Fine nylon spinning device

By combining a cooling box, wiping components, and a blowing component, the problem of temperature rise after water cooling of the yarn is solved, ensuring stable yarn quality, achieving efficient air drying, and improving the pulling and winding effect of the yarn.

CN223561769UActive Publication Date: 2025-11-18JIAXING YONGQUAN TEXTILE DYEING CO LTD
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Patent Information

Application Number
CN202423133608.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-18
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In existing silk spinning drying equipment, the temperature of the silk thread rises when it is dried with hot air after being cooled by water, which affects the subsequent drawing and winding, causing the silk thread to become thinner and affecting the quality.

Method used

The system employs a combination of a cooling box, a wiping component, and a blowing component. Water is removed from the yarn by wiping after water cooling, the water-absorbing component is kept dry by a heating device, and then the yarn is air-dried using a blowing component to ensure stable yarn temperature.

Benefits of technology

It effectively removes moisture from the yarn, prevents temperature rise, improves the pulling and winding quality of the yarn, and enhances the stability and quality of the yarn.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a fine nylon taffeta device, and relates to the field of taffeta components. The device comprises a cooling box, a wiping piece and an air blowing piece, the top face of the cooling box is open, a guide roller is horizontally and rotatably connected into the cooling box, the wiping piece is arranged on the vertical end face of the silk outlet side of the cooling box, and the wiping piece comprises two sliding hole plates and a water absorption piece; water absorption pieces are horizontally arranged on the adjacent horizontal end faces of the two sliding hole plates, each water absorption piece comprises a rod plate, a rubber frame and water absorption cotton, the rod plates are vertically assembled on the sliding hole plates in a sliding and penetrating mode, and a plurality of elastic frames are transversely and vertically fixed to the horizontal end faces, away from the sliding hole plates, of the rod plates. After silk threads generated by silk spinning are subjected to water cooling, water on the silk threads is cleaned and removed through the wiping piece, the temperature of the silk threads rises, the temperature of later drawing and winding of the silk threads is affected, the silk threads are prone to being thinned after being drawn, and the quality of the silk threads is affected.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of silk spinning components, and in particular to a fine nylon silk spinning device. BACKGROUND

[0002] Fine nylon is a fine mesh made of nylon fibers, which has high density and small pore size. Fine nylon is widely used in filtration, protection, textile, packaging and other fields. The production of fine nylon involves multiple process steps, including raw material preparation, spinning, weaving, post-processing, etc. During spinning, dry nylon chips are added to a melting furnace to completely melt the nylon. The melted nylon is extruded through the tiny holes on the spinneret to form a long filament, which is then cooled and drawn and wound.

[0003] The existing patent CN211346076U discloses a polyester silk spinning drying device, which includes a box body and four supporting legs. The box body is fixedly provided with four supporting legs at the bottom corners. The polyester silk spinning drying device can wind the polyester silk by the motor and the first roller, and can extrude the polyester silk during winding by the two second rollers, thereby reducing the water content of the polyester silk. The polyester silk after extrusion can be dried by the drying mechanism, the air suction fan and the electric heating plate. The device can reduce the water content of the polyester silk, improve the drying efficiency, save power and improve the practicability.

[0004] With regard to the above-mentioned related technology, the inventors found that the above-mentioned silk spinning drying device uses the hot air emitted by the air suction fan and the electric heating plate to dry the silk thread generated by the silk spinning. However, after the silk thread generated by the silk spinning is water-cooled, it is cooled by hot air during drying, which causes the temperature of the silk thread to rise, affecting the temperature of the silk thread during later drawing and winding, causing the silk thread to be easily thinned during drawing, and affecting the quality of the silk thread. CONTENT OF THE INVENTION

[0005] In order to overcome the problem that the silk thread generated by the existing silk spinning is water-cooled and then cooled by hot air during drying, which causes the temperature of the silk thread to rise, affecting the temperature of the silk thread during later drawing and winding, causing the silk thread to be easily thinned during drawing, and affecting the quality of the silk thread, the application provides a fine nylon silk spinning device.

