utility model in a schematic manner, and therefore only show the components related to the utility model.

[0042] See also Figure 1 , Figure 1 Shows a three-dimensional diagram of the utility model; please refer to Figure 2 , Figure 2 Shows a three-dimensional view of the utility model at another angle; please refer to Figure 3 , Figure 3 Shows a partial stereoscopic view of the utility model Figure 1 ; see Figure 4 , Figure 4 Shows a partial stereoscopic view of the utility model Figure 2 ; see Figure 5 , Figure 5 Shows a partially cutaway stereoscopic view of the present invention; see Figure 6 , Figure 6 A partial exploded perspective view of the present invention is shown; see Figure 7 , Figure 7 The utility model is shown Figure 3 See the enlarged view of point A in Figure 8 , Figure 8 The utility model is shown Figure 3 The enlarged view of point B; Figure 1-8 As shown, a busbar production winding device comprises: a console 1, a plurality of supports 2 fixed at the four corners of the bottom of the console 1, a support assembly 3 arranged on the console 1, a winding drum 4 installed on the support assembly 3, two wire fixing assemblies 5 arranged on both end surfaces of the winding drum 4, a wiring assembly 7 and a wiring assembly 8 arranged on the console 1 in sequence, and a driving assembly 9 installed on the wiring assembly 7 and the support assembly 3;

[0043] The wiring assembly 7 is located between the wiring assembly 8 and the support assembly 3, wherein

[0044] The support assembly 3 is suitable for clamping the winding drum 4 to fix the winding drum 4;

[0045] The two wire fixing components 5 are suitable for clamping the head and tail ends of the peripheral busbar respectively;

[0046] The driving assembly 9 is suitable for driving the wiring assembly 7 and the winding drum 4 to move at the same frequency;

[0047] The wiring assembly 7 is suitable for carrying the external busbar and moving back and forth along the winding surface of the winding drum 4, so that the external busbar can be evenly attached to the winding surface of the winding drum 4. When the busbar is wound, the support assembly 3 can be used to realize a detachable and quick assembly and installation method of the winding drum 4, thereby ensuring that the winding drum 4 is erected before the busbar is wound and the winding drum 4 is dismantled after the busbar is wound. It is convenient and quick to avoid the need to spend a lot of time on the disassembly and assembly of the winding drum 4, thereby improving the overall winding efficiency of the busbar, ensuring the stability of the winding drum 4 after assembly, and improving the quality of the winding drum 4 when the busbar is wound; and before the winding drum 4 is wound, the end of the busbar can be passed through the fixed line assembly 8 and the wiring assembly 7 at one time, and fixed on the winding drum 4 through one of the fixed line assemblies 5. The fixed line assembly 5 can firmly connect the end of the busbar with the winding drum 4, so that when the winding drum 4 rotates to wind the busbar, the busbar can be tightly wrapped around the winding drum 4. The busbar is wound and after the busbar is wound, the end of the busbar can be fixed by another fixed wire component 5, so that the busbar will not be loose during the winding and transportation process after the winding is completed, ensuring the winding quality of the busbar by the winding drum 4 and preventing the subsequent busbar from being knotted due to looseness when used; while winding, the wiring component 7 can drive the busbar to move back and forth, so that the busbar can be evenly wound and distributed on the winding drum 4 during the movement, avoiding the busbar from being wound and wound at the fixed position of the winding drum 4 during winding, resulting in the accumulation of the busbar, thereby improving the winding effect of the winding drum 4 on the busbar; while the wiring component 7 drives the busbar to move, the fixed wire component 8 can limit the height of the end of the busbar on the wiring component 7 away from the winding drum 4, so that the busbar can enter the wiring component 7 horizontally, thereby improving the smoothness of the busbar moving in the wiring component 7, reducing the wear of the busbar caused by the activity of the wiring component 7 in the wiring component 7, and improving the winding quality of the busbar.

