Tension-adjustable winding equipment
By using a tension-adjustable winding device, the problems of poor winding compactness and excessive tension are solved through the synergistic effect of the floating adjustment component and the tension adjustment component, thus achieving a high-quality winding effect.
Patent Information
- Application Number
- CN202520333365.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Poor winding tightness during the winding process leads to poor winding quality, and excessive tension when the winding speed is too fast causes deformation, affecting the quality of the finished product.
The tension-adjustable winding equipment includes a feeding mechanism, a winding mechanism, a tension adjustment mechanism, and a lead wire assembly. Through the coordinated action of the floating adjustment component and the tension adjustment component, the tension of the winding wire is adjusted to ensure tight winding within a predetermined range.
It improves the compactness and quality of winding, avoids deformation caused by excessive tension, and ensures the performance of the finished product.
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Figure CN223752151U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of winding machines, in particular to a winding device with adjustable tension. BACKGROUND
[0002] In the production of electric melting pipes, the resistance wire is first wound on the cylinder of a mold, and then the cylinder with the wound resistance wire is placed in the mold for injection molding. After injection molding and cooling, the cylinder is pulled out to obtain a molded electric melting pipe.
[0003] In order to facilitate winding of the heating wire on the cylinder, a winding machine needs to be used. The winding machine is widely used in various fields and is not limited to electric melting pipe production. At present, the cylinder is usually installed on the winding mechanism of the winding machine, and the wire coil is installed on the feeding mechanism. The winding mechanism drives the cylinder to rotate so that the wire coil provided on the feeding mechanism is unwound and wound on the cylinder. Because the conveying stroke of the winding wire is long, the tightness of the winding wire during winding is poor, resulting in loose winding and poor winding quality. The winding tension can usually be adjusted by adjusting the winding speed, but when the winding speed is too fast, the winding wire will have excessive tension and deformation, affecting the use effect of the subsequent finished product. CONTENT OF THE UTILITY MODEL
[0004] To solve the above technical problems and achieve at least one advantage of the present application, the present application provides a winding device with adjustable tension, which comprises:
[0005] a device main body;
[0006] a feeding mechanism, the feeding mechanism comprising a feeding roller, the feeding roller being rotatably installed on the device main body, the feeding roller being used for installing a wire coil, and the feeding roller being arranged to be rotatable to unwind the winding wire;
[0007] a winding mechanism, the winding mechanism being installed on the device main body, and the winding mechanism being capable of driving the cylinder to rotate so that the winding wire unwound from the feeding roller is wound around the cylinder;
[0008] at least one tension adjusting mechanism, the tension adjusting mechanism comprising a tension adjusting component and a floating position adjusting component, the tension adjusting component being located on the transmission path of the winding wire unwound from the feeding roller and guided to the cylinder provided on the winding mechanism, the winding wire unwound from the feeding roller passing through the tension adjusting component and being guided to the cylinder provided on the winding mechanism, the tension adjusting component being movably installed on the device main body, and the floating position adjusting component being installed on the tension adjusting component and being capable of elastically deforming, the floating position adjusting component applying an acting force to the tension adjusting component, the acting force being opposite to the pressure applied by the transmitted winding wire to the tension adjusting component.
[0009] According to an embodiment of the present application, the tension adjusting assembly is divided into a first tension adjusting member, the winding wire being conveyed is installed on the first tension adjusting member, the first tension adjusting member is slidably installed on the device main body, and the two ends of the floating adjusting assembly are connected to the first tension adjusting member and the device main body respectively.
[0010] According to an embodiment of the present application, the tension adjusting assembly is divided into a second tension adjusting member, the second tension adjusting member includes a pulley and a swing rod, the winding wire being conveyed is wound around the pulley, the pulley is rotatably installed on one end of the swing rod, the end of the swing rod away from the pulley is pivotally connected to the device main body, and the floating adjusting assembly is installed on the end of the swing rod away from the pulley.
[0011] According to an embodiment of the present application, two tension adjusting mechanisms are provided, one of which is adjacent to the unwinding mechanism, and the other of which is adjacent to the winding mechanism.
[0012] According to an embodiment of the present application, the tension adjusting mechanism adjacent to the winding mechanism and the winding mechanism are movable in a direction parallel to the axial direction of the cylinder, and the winding wire guided to the winding mechanism can be spirally wound around the cylinder rotated by the winding mechanism.