[0006] The fine nylon silk spinning device provided by the application adopts the following technical scheme:

[0007] The utility model provides a fine and dense nisshu device, including cooling box, wiping piece and blowing piece, the top surface opening of cooling box is provided, and the horizontal rotation is connected with the guide roller in cooling box, wiping piece sets up on the vertical end face of cooling box silk side, wiping piece includes slide hole plate and water absorption piece, two slide hole plates are symmetrically provided horizontally, and the adjacent horizontal end face of two slide hole plates is provided with water absorption piece horizontally, water absorption piece includes pole plate, rubber frame and water absorption cotton, pole plate is vertically slid through and is assembled on slide hole plate, and the horizontal end face of pole plate away from slide hole plate is transversely vertically fixed with a plurality of elastic frames, the horizontal end face of elastic frame away from pole plate is provided with rubber frame, and the horizontal end face of rubber frame away from elastic frame is fixed with water absorption cotton, and the one end of two slide hole plates away from cooling box is provided with blowing piece.

[0008] Through the above technical scheme, the fine and dense nisshu line is sprayed and guided into the cooling box through the guide roller, the fine and dense nisshu line is cooled by contacting water in the cooling box, and the fine and dense nisshu line after water cooling is guided between the two water absorption pieces of the wiping piece, the fine and dense nisshu line after water cooling is pressed on the fine and dense nisshu line by the water absorption cotton pressed on the rubber frame in the water absorption piece, the water adhered to the fine and dense nisshu line is wiped, and the fine and dense nisshu line after wiping is dried by air driven by the blowing piece, so that the water on the fine and dense nisshu line is cleaned and removed by the wiping piece after the fine and dense nisshu line is cooled, the temperature of the fine and dense nisshu line is increased, the temperature of the fine and dense nisshu line is affected in the later stage, the fine and dense nisshu line is easily thinned, and the quality of the fine and dense nisshu line is affected.

[0009] Optionally, a plurality of through holes are formed through the horizontal surface of the rubber frame close to the water absorption cotton, and a heating rod is horizontally fixed inside the rubber frame.

[0010] Through the above technical scheme, the heating rod in the rubber frame generates heat to dry the water vapor soaked on the water absorption cotton through the through holes, ensures that the water absorption cotton is in a dry state, and improves the wiping and cleaning effect of the fine and dense nisshu line.

[0011] Optionally, a spring is vertically sleeved on the vertical rod of the pole plate, and the two ends of the spring are fixed on the vertical rod end and the slide hole plate respectively.

[0012] Through the above technical scheme, the vertical rod of the pole plate is vertically moved on the slide hole plate under the deformation force of the spring, and the water absorption piece is pushed to tightly contact the surface of the fine and dense nisshu line after water cooling.

[0013] Optionally, a slide rod is vertically fixed on one side of the upper slide hole plate of the cooling box, a hole seat is horizontally fixed on one side of the lower slide hole plate of the cooling box, a screw hole seat is horizontally fixed on one side of the lower slide hole plate of the cooling box, and the slide rod is vertically slid and assembled in the hole seat.

[0014] According to the technical scheme, the diameter of the fine and dense nylon thread is adjusted in the vertical direction by vertically sliding the upper slide rod of the cooling box on the slide hole plate.

[0015] Optionally, the vertical screw thread in the screw hole seat is assembled with an adjusting screw rod, and the top end of the adjusting screw rod is rotationally connected to the upper slide hole plate of the cooling box.

[0016] According to the technical scheme, the adjusting screw rod in the screw hole seat is rotated to push the upper slide hole plate of the cooling box to vertically slide, so that the distance between the water absorption members in the vertical direction is adjusted, and the diameter of the fine and dense nylon thread is suitable.

[0017] Optionally, the top surface of the cooling box is horizontally fixed with a top plate in the middle, the bottom surface of the top plate is horizontally fixed with a spray plate, the top surface of the spray plate is vertically penetrated and fixedly connected with a liquid guide pipe, and the liquid guide pipe is assembled with a valve.

[0018] According to the technical scheme, when the fine and dense nylon thread is cooled, the liquid guide pipe is communicated with the water supply pipeline, the valve on the liquid guide pipe is opened, water is sprayed on the fine and dense nylon thread through the spray plate, and the fine and dense nylon thread is cooled.

[0019] Optionally, the bottom surface of the cooling box is vertically fixedly connected with a screw cap in the middle, the screw cap is vertically provided with a filter cartridge, the top end of the filter cartridge is vertically fixedly connected with a screw ring, the inside of the filter cartridge is vertically fixed with a mesh tube, and the bottom surface of the filter cartridge is vertically fixedly connected with a liquid discharge pipe.

