Anti-sticking yarn winding device

By introducing guiding and antistatic mechanisms into the yarn winding device, combined with hydraulic cylinders and tension adjustment, the problems of yarn sticking and uneven winding during the yarn winding process are solved, achieving efficient and uniform yarn winding and rapid roll changing.

CN224160199UActive Publication Date: 2026-04-24SHIJIAZHUANG CHANGSHAN HENGXIN TEXTILE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHIJIAZHUANG CHANGSHAN HENGXIN TEXTILE
Filing Date
2024-12-30
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing yarn winding devices are prone to tangling and uneven winding during the winding process, and are not convenient for quick roll changes, which affects the winding effect and practicality.

Method used

The design incorporates a winding mechanism, a guiding mechanism, and an anti-static mechanism. The guiding mechanism guides the yarn, the anti-static mechanism removes static electricity, and the winding mechanism winds the yarn. Combined with a hydraulic cylinder and a tension adjustment mechanism, the yarn is wound evenly, enabling rapid roll changes.

Benefits of technology

It effectively prevents yarn tangling, ensures uniform yarn winding, improves the practicality of the equipment and the efficiency of roll changing, and reduces downtime.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224160199U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of yarn winding, in particular to an anti-sticking yarn winding device, which is characterized in that a bobbin is sleeved on a winding mechanism, one end of a yarn sequentially penetrates through a static electricity removing mechanism and a guide mechanism, then one end of the yarn is fixed on the bobbin, and the yarn is wound through the operation of the winding mechanism. Meanwhile, static electricity of the yarn is removed through the static electricity removing mechanism, the yarn is guided through the guiding mechanism, and therefore the practicability of the device is improved; comprising a winding mechanism; the winding device further comprises a guide mechanism and a static electricity removing mechanism, the guide mechanism is installed on the winding mechanism, and the static electricity removing mechanism is installed on the winding mechanism. The static electricity removing mechanism is used for removing static electricity of the yarn, the guiding mechanism is used for guiding the yarn, and the winding mechanism is used for winding the yarn.
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Description

Technical Field

[0001] This utility model relates to the technical field of yarn winding, and in particular to an anti-tangling yarn winding device. Background Technology

[0002] Yarn is a type of textile product made from various textile fibers processed into a certain fineness. It is used for weaving, rope making, thread making, knitting, and embroidery. After the yarn is produced, it needs to be wound up using a yarn winding device disclosed in utility model patent CN213923506U and a yarn production winding device disclosed in invention patent CN117819305B.

[0003] However, during use, it was found that the existing winding device has a relatively simple structure, and the yarn is prone to static electricity, which makes the yarn easy to stick and wrap unevenly during the winding process, affecting the winding effect and making it inconvenient to quickly change the roll, resulting in poor practicality. Therefore, there is an urgent need for an anti-sticking yarn winding device to improve the above problems. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides an anti-tangling yarn winding device that involves placing a spool on a winding mechanism, passing one end of the yarn through an antistatic mechanism and a guiding mechanism in sequence, and then fixing the other end of the yarn to the spool. The winding mechanism winds up the yarn, while the antistatic mechanism removes static electricity from the yarn, and the guiding mechanism guides the yarn, thereby improving the practicality of the equipment.

[0005] This utility model provides an anti-sticking yarn winding device, which includes a winding mechanism, a guiding mechanism, and an anti-static mechanism. The guiding mechanism is mounted on the winding mechanism, and the anti-static mechanism is mounted on the winding mechanism.

[0006] The static eliminator removes static electricity from the yarn, the guiding mechanism guides the yarn, and the winding mechanism winds the yarn.

[0007] The spool is fitted onto the winding mechanism, and one end of the yarn is passed through the antistatic mechanism and the guiding mechanism in sequence. Then, the other end of the yarn is fixed to the spool. The winding mechanism winds up the yarn, while the antistatic mechanism removes static electricity from the yarn, and the guiding mechanism guides the yarn, thereby improving the practicality of the equipment.

