Cooling and shaping device for producing silk-like cotton

By designing a combination of a heat dissipation box, feeding roller, discharging roller, blower mechanism, and air inlet mechanism for the cooling and shaping device, the problem of uneven cooling of imitation silk cotton was solved, and the uniform cooling and shaping effect of imitation silk cotton were improved.

CN223646790UActive Publication Date: 2025-12-09WENZHOU FEIFAN GARMENT ACCESSORIES CO LTD
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Patent Information

Application Number
CN202522210395.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2025-12-09
Estimated Expiration
2035-10-20

AI Technical Summary

Technical Problem

In the existing technology, when cooling and shaping imitation silk cotton, the traditional blowing method results in uneven heat dissipation, leading to insufficient cooling in some areas, and the edges and corners of the imitation silk cotton warping after shaping.

Method used

A cooling and shaping device was designed, which adopts a combination structure of heat dissipation box, feeding roller and discharging roller, combined with blower mechanism and air inlet mechanism. Through the hollow groove design of rectangular frame and square cover, all-round air blowing is realized to ensure stable air supply and improve cooling uniformity.

Benefits of technology

It achieves uniform cooling of imitation silk cotton, avoids warping of edges and corners after shaping, and improves the effect and quality of cooling and shaping.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling and shaping device for silk-like cotton production, which comprises a heat dissipation box, and a feeding roller and a discharging roller which can convey heated spinning cotton from the inside of the heat dissipation box are mounted at two ends of the heat dissipation box. The two ends of the top of the heat dissipation box are provided with air blowing mechanisms capable of blowing air to a circle of the splicing position of the heat dissipation box, and the top of the heat dissipation box is provided with an air inlet mechanism capable of continuously conveying air to the air blowing mechanisms. The air inlet mechanism provides air for the air blowing mechanism, and the air blowing mechanism blows air to the spinning cotton in all directions, so that the spinning cotton can be uniformly cooled, and insufficient local cooling and warping of corners of the shaped silk-like cotton are avoided.
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Description

Technical Field

[0001] This utility model relates to the field of imitation silk cotton production and processing technology, specifically a cooling and shaping device for the production of imitation silk cotton. Background Technology

[0002] Imitation silk cotton production and processing is a process of turning chemical fiber raw materials into short-fiber cotton-like products through specific processes. Its core is to use chemical fibers, such as polyester fibers, to stretch them into thin filaments through spinning technology, and then cut and shape them to make short fibers similar to cotton. These short fibers have good softness, warmth and elasticity, and are widely used in clothing filling, home textile filling and other fields. During the production process, it is necessary to precisely control parameters such as temperature and humidity to ensure the quality and performance of the fibers. At the same time, functional additives, such as antibacterial and flame retardant additives, are added according to different uses to enhance the added value of the product.

[0003] Currently, when cooling and shaping imitation silk cotton, the traditional method involves blowing air on the top or sides of the imitation silk cotton to dissipate heat. However, the heat dissipation is not uniform enough, resulting in insufficient cooling in some areas and warping of the edges and corners of the imitation silk cotton after shaping.

[0004] Therefore, a cooling and shaping device for the production of imitation silk cotton is proposed to solve the above problems. Utility Model Content

[0005] 1. Technical problem to be solved by the utility model

[0006] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a cooling and shaping device for the production of imitation silk cotton. It aims to solve the problem that in the existing technology, when cooling and shaping imitation silk cotton, the traditional method of blowing air to dissipate heat from the top or side of the imitation silk cotton is not uniform enough, resulting in insufficient local cooling and warping of the edges and corners of the imitation silk cotton after shaping.