[0013] According to an embodiment of the present application, the device main body includes a main body part and a moving platform, the moving platform is slidably installed on the main body part in a direction parallel to the axial direction of the cylinder, the tension adjusting assembly of the tension adjusting mechanism adjacent to the winding mechanism is movably installed on the moving platform, and the tension adjusting assembly of the tension adjusting mechanism adjacent to the unwinding mechanism is movably installed on the main body part. When the moving platform slides on the main body part in a direction parallel to the axial direction of the cylinder, the winding wire corresponding to the tension adjusting assembly is guided to be spirally wound around the cylinder provided on the winding mechanism.
[0014] According to an embodiment of the present application, the tension-adjustable winding device includes a wire guiding assembly, the wire guiding assembly includes a wire guiding roller, the wire guiding roller is rotatably installed on the main body part and located outside the unwinding roller, the axial direction of the wire guiding roller is parallel to the axial direction of the unwinding roller, and the winding wire unwound by the unwinding roller is wound around the wire guiding roller and conveyed by the wire guiding roller.
[0015] According to an embodiment of the present application, the wire assembly comprises at least one wire wheel rotatably mounted on the main body and located outside the tension adjustment mechanism adjacent to the pay-off mechanism, the wire wound on the wire wheel surface and transmitted through the wire wheel is guided to the tension adjustment assembly of the tension adjustment mechanism adjacent to the pay-off mechanism.
[0016] According to an embodiment of the present application, the wire assembly further comprises a pair of wire discs rotatably mounted on the moving platform and located on both sides of the tension adjustment assembly of the tension adjustment mechanism adjacent to the moving platform, the wire wound on one wire disc on the corresponding side of the tension adjustment assembly is transmitted through the wire disc to the corresponding tension adjustment assembly and guided to the other wire disc after passing through the corresponding tension adjustment assembly, and then transmitted from the corresponding wire disc to the take-up mechanism.
[0017] According to an embodiment of the present application, the wire assembly further comprises a pair of wire discs rotatably mounted on the moving platform and located on both sides of the tension adjustment assembly of the tension adjustment mechanism adjacent to the moving platform, the wire wound on one wire disc on the corresponding side of the tension adjustment assembly is transmitted through the wire disc to the corresponding tension adjustment assembly and guided to the other wire disc after passing through the corresponding tension adjustment assembly, and then transmitted from the corresponding wire disc to the take-up mechanism. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The structural schematic diagram of the wire winding device with adjustable tension according to the present application is shown.
[0019] Figure 2 The structural sectional view of the take-up mechanism of the wire winding device with adjustable tension according to the present application is shown.
[0020] Figure 3 The structural sectional view of the wire winding device with adjustable tension according to the present application is shown. Figure 1 The partial structural enlarged view of the wire winding device with adjustable tension according to the present application is shown.
[0021] Figure 4 The structural sectional view of the wire winding device with adjustable tension according to the present application is shown.
[0022] Figure 5 The structural sectional view of the wire winding device with adjustable tension according to the present application is shown. DETAILED DESCRIPTION
[0023] The following description is presented to enable any person skilled in the art to practice the application as claimed. Preferred embodiments are presented in the following description only as examples and modifications can be made by persons skilled in the art. The present application is defined by the appended claims and their equivalents.
[0024] Those skilled in the art will appreciate that the terms "longitudinal", "lateral", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like as used herein, refer to the orientation or position of the illustrated device or element as shown in the drawings, which are for purposes of illustration and description only and are not meant in any way to restrict or limit the application, and that the above terms are not to be construed as limiting the present application to a particular positional or spatial orientation with respect to the illustrated device or element.
[0025] It is understood that the term "one" is understood to be "at least one" or "one or more", that is, in one embodiment, the number of elements can be one, while in another embodiment, the number of elements can be more than one, and the term "one" is not understood to be a limitation on the number of elements.
[0026] Reference Figures 1 to 2 A tension-adjustable winding device according to a preferred embodiment of the present application will be described in detail below, which comprises a device main body 10 and a feeding mechanism 20, the feeding mechanism 20 comprising a feeding roller 21 rotatably mounted on the device main body 10, the feeding roller 21 being configured to mount a winding roll and being rotatable to unwind the winding roll.
[0027] The feeding mechanism 20 further comprises a feeding drive assembly 22, the feeding roller 21 being mounted on the feeding drive assembly 22 to be driven to rotate to automatically perform the unwinding operation.