[0008] Preferably, the winding mechanism includes a worktable, a first motor, a support platform, and two sets of fixing mechanisms. The worktable has an internal chamber. The first motor is mounted on the top of the worktable, and the support platform is mounted on the output shaft of the first motor. Both sets of fixing mechanisms are mounted on the support platform. Two sets of spools are respectively fitted onto the two sets of fixing mechanisms. Then, one end of the yarn is fixed to one set of spools, and the yarn is wound up by driving the spools to rotate through one set of fixing mechanisms. After the spools are fully wound with yarn, the yarn is broken, and the first motor is activated to drive the support platform to rotate forward, thus repositioning the two sets of fixing mechanisms. Then, one end of the yarn is fixed to the other set of spools, and the yarn is wound up again through the operation of the other set of fixing mechanisms. At the same time, the operator removes the spools that are fully wound with yarn and replaces the spools with holes. After the other set of spools is also fully wound with yarn, the first motor drives the support platform to rotate in the opposite direction, and the above steps are repeated to continue winding the yarn, thereby improving the practicality of the equipment.

[0009] Preferably, the fixing mechanism includes a second motor, a fixed base, a rotating shaft, multiple sets of springs, and multiple sets of support plates. The second motor is fixedly installed at the bottom of the support platform, the fixed base is fixedly installed at the top of the support platform, the rotating shaft is rotatably installed on the fixed base, and the bottom end of the rotating shaft is connected to the output shaft of the second motor. The multiple sets of springs are respectively installed on the rotating shaft through the multiple sets of support plates. The bobbin is sleeved on the multiple sets of springs, and the elasticity of the multiple sets of support plates causes the multiple sets of springs to press the bobbin outward, thus fixing the bobbin. Then, one end of the yarn is fixed to the bobbin, the second motor is turned on, and the rotating shaft is driven to rotate, thereby winding the yarn, thereby improving the practicality of the equipment.

[0010] Preferably, the guiding mechanism includes a hydraulic cylinder, two sets of conveying wheels, and a tension adjusting mechanism. Both the hydraulic cylinder and the tension adjusting mechanism are mounted on the worktable. A dual-output drive motor is installed on the hydraulic cylinder. Both sets of conveying wheels are rotatably mounted on the top of the hydraulic cylinder, and their rear ends are respectively connected to the two output shafts of the dual-output drive motor. The yarn is passed through the tension adjusting mechanism and the two sets of conveying wheels. When winding the yarn, the dual-output drive motor is turned on, causing the two sets of conveying wheels to rotate and convey the yarn from left to right. Simultaneously, the hydraulic cylinder repeatedly extends and retracts, ensuring the yarn is evenly wound onto the bobbin. When changing the bobbin, the dual-output drive motor stops, causing the two sets of conveying wheels to clamp the yarn. The tension adjusting mechanism temporarily stores the produced yarn, thereby improving the equipment's practicality.

[0011] Preferably, the tension adjustment mechanism includes a frame, a winding shaft, a third motor, a lifting frame, two sets of wire ropes, two sets of tensioning pulleys, and a counterweight. The frame is fixedly installed on the top of the workbench, the winding shaft is rotatably installed on the top of the frame, the third motor is fixedly installed on the top of the frame, and the output shaft of the third motor is connected to one end of the winding shaft. Both sets of wire ropes are wound on the winding shaft, and the bottom ends of both sets of wire ropes are installed on the lifting frame. Both sets of tensioning pulleys are rotatably installed on the lifting frame, and the counterweight is installed on... At the bottom of the lifting frame, the yarn is passed between two sets of tensioning rollers. By turning on the third motor, the winding shaft is driven to rotate, adjusting the lifting frame upwards or downwards to regulate the yarn tension. When changing the bobbin, the third motor operates, causing the winding shaft to wind up the two sets of steel wire ropes, lifting the yarn upwards and maintaining its tension without stopping other equipment on the production line. Afterwards, during the yarn winding process, the winding shaft slowly releases the two sets of steel wire ropes, allowing the lifting frame to return to its original position, thus improving the equipment's practicality.

