Nylon spinning forming cooling device

By combining water cooling and air cooling, along with a motor-driven fan movement and guide roller design, the problems of uneven cooling and cost control in existing devices have been solved, achieving a more efficient cooling effect for nylon spinning.

CN223837653UActive Publication Date: 2026-01-27FUJIAN XINCHUANG NYLON IND CO LTD
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Patent Information

Application Number
CN202520323688.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-01-27
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

Existing nylon spinning cooling devices suffer from limited fan coverage area, difficulty in cost control, and uneven cooling due to the tendency of nylon fibers to stack on the rollers.

Method used

A combination of water cooling and air cooling is used for cooling. The fan assembly is driven by a motor and linkage assembly. A guide roller with wire grooves is used to avoid stacking. Hollow guide rollers and heat dissipation fins are used to improve uniformity.

Benefits of technology

It achieves a wider cooling coverage and uniformity, improves the cooling effect of nylon spinning, reduces costs, and avoids stacking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a chinlon spinning forming cooling device, which relates to the technical field of chinlon spinning production, and comprises a cooling box, one end of the cooling box is provided with a feed port, the other end of the cooling box is provided with a discharge port, one end of the feed port is provided with a feed roller, one end of the discharge port is provided with a discharge roller, and the feed roller is provided with a discharge roller. A first water cooling chamber and a second water cooling chamber are arranged in the cooling box, second guide rollers are arranged in the first water cooling chamber and the second water cooling chamber, first guide rollers are arranged above the first water cooling chamber and the second water cooling chamber, an air cooling assembly is further arranged at the upper end of the cooling box, and a dustproof net is arranged above the air cooling assembly. According to the cooling device, combined cooling is conducted on chinlon spinning in a water cooling mode and an air cooling mode, the cooling effect is guaranteed, meanwhile, the fan assembly is driven to transversely reciprocate along the first sliding groove through the motor and the connecting rod assembly, the coverage range of the fan assembly is widened, and the cooling effect of the air cooling assembly is further improved.
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Description

Technical Field

[0001] This utility model relates to the field of nylon spinning production technology, specifically a nylon spinning forming cooling device. Background Technology

[0002] With the continuous development of nylon spinning production technology, nylon spinning has been widely used. Nylon spinning is a type of textile fabric with advantages such as no pilling, no wrinkling, and easy cleaning. There are many types of nylon spinning, which can be divided into bright nylon spinning and colored nylon spinning. In the process of nylon spinning production, forming and cooling is an essential step.

[0003] Most existing molding cooling devices use fans in fixed positions for cooling, which limits the fan coverage area or requires a large area of ​​fans to achieve the cooling effect, making it difficult to control costs. In addition, nylon yarns tend to stack on the rollers, making it impossible to cool the nylon yarns evenly, thus affecting the cooling effect of the nylon yarns.

[0004] Based on this, a nylon spinning and forming cooling device is now provided, which can eliminate the drawbacks of existing devices. Utility Model Content

[0005] The purpose of this invention is to provide a nylon spinning and forming cooling device to solve the problems in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A nylon spinning and forming cooling device includes a cooling box, with an inlet at one end and an outlet at the other end. An inlet roller is provided at one end of the inlet, and an outlet roller is provided at one end of the outlet. The cooling box contains a first water-cooling chamber and a second water-cooling chamber, each containing a second guide roller. A first guide roller is positioned above the first and second water-cooling chambers. An air-cooling component is also provided at the top of the cooling box, with a dustproof net positioned above the air-cooling component.

[0008] Based on the above technical solutions, this utility model also provides the following optional technical solutions:

[0009] In one alternative: the cooling box has ventilation holes on its side plate, the ventilation holes are located at both ends of the first guide roller, the cooling box has an operation port on one side, the cooling box has a first mounting groove for installing air-cooled components on its top plate, the first mounting groove has a first sliding groove on its side, the first mounting groove has a second mounting groove for installing a dustproof net at its upper end, and the cooling box has a second sliding groove on the side opposite to the operation port.

[0010] In one alternative: the feed roller includes a fixed seat, the fixed seat is fixed to the side plate of the cooling box, the fixed seat is provided with a first fixed shaft, and a first set of shafts is rotatably connected to the first fixed shaft, and the discharge roller has the same structure as the feed roller.

[0011] In one alternative: the first guide roller includes a guide roller body, both ends of which are rotatably connected to the cooling box. The guide roller body is provided with a plurality of first wire grooves, and a cavity is provided inside the guide roller body, with a plurality of heat dissipation fins provided inside the cavity.