[0048] Optionally, the support assembly 3 includes a first support plate 10 connected to the console 1, two limit slots 17 provided on the console 1 on a side away from the first support plate 10, an adjustment plate 16 movably installed in the two limit slots 17, a second support plate 11 installed on the adjustment plate 16, two rotating shafts 12 respectively installed on the first support plate 10 and the second support plate 11 at the same height, two support plates 13 respectively installed on opposite sides of the two rotating shafts 12, and a plurality of positioning blocks 14 respectively installed circumferentially on the two support plates 13;

[0049] A plurality of positioning blocks 14 respectively penetrate through the two end surfaces of the winding drum 4. Before winding the busbar, the winding drum 4 is placed between the two supporting disks 13, and the plurality of positioning blocks 14 of the supporting disk 13 on the first support plate 10 are inserted into the end surface of one side of the winding drum 4. Then, the second support plate 11 is pushed so that the second support plate 11 is close to the winding drum 4, and the plurality of positioning blocks 14 of the supporting disk 13 on the second support plate 11 are inserted into the end surface of the other side of the winding drum 4, so that the winding drum 4 and the plurality of positioning blocks 14 are interference fit to complete the support of the winding drum 4. The winding drum 4 is easy and quick to assemble, and the two rotating shafts 12 are convenient to drive the two supporting disks 13 to control the winding drum 4 to rotate to wind up the busbar under the control of the driving assembly 9. The rotation and winding of the winding drum 4 is relatively stable, which prevents the winding drum 4 from shaking and affecting the winding quality of the busbar.

[0050] Optionally, the wire fixing assembly 5 includes a wire fixing groove 26 opened on the winding drum 4, a wire fixing frame 27 installed in the wire fixing groove 26, positioning plates 28 connected to both sides of the wire fixing frame 27, a wire pressing plate 29 arranged in the wire fixing frame 27, two racks 30 respectively installed on the opposite sides of the two positioning plates 28, tooth blocks 31 connected to both sides of the wire pressing plate 29 and meshing with the two racks 30, a lower tooth plate 32 installed on the wire fixing frame 27, an upper tooth plate 33 fixed on the bottom of the wire pressing plate 29, a control groove 34 opened on the end surface of the winding drum 4 and connected to the wire fixing groove 26, and an L-shaped control rod 35 with one end connected to the wire pressing plate 29;

[0051] The other end of the L-shaped control rod 35 can be movably extended to the outside of the control groove 34. After the busbar passes through the wiring assembly 8 and the wiring assembly 7, the end of the busbar can be inserted between the wire fixing frame 27 and the wire pressing plate 29 on one of the wire fixing assemblies 5, and then the L-shaped control rod 35 is pressed downward, so that the L-shaped control rod 35 controls the wire pressing plate 29 to move downward, so that the upper tooth plate 33 at the bottom of the wire pressing plate 29 and the lower tooth plate 32 on the wire fixing frame 27 will contact the busbar, completing the clamping of the busbar end, and after the busbar is rolled up, the busbar can be inserted between the wire fixing frame 27 and the wire pressing plate 29 on another wire fixing assembly 5 for clamping, so that the busbar can be rolled up. The busbar will not become loose during winding, thus preventing the subsequent busbar from being tangled during use and transportation. At the same time, when the wire pressing plate 29 moves downward, since the positioning plate 28 has a certain toughness, the tooth block 31 will move together with the wire pressing plate 29 when it moves downward, and the tooth block 31 will squeeze the racks 30 on the two positioning plates 28, and cause the two positioning plates 28 to deform and squeeze open to both sides. When the wire pressing plate 29 completes the fixation of the busbar, the racks 30 on the two positioning plates 28 will engage and clamp the two tooth blocks 31, limiting the movement of the wire pressing plate 29, thereby ensuring the clamping effect of the wire fixing component 5 on the busbar, and the wire fixing component 5 will not separate from the busbar when the busbar is wound up, thereby ensuring the winding effect of the busbar.

