Doubling thread winding device for knitwear processing

By designing a spinning winding device including a wire outer cylinder, a curved crimping plate, a fixed gear and a crimping frame, the problem of needing separate staff to be equipped for real-time monitoring and operation in the prior art is solved, and the automatic quantitative winding and tight fixing of spinning is realized, saving manpower and material resources and improving winding efficiency.

CN119976527AActive Publication Date: 2025-05-13YUDU COUNTY JUNXIANG CLOTHING CO LTD
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Patent Information

Application Number
CN202510474065.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2025-05-13
Estimated Expiration
2045-04-16

AI Technical Summary

Technical Problem

The existing spinning and winding device for knitted fabric processing requires separate staff to monitor and operate in real time, resulting in waste of manpower and material resources. When removing the rolling drum, the spinning needs to be manually clamped to prevent slack.

Method used

A spinning winding device including a workbench and a winding frame is designed. The curved crimping plate of the wire outer cylinder and the winding drum are used to achieve uniform winding and tight fixing of the spinning wire, and the meshing of the fixed gear and the residual gear is achieved, and the spinning wire is limited to the fitting of the crimping frame and the eccentric wheel.

Benefits of technology

Automatic quantitative winding of spinning is realized, reducing dependence on staff, saving manpower and material resources, and preventing the loose and messy situation of spinning is carried out during the winding process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a doubling thread winding device for knitwear processing, and relates to the field of knitwear processing, the doubling thread winding device comprises a workbench and a winding frame, a thread guide outer barrel is arranged at the top of the workbench in a reciprocating sliding mode, a driving assembly is arranged at one end of the winding frame, and the output end of the driving assembly is connected with a winding barrel; and the other end of the winding drum is connected with a fixed gear, the bottom of the fixed gear is rotationally engaged with a residual gear, one end of the residual gear is elastically connected with an arc-shaped wire pressing plate, and a wire pressing frame is installed at the position, between the wire guide outer drum and the winding frame, of the top of the workbench. A residual gear is meshed with a fixed gear, quantitative winding of the device is achieved, a guide column in a yarn pressing frame moves upwards under the action of an eccentric wheel, and then yarn pressing rods are driven to be matched with the yarn pressing frame to limit and fix yarn; under the action of the yarn pressing frame, the doubling yarn on one side of the yarn guide wheel is still in a tight state.
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Description

Technical Field

[0001] The invention relates to the field of knitwear processing, in particular to a spinning yarn winding device for knitwear processing. Background Art

[0002] Knitwear processing refers to the process of using a knitted fabric processing machine to process yarn through a knitting process to form a breathable and productive elastic fabric. A large amount of spinning yarn is required in the processing process, and spinning yarn winding is an important process in spinning yarn production, which mainly involves winding the yarn produced in the textile process into neat coils or bobbins.

[0003] The Chinese patent with announcement number CN111731944 A provides a yarn winding device for knitwear processing. By setting a rotating wheel and turning on the second motor, the second motor rotates to drive the second screw to rotate, so that the second slider and the moving wheel move left and right. In conjunction with the distance sensor, the rotating wheel moves back and forth left and right, thereby ensuring that the yarn is evenly wound on the winding drum, and the yarn is transmitted through the wire wheel on the support, so that the yarn is tightened and wound on the winding drum.

[0004] To sum up, in order to prevent too much yarn from being wound on the take-up drum during the actual processing, the above structure usually requires staff to monitor it in real time to ensure the quantitative winding of the yarn on the take-up drum. In this process, a single set of winding mechanisms needs to be equipped with a separate staff, which wastes a lot of manpower and material resources. When the staff subsequently removes the wound take-up drum, one end of the yarn needs to be cut off. In order to prevent the yarn on the spinning wheel from becoming loose and messy at this time, the staff is also required to manually clamp and fix one end of the yarn, which causes great inconvenience to the staff in actual use. Summary of the invention

