Cooling mechanism for DTY (Draw Textured Yarn) processing

By introducing an elastic pusher and contact shovel into the DTY filament cooling mechanism, combined with multi-stage condensation and fan cooling, the problem of uneven cooling caused by filament bending is solved, achieving uniform cooling and convenient collection.

CN223522751UActive Publication Date: 2025-11-07HANGZHOU ZHONGCAI CHEM FIBER
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Patent Information

Application Number
CN202423090055.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-07
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

The existing DTY yarn cooling mechanism causes uneven cooling when the yarn is bent, which affects the cooling effect, and the bent yarn is not easy to collect.

Method used

The design incorporates an elastic pusher wheel and contact spatula, which keep the yarn taut and utilizes multi-stage condensation and fan cooling to prevent the yarn from sticking to the rolling components.

Benefits of technology

It achieves uniform cooling of the threads, prevents damage from excessive temperature differences, and facilitates collection, thus improving the efficiency and effectiveness of the cooling mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a draw textured yarn (DTY) processing cooling mechanism which comprises a shell, a push-up assembly is installed in the middle of the lower wall in the shell and comprises a first telescopic rod, a first spring, a mounting frame and a push-up wheel, the first spring is connected to the outside of the first telescopic rod, the mounting frame is connected to the upper end of the first spring, and the push-up wheel is connected to the mounting frame. An upper push wheel is mounted at the upper end of the mounting frame, an air outlet assembly is mounted on the left side of the lower wall in the shell, a motor is mounted at the front end of the shell, a first rolling assembly is mounted on the left side in the shell, a second rolling assembly is mounted on the right side in the shell, and a contact assembly is arranged on the right side of the second rolling assembly. Compared with an existing common cooling mechanism, the cooling mechanism for DTY processing is provided with a pushing structure, silk threads can be more conveniently kept in a straightened state, the cooling work of the silk threads is facilitated, and the cooling mechanism is provided with an auxiliary discharging structure, so that the silk threads are prevented from being attached to the cooling mechanism during cooling.
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Description

TECHNICAL FIELD

[0001] The utility model relates to DTY silk processing technical field, specifically is a cooling mechanism for DTY silk processing. BACKGROUND

[0002] In the DTY silk processing process, the fiber passes through the processes such as drawing and false twisting, and these processes will generate heat for the fiber, and if the heat cannot be dissipated in time, the physical properties and quality of the fiber will be affected, for example, too high temperature can cause the strength of the fiber to decrease, the hand feeling to be poor, and the dyeing performance to change, therefore, the cooling mechanism plays a crucial role in the DTY silk processing.

[0003] In the working process of the existing cooling mechanism, if the DTY silk is bent, the silk thread will appear folded, which will cause uneven cooling and easily affect the cooling effect, and the bent silk thread is not convenient for subsequent collection, and the above-mentioned problems cannot be well met the use requirement of people, and technical innovation is carried out on the basis of the existing cooling mechanism. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a cooling mechanism for DTY silk processing to solve the problem that the general cooling mechanism cannot well meet the use requirement of people.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a cooling mechanism for DTY silk processing, comprising a shell, an upper push assembly is installed in the middle of the inner lower wall of the shell, and the upper push assembly comprises a first telescopic rod, a first spring, a mounting frame and an upper push wheel, a first spring is connected to the outside of the first telescopic rod, a mounting frame is connected to the upper end of the first spring, and an upper push wheel is installed at the upper end of the mounting frame.

[0006] Further, an air outlet assembly is installed on the left side of the inner lower wall of the shell, and a motor is installed at the front end of the shell, a first rolling assembly is installed on the left side of the inner shell, a second rolling assembly is installed on the right side of the inner shell, and a contact assembly is arranged on the right side of the second rolling assembly.

[0007] Further, a second condenser is installed on the left side of the rear end of the shell, and a condensing assembly is installed on the right side of the rear end of the shell.

[0008] Further, the air outlet assembly comprises an air outlet box, a fan, dust absorption cotton and a first condensing pipe, a fan is installed on the left side of the air outlet box, dust absorption cotton is installed in the air outlet box, and a first condensing pipe is inlaid in the dust absorption cotton.

[0009] Further, the first rolling assembly comprises a rolling shaft, a rolling wheel and a second condensing pipe, the rolling wheel is installed through the middle part of the rolling shaft, and the second condensing pipe is installed around the inside of the rolling shaft.

[0010] Further, the condensing assembly comprises a first condensing machine and a connecting pipe, and the connecting pipe is connected to the pipe opening of the first condensing machine.

[0011] Further, the contact assembly comprises a contact shovel, a second telescopic rod and a second spring, and the right side of the contact shovel is connected with the second telescopic rod, and the outside of the second telescopic rod is connected with the second spring.