[0012] Preferably, the static elimination mechanism includes a housing, a water inlet valve, a drain pump, an atomizer, multiple sets of baffles, two sets of exhaust fans, two sets of air supply pipes, a dehumidification box, an exhaust pipe, a first guide wheel, multiple sets of second guide wheels, a third guide wheel, and a drying mechanism. The housing is installed inside the workbench and contains a storage chamber, an atomization chamber, and a drying chamber. The atomization chamber and the drying chamber are connected. Both the housing and the workbench have cable inlets on their right ends and cable outlets on their tops. The water inlet valve is installed on the workbench, with one end connected to the storage chamber of the housing. The drain pump and the atomizer are both installed on the housing and... The water pump's suction port is connected to the storage chamber of the housing, the drain pump's drain port is connected to the interior of the atomizer, and the atomizer's spray nozzle is connected to the atomizing chamber of the housing. Multiple baffles are installed on the top of the storage chamber. Two exhaust fans are installed at the left and rear ends of the housing, with one end of each fan connected to the atomizing chamber and drying chamber of the housing, respectively. One end of each of the two air supply pipes is connected to the other end of the two exhaust fans, and the other ends of both air supply pipes extend into the storage chamber of the housing. Multiple air jet holes are provided on the air supply pipes located in the storage chamber. The dehumidification box is installed on the housing, and the dehumidification box is connected to the top of the storage chamber. The dehumidifier is internally equipped with a water absorption plate. One end of the exhaust pipe is installed on the dehumidifier, and the other end extends to the outside of the workbench. The first guide wheel is installed at the cable inlet of the chamber, and multiple sets of second guide wheels are installed in the atomizing chamber and drying chamber of the chamber, respectively. The third guide wheel is installed on the top of the workbench, and the drying mechanism is installed on the top of the chamber. Water is drained into the storage chamber of the chamber through the water inlet valve. One end of the yarn is passed through the workbench and the cable inlet of the chamber, then the yarn is wrapped around the multiple sets of second guide wheels in the atomizing chamber, and then the other end of the yarn is inserted into the drying chamber of the chamber and wrapped around the multiple sets of second guide wheels in the drying chamber. Two guide wheels guide one end of the yarn out from the outlet of the box and workbench. During the yarn winding process, the drain pump is turned on to drain the water in the storage chamber into the atomizer. The atomizer atomizes the water and sprays it into the atomization chamber. The water mist discharges the static electricity in the yarn. Then the yarn enters the drying chamber and is dried by the drying mechanism. At the same time, two sets of exhaust fans are turned on to exhaust the air in the atomization chamber and the drying chamber into the storage chamber. The air is dehumidified for the first time by multiple sets of baffles. Then the air enters the dehumidification box for the second dehumidification and is discharged through the exhaust pipe, thereby improving the practicality of the equipment.

[0013] Preferably, the drying mechanism includes an air inlet pipe and multiple sets of heating elements. One end of the air inlet pipe is installed on the top of the housing, and the multiple sets of heating elements are all mounted on the air inlet pipe. Air enters into the air inlet pipe and is heated by the multiple sets of heating elements. Then, the hot air enters the drying chamber of the housing to dry the yarn, thereby improving the practicality of the equipment.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: the spool is sleeved on the winding mechanism, and one end of the yarn passes through the antistatic mechanism and the guiding mechanism in sequence, and then the other end of the yarn is fixed on the spool. The winding mechanism winds up the yarn, while the antistatic mechanism removes static electricity from the yarn and the guiding mechanism guides the yarn, thereby improving the practicality of the equipment. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the isometric structure of this utility model;

[0016] Figure 2 This is a front view structural diagram of the present invention;

[0017] Figure 3 This is a front view cross-sectional structural diagram of this utility model;

[0018] Figure 4 This is an enlarged isometric view of the tension adjustment mechanism of this utility model;

[0019] Figure 5 This is a front enlarged schematic diagram of the fixing mechanism of this utility model.

[0020] The following components are labeled in the attached diagram: 1. Workbench; 2. First motor; 3. Support platform; 4. Second motor; 5. Fixed base; 6. Rotating shaft; 7. Spring; 8. Support plate; 9. Hydraulic cylinder; 10. Conveying wheel; 11. Frame; 12. Winding shaft; 13. Third motor; 14. Lifting frame; 15. Steel wire rope; 16. Tensioning wheel; 17. Counterweight; 18. Box body; 19. Water inlet valve; 20. Drain pump; 21. Atomizer; 22. Baffle plate; 23. Exhaust fan; 24. Air supply pipe; 25. Dehumidification box; 26. Exhaust pipe; 27. First guide wheel; 28. Second guide wheel; 29. ​​Third guide wheel; 30. Air inlet pipe; 31. Heating element. Detailed Implementation

[0021] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.