[0005] Based on this, the purpose of the present invention is to provide a yarn winding device for knitwear processing, so as to solve the problem that a single set of winding mechanism needs to be equipped with a separate staff member, thereby wasting a lot of manpower and material resources, and the staff is also required to manually clamp and fix one end of the yarn when removing the winding wheel, thus causing great inconvenience to the staff in actual use.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a spinning winding device for knitwear processing, comprising a workbench and a winding frame, wherein the winding frame is located on one side of the top of the workbench, a wire outer cylinder is reciprocatingly slidably arranged on the top of the workbench, a driving assembly is arranged at one end of the winding frame, and an output end of the driving assembly is located in the winding frame and connected to a winding drum, the other end of the winding drum penetrates through one side of the winding frame and is connected to a fixed gear, a residual gear is rotatably engaged with the bottom of the fixed gear, and one end of the residual gear is elastically connected to an arc-shaped wire pressing plate matched with the winding drum;

[0007] A wire pressing frame is installed on the top of the workbench between the wire outer cylinder and the winding frame, a rotating shaft cooperating with the residual gear is rotatably arranged in the wire pressing frame, an eccentric wheel is sleeved on the outer wall of the rotating shaft in the wire pressing frame, and a wire pressing rod cooperating with the eccentric wheel is slidably arranged on the inner side of the wire pressing frame.

[0008] By adopting the above technical scheme, the arc-shaped wire pressing plate on the outer wall of the winding drum is used to ensure the tightness of the outer wall of the winding drum during the spinning process. As the spinning line is wound more, the residual gear is meshed with the fixed gear. Since the residual gear and the fixed gear have the same direction of rotation, the quantitative winding of the device is achieved. Under the action of the eccentric wheel, the guide column in the wire pressing frame moves upward, thereby driving the wire pressing rod and the wire pressing frame to cooperate to limit and fix the spinning line. When the subsequent staff cuts the spinning line, the spinning line on one side of the wire wheel is still in a taut state due to the action of the wire pressing frame, thereby preventing the spinning line on the wire wheel from becoming loose and messy.

[0009] The present invention is further configured such that an electric slide groove is provided on the top of the workbench at the outer tube of the wire, and an electric slider is slidably provided in the electric slide groove, a support rod is connected to the top of the electric slider, and the other end of the support rod is connected to the outer tube of the wire.

[0010] Preferably, the electric slide is driven to slide back and forth on the top of the workbench under the action of the electric slide groove, and the wire outer cylinder on the top is driven to slide back and forth through the support rod. During this process, the spinning thread itself passes through the wire outer cylinder and slides along, so that the spinning thread is evenly wound on the outer wall of the winding drum, thereby improving the winding effect of the winding drum.

[0011] The present invention is further configured such that a plurality of wire wheels with different heights are arranged on the top of the workbench, and the wire wheels are arranged on the top of the workbench in a staggered manner.

[0012] Preferably, the spinning thread itself is driven by a guide wheel. Since the guide wheel is located on the top of the workbench in a high and low staggered arrangement, the spinning thread is kept in a taut state during the tightening and winding process, which not only makes the spinning thread collected densely and compactly, but also prevents the spinning thread from getting tangled when winding.

[0013] The present invention is further configured such that the driving component is a winding motor, the winding motor is used to drive the winding drum at the output end to rotate, and a coupling is further provided between the winding motor and the winding drum.

[0014] Preferably, the staff can adjust the rotation rate of the winding drum itself under the action of the winding motor, thereby adjusting the overall winding efficiency of the winding drum, and the arrangement of the coupling will not drive the winding drum to rotate when the subsequent fixed gear and the residual gear are engaged, causing the stepper motor to idle.

[0015] The present invention is further configured such that one end of the residual gear is connected to the first transmission mechanism, and the other end located at the first transmission mechanism is connected to the rotating shaft.

[0016] Preferably, during the process in which the residual gear is rotated at an angle through the arc-shaped wire pressing plate, the rotating shaft in the wire pressing frame is driven to rotate accordingly under the action of the first transmission mechanism on one side.

[0017] The present invention is further configured such that a guide column is slidably arranged in the wire pressing frame, the bottom end of the guide column is located at the top of the eccentric wheel and is arranged in an arc shape, and the top end of the guide column is connected to the wire pressing rod.