[0012] In one alternative: the second guide roller includes a second fixed shaft, both ends of which are fixedly connected to the inner wall of the cooling box. A second set of shafts is rotatably connected to the second fixed shaft, and the second set of shafts is provided with a plurality of second guide grooves.

[0013] In one alternative: the air-cooled assembly includes a fan assembly and a drive assembly. The fan assembly includes two mounting boxes, each with a slide block at both ends. The slide block is slidably disposed in a first groove. The mounting box contains multiple fans. The mounting box has ventilation slots at both the top and bottom. The drive assembly is located on one side of the fan assembly.

[0014] In one alternative: the drive assembly includes a linkage assembly and a motor. The linkage assembly includes a first connecting rod and a second connecting rod. The upper ends of the first connecting rod and the second connecting rod are rotatably connected to a slide block, and the lower ends of the first connecting rod and the second connecting rod are rotatably connected to a sliding shaft. One end of the sliding shaft is slidably disposed in a second sliding groove. The motor is disposed below the linkage assembly.

[0015] In one alternative: a fixing plate is provided on one side of the motor, the motor is fixed to one side of the fixing plate, the fixing plate is fixed to the side plate of the cooling box, the output end of the motor passes through the fixing plate and is connected to a circular plate, a fixing column is provided on the circular plate, a third connecting rod is rotatably connected to the fixing column, and one end of the third connecting rod is rotatably connected to a sliding shaft.

[0016] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0017] 1. This utility model combines water cooling and air cooling to cool nylon spinning, ensuring the cooling effect. At the same time, the fan assembly is driven to move laterally back and forth along the first slide groove by a motor and connecting rod assembly, which increases the coverage of the fan assembly and further improves the cooling effect of the air cooling assembly.

[0018] 2. This utility model avoids the stacking of nylon spinning fibers on the roller by setting a first guide roller and a second guide roller with wire grooves, so that the nylon spinning fibers can be cooled evenly. In addition, the hollow first guide roller structure and heat dissipation fins can also effectively improve the cooling effect of nylon spinning fibers. Attached Figure Description

[0019] Figure 1 This is a structural schematic diagram of one side of the present invention.

[0020] Figure 2 This is a schematic diagram of the structure on the other side of this utility model.

[0021] Figure 3 This is a schematic diagram of the internal structure of the cooling box in this utility model.

[0022] Figure 4 This is a schematic diagram of the structure of the first guide roller in this utility model.

[0023] Figure 5 This is a schematic diagram of the structure of the air-cooled component in this utility model.

[0024] Figure reference numerals: 100, Cooling chamber; 101, Feed inlet; 102, Discharge outlet; 103, Ventilation hole; 104, Operation port; 105, First water-cooling chamber; 106, Second water-cooling chamber; 107, First mounting groove; 108, First chute; 109, Second mounting groove; 110, Second chute; 200, Feed roller; 201, Fixed base; 202, First fixed shaft; 203, First shaft sleeve; 300, Discharge roller; 400, First guide roller; 401, Guide roller body; 402, First... 403. Wire guide groove; 404. Cavity; 505. Heat dissipation fins; 506. Second guide roller; 507. Second fixed shaft; 508. Second wire guide groove; 609. Air-cooled assembly; 600. Mounting box; 601. Fan; 602. Ventilation slot; 603. Slide seat; 604. First connecting rod; 605. Second connecting rod; 606. Sliding shaft; 607. Third connecting rod; 608. Circular plate; 610. Fixed column; 611. Fixed plate; 612. Motor; 700. Dustproof net. Detailed Implementation

[0025] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0026] In one embodiment, such as Figures 1-3As shown, a nylon spinning and forming cooling device includes a cooling chamber 100. One end of the cooling chamber 100 has a feed inlet 101, and the other end has a discharge outlet 102. One end of the feed inlet 101 has a feed roller 200, and one end of the discharge outlet 102 has a discharge roller 300. The cooling chamber 100 contains a first water-cooling chamber 105 and a second water-cooling chamber 106. Both the first water-cooling chamber 105 and the second water-cooling chamber 106 are equipped with second guide rollers 500. The first water-cooling chamber 105... 5. A first guide roller 400 is provided above the second water cooling chamber 106. An air cooling component 600 is also provided at the upper end of the cooling box 100. A dustproof net 700 is provided above the air cooling component 600. In use, the freshly produced nylon yarn is fed into the cooling box 100 from the feed roller 200, and passes through the first guide roller 400 and the second guide roller 500 in sequence through the first water cooling chamber 105 and the second water cooling chamber 106, while passing through the air cooling component 600, and finally exiting from the discharge port 102.