[0028] The tension-adjustable winding device comprises a winding mechanism 30 mounted on the device main body 10, the winding mechanism 30 being configured to rotate a winding drum to wind the unwound winding roll from the feeding roller 21 around the winding drum.
[0029] The winding mechanism 30 has a plug-in portion 31, the winding mechanism 30 being assembled with the winding drum in a manner that the plug-in portion 31 is inserted into a plug-in hole of the winding drum, so as to be quickly disassembled. The winding drum plugged into the plug-in portion 31 can be driven to rotate by the winding mechanism 30.
[0030] Preferably, the winding mechanism 30 is implemented as a motor, and the plug-in part 31 is implemented as an output shaft of the motor.
[0031] With reference to Figure 1 , Figure 3 , Figure 4 and Figure 5 , the tension-adjustable winding device comprises at least one tension-adjusting mechanism 40, which comprises a tension-adjusting component and a floating-positioning component 42. The tension-adjusting component is located on a transmission path of the winding wire that is unwound from the unwinding roller 21 and guided to the cylinder of the winding mechanism 30. The winding wire unwound from the unwinding roller 21 is guided to the cylinder of the winding mechanism 30 by moving through the tension-adjusting component. The tension-adjusting component is movably installed on the device body 10. The floating-positioning component 42 is installed on the tension-adjusting component and can be elastically deformed. The floating-positioning component 42 applies an action force to the tension-adjusting component, which is opposite to the pressure applied to the tension-adjusting component by the transmitted winding wire, so that the winding wire is transmitted in a manner that the tension is kept within a predetermined range, thereby ensuring that the winding wire can be tightly wound on the cylinder, so that the winding quality is guaranteed.
[0032] With reference to Figures 3 to 4 In an embodiment, the tension-adjusting component is divided into a first tension-adjusting part 41A, on which the transmitted winding wire is installed, and the first tension-adjusting part 41A is slidably installed on the device body 10. The two ends of the floating-positioning component 42 are respectively connected to the first tension-adjusting part 41A and the device body 10.
[0033] As a preferred embodiment of the above embodiment, the first tension-adjusting part 41A is implemented as a spring.
[0034] Preferably, the first tension-adjusting part 41A has a through hole 4101A, and the winding wire is assembled on the first tension-adjusting part 41A in a manner that it is plugged into the through hole 4101A, so that when the first tension-adjusting part 41A moves, the winding wire can be driven to adjust the tension.
[0035] Specifically, when the tension of the winding line is too large, the force applied by the floating position adjusting assembly 42 to the first tension adjusting member 41A is smaller than the pressure applied by the winding line being conveyed to the first tension adjusting member 41A, at this time, the first tension adjusting member 41A is pulled by the winding line being conveyed to move and press the floating position adjusting assembly 42 to be compressed, so as to reduce the tension of the winding line; when the tension of the winding line is too small, the force applied by the floating position adjusting assembly 42 to the first tension adjusting member 41A is larger than the pressure applied by the winding line being conveyed to the first tension adjusting member 41A, at this time, the first tension adjusting member 41A moves reversely under the elastic force of the floating position adjusting assembly 42, so as to increase the tension of the winding line, to ensure that the winding line is conveyed in a manner that the tension is kept within a predetermined range.
[0036] Reference Figure 1 and Figure 5 In another embodiment, the tension adjusting assembly is divided into a second tension adjusting member 41B, the second tension adjusting member 41B comprises a pulley 411B and a swing rod 412B, the winding line being conveyed is wound around the pulley 411B, the pulley 411B is rotatably installed at one end of the swing rod 412B, and the end of the swing rod 412B away from the pulley 411B is pivotally connected to the device main body 10. The floating position adjusting assembly 42 is installed at the end of the swing rod 412B away from the pulley 411B.
[0037] As a preferred embodiment of the above embodiment, the floating position adjusting assembly 42 is implemented as a torsion spring.