[0018] Preferably, when the rotating shaft drives the eccentric wheel to rotate at a certain angle, the eccentric wheel will squeeze the guide column on the top. Due to its own arc-shaped setting, the guide column itself can slide upward, thereby driving the wire pressing rod in the wire pressing frame to slide upward.

[0019] The present invention is further configured such that a wire inner cylinder is rotatably provided on the inner wall of the wire outer cylinder, and a cleaning assembly is provided on the inner wall of the wire inner cylinder, an array of tooth blocks is provided in the electric slide, and an adjusting gear meshing with the tooth blocks is rotatably provided in the electric slide, one end of the adjusting gear is connected to a second transmission mechanism, and the other end of the second transmission mechanism is connected to a positive bevel gear, one side of the positive bevel gear is meshed with a side bevel gear, one end of the side bevel gear is connected to a worm, and a worm gear matching with the worm is provided on the outer wall of the wire inner cylinder.

[0020] Preferably, when the electric slider drives the outer tube of the conductor to slide back and forth, the adjusting gear will drive the second transmission mechanism at one end to rotate, and the worm will rotate under the engagement of the bevel gear. Since a worm wheel cooperating with the worm is provided on the outer wall of the inner tube of the conductor, the inner tube of the conductor will rotate rapidly when the outer tube of the conductor slides to transport the yarn, and the cleaning component of the inner wall will complete the cleaning of the yarn, thereby preventing yarn breakage due to impurities and dust during the winding process.

[0021] The present invention is further configured such that the second transmission mechanism includes a driving disk, a transmission belt and a driven disk, the driving disk and the driven disk are connected by a transmission belt, one end of the adjusting gear is connected to the driving disk, and one end of the driven disk is connected to a positive bevel gear, and the diameter of the driving disk in the second transmission mechanism is greater than the diameter of the driven disk.

[0022] Preferably, when the electric slider slides to drive the adjusting gear to rotate, the active disk will rotate accordingly, and under the action of the transmission belt, the driven disk will drive the positive bevel gear to rotate. Since the diameter of the active disk in the second transmission mechanism is larger than the diameter of the driven disk, when the electric slider drives the adjusting gear to rotate several circles, the positive bevel gear will rotate several times the number of circles, thereby increasing the rotation speed of the inner tube of the conductor and further ensuring the cleaning effect of the spinning line.

[0023] The present invention is further configured such that the top of the wire pressing rod and the inner wall of the wire pressing frame are both provided with protective covers.

[0024] Preferably, the protective cover prevents the thread from directly contacting the thread pressing rod during its upward movement, thereby effectively preventing the thread from breaking.

[0025] The present invention is further configured such that a plurality of supporting legs are symmetrically arranged at the bottom of the workbench.

[0026] As a preferred embodiment, the workbench can be propped up as a whole under the action of the supporting legs, effectively preventing stains and impurities on the ground from corroding the spinning thread.

[0027] In summary, the present invention mainly has the following beneficial effects:

[0028] 1. The present invention provides a conductor outer cylinder slidably disposed on a workbench. During the process of winding the yarn through the winding drum, the yarn will reciprocate through the conductor outer cylinder, and in this process, the yarn will be evenly wound on the outer wall of the winding drum;

[0029] 2. The present invention provides a fixed gear on one side of the winding frame and a residual gear at the bottom. Under normal conditions, the fixed gear does not mesh with the residual gear. When the spinning line is evenly wound by the winding drum, the arc-shaped pressure plate on the outer wall of the winding drum is used to ensure the tightness of the spinning line on the outer wall of the winding drum during the winding process. As the winding of the spinning line increases, the arc-shaped pressure plate will flip its angle under the action of the spinning line, and the residual gear will rotate accordingly. After the quantitative winding of the spinning line on the winding drum is completed, the residual gear meshes with the fixed gear. Since the residual gear and the fixed gear have the same direction of rotation, the winding drum itself will not rotate when the two are meshed. At this time, the winding motor idles under the action of the coupling, thereby realizing the quantitative winding of the device, without the need for manual real-time supervision, saving a lot of manpower and material resources;