[0052] Optionally, the wiring assembly 7 includes a first bracket 36 mounted on the upper surface of the console 1, a reciprocating screw rod 37 rotatably connected to the first bracket 36, a control block 38 with an upper end spirally mounted on the reciprocating screw rod 37, a cross bar 40 mounted in the first bracket 36 and located below the reciprocating screw rod 37, a control frame 41 connected to the upper surface of the control block 38, and two control pulleys 54 rotatably mounted in parallel in the control frame 41;

[0053] The lower end of the control block 38 is slidably mounted on the cross bar 40. Before the busbar is fixed on the winding drum 4 for winding by the wire fixing assembly 5, the end of the busbar can be passed through the gap between the two control pulleys 54. Thus, under the control of the driving assembly 9, the winding drum 4 can rotate to wind the busbar, and can simultaneously drive the reciprocating screw rod 37 to rotate, so that the control block 38 can move in the first bracket 36. Under the restriction and guidance of the cross bar 40, the control block 38 will not rotate together with the reciprocating screw rod 37, but will move back and forth along the cross bar 40 in the first bracket 36, so that when winding, the control block 38 can drive the control frame 41 and the two control pulleys 54 inside it to move back and forth. Under the restriction of the two control pulleys 54, the busbar can be controlled to move synchronously with the movement of the control pulley 54, so that the busbar can be evenly wound on the winding drum 4, avoiding the busbar from being wound up at a single position on the winding drum 4, affecting the winding effect of the busbar.

[0054] Optionally, the support assembly 3 further includes a positioning seat 19 installed on the adjustment plate 16, a movable groove 20 provided on the positioning seat 19 and the adjustment plate 16, a plug plate 21 movably installed in the movable groove 20, two return springs 22 fixedly connected at one end to the top of the plug plate 21, and the other ends of the two return springs 22 are connected to the positioning seat 19 in the movable groove 20, a slot 23 provided on the console 1, a through groove 24 provided on the positioning seat 19, and a fastener 25 passing through the through groove 24 and connected to the outer wall of the plug plate 21;

[0055] The insert plate 21 passes through the adjusting plate 16 and is slidably inserted into the slot 23. When the previous winding drum 4 completes the winding of the busbar and a new winding drum 4 needs to be installed, the quick-acting lever 25 can be pulled upward to drive the insert plate 21 to move upward in the movable groove 20, so that the lower end of the insert plate 21 is disengaged from one of the slots 23, and the insert plate 21 compresses the two return springs 22 in the movable groove 20. Then, the user can pull the adjusting plate 16 to drive the second support plate 11 to move away from the first support plate 10, so that the support plate 13 on the second support plate 11 is disengaged from the winding drum 4 that has completed the winding. At this time, the winding drum 4 can be removed and the unwound busbar can be removed. The wire winding drum 4 is placed between the two support plates 13, and the several positioning blocks 14 on the two support plates 13 are aligned with the end surface of the winding drum 4, and then the adjusting plate 16 is pushed to drive the second support plate 11 and the support plate 13 at its upper end to move close to the first support plate 10, so that the two support plates 13 are close to each other and the winding drum 4 is limited and fixed with the cooperation of the several positioning blocks 14. At the same time, under the elastic force of the two return springs 22, the plug plate 21 can be pushed to move downward and enter the slot 23, completing the restriction of the position of the adjusting plate 16, ensuring the stability of the winding drum 4 when winding, and the overall disassembly and assembly of the winding drum 4 is relatively convenient and quick, which is conducive to improving the winding efficiency of the busbar.