[0022] Example 1

[0023] like Figures 1 to 5 As shown, an anti-tangling yarn winding device includes a winding mechanism; it also includes a guiding mechanism and an anti-static mechanism, wherein the guiding mechanism is mounted on the winding mechanism and the anti-static mechanism is mounted on the winding mechanism.

[0024] The static eliminator removes static electricity from the yarn, the guiding mechanism guides the yarn, and the winding mechanism winds the yarn.

[0025] The winding mechanism includes a workbench 1, a first motor 2, a support platform 3, and two sets of fixing mechanisms. The workbench 1 has a cavity inside. The first motor 2 is installed on the top of the workbench 1. The support platform 3 is installed on the output shaft of the first motor 2. Both sets of fixing mechanisms are installed on the support platform 3.

[0026] The fixing mechanism includes a second motor 4, a fixed base 5, a rotating shaft 6, multiple sets of springs 7, and multiple sets of support plates 8. The second motor 4 is fixedly installed at the bottom of the support platform 3, the fixed base 5 is fixedly installed at the top of the support platform 3, the rotating shaft 6 is rotatably installed on the fixed base 5, and the bottom end of the rotating shaft 6 is connected to the output shaft of the second motor 4. The multiple sets of springs 7 are respectively installed on the rotating shaft 6 through multiple sets of support plates 8.

[0027] The guiding mechanism includes a hydraulic cylinder 9, two sets of conveying wheels 10, and a tension adjustment mechanism. The hydraulic cylinder 9 and the tension adjustment mechanism are both mounted on the workbench 1. The hydraulic cylinder 9 is equipped with a dual-output drive motor. The two sets of conveying wheels 10 are rotatably mounted on the top of the hydraulic cylinder 9, and the rear ends of the two sets of conveying wheels 10 are respectively connected to the two output shafts of the dual-output drive motor.

[0028] The tension adjustment mechanism includes a frame 11, a winding shaft 12, a third motor 13, a lifting frame 14, two sets of wire ropes 15, two sets of tensioning wheels 16, and a counterweight 17. The frame 11 is fixedly installed on the top of the workbench 1, the winding shaft 12 is rotatably installed on the top of the frame 11, the third motor 13 is fixedly installed on the top of the frame 11, and the output shaft of the third motor 13 is connected to one end of the winding shaft 12. Both sets of wire ropes 15 are wound on the winding shaft 12, and the bottom ends of both sets of wire ropes 15 are installed on the lifting frame 14. Both sets of tensioning wheels 16 are rotatably installed on the lifting frame 14, and the counterweight 17 is installed at the bottom of the lifting frame 14.

[0029] The static elimination mechanism includes a housing 18, a water inlet valve 19, a drain pump 20, an atomizer 21, multiple sets of baffles 22, two sets of exhaust fans 23, two sets of air supply pipes 24, a dehumidification box 25, an exhaust pipe 26, a first guide wheel 27, multiple sets of second guide wheels 28, a third guide wheel 29, and a drying mechanism. The housing 18 is installed inside the workbench 1, and the housing 18 is provided with a storage chamber, an atomization chamber, and a drying chamber. The atomization chamber and the drying chamber are connected. The housing 18 and the workbench 1... Both the right end and the top of the housing 18 and the workbench 1 are equipped with cable inlets. A water inlet valve 19 is installed on the workbench 1, with one end of the valve connected to the storage chamber of the housing 18. A drain pump 20 and an atomizer 21 are both installed on the housing 18. The suction port of the drain pump 20 is connected to the storage chamber of the housing 18, the drain outlet of the drain pump 20 is connected to the interior of the atomizer 21, and the spray nozzle of the atomizer 21 is connected to the atomizing chamber of the housing 18. Multiple baffles are also present. The two exhaust fans 22 are installed on the top of the storage chamber. Two sets of exhaust fans 23 are installed at the left and rear ends of the housing 18, respectively. One end of each exhaust fan 23 is connected to the atomizing chamber and drying chamber of the housing 18, respectively. One end of each air supply pipe 24 is connected to the other end of each exhaust fan 23. The other ends of each air supply pipe 24 extend into the storage chamber of the housing 18. Multiple air jet holes are provided on each air supply pipe 24 located in the storage chamber of the housing 18. The dehumidification box 25 is installed in the housing... The dehumidifier 25 is connected to the top of the storage chamber of the body 18. The dehumidifier 25 is equipped with a water absorption plate inside. One end of the exhaust pipe 26 is installed on the dehumidifier 25, and the other end of the exhaust pipe 26 extends to the outside of the workbench 1. The first guide wheel 27 is installed at the inlet of the body 18. Multiple sets of second guide wheels 28 are installed in the atomizing chamber and the drying chamber of the body 18 respectively. The third guide wheel 29 is installed on the top of the workbench 1. The drying mechanism is installed on the top of the body 18.