[0030] 3. The present invention provides a wire pressing frame between the outer tube of the conductor and the winding drum. When the angle of the arc-shaped wire pressing plate is adjusted as the winding of the spinning wire increases, the rotating shaft in the wire pressing frame drives the eccentric wheel on the outer wall to rotate under the action of the first transmission mechanism. Under the action of the eccentric wheel, the guide column in the wire pressing frame moves upward, thereby driving the wire pressing rod and the wire pressing frame to cooperate to limit and fix the spinning wire. When the subsequent staff cuts the spinning wire, the spinning wire on one side of the wire wheel is still in a taut state under the action of the wire pressing frame, thereby preventing the spinning wire on the wire wheel from becoming loose and messy, and accelerating the subsequent winding efficiency of the overall winding drum.

[0031] 4. The present invention provides an array of tooth blocks in the electric slide and an adjusting gear at the bottom of the electric slide. When the electric slide drives the outer tube of the conductor to slide back and forth, the adjusting gear drives the second transmission mechanism at one end to rotate, and the worm is rotated under the meshing of the bevel gear. Since a worm wheel matching the worm is provided on the outer wall of the inner tube of the conductor, the inner tube of the conductor itself rotates rapidly when the outer tube of the conductor slides to transport the yarn, and the cleaning component of the inner wall completes the cleaning of the yarn, thereby preventing yarn breakage due to impurities and dust during the winding process. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 A perspective view of the present invention;

[0033] Figure 2 It is a schematic diagram of the structure of the wire wheel of the present invention;

[0034] Figure 3 A top view of the present invention;

[0035] Figure 4 For the present invention Figure 1 A magnified view of middle;

[0036] Figure 5 It is a schematic diagram of the transmission structure of the winding drum and the wire pressing frame of the present invention;

[0037] Figure 6 It is a schematic diagram of the winding drum structure of the present invention;

[0038] Figure 7 It is a cross-sectional view of the wire pressing frame of the present invention;

[0039] Figure 8 For the present invention Figure 7 Enlarged view of middle B;

[0040] Fig. 9 It is a schematic diagram of the structure of the conductor outer barrel of the present invention;

[0041] Fig.10 It is an exploded view of the transmission mechanism inside the conductor outer cylinder of the present invention.

[0042] Description of reference numerals:

[0043] 1. Workbench; 2. Winding frame; 3. Wire pressing frame; 4. Wire wheel; 5. Winding motor; 6. Winding drum; 7. Arc-shaped wire pressing plate; 8. Wire outer tube; 9. Electric slide; 10. Tooth block; 11. Support rod; 12. Electric slide block; 13. Guide column; 14. Wire pressing rod; 15. Fixed gear; 16. Residual gear; 17. First transmission mechanism; 18. Eccentric wheel; 19. Rotating shaft; 20. Wire inner tube; 21. Adjusting gear; 22. Second transmission mechanism; 23. Positive bevel gear; 24. Side bevel gear; 25. Worm; 26. Worm wheel. DETAILED DESCRIPTION

[0044] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0045] The following describes an embodiment of the present invention based on its overall structure.

[0046] First embodiment:

[0047] See also Figure 1-Figure 9 A yarn winding device for knitwear processing shown in the figure comprises a workbench 1, a winding frame 2, a wire pressing frame 3, a transmission mechanism, a winding mechanism and a wire pressing mechanism. A winding motor 5 is arranged at one end of the winding frame 2, and the output end of the winding motor 5 is located in the winding frame 2 and is connected to a winding drum 6. At the same time, a plurality of wire wheels 4 with different heights are arranged on the top of the workbench 1, and the wire wheels 4 are arranged on the top of the workbench 1 in a high-low staggered manner. During the winding process of the winding drum 6, the yarn itself is driven by the wire wheel 4, so that the yarn is in a tight state during the winding process, which not only makes the yarn collection dense and compact, but also prevents the yarn from being entangled during winding.