[0012] Compared with the prior art, the device has the beneficial effects that the device has a pushing structure, the silk thread is kept in a straight state, and the cooling work of the silk thread is facilitated, the device has an auxiliary discharging structure, and the silk thread is prevented from being attached to the device during cooling;

[0013] 1. The mounting frame is connected between the first spring and the first telescopic rod and the shell to form an elastic structure, the elastic structure can push the upper pushing wheel upward when the silk thread is loose, so that the silk thread is straightened, and the device is facilitated to perform cooling work.

[0014] 2. The contact shovel is connected between the second telescopic rod and the second spring and the shell to form an elastic structure, the elastic structure can make the contact shovel contact the second rolling assembly, the silk thread is prevented from being adhered to the second rolling assembly during cooling, and the material collection of the device is affected. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a front view structural schematic diagram of the utility model;

[0016] Figure 2 It is a front view sectional structure schematic diagram of the utility model;

[0017] Figure 3 It is a rear view structure schematic diagram of the utility model;

[0018] Figure 4 It is an enlarged sectional structure schematic diagram of the air outlet assembly of the utility model;

[0019] Figure 5 It is a three-dimensional structure schematic diagram of the contact assembly of the utility model.

[0020] In the diagram: 1. Outer shell; 2. Push-up assembly; 201. First telescopic rod; 202. First spring; 203. Mounting bracket; 204. Push-up wheel; 3. Air outlet assembly; 301. Air outlet box; 302. Fan; 303. Dust-absorbing cotton; 304. First condenser pipe; 4. Motor; 5. First rolling assembly; 501. Rolling shaft; 502. Rolling wheel; 503. Second condenser pipe; 6. Second rolling assembly; 7. Condensation assembly; 701. First condenser; 702. Connecting pipe; 8. Second condenser; 9. Contact assembly; 901. Contact shovel; 902. Second telescopic rod; 903. Second spring. Detailed Implementation

[0021] like Figure 2 As shown, a cooling mechanism for DTY yarn processing includes a housing 1. An upward push assembly 2 is installed in the middle of the lower inner wall of the housing 1. The upward push assembly 2 includes a first telescopic rod 201, a first spring 202, a mounting bracket 203, and an upward push wheel 204. The first telescopic rod 201 is externally connected to the first spring 202, and the upper end of the first spring 202 is connected to the mounting bracket 203. The upper end of the mounting bracket 203 is equipped with the upward push wheel 204.

[0022] The mounting bracket 203 forms an elastic structure with the outer shell 1 through the first spring 202 and the first telescopic rod 201. The elastic structure can push the upper push wheel 204 upward when the wire is loose, thereby straightening the wire and facilitating the cooling operation of the equipment.

[0023] like Figure 1 , Figure 3 , Figure 4 and Figure 5 As shown, an air outlet assembly 3 is installed on the lower left side of the inner wall of the outer casing 1, and a motor 4 is installed at the front end of the outer casing 1. A first rolling assembly 5 is installed on the left side of the inner wall of the outer casing 1, and a second rolling assembly 6 is installed on the right side of the inner wall of the outer casing 1. A contact assembly 9 is provided on the right side of the second rolling assembly 6. A second condenser 8 is installed on the left side of the rear end of the outer casing 1, and a condenser assembly 7 is installed on the right side of the rear end of the outer casing 1.

[0024] like Figure 4 As shown, the air outlet assembly 3 includes an air outlet box 301, a fan 302, a dust-absorbing cotton 303, and a first condenser pipe 304. The fan 302 is installed on the left side of the air outlet box 301, the dust-absorbing cotton 303 is installed inside the air outlet box 301, and the first condenser pipe 304 is embedded inside the dust-absorbing cotton 303.

[0025] The air generated by the fan 302 passes through the first condenser pipe 304, thus forming cold air and causing the cold air to diffuse in the equipment.

[0026] like Figure 2As shown in the figure, the first rolling assembly 5 comprises a rolling shaft 501, a rolling wheel 502 and a second condensing pipe 503, the rolling wheel 502 is installed through the middle part of the rolling shaft 501, and the second condensing pipe 503 is installed around the inside of the rolling shaft 501.

[0027] The second condensing machine 8 cools the rolling wheel 502 through the second condensing pipe 503.