[0007] 2. Technical Solution

[0008] To achieve the above objectives, this utility model provides the following technical solution:

[0009] A cooling and shaping device for producing imitation silk cotton includes a heat dissipation box. At both ends of the heat dissipation box are a feed roller and a discharge roller for conveying heated imitation silk cotton from inside the heat dissipation box. At both ends of the top of the heat dissipation box are a blower mechanism for blowing air around the joint of the heat dissipation box. At the top of the heat dissipation box is an air inlet mechanism for continuously supplying air to the blower mechanism.

[0010] Furthermore, four support columns are evenly installed at the bottom of the heat dissipation box, and a side guard plate extends outward from both ends of the heat dissipation box. There are two feed pipes, which are installed vertically between the inner sides of the side guard plates at the feed end. There are two discharge rollers, which are installed vertically between the inner sides of the side guard plates at the discharge end. A motor for driving one of the discharge rollers is installed on a side guard plate at the discharge end of the heat dissipation box.

[0011] The above technical solution, with two feed rollers and two discharge rollers arranged vertically, can stably clamp and convey the imitation silk cotton, avoiding conveying deviation. The motor at the discharge end drives the discharge roller to rotate, providing continuous power for the conveying of the imitation silk cotton and ensuring the continuity and stability of the conveying.

[0012] Furthermore, the heat sink is composed of three parts. Threaded holes are evenly spaced around the edge of each pair of adjacent parts. A rectangular frame is installed on the blower mechanism. Connecting frames that allow the heat sink assembly ends to be inserted are installed on the inner edges of both sides of the rectangular frame. The connecting frames are bolted to the threaded holes on the heat sink to assemble the various parts of the heat sink together.

[0013] Through the above technical solution, the connecting frame can be inserted into the splicing end of the heat sink box to ensure a stable connection between the blower mechanism and the heat sink box, providing a structural foundation for subsequent uniform air blowing.

[0014] Furthermore, the inner side of the rectangular frame is provided with a perforated groove, and the perforated groove of the rectangular frame is located on the inner side of the heat sink.

[0015] With the above technical solution, the hollow grooves around the inner side of the rectangular frame are located inside the heat sink, allowing the air from the blower mechanism to blow from all directions through the hollow grooves to the silk-like cotton inside the heat sink, covering more areas, solving the problem of uneven cooling caused by traditional localized blowing, and improving cooling uniformity.

[0016] Furthermore, a square cover is installed on the top of the rectangular frame, the interior of the square cover is connected to the interior hollow cavity of the rectangular frame, and a round hole is opened on the outer side of the square cover.

[0017] Through the above technical solution, the square cover at the top of the rectangular frame is connected to the hollow cavity inside the rectangular frame, and the round hole on the outer side of the square cover provides a channel for air intake, so that the air energy of the air intake mechanism can smoothly enter the rectangular frame, providing a structural guarantee for the transmission of air source for all-round air blowing and ensuring a stable supply of air volume.

[0018] Furthermore, the air intake mechanism is equipped with a fan shroud, which is installed on the top of the heat sink. Inside the fan shroud is a fan for drawing air into the fan shroud. On both sides of the fan shroud, exhaust pipes communicating with the inside of the fan shroud are symmetrically connected, and the exhaust pipes are connected to the round holes on the corresponding square cover.

[0019] Through the above technical solution, the air intake mechanism's shroud is installed on the top of the heat dissipation box, and the internal fan can continuously draw in external air. The exhaust pipes on both sides deliver the air to the round holes of the corresponding square shroud, thereby achieving a stable and continuous airflow supply to the blowing mechanism, ensuring the efficiency and effect of blowing and cooling, and further improving the uniformity of cooling of the imitation silk cotton.