[0020] According to the technical scheme, the water for cooling the fine and dense nylon thread falls into the filter cartridge, the water for cooling the fine and dense nylon thread is filtered to remove impurities through the mesh tube, and then the water for cooling the fine and dense nylon thread is discharged through the liquid discharge pipe on the ground of the filter cartridge.

[0021] Optionally, the blowing member includes a wind box, the wind box is horizontally fixed at one end of the two slide hole plates away from the cooling box, the wind box is vertically and fixedly connected with an air guide pipe, and the air guide pipe is assembled with a wind pump.

[0022] According to the technical scheme, the wind pump on the air guide pipe is started to drive air into the air guide pipe, and then the air enters the wind box to blow on the fine and dense nylon thread after wiping, so that the surface water vapor is dried again.

[0023] In summary, the present application includes at least one of the following beneficial technical effects: during use, the sprayed fine and thin nylon thread is guided into the cooling box through the guide roller, the fine and thin nylon thread contacts water in the cooling box for cooling, the cooled fine and thin nylon thread is guided between the two water absorbing members of the wiping member, the water cooled fine and thin nylon thread is in the water absorbing member, the water absorbing cotton on the rubber frame is pressed on the fine and thin nylon thread to wipe the water adhered on the fine and thin nylon thread, the wiped fine and thin nylon thread is air dried by the air driven by the air blowing member, and then the water on the thread is cleaned and removed by the wiping member, so that the temperature of the thread is increased, the temperature of the thread during later pulling and winding is affected, the thread is easily thinned during pulling, and the quality of the thread is affected. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 is a schematic diagram of the overall structure of the embodiment of the present application.

[0025] Figure 2 is a schematic diagram of the overall structure of the embodiment of the present application in a disassembled state.

[0026] Figure 3 is a schematic diagram of the structure of the wiping member of the embodiment of the present application in a disassembled state.

[0027] Figure 4 is a schematic diagram of the structure of the water absorbing member of the embodiment of the present application in a disassembled state.

[0028] Figure 5 is a schematic diagram of the structure of the cooling box of the embodiment of the present application in a disassembled state.

[0029] BRIEF DESCRIPTION OF DRAWINGS 1, cooling box; 11, guide roller; 12, top plate; 13, spray plate; 14, liquid guide pipe; 15, valve; 16, screw cover; 17, filter cartridge; 171, screw ring; 18, mesh cartridge; 2, wiping member; 21, sliding hole plate; 22, water absorbing member; 221, rod plate; 222, elastic frame; 223, rubber frame; 224, heating rod; 225, water absorbing cotton; 226, spring; 227, through hole; 23, screw hole seat; 24, adjusting screw; 25, sliding rod; 3, air blowing member; 31, air box; 32, air guide pipe; 33, air pump. DETAILED DESCRIPTION

[0030] The present application will be further described in detail below with reference to the accompanying drawings.

[0031] The embodiment of the present application discloses a fine and thin nylon thread spinning device. Referring to Figure 1 , Figure 2 , Figure 3 and Figure 4The utility model provides a fine and dense nis spinning device, including cooling box 1, wiping piece 2 and blowing piece 3, the top surface opening of cooling box 1 is set up, and the horizontal rotation is connected with the guide roller 11 in cooling box 1, wiping piece 2 is set up on the vertical end face of the yarn side of cooling box 1, wiping piece 2 includes sliding hole plate 21 and water absorbing part 22, two sliding hole plates 21 are symmetrically set up horizontally, and the adjacent horizontal end face of two sliding hole plates 21 is set up with water absorbing part 22 horizontally, water absorbing part 22 includes pole plate 221, rubber frame 223 and water absorbing cotton 225, pole plate 221 is vertically slid and is assembled on sliding hole plate 21, and the horizontal end face of pole plate 221 away from sliding hole plate 21 is transversely vertically fixed with multiple elastic frames 222, the horizontal end face of elastic frame 222 away from pole plate 221 is set up with rubber frame 223, and the horizontal end face of rubber frame 223 away from elastic frame 222 is fixed with water absorbing cotton 225, and the end of two sliding hole plates 21 away from cooling box 1 is provided with blowing piece 3.