[0027] In one embodiment, such as Figure 1 and Figure 2 As shown, the cooling box 100 has ventilation holes 103 on its side plate, which are located at both ends of the first guide roller 400. The cooling box 100 has an operation port 104 on one side. The cooling box 100 has a first mounting groove 107 for installing the air-cooled component 600 on its top plate. The first mounting groove 107 has a first sliding groove 108 on its side. The upper end of the first mounting groove 107 has a second mounting groove 109 for installing the dustproof net 700. The cooling box 100 has a second sliding groove 110 on the side opposite to the operation port 104. In use, the operation port 104 facilitates the operator to perform wire threading operations, and the air-cooled component 600 can move back and forth along the first sliding groove 108.

[0028] In one embodiment, such as Figure 2 As shown, the feed roller 200 includes a fixed base 201, which is fixed on the side plate of the cooling box 100. The fixed base 201 is provided with a first fixed shaft 202, and a first set of shafts 203 is rotatably connected to the first fixed shaft 202. The structure of the discharge roller 300 is the same as that of the feed roller 200. In use, the feed roller 200 and the discharge roller 300 prevent the nylon spinning yarn from rubbing against the feed port 101 and the discharge port 102, thus avoiding unnecessary damage.

[0029] In one embodiment, such as Figure 4As shown, the first guide roller 400 includes a guide roller body 401, both ends of which are rotatably connected to the cooling box 100. The guide roller body 401 is provided with a plurality of first guide grooves 402, and a cavity 403 is provided inside the guide roller body 401. A plurality of heat dissipation fins 404 are provided inside the cavity 403. In use, the first guide grooves 402 can prevent the nylon spinning fibers from stacking, thereby ensuring that the nylon spinning fibers can be cooled evenly. The cavity 403 and the heat dissipation fins 404 can allow the nylon spinning fibers to dissipate some heat, and the air blown in through the ventilation hole 103 can carry away the heat.

[0030] In one embodiment, such as Figure 3 As shown, the second guide roller 500 includes a second fixed shaft 501. Both ends of the second fixed shaft 501 are fixedly connected to the inner wall of the cooling box 100. A second set of shafts 502 is rotatably connected to the second fixed shaft 501. The second set of shafts 502 is provided with a plurality of second guide grooves 503. In use, the nylon spinning yarn is passed through the cooling water in the first water cooling chamber 105 and the second water cooling chamber 106 by the second guide roller 500, thereby cooling the nylon spinning yarn.

[0031] In one embodiment, such as Figure 5 As shown, the air-cooled assembly 600 includes a fan assembly and a drive assembly. The fan assembly includes two mounting boxes 601. The mounting boxes 601 have slides 604 at both ends. The slides 604 are slidably disposed in the first slide groove 108. The mounting boxes 601 are provided with multiple fans 602. The mounting boxes 601 are provided with ventilation slots 603 at the top and bottom. The drive assembly is located on one side of the fan assembly. In use, the fans 602 are used to air-cool the nylon yarn. The drive assembly enables the fan assembly to move back and forth along the first slide groove 108.

[0032] In one embodiment, such as Figure 5 As shown, the drive assembly includes a linkage assembly and a motor 612. The linkage assembly includes a first connecting rod 605 and a second connecting rod 606. The upper ends of the first connecting rod 605 and the second connecting rod 606 are rotatably connected to the slide block 604, and the lower ends of the first connecting rod 605 and the second connecting rod 606 are rotatably connected to the sliding shaft 607. One end of the sliding shaft 607 is slidably disposed in the second slide groove 110. The motor 612 is disposed below the linkage assembly. In use, the fan assembly is driven to move along the first slide groove 108 through the first connecting rod 605 and the second connecting rod 606.

[0033] In one embodiment, such as Figure 5As shown, a fixing plate 611 is provided on one side of the motor 612, and the motor 612 is fixed to one side of the fixing plate 611. The fixing plate 611 is fixed to the side plate of the cooling box 100. The output end of the motor 612 passes through the fixing plate 611 and is connected to the circular plate 609. A fixing post 610 is provided on the circular plate 609, and a third connecting rod 608 is rotatably connected to the fixing post 610. One end of the third connecting rod 608 is rotatably connected to the sliding shaft 607. In use, the circular plate 609 is driven to rotate by the motor 612, and the third connecting rod 608 is driven to move together by the fixing post 610. When the third connecting rod 608 moves, the sliding shaft 607 will move up and down along the second slide groove 110. At the same time, the fan assembly is driven to move laterally back and forth along the first slide groove 108 by the sliding shaft 607, the first connecting rod 605, and the second connecting rod 606.