[0030] Water is drained into the storage chamber of the housing 18 through the water inlet valve 19. One end of the yarn is passed through the inlet of the workbench 1 and the housing 18, and then the yarn is wrapped around the multiple sets of second guide rollers 28 in the atomizing chamber. Then, one end of the yarn is inserted into the drying chamber of the housing 18 and wrapped around the multiple sets of second guide rollers 28 in the drying chamber. The other end of the yarn extends out from the outlet of the housing 18 and the workbench 1. Then, one end of the yarn is passed between the two sets of tension rollers 16 and the two sets of conveyor rollers 10. The spool is then fitted onto the multiple sets of springs 7. The elasticity of the multiple sets of support plates 8 causes the multiple sets of springs 7 to... The yarn is then pressed outwards to secure the spool. One end of the yarn is then fixed to the spool. The dual-output drive motor is turned on, causing the two sets of conveyor wheels 10 to rotate. The second motor 4 is then turned on, driving the rotating shaft 6 to rotate and wind up the yarn. Simultaneously, the drain pump 20 is turned on to drain the water from the storage chamber into the atomizer 21. The atomizer 21 atomizes the water and sprays it into the atomization chamber, where the water mist discharges static electricity from the yarn. The yarn then enters the drying chamber, where it is dried by the drying mechanism. At the same time, two sets of exhaust fans 23 are turned on to exhaust air from the atomization chamber and the drying chamber into the storage chamber. The air undergoes a first dehumidification process via multiple sets of baffles 22, followed by a second dehumidification process in the dehumidification chamber 25. The air is then exhausted through the exhaust pipe 26. Next, the third motor 13 is activated, driving the winding shaft 12 to rotate and adjusting the lifting frame 14 upwards or downwards to regulate the yarn tension. Once a set of spools is fully wound with yarn, the yarn is disconnected, and the first motor 2 is activated, driving the support platform 3 to rotate forward, repositioning the two sets of fixing mechanisms. One end of the yarn is then fixed to another set of spools, and the yarn continues to be wound through the operation of the other fixing mechanism. Meanwhile, the workers remove the spools filled with yarn and replace the spools with holes. After another set of spools is also filled with yarn, the first motor 2 drives the support platform 3 to rotate in the opposite direction, and the above steps are repeated to continue winding the yarn. During the spool replacement process, the third motor 13 runs, causing the winding shaft 12 to wind up the two sets of steel wire ropes 15, lifting the yarn upwards and maintaining the tension of the yarn. This does not require the shutdown of other equipment on the production line. Afterwards, during the yarn winding process, the winding shaft 12 slowly loosens the two sets of steel wire ropes 15, allowing the lifting frame 14 to reset, thereby improving the practicality of the equipment.

[0031] Example 2

[0032] like Figures 1 to 5 As shown, an anti-tangling yarn winding device includes a winding mechanism; it also includes a guiding mechanism and an anti-static mechanism, wherein the guiding mechanism is mounted on the winding mechanism and the anti-static mechanism is mounted on the winding mechanism.

[0033] The static eliminator removes static electricity from the yarn, the guiding mechanism guides the yarn, and the winding mechanism winds the yarn.

[0034] The winding mechanism includes a workbench 1, a first motor 2, a support platform 3, and two sets of fixing mechanisms. The workbench 1 has a cavity inside. The first motor 2 is installed on the top of the workbench 1. The support platform 3 is installed on the output shaft of the first motor 2. Both sets of fixing mechanisms are installed on the support platform 3.