[0038] Specifically, when the tension of the winding line is too large, the force applied by the floating position adjusting assembly 42 to the first tension adjusting member 41A is smaller than the pressure applied by the winding line being conveyed to the first tension adjusting member 41A, at this time, the first tension adjusting member 41A is pulled by the winding line being conveyed to move and press the floating position adjusting assembly 42 to be compressed, so as to reduce the tension of the winding line; when the tension of the winding line is too small, the force applied by the floating position adjusting assembly 42 to the first tension adjusting member 41A is larger than the pressure applied by the winding line being conveyed to the first tension adjusting member 41A, at this time, the first tension adjusting member 41A moves reversely under the elastic force of the floating position adjusting assembly 42, so as to increase the tension of the winding line, to ensure that the winding line is conveyed in a manner that the tension is kept within a predetermined range. Specifically, when the tension of the winding line is too large, the force applied by the floating position adjusting assembly 42 to the first tension adjusting member 41A is smaller than the pressure applied by the winding line being conveyed to the first tension adjusting member 41A, at this time, the first tension adjusting member 41A is pulled by the winding line being conveyed to move and press the floating position adjusting assembly 42 to be compressed, so as to reduce the tension of the winding line; when the tension of the winding line is too small, the force applied by the floating position adjusting assembly 42 to the first tension adjusting member 41A is larger than the pressure applied by the winding line being conveyed to the first tension adjusting member 41A, at this time, the first tension adjusting member 41A moves reversely under the elastic force of the floating position adjusting assembly 42, so as to increase the tension of the winding line, to ensure that the winding line is conveyed in a manner that the tension is kept within a predetermined range.
[0039] Reference Figure 1 Preferably, the tension adjusting mechanism 40 is provided with two, one of which is adjacent to the unwinding mechanism 20, and the other of which is adjacent to the winding mechanism 30, to cooperatively adjust the tension of the winding wire, and ensure that the winding wire can be tightly wound around the cylinder.
[0040] As a preference, when the tension adjusting mechanism 40 is provided with two, the tension adjusting components included in the two tension adjusting mechanisms 40 are respectively divided into the first tension adjusting member 41A and the second tension adjusting member 41B. The first tension adjusting member 41A is arranged outside the winding mechanism 30, and the second tension adjusting member 41B is arranged outside the unwinding mechanism 20. The winding wire unwound from the unwinding mechanism 20 is wound around the pulley 411B of the second tension adjusting member 41B, and is guided to the first tension adjusting member 41A by the pulley 411B, and then is guided to the cylinder arranged in the winding mechanism 30 by the first tension adjusting member 41A.
[0041] It is worth mentioning that either the tension adjusting mechanism 40 adjacent to the winding mechanism 30 or the winding mechanism 30 can move in a direction parallel to the axial direction of the cylinder, so that the winding wire guided to the winding mechanism 30 can be spirally wound around the side of the cylinder rotated by the winding mechanism 30.
[0042] Reference Figure 1 Preferably, the device body 10 includes a body part 11 and a moving platform 12, and the moving platform 12 is movably mounted on the body part 11 in a direction parallel to the axial direction of the cylinder. The tension adjusting components of the tension adjusting mechanism 40 adjacent to the winding mechanism 30 are movably mounted on the moving platform 12, and the tension adjusting components of the tension adjusting mechanism 40 adjacent to the unwinding mechanism 20 are movably mounted on the body part 11. When the moving platform 12 slides on the body part 11 in a direction parallel to the axial direction of the cylinder, the winding wire passing through the corresponding tension adjusting components is guided to be spirally wound around the side of the cylinder arranged in the winding mechanism 30.
[0043] The tension-adjustable winding device includes a rewinding mechanism 50, and the moving platform 12 is mounted on the rewinding mechanism 50 and is driven by the rewinding mechanism 50 to move, so that the winding wire is regularly wound around the cylinder.
[0044] Preferably, the wire arrangement mechanism 50 is implemented by a screw rod and a motor, the moving platform 12 is threadedly sleeved on the screw rod, and the screw rod is connected to an output shaft of the motor. The motor drives the screw rod to rotate to drive the moving platform 12 to slide along a direction parallel to the axial direction of the barrel.
[0045] In an embodiment, the wire arrangement mechanism 50 is implemented as a pneumatic cylinder.
[0046] With reference to Figure 1 , the tension-adjustable winding device comprises a wire assembly 60, the wire assembly 60 comprises a wire roller 61, the wire roller 61 is rotatably mounted on the main body 11 and located outside the pay-off roller 21, and the axial direction of the wire roller 61 is parallel to the axial direction of the pay-off roller 21. The winding wire unwound by the pay-off roller 21 is wound on the wire roller 61 and transmitted by the wire roller 61. In this way, by providing the wire roller 61, the path of the winding wire unwound by the pay-off roller 21 is defined to regulate the subsequent transmission path of the winding wire.