[0032] Through the above technical scheme, the fine and dense nis yarn is sprayed and guided into the cooling box 1 through the guide roller 11, the fine and dense nis yarn is cooled by contacting water in the cooling box 1, and the fine and dense nis yarn is guided through the two water absorbing parts 22 of the wiping piece 2 after water cooling, the fine and dense nis yarn is pressed on the fine and dense nis yarn by the water absorbing cotton 225 on the rubber frame 223 in the water absorbing part 22, the water adhered to the fine and dense nis yarn is wiped, the fine and dense nis yarn is dried by the air driven by the blowing piece 3, and the water on the yarn is cleaned and removed by the wiping piece 2 after the yarn is water-cooled, so that the temperature of the yarn rises, the temperature of the yarn after the yarn is pulled and wound is affected, the yarn is easily thinned during pulling, and the quality of the yarn is affected.

[0033] Reference Figure 3 And Figure 4The horizontal surface of the rubber frame 223 is provided with a plurality of through holes 227, and the inside of the rubber frame 223 is horizontally fixed with a heating rod 224. The heating rod 224 in the rubber frame 223 generates heat to dry the water vapor on the water-absorbing cotton 225 through the through holes 227, ensures that the water-absorbing cotton 225 is in a dry state, and improves the wiping and cleaning effect of the silk thread. The vertical rod of the rod plate 221 is vertically sleeved with a spring 226, and the two ends of the spring 226 are fixed on the vertical rod end and the sliding hole plate 21 respectively. The vertical rod of the rod plate 221 is pushed to vertically move on the sliding hole plate 21 under the deformation force of the spring 226, and the water-absorbing element 22 is pushed to tightly adhere to the surface of the water-cooled fine and dense nylon thread. The upper sliding hole plate 21 of the cooling box 1 is vertically fixed with a sliding rod 25, and the lower sliding hole plate 21 of the cooling box 1 is horizontally fixed with a hole seat and a screw hole seat 23. The sliding rod 25 is vertically slidably assembled in the hole seat. According to the diameter of the fine and dense nylon thread, the upper sliding rod 25 of the cooling box 1 is vertically slid on the sliding hole plate 21, and the distance between the water-absorbing element 22 of the upper and lower sliding hole plates 21 of the cooling box 1 is adjusted in the vertical direction.

[0034] Referring to Figure 3 The screw hole seat 23 is vertically screwed with an adjusting screw rod 24, and the top end of the adjusting screw rod 24 is rotatably connected to the upper sliding hole plate 21 of the cooling box 1. Rotating the adjusting screw rod 24 in the screw hole seat 23 pushes the upper sliding hole plate 21 of the cooling box 1 to vertically slide, adjusts the distance between the water-absorbing element 22 in the vertical direction, and is suitable for the diameter of the fine and dense nylon thread. The top surface of the cooling box 1 is horizontally fixed with a top plate 12, and the bottom surface of the top plate 12 is horizontally fixed with a spray plate 13. The top surface of the spray plate 13 is vertically fixed with a liquid guide pipe 14 which is communicated with the top plate 12, and the liquid guide pipe 14 is communicated with a valve 15. When cooling the fine and dense nylon thread, the liquid guide pipe 14 is communicated with the water supply pipeline, the valve 15 on the liquid guide pipe 14 is opened, and the water is sprayed on the fine and dense nylon thread through the spray plate 13 to cool the fine and dense nylon thread.

[0035] Referring to Figure 5 The bottom surface of the cooling box 1 is vertically communicated and fixed with a screw cover 16, and the screw cover 16 is vertically provided with a filter cartridge 17. The top end of the filter cartridge 17 is vertically communicated and fixed with a screw ring 171, the inside of the filter cartridge 17 is vertically fixed with a mesh cylinder 18, and the bottom surface of the filter cartridge 17 is vertically communicated and fixed with a liquid discharge pipe. The water for cooling the fine and dense nylon thread falls into the filter cartridge 17, the water for cooling the fine and dense nylon thread is filtered to remove impurities through the mesh cylinder 18, and then the water for cooling the fine and dense nylon thread is discharged through the liquid discharge pipe on the ground.

[0036] Referring to Figure 3The blowing part 3 comprises a wind box 31 fixed horizontally at the end of the two slide hole plates 21 away from the cooling box 1, and the wind box 31 is vertically communicated with an air guide pipe 32, and the air guide pipe 32 is communicated with a wind pump 33. The wind pump 33 is started to drive air into the air guide pipe 32, and then the air enters the wind box 31 to blow on the fine and dense nylon thread after wiping, and the surface water vapor is dried again.