[0028] As shown in the figure, the condensing assembly 7 comprises a first condensing machine 701 and a communication pipe 702, and the communication pipe 702 is connected to the pipe opening of the first condensing machine 701. Figure 3

[0029] As shown in the figure, the contact assembly 9 comprises a contact shovel 901, a second telescopic rod 902 and a second spring 903, the second telescopic rod 902 is connected to the right side of the contact shovel 901, and the second spring 903 is connected to the outside of the second telescopic rod 902. Figure 5

[0030] The contact shovel 901 forms an elastic structure with the second telescopic rod 902 and the second spring 903 and the shell 1, and through the elastic structure, the contact shovel 901 can be in contact with the second rolling assembly 6, so as to avoid the silk thread from adhering to the second rolling assembly 6 when it is cooled, and affect the material collection of the equipment.

[0031] Working principle: when the cooling mechanism for DTY silk processing is used, first, the silk thread is placed on the first rolling assembly 5 according to the length of the silk thread, and then the first rolling assembly 5 is rotated to roll the silk thread, and the second rolling assembly 6 is rotated to roll the silk thread. Figure 1 ​​The shown is good, at this time the second condensing machine 8 through the second condensing pipe 503 to the rolling wheel 502 cooling, here to the rolling wheel 502 cooling, but the temperature of the rolling wheel 502 and the temperature of the silk line difference is not large, so that the silk line cooling will not appear temperature difference too large, affect the state of silk, at the same time the first condensing machine 701 is also working, through the communication pipe 702 to the first condensing pipe 304 and the second rolling assembly 6, the first condensing machine 701 cooling effect is much larger than the cooling effect of the second condensing machine 8, so that in the second rolling assembly 6 work, can guarantee the silk line temperature to the required temperature, at the same time the fan 302 produces the wind from the first condensing pipe 304, thereby forming the cold wind, make the cold air in the equipment diffusion, thereby is the silk line moving process in the continuous cooling, will not appear silk line and the second rolling assembly 6 contact still has the larger temperature difference, cause temperature difference too large damage silk line situation, in the working process, rely on the mounting frame 203 through the first spring 202 and the first telescopic rod 201 and the shell 1 between the elastic lifting structure can realize the continuous push of the push wheel 204, thereby making the push wheel 204 to the silk line straightening, facilitate the work of the equipment, at the same time the contact shovel 901 through the second telescopic rod 902 and the second spring 903 and the shell 1 between the elastic extension structure can make the contact shovel 901 and the second rolling assembly 6 contact, thereby avoid silk line adhesion to the second rolling assembly 6.

Claims

1. A cooling mechanism for DTY yarn processing, characterized by, The utility model provides a kind of pusher, including shell (1), the inside lower wall of shell (1) is equipped with pusher assembly (2) in middle, and pusher assembly (2) includes first telescopic rod (201), first spring (202), mounting bracket (203) and pusher wheel (204), the outside of first telescopic rod (201) is connected with first spring (202), and the upper end of first spring (202) is connected with mounting bracket (203), the upper end of mounting bracket (203) is equipped with pusher wheel (204).

2. A cooling mechanism for DTY yarn processing as claimed in claim 1, wherein, The inside lower wall left side of shell (1) is equipped with air outlet assembly (3), and the front end of shell (1) is equipped with motor (4), the inside left side of shell (1) is equipped with first rolling assembly (5), and the inside right side of shell (1) is equipped with second rolling assembly (6), the right side of second rolling assembly (6) is provided with contact assembly (9).

3. A cooling mechanism for DTY yarn processing as claimed in claim 1 wherein, The rear end left side of shell (1) is equipped with second condensing machine (8), and the rear end right side of shell (1) is equipped with condensing assembly (7).

4. A cooling mechanism for DTY yarn processing as claimed in claim 2 wherein, The air outlet assembly (3) includes air outlet tank (301), fan (302), dust absorption cotton (303) and first condensing pipe (304), and the left side of air outlet tank (301) is equipped with fan (302), the inside of air outlet tank (301) is equipped with dust absorption cotton (303), and the inside of dust absorption cotton (303) is inlaid with first condensing pipe (304).

5. A cooling mechanism for DTY yarn processing as claimed in claim 2 wherein, The first rolling assembly (5) includes rolling shaft (501), rolling wheel (502) and second condensing pipe (503), and the middle part of rolling shaft (501) is installed through rolling wheel (502), and the inside of rolling shaft (501) is installed with second condensing pipe (503).

6. A cooling mechanism for DTY yarn processing as claimed in claim 3 wherein, The condensing assembly (7) includes first condensing machine (701) and communication pipe (702), and the pipe orifice of first condensing machine (701) is connected with communication pipe (702).

7. A cooling mechanism for DTY yarn processing as claimed in claim 2 wherein, The contact assembly (9) includes contact shovel (901), second telescopic rod (902) and second spring (903), and the right side of contact shovel (901) is connected with second telescopic rod (902), and the outside of second telescopic rod (902) is connected with second spring (903).