[0048] And an electric slide groove 9 is provided at the top of the workbench 1 at the wire outer cylinder 8, and an electric slider 12 is slidably provided in the electric slide groove 9, and the electric slider 12 is driven to slide back and forth on the top of the workbench 1 under the action of the electric slide groove 9, wherein the top of the electric slider 12 is connected with a support rod 11, and the other end of the support rod 11 is connected to the wire outer cylinder 8, and the wire outer cylinder 8 at the top is driven by the support rod 11 to slide back and forth, and in this process, the spinning line itself passes through the wire outer cylinder 8 and slides, so that the spinning line is evenly wound on the outer wall of the winding drum 6, thereby improving the winding effect of the winding drum 6, and at the same time, an arc-shaped pressing plate 7 is rotatably provided at the top of the winding drum 6 on the winding frame 2, wherein the other end of the winding drum 6 passes through one side of the winding frame 2 and is connected to a fixed gear 15, and one end of the arc-shaped pressing plate 7 is connected to a residual gear 16 meshing with the fixed gear 15;

[0049] In the initial state, the residual gear 16 is not in a meshing state with the fixed gear 15. During the process of the winding drum 6 rotating to wind up the yarn, the curved wire pressing plate 7 is elastically arranged by the torsion spring, so the curved wire pressing plate 7 is in close contact with the outer wall of the winding drum 6 to ensure the tightness of the outer wall of the winding drum 6 during the yarn winding process. As the yarn is wound up more, the outer diameter of the winding drum 6 will gradually increase. During this process, the curved wire pressing plate 7 will flip its angle under the action of the yarn, and the residual gear 16 will follow and rotate. When the outer wall of the winding drum 6 winds up a certain amount of yarn, the residual gear 16 will mesh with the fixed gear 15 at one end of the winding drum 6. Since the residual gear 16 and the fixed gear 15 have the same direction of rotation, the winding drum 6 itself will not rotate when the two are meshed. At this time, the winding motor 5 will idle under the action of the coupling, thereby realizing the quantitative winding of the device;

[0050] And the top of the workbench 1 is located between the wire outer tube 8 and the winding frame 2, and a wire pressing frame 3 is installed, and a first transmission mechanism 17 is connected to one end of the residual gear 16, and the other end of the first transmission mechanism 17 is connected to the rotating shaft 19. In the process of the residual gear 16 rotating at an angle through the arc-shaped wire pressing plate 7, the rotating shaft 19 in the wire pressing frame 3 is driven to rotate under the action of the first transmission mechanism 17 on one side, and the outer wall of the rotating shaft 19 is located in the wire pressing frame 3 and is sleeved with an eccentric wheel 18. Since a guide column 13 is slidably arranged in the wire pressing frame 3, wherein the bottom end of the guide column 13 is located at the top of the eccentric wheel 18 and is arranged in an arc shape, the guide column The top of 13 is connected to the wire pressing rod 14. When the rotating shaft 19 drives the eccentric wheel 18 to rotate at a certain angle, the eccentric wheel 18 will squeeze the guide column 13 on the top. Due to its own arc setting, the guide column 13 itself can slide upward, thereby driving the wire pressing rod 14 in the wire pressing frame 3 to slide upward, and then driving the wire pressing rod 14 and the wire pressing frame 3 to cooperate to limit and fix the spinning line. When the subsequent staff cuts the spinning line, the spinning line on one side of the wire wheel 4 is still in a taut state under the action of the wire pressing frame 3, which prevents the spinning line on the wire wheel 4 from becoming loose and messy, and speeds up the overall winding efficiency of the subsequent winding drum 6.

[0051] In the above embodiments, please refer to Figure 5 A protective cover is provided on the top of the wire pressing rod 14 and the inner wall of the wire pressing frame 3. The protective cover prevents the wire from directly contacting the wire pressing rod 14 during its upward movement, and effectively prevents the wire from breaking.