[0020] 3. Beneficial effects

[0021] Compared with the prior art, the beneficial effects of this utility model are:

[0022] In this utility model, a cooling and shaping device for the production of imitation silk cotton is provided, which can achieve the following effects: This device, through the bottom support column and the side guards at both ends of the heat dissipation box, together with the upper and lower arranged feeding rollers, discharging rollers and drive motor, realizes the stable and continuous conveying of imitation silk cotton. The heat dissipation box adopts a splicing design, combined with the connecting frame and bolts of the blower mechanism, which not only ensures the structural strength but also facilitates maintenance. The hollow groove on the inner side of the rectangular frame of the blower mechanism, the square cover on the top, and the wind cover, fan and exhaust pipe of the air inlet mechanism work together to allow the air to be blown to the imitation silk cotton in all directions, solving the problem of uneven cooling in traditional local blowing, avoiding the warping of the edges and corners of the imitation silk cotton after shaping, and improving the uniformity and effect of cooling and shaping. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of a cooling and shaping device for producing imitation silk cotton according to this utility model;

[0024] Figure 2 This is a schematic diagram of the unfolded structure of the heat dissipation box of a cooling and shaping device for the production of imitation silk cotton according to this utility model;

[0025] Figure 3 This is a schematic diagram of the blower structure of a cooling and shaping device for producing imitation silk cotton according to this utility model;

[0026] Figure 4 This is a schematic diagram of the air inlet mechanism of a cooling and shaping device for the production of imitation silk cotton according to this utility model.

[0027] In the diagram: 1. Heat sink; 11. Feed roller; 12. Discharge roller; 13. Motor; 14. Threaded hole; 2. Air blower mechanism; 21. Rectangular frame; 22. Hollowed-out groove; 23. Connecting frame; 24. Square cover; 25. Round hole; 3. Air inlet mechanism; 31. Air cover; 32. Fan; 33. Exhaust pipe. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0029] To facilitate understanding of this utility model, a more comprehensive description will be given below with reference to the accompanying drawings. Several embodiments of this utility model are provided. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that the disclosure of this utility model will be more thorough and complete.

[0030] Example 1

[0031] Please see Figure 1-4 This embodiment provides a cooling and shaping device for the production of imitation silk cotton, including a heat dissipation box 1. Feed rollers 11 and discharge rollers 12 are installed at both ends of the heat dissipation box 1 to convey the heated imitation silk cotton from inside the heat dissipation box 1. A blower mechanism 2 is installed at both ends of the top of the heat dissipation box 1 to blow air around the joint of the heat dissipation box 1. An air inlet mechanism 3 is installed on the top of the heat dissipation box 1 to continuously supply airflow to the blower mechanism 2. The heated imitation silk cotton is conveyed inside the heat dissipation box 1 using the feed rollers 11 and discharge rollers 12. Airflow is provided to the blower mechanism 2 through the air inlet mechanism 3, and the blower mechanism 2 blows air in all directions on the imitation silk cotton, thereby achieving uniform cooling and heat dissipation of the imitation silk cotton and avoiding insufficient local cooling and warping of the edges of the imitation silk cotton after shaping.

[0032] Example 2

[0033] Please see Figure 1-2 Based on Embodiment 1, this embodiment further specifies that four support columns are evenly installed at the bottom of the heat dissipation box 1, and a side guard plate extends outward from both ends of the heat dissipation box 1. There are two feeding rollers 11, which are installed vertically between the inner sides of the side guard plate at the feeding end, and two discharging rollers 12, which are installed vertically between the inner sides of the side guard plate at the discharging end. A motor 13 for driving one of the discharging rollers 12 is installed on a side guard plate at the discharging end of the heat dissipation box 1. When in use, the motor 13 starts and drives one of the discharging rollers 12 to rotate. The imitation silk cotton enters the heat dissipation box 1 from the feeding end under the clamping of the vertically arranged feeding rollers 11 and discharging rollers 12 and is conveyed to the discharging end. The support columns stably support the heat dissipation box 1, and the side guard plate provides the installation position for the rollers to ensure stable conveying.