[0035] The fixing mechanism includes a second motor 4, a fixed base 5, a rotating shaft 6, multiple sets of springs 7, and multiple sets of support plates 8. The second motor 4 is fixedly installed at the bottom of the support platform 3, the fixed base 5 is fixedly installed at the top of the support platform 3, the rotating shaft 6 is rotatably installed on the fixed base 5, and the bottom end of the rotating shaft 6 is connected to the output shaft of the second motor 4. The multiple sets of springs 7 are respectively installed on the rotating shaft 6 through multiple sets of support plates 8.

[0036] The guiding mechanism includes a hydraulic cylinder 9, two sets of conveying wheels 10, and a tension adjustment mechanism. The hydraulic cylinder 9 and the tension adjustment mechanism are both mounted on the workbench 1. The hydraulic cylinder 9 is equipped with a dual-output drive motor. The two sets of conveying wheels 10 are rotatably mounted on the top of the hydraulic cylinder 9, and the rear ends of the two sets of conveying wheels 10 are respectively connected to the two output shafts of the dual-output drive motor.

[0037] The tension adjustment mechanism includes a frame 11, a winding shaft 12, a third motor 13, a lifting frame 14, two sets of wire ropes 15, two sets of tensioning wheels 16, and a counterweight 17. The frame 11 is fixedly installed on the top of the workbench 1, the winding shaft 12 is rotatably installed on the top of the frame 11, the lifting frame 14 is fixedly installed on the top of the frame 11, and the output shaft of the lifting frame 14 is connected to one end of the winding shaft 12. Both sets of wire ropes 15 are wound on the winding shaft 12, and the bottom ends of both sets of wire ropes 15 are installed on the lifting frame 14. Both sets of tensioning wheels 16 are rotatably installed on the lifting frame 14, and the counterweight 17 is installed at the bottom of the lifting frame 14.

[0038] The static elimination mechanism includes a housing 18, a water inlet valve 19, a drain pump 20, an atomizer 21, multiple sets of baffles 22, two sets of exhaust fans 23, two sets of air supply pipes 24, a dehumidification box 25, an exhaust pipe 26, a first guide wheel 27, multiple sets of second guide wheels 28, a third guide wheel 29, and a drying mechanism. The housing 18 is installed inside the workbench 1, and the housing 18 is provided with a storage chamber, an atomization chamber, and a drying chamber. The atomization chamber and the drying chamber are connected. The housing 18 and the workbench 1... Both the right end and the top of the housing 18 and the workbench 1 are equipped with cable inlets. A water inlet valve 19 is installed on the workbench 1, with one end of the valve connected to the storage chamber of the housing 18. A drain pump 20 and an atomizer 21 are both installed on the housing 18. The suction port of the drain pump 20 is connected to the storage chamber of the housing 18, the drain outlet of the drain pump 20 is connected to the interior of the atomizer 21, and the spray nozzle of the atomizer 21 is connected to the atomizing chamber of the housing 18. Multiple baffles are also present. The two exhaust fans 22 are installed on the top of the storage chamber. Two sets of exhaust fans 23 are installed at the left and rear ends of the housing 18, respectively. One end of each exhaust fan 23 is connected to the atomizing chamber and drying chamber of the housing 18, respectively. One end of each air supply pipe 24 is connected to the other end of each exhaust fan 23. The other ends of each air supply pipe 24 extend into the storage chamber of the housing 18. Multiple air jet holes are provided on each air supply pipe 24 located in the storage chamber of the housing 18. The dehumidification box 25 is installed in the housing... The dehumidifier 25 is connected to the top of the storage chamber of the body 18. The dehumidifier 25 is equipped with a water absorption plate inside. One end of the exhaust pipe 26 is installed on the dehumidifier 25, and the other end of the exhaust pipe 26 extends to the outside of the workbench 1. The first guide wheel 27 is installed at the inlet of the body 18. Multiple sets of second guide wheels 28 are installed in the atomizing chamber and the drying chamber of the body 18 respectively. The third guide wheel 29 is installed on the top of the workbench 1. The drying mechanism is installed on the top of the body 18.

[0039] The drying mechanism includes an air inlet pipe 30 and multiple sets of heating elements 31. One end of the air inlet pipe 30 is installed on the top of the housing 18, and the multiple sets of heating elements 31 are all mounted on the air inlet pipe 30.