[0034] The above embodiment discloses a nylon spinning forming cooling device. In use, the freshly produced nylon yarn is first fed into the cooling box 100 through the feed roller 200, and then passes through the first water cooling chamber 105 and the second water cooling chamber 106 in sequence through the first guide roller 400 and the second guide roller 500, and finally exits from the discharge port 102. Then, the fan 602 is started to cool the nylon yarn. At the same time, the motor 612 is started to drive the circular plate 609 to rotate. Simultaneously, the fixed column 610 drives the third connecting rod 608 to move together. When the third connecting rod 608 moves, the sliding shaft 607 moves back and forth up and down along the second slide groove 110. At the same time, the sliding shaft 607, the first connecting rod 605, and the second connecting rod 606 drive the fan 602 to move laterally back and forth along the first slide groove 108.

[0035] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A nylon spinning and forming cooling device, comprising a cooling box (100), wherein one end of the cooling box (100) is provided with a feed inlet (101) and the other end of the cooling box (100) is provided with a discharge outlet (102), characterized in that, The feed inlet (101) is provided with a feed roller (200) at one end, and the discharge outlet (102) is provided with a discharge roller (300) at one end. The cooling box (100) is provided with a first water cooling chamber (105) and a second water cooling chamber (106). The first water cooling chamber (105) and the second water cooling chamber (106) are each provided with a second guide roller (500). The first guide roller (400) is provided above the first water cooling chamber (105) and the second water cooling chamber (106). The cooling box (100) is also provided with an air cooling component (600) at the top. The air cooling component (600) is provided with a dustproof net (700) above it.

2. The nylon spinning and forming cooling device according to claim 1, characterized in that, The cooling box (100) has ventilation holes (103) on its side plate. The ventilation holes (103) are located at both ends of the first guide roller (400). The cooling box (100) has an operation port (104) on one side. The cooling box (100) has a first mounting groove (107) for installing the air-cooled component (600) on its top plate. The first mounting groove (107) has a first sliding groove (108) on its side. The first mounting groove (107) has a second mounting groove (109) for installing the dustproof net (700) at its upper end. The cooling box (100) has a second sliding groove (110) on the side opposite to the operation port (104).

3. The nylon spinning and forming cooling device according to claim 1, characterized in that, The feed roller (200) includes a fixed seat (201), which is fixed on the side plate of the cooling box (100). The fixed seat (201) is provided with a first fixed shaft (202), and a first set of shafts (203) is rotatably connected to the first fixed shaft (202). The discharge roller (300) has the same structure as the feed roller (200).

4. The nylon spinning and forming cooling device according to claim 1, characterized in that, The first guide roller (400) includes a guide roller body (401), both ends of which are rotatably connected to the cooling box (100). The guide roller body (401) is provided with a plurality of first guide wire grooves (402), and a cavity (403) is provided inside the guide roller body (401). A plurality of heat dissipation fins (404) are provided inside the cavity (403).

5. The nylon spinning and forming cooling device according to claim 1, characterized in that, The second guide roller (500) includes a second fixed shaft (501), both ends of which are fixedly connected to the inner wall of the cooling box (100). A second set of shafts (502) is rotatably connected to the second fixed shaft (501), and a plurality of second guide grooves (503) are provided on the second set of shafts (502).

6. The nylon spinning and forming cooling device according to claim 1, characterized in that, The air-cooled assembly (600) includes a fan assembly and a drive assembly. The fan assembly includes two mounting boxes (601). Each mounting box (601) has a slide (604) at both ends. The slide (604) is slidably disposed in a first slide groove (108). The mounting box (601) contains multiple fans (602). The mounting box (601) has ventilation slots (603) at both the top and bottom. The drive assembly is located on one side of the fan assembly.

7. The nylon spinning and forming cooling device according to claim 6, characterized in that, The drive assembly includes a linkage assembly and a motor (612). The linkage assembly includes a first connecting rod (605) and a second connecting rod (606). The upper ends of the first connecting rod (605) and the second connecting rod (606) are rotatably connected to the slide block (604), and the lower ends of the first connecting rod (605) and the second connecting rod (606) are rotatably connected to the sliding shaft (607). One end of the sliding shaft (607) is slidably disposed in the second slide groove (110). The motor (612) is disposed below the linkage assembly.

8. The nylon spinning and forming cooling device according to claim 7, characterized in that, A fixing plate (611) is provided on one side of the motor (612), the motor (612) is fixed on one side of the fixing plate (611), the fixing plate (611) is fixed on the side plate of the cooling box (100), the output end of the motor (612) passes through the fixing plate (611) and is connected to the circular plate (609), the circular plate (609) is provided with a fixing column (610), a third connecting rod (608) is rotatably connected to the fixing column (610), and one end of the third connecting rod (608) is rotatably connected to the sliding shaft (607).