[0047] The wire assembly 60 comprises at least one wire wheel 62, the wire wheel 62 is rotatably mounted on the main body 11 and located outside the tension adjustment mechanism 40 adjacent to the pay-off mechanism 20. The winding wire transmitted by the wire roller 61 is wound on the surface of the wire wheel 62 and transmitted by the wire wheel 62 to guide the tension adjustment assembly of the tension adjustment mechanism 40 adjacent to the pay-off mechanism 20.
[0048] Preferably, the wire wheel 62 is provided with two wire wheels 62, and the two wire wheels 62 are arranged in an axially parallel manner. The winding wire transmitted by the wire roller 61 is wound on the opposite surfaces of the two wire wheels 62 in a manner of being partially arranged between the two wire wheels 62. The winding wire transmitted by the wire roller 61 is transmitted by one of the wire wheels 62 to guide the other wire wheel 62, and is guided by the corresponding wire wheel 62 to the tension adjustment assembly of the tension adjustment mechanism 40 adjacent to the pay-off mechanism 20, so as to adjust the path of the winding wire by the cooperation of the two wire wheels 62, so that the winding wire is guided to the tension adjustment assembly of the tension adjustment mechanism 40 adjacent to the pay-off mechanism 20.
[0049] The wire assembly 60 further comprises a pair of wire discs 63 rotatably mounted on the moving platform 12 and located on both sides of the tension adjusting assembly of the tension adjusting mechanism 40 adjacent to the moving platform 12, and the winding wire corresponding to the two sides of the tension adjusting assembly is wound on one of the wire discs 63. The winding wire to be conveyed is guided to the corresponding tension adjusting assembly through one of the wire discs 63 and then guided to the other wire disc 63 after passing through the corresponding tension adjusting assembly, and then conveyed to the winding mechanism 30 through the corresponding wire disc 63 to guide the winding wire to be conveyed.
[0050] With reference to Figure 1 The tension-adjustable winding device comprises at least one wire fixing mechanism 70 mounted on the moving platform 12 of the device main body 10. One of the wire fixing mechanisms 70 is located on the conveying path of the winding wire guided to the barrel of the winding mechanism 30 after passing through the tension adjusting assembly arranged on the moving platform 12. After the part of the winding wire between the winding mechanism 30 and the corresponding wire fixing mechanism 70 is cut off, the wire fixing mechanism 70 clamps the winding wire to prevent the winding wire from retreating, thereby facilitating subsequent winding.
[0051] Preferably, two wire fixing mechanisms 70 are arranged, and the two wire fixing mechanisms 70 are located on both sides of the tension adjusting assembly arranged on the moving platform 12. After the winding wire is cut off, the two wire fixing mechanisms 70 clamp the winding wire at the same time to effectively prevent the winding wire from retreating.
[0052] The wire fixing mechanism 70 comprises two clamping members 71 oppositely arranged and optionally mounted on the moving platform 12 of the device main body 10. The winding wire guided to the winding mechanism 30 passes between the two clamping members 71, and the two clamping members 71 are optionally moved to reduce the gap therebetween to clamp the winding wire.
[0053] The wire fixing mechanism 70 comprises at least one driving member 72 mounted on the two clamping members 71, and the driving member 72 can drive at least one of the clamping members 71 to move to adjust the distance between the two clamping members 71.
[0054] Preferably, the driving member 72 is implemented as a screw, the screw penetrates one of the clamping members 71 and is threadedly connected with the other clamping member 71, so that the distance between the two clamping members is adjusted by rotating the screw.
[0055] Those skilled in the art will understand that the above description and the accompanying drawings are only examples of the embodiments of the present application and do not limit the present application. The advantages of the present application have been fully and effectively achieved. The functional and structural principles of the present application have been shown and described in the embodiments, and the embodiments of the present application can be modified or changed in any way without departing from the principles.