[0052] Second embodiment:

[0053] See also Fig.10The yarn winding device for knitwear processing shown in the figure has an overall structure similar to that of the first embodiment, wherein the inner wall of the wire outer cylinder 8 is rotatably provided with a wire inner cylinder 20, and a cleaning assembly is provided on the inner wall of the wire inner cylinder 20, an array of tooth blocks 10 are provided in the electric slide 9, and an adjusting gear 21 meshing with the tooth block 10 is rotatably provided in the electric slider 12, and one end of the adjusting gear 21 is connected to a second transmission mechanism 22, and in the process of the electric slider 12 driving the wire outer cylinder 8 to slide back and forth, the adjusting gear 21 will drive the second transmission mechanism 22 at one end to rotate, and the other end of the second transmission mechanism 22 is connected to a positive bevel gear 23, a side bevel gear 24 is meshed with the positive bevel gear 23, and one end of the side bevel gear 24 is connected to the worm 25, and a worm wheel 26 cooperating with the worm 25 is sleeved on the outer wall of the wire inner cylinder 20, and the worm 25 is rotated under the meshing of the bevel gears. Since the worm wheel 26 cooperating with the worm 25 is sleeved on the outer wall of the wire inner cylinder 20, when the wire outer cylinder 8 slides to transport the yarn, the wire inner cylinder 20 itself will rotate rapidly through the cooperation of the worm wheel 26 and the worm 25, and the cleaning component of the inner wall completes the cleaning of the yarn, so as to prevent the yarn from breaking due to impurities and dust during the winding process.

[0054] In the above embodiments, please refer to Fig.10 , wherein the second transmission mechanism 22 includes a driving disk, a transmission belt and a driven disk, one end of the adjusting gear 21 is connected to the driving disk, and one end of the driven disk is connected to the positive bevel gear 23, when the electric slider 12 slides and drives the adjusting gear 21 to rotate, the driving disk will follow and rotate, and under the action of the transmission belt, the driven disk drives the positive bevel gear 23 to rotate, because the diameter of the driving disk in the second transmission mechanism 22 is larger than the diameter of the driven disk, so when the electric slider 12 drives the adjusting gear 21 to rotate several times, the positive bevel gear will rotate several times, thereby increasing the rotation speed of the wire inner tube 20, and further ensuring the cleaning effect of the spinning line.

[0055] The present invention is in specific operation: when in use, the spinning line is passed through the wire wheel 4 and the wire outer cylinder 8, and the other end is connected to the winding drum 6, and the winding motor 5 at one end of the winding frame 2 is started to drive the winding drum 6 to rotate. During this process, the winding drum 6 will wind up the spinning line. Since the wire outer cylinder 8 is reciprocatingly slidably arranged on the top of the workbench 1, the spinning line will be evenly wound around the outer wall of the winding drum 6 during the winding process, and an arc-shaped wire pressing plate 7 is elastically rotatably arranged on the outer wall of the winding drum 6. Under the action of the arc-shaped wire pressing plate 7, the tightness of the spinning line on the outer wall of the winding drum 6 during the winding process is achieved, and the overall winding effect of the winding drum 6 is improved in cooperation with the wire wheel 4. As the spinning line on the outer wall of the winding drum 6 increases, the arc-shaped wire pressing plate 7 itself will rotate, and at this time, it will drive the residual gear 16 at one end to adjust the angle;

[0056] When a certain amount of yarn is wound up on the outer wall of the winding drum 6, the residual gear 16 will mesh with the fixed gear 15 at one end of the winding drum 6. Since the residual gear 16 and the fixed gear 15 have the same direction of rotation, the winding drum 6 itself will not rotate when the two are meshed. At this time, the winding motor 5 is idling under the action of the coupling, thereby realizing the quantitative winding of the device, and in the process of rotation of the arc-shaped wire pressing plate 7, the rotating shaft 19 is driven to rotate under the action of the first transmission mechanism 17, so that the eccentric wheel 18 in the wire pressing frame 3 rotates, and the guide column 13 at the top thereof is lifted upward. In this process, the wire pressing rod 14 is driven to cooperate with the wire pressing frame 3 to limit and fix the yarn. When the subsequent staff cuts the yarn, the yarn on one side of the wire wheel 4 is still in a taut state under the action of the wire pressing frame 3, thereby preventing the yarn on the wire wheel 4 from becoming loose and messy.

[0057] Although an embodiment of the present invention has been shown and described, this specific embodiment is merely an explanation of the present invention and is not a limitation of the invention. The specific features, structures, materials or characteristics described may be combined in a suitable manner in any one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions and variations to the embodiments without creative contributions as needed without departing from the principles and purpose of the present invention. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.