[0056] Optionally, the driving assembly 9 includes a mounting seat 42 mounted on the first support plate 10, a driving motor 43 disposed on the mounting seat 42, two toothed wheels 44 respectively fixedly sleeved on one of the rotating shafts 12 and one end of the reciprocating screw rod 37, and a toothed belt 45 meshingly sleeved on the two toothed wheels 44;

[0057] The output end of the driving motor 43 is connected to the toothed wheel 44 on the back of the first support plate 10. When the winding drum 4 is installed on the supporting assembly 3, the driving motor 43 is started, so that it drives one of the rotating shafts 12 to rotate, which can drive the winding drum 4 to rotate for winding. When the rotating shaft 12 rotates, it will also drive one of the toothed wheels 44 to rotate, so that with the cooperation of the toothed belt 45, the other toothed wheel 44 is meshed and driven, so that the reciprocating screw rod 37 can rotate synchronously with the rotation of the rotating shaft 12, and the synchronous operation of the two structures can be achieved by one motor, saving costs.

[0058] Optionally, the line-setting assembly 8 includes a second bracket 46 mounted on the upper surface of the console 1, two guide rods 47 fixed in the second bracket 46, two guide rings 48 movably mounted on the two guide rods 47, a positioning frame 49 connected between the two guide rings 48, two positioning pulleys 50 rotatably connected in the positioning frame 49, a plurality of ball grooves 51 provided on the inner walls of the two guide rings 48, a plurality of rotating beads 52 movably mounted in the plurality of ball grooves 51, and a plurality of guide grooves 53 provided outside the two guide rods 47;

[0059] The plurality of rotating beads 52 are respectively and movably stuck in the plurality of guide grooves 53. Before the busbar is fully wound up, the end of the busbar can be passed through the gap between the two positioning pulleys 50 and then set on the wiring assembly 7, so that when the busbar is uniformly moved back and forth through the wiring assembly 7, the two positioning rollers can limit the height of the busbar, and the gap between the two positioning pulleys 50 and the gap between the two control pulleys 54 are at the same height, so that the busbar is smoother when entering the wiring assembly 7 and contacting the two control pulleys 54, and the busbar is not easy to separate from the gap between the two control pulleys 54, thereby ensuring the stability of the busbar when the wiring assembly 7 drives it to move; at the same time, when the wiring assembly 7 drives the busbar into When moving back and forth, the busbar generates a pulling force on the two positioning pulleys 50, so that the positioning frame 49 and the two guide rings 48 will move together, and the two guide rods 47 can provide guide limits for the movement of the two guide rings 48. During the movement of the two guide rings 48, a number of rotating beads 52 provided in the guide rings 48 will rotate in the ball grooves 51 and move in a number of guide grooves 53, which can ensure that the guide rings 48 move smoothly on the guide rods 47 without pausing, so that the positioning frame 49 can move together with the control frame 41, avoiding the busbar from escaping from the gap between the two positioning pulleys 50 when passing through the two positioning pulleys 50, thereby ensuring the stability of the guide before the busbar is wound up.

[0060] The above description is only the preferred embodiment of the utility model, and is not intended to limit the utility model. For those skilled in the art, the utility model can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.

Claims

1. A winding device for busbar production, characterized in that: include: A control console (1), a plurality of supports (2) fixed at four corners of the bottom of the control console (1), a support assembly (3) arranged on the control console (1), a winding drum (4) mounted on the support assembly (3), two wire fixing assemblies (5) arranged on both end surfaces of the winding drum (4), a wiring assembly (7) and a wiring assembly (8) arranged on the control console (1) in sequence, and a driving assembly (9) mounted on the wiring assembly (7) and the support assembly (3); The wiring assembly (7) is located between the wiring assembly (8) and the support assembly (3), wherein The support assembly (3) is suitable for clamping the winding drum (4) to fix the winding drum (4); The two wire fixing components (5) are suitable for respectively clamping the head and tail ends of the peripheral busbar; The driving assembly (9) is suitable for driving the wiring assembly (7) and the winding drum (4) to move at the same frequency; The wiring assembly (7) is suitable for carrying the external busbar to move back and forth laterally along the winding surface of the winding drum (4), so that the external busbar is evenly attached to the winding surface of the winding drum (4).