[0037] The implementation principle of the fine and dense nylon thread device is that the sprayed fine and dense nylon thread is guided into the cooling box 1 through the guide roller 11, the fine and dense nylon thread contacts water in the cooling box 1 to be cooled, the cooled fine and dense nylon thread is guided between the two water absorbing parts 22 of the wiping part 2, the water cooled fine and dense nylon thread is pressed on the fine and dense nylon thread by the water absorbing cotton 225 on the rubber frame 223 in the water absorbing part 22 to wipe the water adhered on the fine and dense nylon thread, and the wiped fine and dense nylon thread is air dried by the blowing part 3.

[0038] The above are the preferred embodiments of the application, and are not limited to the protection scope of the application, so that: any equivalent changes made according to the structure, shape, principle of the application should be covered in the protection scope of the application.

Claims

1. A fine and tight nisshiki device characterized by comprising: Including cooling box (1), wiping piece (2) and blowing piece (3), the top surface of the cooling box (1) is provided with an opening, and the cooling box (1) is horizontally rotatably connected with a guide roller (11), the wiping piece (2) is arranged on the vertical end surface of the cooling box (1) on the side of the yarn outlet, the wiping piece (2) comprises a sliding hole plate (21) and a water absorbing piece (22), the sliding hole plate (21) is horizontally symmetrically provided with two pieces, and the two sliding hole plates (21) are horizontally provided with a water absorbing piece (22) on the adjacent horizontal end surface, the water absorbing piece (22) comprises a rod plate (221), a rubber frame (223) and water absorbing cotton (225), the rod plate (221) is vertically slidably assembled on the sliding hole plate (21), and a plurality of elastic frames (222) are transversely and vertically fixed on the horizontal end surface of the rod plate (221) away from the sliding hole plate (21), the rubber frame (223) is horizontally arranged on the horizontal end surface of the elastic frame (222) away from the rod plate (221), and the water absorbing cotton (225) is horizontally fixed on the horizontal end surface of the rubber frame (223) away from the elastic frame (222), and the two sliding hole plates (21) are provided with the blowing piece (3) on one end away from the cooling box (1).

2. A fine denier spun filament device as claimed in claim 1, wherein: A plurality of through holes (227) are formed through the horizontal surface of the rubber frame (223) close to the water absorbing cotton (225), and a heating rod (224) is horizontally fixed in the rubber frame (223).

3. A fine denier spun filament device as claimed in claim 2, wherein: A spring (226) is vertically sleeved on the vertical rod of the rod plate (221), and the two ends of the spring (226) are fixed on the vertical rod end and the sliding hole plate (21) respectively.

4. A fine denier spun filament device as claimed in claim 3 wherein: A sliding rod (25) is vertically fixed on one side of the upper sliding hole plate (21) of the cooling box (1), and a hole seat is horizontally fixed on one side of the lower sliding hole plate (21) of the cooling box (1), and a screw hole seat (23) is horizontally fixed on one side of the lower sliding hole plate (21) of the cooling box (1), and the sliding rod (25) is vertically and slidably assembled in the hole seat.

5. A fine denier spun filament device as claimed in claim 4 wherein: An adjusting screw (24) is vertically and threadedly assembled in the screw hole seat (23), and the top end of the adjusting screw (24) is rotatably connected to the upper sliding hole plate (21) of the cooling box (1).

6. A fine denier spun filament device as claimed in claim 5 wherein: A top plate (12) is horizontally fixed in the middle of the top surface of the cooling box (1), and a spray plate (13) is horizontally fixed on the bottom surface of the top plate (12), a liquid guide pipe (14) is vertically and fixedly communicated through the top plate (12) on the top surface of the spray plate (13), and a valve (15) is assembled in communication on the liquid guide pipe (14).

7. A fine denier spun filament device as claimed in claim 6 wherein: A screw cover (16) is vertically and fixedly communicated on the middle of the bottom surface of the cooling box (1), a filter cartridge (17) is vertically arranged on the screw cover (16), a screw ring (171) is vertically and fixedly communicated on the top end of the filter cartridge (17), a meshing tube (18) is vertically fixed in the filter cartridge (17), and a liquid discharge pipe is vertically and fixedly communicated on the bottom surface of the filter cartridge (17).

8. A fine denier spun filament device as claimed in claim 7, wherein: The blowing piece (3) comprises a wind box (31), the wind box (31) is horizontally fixed on one end of the two sliding hole plates (21) away from the cooling box (1), a gas guide pipe (32) is vertically and fixedly communicated on the wind box (31), and a wind pump (33) is assembled in communication on the gas guide pipe (32).

Citation Information

Patent Citations

  • Polyester taffeta drying device

    CN211346076U