Claims

1. A yarn winding device for knitwear processing, comprising a workbench (1) and a winding frame (2), wherein the winding frame (2) is located on one side of the top of the workbench (1), and is characterized in that: A wire outer cylinder (8) is reciprocatingly slidably disposed on the top of the workbench (1), a driving assembly is disposed at one end of the winding frame (2), and an output end of the driving assembly is located inside the winding frame (2) and is connected to a winding drum (6), the other end of the winding drum (6) passes through one side of the winding frame (2) and is connected to a fixed gear (15), a residual gear (16) is rotatably engaged at the bottom of the fixed gear (15), and one end of the residual gear (16) is elastically connected to an arc-shaped wire pressing plate (7) that cooperates with the winding drum (6); A wire pressing frame (3) is installed on the top of the workbench (1) between the wire outer cylinder (8) and the winding frame (2), a rotating shaft (19) cooperating with the residual gear (16) is rotatably arranged inside the wire pressing frame (3), an eccentric wheel (18) is sleeved on the outer wall of the rotating shaft (19) located inside the wire pressing frame (3), and a wire pressing rod (14) cooperating with the eccentric wheel (18) is slidably arranged on the inner side of the wire pressing frame (3).

2. A yarn winding device for knitwear processing according to claim 1, characterized in that: An electric slide groove (9) is provided at the top of the workbench (1) at the outer tube (8) of the conductor, and an electric slider (12) is slidably provided in the electric slide groove (9), a support rod (11) is connected to the top of the electric slider (12), and the other end of the support rod (11) is connected to the outer tube (8) of the conductor.

3. The yarn winding device for knitwear processing according to claim 1, characterized in that: The top of the workbench (1) is provided with an array of wire wheels (4) of different heights, and the wire wheels (4) are arranged on the top of the workbench (1) in a staggered arrangement of high and low.

4. The yarn winding device for knitwear processing according to claim 1, characterized in that: The driving component is a winding motor (5), and the winding motor (5) is used to drive the winding drum (6) at the output end to rotate, and a coupling is also provided between the winding motor (5) and the winding drum (6).

5. The yarn winding device for knitwear processing according to claim 1, characterized in that: One end of the residual gear (16) is connected to the first transmission mechanism (17), and the other end located on the first transmission mechanism (17) is connected to the rotating shaft (19).

6. The yarn winding device for knitwear processing according to claim 1, characterized in that: A guide column (13) is slidably arranged in the wire pressing frame (3), the bottom end of the guide column (13) is located at the top of the eccentric wheel (18) and is arranged in an arc shape, and the top end of the guide column (13) is connected to the wire pressing rod (14).

7. The yarn winding device for knitwear processing according to claim 2, characterized in that: The inner wall of the wire outer cylinder (8) is rotatably provided with a wire inner cylinder (20), and a cleaning assembly is provided on the inner wall of the wire inner cylinder (20); an array of tooth blocks (10) is provided in the electric slide groove (9), and an adjusting gear (21) meshing with the tooth block (10) is rotatably provided in the electric slide block (12); one end of the adjusting gear (21) is connected to a second transmission mechanism (22), and the other end of the second transmission mechanism (22) is connected to a positive bevel gear (23); one side of the positive bevel gear (23) is meshed with a side bevel gear (24), one end of the side bevel gear (24) is connected to a worm (25), and a worm wheel (26) matching with the worm (25) is sleeved on the outer wall of the wire inner cylinder (20).

8. The yarn winding device for knitwear processing according to claim 7, characterized in that: The second transmission mechanism (22) comprises a driving disk, a transmission belt and a driven disk; the driving disk and the driven disk are connected via a transmission belt; one end of the adjusting gear (21) is connected to the driving disk, and one end of the driven disk is connected to a positive bevel gear (23); the diameter of the driving disk in the second transmission mechanism (22) is greater than the diameter of the driven disk.

9. The yarn winding device for knitwear processing according to claim 1, characterized in that: The top of the wire pressing rod (14) and the inner wall of the wire pressing frame (3) are both provided with protective covers.

10. The yarn winding device for knitwear processing according to claim 1, characterized in that: The bottom of the workbench (1) is symmetrically provided with an array of supporting legs.

Citation Information

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