2. A busbar production winding device as claimed in claim 1, characterized in that: The support assembly (3) comprises a first support plate (10) connected to the console (1), two limit slots (17) provided on the console (1) on a side away from the first support plate (10), an adjustment plate (16) movably mounted in the two limit slots (17), a second support plate (11) mounted on the adjustment plate (16), two rotating shafts (12) respectively mounted on the first support plate (10) and the second support plate (11) at the same height, two support plates (13) respectively mounted on opposite sides of the two rotating shafts (12), and a plurality of positioning blocks (14) respectively mounted circumferentially on the two support plates (13); A plurality of positioning blocks (14) respectively penetrate the two end surfaces of the winding drum (4).

3. A busbar production winding device as claimed in claim 2, characterized in that: The wire fixing assembly (5) comprises a wire fixing groove (26) provided on the winding drum (4), a wire fixing frame (27) installed in the wire fixing groove (26), positioning plates (28) connected to both sides of the wire fixing frame (27), a wire pressing plate (29) provided in the wire fixing frame (27), two racks (30) respectively fitted on opposite sides of the two positioning plates (28), a tooth block (31) connected to both sides of the wire pressing plate (29) and meshing with the two racks (30), a lower tooth plate (32) installed on the wire fixing frame (27), an upper tooth plate (33) fixed to the bottom of the wire pressing plate (29), a control groove (34) provided on the end surface of the winding drum (4) and connected to the wire fixing groove (26), and an L-shaped control rod (35) one end of which is connected to the wire pressing plate (29); The other end of the L-shaped control rod (35) can be movably extended to the outside of the control groove (34).

4. A busbar production winding device as claimed in claim 3, characterized in that: The wiring assembly (7) comprises a first bracket (36) mounted on the upper surface of the console (1), a reciprocating screw rod (37) rotatably connected to the first bracket (36), a control block (38) with an upper end spirally mounted on the reciprocating screw rod (37), a cross bar (40) mounted in the first bracket (36) and located below the reciprocating screw rod (37), a control frame (41) connected to the upper surface of the control block (38), and two control pulleys (54) rotatably mounted in parallel in the control frame (41); The lower end of the control block (38) is slidably mounted on the crossbar (40).

5. A busbar production winding device as claimed in claim 2, characterized in that: The support assembly (3) further comprises a positioning seat (19) mounted on the adjustment plate (16), a movable groove (20) provided on the positioning seat (19) and the adjustment plate (16), a plug plate (21) movably mounted in the movable groove (20), two return springs (22) fixedly connected at one end to the top of the plug plate (21), and the other ends of the two return springs (22) are connected to the positioning seat (19) in the movable groove (20), a slot (23) provided on the console (1), a through groove (24) provided on the positioning seat (19), and a quick release (25) passing through the through groove (24) and connected to the outer wall of the plug plate (21); The inserting plate (21) passes through the adjusting plate (16) and is snugly and slidably inserted into the slot (23).

6. A busbar production winding device as claimed in claim 4, characterized in that: The driving assembly (9) comprises a mounting seat (42) mounted on the first support plate (10), a driving motor (43) arranged on the mounting seat (42), two toothed wheels (44) respectively fixedly sleeved on one of the rotating shafts (12) and one end of the reciprocating screw rod (37), and a toothed belt (45) meshingly sleeved on the two toothed wheels (44); The output end of the driving motor (43) is connected to the toothed wheel (44) located on the back side of the first supporting plate (10).

7. A busbar production winding device as claimed in claim 1, characterized in that: The alignment assembly (8) comprises a second bracket (46) mounted on the upper surface of the console (1), two guide rods (47) fixed in the second bracket (46), two guide rings (48) movably mounted on the two guide rods (47), a positioning frame (49) connected between the two guide rings (48), two positioning pulleys (50) rotatably connected in the positioning frame (49), a plurality of ball grooves (51) provided on the inner walls of the two guide rings (48), a plurality of rotating balls (52) movably mounted in the plurality of ball grooves (51), and a plurality of guide grooves (53) provided outside the two guide rods (47); The plurality of rotating beads (52) are respectively and movably clamped in the plurality of guide grooves (53).