[0040] Water is drained into the storage chamber of the housing 18 through the water inlet valve 19. One end of the yarn is passed through the inlet of the workbench 1 and the housing 18, then the yarn is wrapped around multiple sets of second guide rollers 28 in the atomizing chamber. Next, one end of the yarn is inserted into the drying chamber of the housing 18, and wrapped around multiple sets of second guide rollers 28 in the drying chamber. Then, one end of the yarn extends out from the outlet of the housing 18 and the workbench 1. Finally, one end of the yarn is passed between two sets of tension rollers 16 and two sets of conveyor rollers 10. The spool is fitted onto multiple sets of springs 7. The elasticity of the multiple sets of support plates 8 causes the multiple sets of springs 7 to press the spool outwards, thus fixing the spool. Then, one end of the yarn is fixed to the bobbin, the dual-output drive motor is turned on to rotate the two sets of conveyor wheels 10, and the second motor 4 is turned on to drive the rotating shaft 6 to rotate and wind the yarn. At the same time, the drain pump 20 is turned on to drain the water in the storage chamber into the atomizer 21. The atomizer 21 atomizes the water and sprays it into the atomization chamber. The static electricity in the yarn is discharged through the water mist. Then the yarn enters the drying chamber. As the top exhaust fan 23 exhausts the air in the drying chamber, the air in the workbench 1 enters the air inlet pipe 30 and is heated by multiple sets of heating elements 31. Then the hot air enters the drying chamber of the box 18 to dry the yarn. During the drying process, two sets of exhaust fans 23 are turned on to exhaust air from the atomizing chamber and drying chamber into the storage chamber. The air undergoes a first dehumidification process through multiple sets of baffles 22, followed by a second dehumidification process in the dehumidification box 25. The air is then exhausted through the exhaust pipe 26. Next, the third motor 13 is turned on to drive the winding shaft 12 to rotate, adjusting the lifting frame 14 upwards or downwards to regulate the yarn tension. Once one set of spools is fully wound with yarn, the yarn is disconnected, and the first motor 2 is turned on to drive the support platform 3 to rotate forward, repositioning the two fixing mechanisms. One end of the yarn is then fixed to another set of spools. The fixed mechanism continues to wind the yarn while the workers remove the spools full of yarn and replace the spools with holes. After another set of spools is also full of yarn, the first motor 2 drives the support platform 3 to rotate in the opposite direction, and the above steps are repeated to continue winding the yarn. During the spool replacement process, the third motor 13 runs, causing the winding shaft 12 to wind up the two sets of steel wire ropes 15, lifting the yarn upwards and maintaining the yarn tension without stopping other equipment on the production line. Afterwards, during the yarn winding process, the winding shaft 12 slowly releases the two sets of steel wire ropes 15, allowing the lifting frame 14 to return to its original position, thereby improving the practicality of the equipment.

[0041] The workbench 1 is provided with ventilation holes; the first motor 2, the second motor 4, the hydraulic cylinder 9, the third motor 13, the drain pump 20, the atomizer 21, the exhaust fan 23 and the heating element 31 of the anti-adhesion yarn winding device of this utility model are purchased from the market. Technical personnel in this industry only need to install and operate it according to the accompanying instruction manual, without requiring any creative work from technical personnel in this field.

[0042] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A yarn winding device for preventing tangling, comprising a winding mechanism; characterized in that, It also includes a guiding mechanism and an antistatic mechanism. The guiding mechanism is installed on the winding mechanism, and the antistatic mechanism is installed on the winding mechanism. The static eliminator removes static electricity from the yarn, the guiding mechanism guides the yarn, and the winding mechanism winds the yarn. The static elimination mechanism includes a housing (18), a water inlet valve (19), a drain pump (20), an atomizer (21), multiple sets of baffles (22), two sets of exhaust fans (23), two sets of air supply pipes (24), a dehumidification box (25), an exhaust pipe (26), a first guide wheel (27), multiple sets of second guide wheels (28), a third guide wheel (29), and a drying mechanism. The housing (18) is installed inside the workbench (1), and the housing (18) is provided with a storage chamber, an atomization chamber, and a drying chamber. The atomization chamber and the drying chamber are connected. Both the housing (18) and the workbench (1) have cable inlets on their right ends. The top of each is provided with a cable outlet. The water inlet valve (19) is installed on the workbench (1), and one end of the water inlet valve (19) is connected to the storage chamber of the box (18). The drain pump (20) and the atomizer (21) are both installed on the box (18), and the water inlet of the drain pump (20) is connected to the storage chamber of the box (18). The drain outlet of the drain pump (20) is connected to the interior of the atomizer (21). The spray outlet of the atomizer (21) is connected to the atomization chamber of the box (18). The first guide wheel (27) is installed at the cable inlet of the box (18), and multiple sets of second guide wheels (28) are installed in the atomization chamber and drying chamber of the box (18) respectively.