Claims
1. A tension-adjustable winding device, characterized in that, The tension-adjustable winding device includes: Equipment body; A feeding mechanism, comprising a feeding roller rotatably mounted on the main body of the equipment, the feeding roller being used to mount a wire coil, and the feeding roller being configured to rotate to unwind the wound wire; A winding mechanism is installed on the main body of the equipment. The winding mechanism can drive the cylinder to rotate so that the winding thread unwound by the unwinding roller is wound around the circumference of the cylinder. At least one tension adjustment mechanism is provided, comprising a tension adjustment component and a floating adjustment component. The tension adjustment component is located on the conveying path of the winding line unwound by the unwinding roller and guided onto the cylinder of the winding mechanism. The winding line unwound by the unwinding roller passes through the tension adjustment component and is guided onto the cylinder of the winding mechanism. The tension adjustment component is movably mounted on the main body of the equipment. The floating adjustment component is mounted on the tension adjustment component and is capable of elastic deformation. The floating adjustment component applies a force to the tension adjustment component that is opposite to the pressure applied to the tension adjustment component by the conveyed winding line.
2. The tension-adjustable winding device according to claim 1, characterized in that, The tension adjustment assembly is divided into a first tension adjustment element, the conveyed winding wire is installed on the first tension adjustment element, the first tension adjustment element is slidably installed on the main body of the equipment, and the two ends of the floating adjustment assembly are respectively connected to the first tension adjustment element and the main body of the equipment.
3. The tension-adjustable winding device according to claim 1, characterized in that, The tension adjustment assembly is divided into a second tension adjustment component, which includes a pulley and a swing arm. The conveyed winding wire is wound around the pulley. The pulley is rotatably mounted on one end of the swing arm. The end of the swing arm away from the pulley is pivotally connected to the main body of the equipment. The floating adjustment component is mounted on the end of the swing arm away from the pulley.
4. The tension-adjustable winding device according to any one of claims 1 to 3, characterized in that, There are two tension adjustment mechanisms, one of which is adjacent to the unloading mechanism and the other is adjacent to the winding mechanism.
5. The tension-adjustable winding device according to claim 4, characterized in that, Either the tension adjustment mechanism adjacent to the winding mechanism or the winding mechanism can move in a direction parallel to the axial direction of the cylinder, and the winding line guiding the winding mechanism can spirally wrap around the circumference of the cylinder driven by the winding mechanism to rotate.
6. The tension-adjustable winding device according to claim 5, characterized in that, The main body of the equipment includes a main body and a moving platform. The moving platform is mounted on the main body in a slidable manner in a direction parallel to the axial direction of the cylinder. The tension adjusting component of the tension adjusting mechanism adjacent to the winding mechanism is movably mounted on the moving platform. The tension adjusting component of the tension adjusting mechanism adjacent to the unloading mechanism is movably mounted on the main body. When the moving platform slides on the main body in a direction parallel to the axial direction of the cylinder, the winding wire passing through the tension adjusting component is guided and spirally wound around the cylinder of the winding mechanism.
7. The tension-adjustable winding device according to claim 6, characterized in that, The tension-adjustable winding device includes a wire assembly, which includes a wire roller rotatably mounted on the main body and located outside the unwinding roller. The axial direction of the wire roller is parallel to the axial direction of the unwinding roller. The winding wire unwound by the unwinding roller is wound around the wire roller and conveyed by the wire roller.
8. The tension-adjustable winding device according to claim 7, characterized in that, The guide roller assembly includes at least one guide roller, which is rotatably mounted on the main body and located outside the tension adjusting mechanism adjacent to the feeding mechanism. The winding wire conveyed by the guide roller is wound around the surface of the guide roller and guided by the guide roller to the tension adjusting assembly of the tension adjusting mechanism adjacent to the feeding mechanism.
9. The tension-adjustable winding device according to claim 8, characterized in that, The conductor assembly further includes a pair of conductor reels, which are rotatably mounted on the moving platform and located on both sides of the tension adjusting component of the tension adjusting mechanism adjacent to the moving platform. The winding wires located on both sides of the corresponding tension adjusting component are respectively wound around one of the conductor reels. The conveyed winding wires are conveyed through one of the conductor reels and guided to the corresponding tension adjusting component. After passing the corresponding tension adjusting component, the wires are guided to the other conductor reel and then conveyed to the winding mechanism by the corresponding conductor reel.
10. The tension-adjustable winding device according to claim 6, characterized in that, The tension-adjustable winding device includes at least one wire-fixing mechanism, which is installed on the moving platform of the device body. The wire-fixing mechanism is located on the conveying path of the winding wire that is guided to the cylinder of the winding mechanism by the tension adjustment component disposed on the moving platform. After the portion of the winding wire located between the winding mechanism and the corresponding wire-fixing mechanism is cut off, the wire-fixing mechanism clamps the winding wire.