2. The anti-tangling yarn winding device as described in claim 1, characterized in that, The winding mechanism includes a workbench (1), a first motor (2), a support platform (3), and two sets of fixing mechanisms. The workbench (1) has a cavity inside. The first motor (2) is installed on the top of the workbench (1), and the support platform (3) is installed on the output shaft of the first motor (2). Both sets of fixing mechanisms are installed on the support platform (3).

3. The anti-tangling yarn winding device as described in claim 2, characterized in that, The fixing mechanism includes a second motor (4), a fixed seat (5), a rotating shaft (6), multiple sets of springs (7) and multiple sets of support plates (8). The second motor (4) is fixedly installed at the bottom of the support platform (3), the fixed seat (5) is fixedly installed at the top of the support platform (3), the rotating shaft (6) is rotatably installed on the fixed seat (5), and the bottom end of the rotating shaft (6) is connected to the output shaft of the second motor (4). Multiple sets of springs (7) are respectively installed on the rotating shaft (6) through multiple sets of support plates (8).

4. The anti-tangling yarn winding device as described in claim 2, characterized in that, The guiding mechanism includes a hydraulic cylinder (9), two sets of conveying wheels (10) and a tension adjustment mechanism. The hydraulic cylinder (9) and the tension adjustment mechanism are both mounted on the workbench (1). The hydraulic cylinder (9) is equipped with a dual-output drive motor. The two sets of conveying wheels (10) are rotatably mounted on the top of the hydraulic cylinder (9), and the rear ends of the two sets of conveying wheels (10) are respectively connected to the two output shafts of the dual-output drive motor.

5. The anti-tangling yarn winding device as described in claim 4, characterized in that, The tension adjustment mechanism includes a frame (11), a winding shaft (12), a third motor (13), a lifting frame (14), two sets of wire ropes (15), two sets of tensioning wheels (16), and a counterweight (17). The frame (11) is fixedly installed on the top of the workbench (1), the winding shaft (12) is rotatably installed on the top of the frame (11), the third motor (13) is fixedly installed on the top of the frame (11), and the output shaft of the third motor (13) is connected to one end of the winding shaft (12). Both sets of wire ropes (15) are wound on the winding shaft (12), and the bottom ends of both sets of wire ropes (15) are installed on the lifting frame (14). Both sets of tensioning wheels (16) are rotatably installed on the lifting frame (14), and the counterweight (17) is installed at the bottom of the lifting frame (14).

6. The anti-tangling yarn winding device as described in claim 2, characterized in that, The multiple sets of baffles (22) are all installed on the top of the storage cavity. The two sets of exhaust fans (23) are respectively installed on the left and rear ends of the housing (18), and one end of each set of exhaust fans (23) is connected to the atomizing cavity and the drying cavity of the housing (18). One end of each set of air supply pipes (24) is connected to the other end of each set of exhaust fans (23), and the other end of each set of air supply pipes (24) extends into the storage cavity of the housing (18). Multiple sets of air jet holes are provided on the air pipe (24). The dehumidification box (25) is installed on the box body (18) and the top of the storage cavity of the box body (18) is connected to the dehumidification box (25). The dehumidification box (25) is equipped with a water absorption plate inside. One end of the exhaust pipe (26) is installed on the dehumidification box (25) and the other end of the exhaust pipe (26) extends to the outside of the workbench (1). The third guide wheel (29) is installed on the top of the workbench (1) and the drying mechanism is installed on the top of the box body (18).

7. The anti-tangling yarn winding device as described in claim 6, characterized in that, The drying mechanism includes an air inlet pipe (30) and multiple sets of heating elements (31). One end of the air inlet pipe (30) is installed on the top of the box (18), and the multiple sets of heating elements (31) are all mounted on the air inlet pipe (30).

Citation Information

Patent Citations

  • Yarn production winding equipment

    CN117819305B

  • Yarn winding device

    CN213923506U