[0034] Example 3

[0035] Please see Figure 3 Based on Embodiment 1, this embodiment further defines that the inner side of the rectangular frame 21 is provided with a hollow groove, and the hollow groove of the rectangular frame 21 is located inside the heat dissipation box 1. A square cover 24 is installed on the top of the rectangular frame 21. The interior of the square cover 24 is connected to the hollow cavity inside the rectangular frame 21. A round hole 25 is provided on the outer side of the square cover 24. After the air enters through the round hole 25 of the square cover 24, it will flow into the interior of the rectangular frame 21 and then blow onto the imitation silk cotton inside the heat dissipation box 1 through the hollow groove on the inner side, so as to achieve all-round air blowing and make the imitation silk cotton evenly cooled.

[0036] Example 4

[0037] Please see Figure 4 Based on embodiment 1, this embodiment further specifies that the air intake mechanism 3 is equipped with a fan shroud 31, which is installed on the top of the heat sink 1. Inside the fan shroud 31, a fan 32 for drawing air into the fan shroud 31 is installed. On both sides of the fan shroud 31, exhaust pipes 33 that communicate with the inside of the fan shroud 31 are symmetrically connected. The exhaust pipes 33 are connected to the round holes 25 on the corresponding square cover 24. When the fan 32 is started, the fan 32 draws air from the outside into the fan shroud 31. The air is delivered to the round holes 25 of the square cover 24 through the exhaust pipes 33, enters the square cover 24 and the rectangular frame 21, and finally blows from the hollowed-out groove of the rectangular frame 21 onto the imitation silk cotton, continuously providing cooling air.

[0038] Working principle: When the imitation silk cotton production cooling and shaping device is in use, the motor 13 first drives the discharge roller 12 to rotate. The imitation silk cotton is held by the upper and lower arranged feed rollers 11 and discharge rollers 12, and enters the heat dissipation box 1 from the feed end and is conveyed to the discharge end. At the same time, the fan 32 of the air inlet mechanism 3 starts and draws air from the outside into the air hood 31. The exhaust pipes 33 on both sides of the air hood 31 deliver the air to the round hole 25 on the square cover 24 of the blower mechanism 2. After entering the square cover 24, the air flows into the hollow cavity inside the rectangular frame 21, and then blows the imitation silk cotton conveyed inside the heat dissipation box 1 from all directions through the hollow grooves around the inner side of the rectangular frame 21, so as to uniformly cool and dissipate heat. The cooled imitation silk cotton is sent out from the discharge roller 12, completing the cooling and shaping.

[0039] All technical features in this embodiment can be freely combined according to actual needs.

[0040] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.

Claims

1. A cooling and shaping device for the production of imitation silk cotton, comprising a heat dissipation box (1), characterized in that: The heat dissipation box (1) is equipped with a feed roller (11) and a discharge roller (12) at both ends, which can convey the heated imitation silk cotton from the inside of the heat dissipation box (1). The heat dissipation box (1) is equipped with a blower mechanism (2) at both ends at the top, which can blow air around the joint of the heat dissipation box (1). The heat dissipation box (1) is equipped with an air inlet mechanism (3) at the top, which can continuously supply air to the blower mechanism (2).

2. The cooling and shaping device for producing imitation silk cotton according to claim 1, characterized in that: The bottom of the heat sink (1) is evenly equipped with four support columns. Both ends of the heat sink (1) extend outward with a side guard plate. There are two feed rollers (11), which are installed vertically between the inner sides of the side guard plate at the feed end. There are two discharge rollers (12), which are installed vertically between the inner sides of the side guard plate at the discharge end. A motor (13) for driving one of the discharge rollers (12) is installed on a side guard plate at the discharge end of the heat sink (1).

3. The cooling and shaping device for producing imitation silk cotton according to claim 1, characterized in that: The heat sink (1) is composed of three parts. Threaded holes (14) are evenly spaced around the edge of each pair of adjacent parts. A rectangular frame (21) is installed on the blower mechanism (2). Connecting frames (23) that allow the splicing end of the heat sink (1) to be inserted are installed on the inner edges of both sides of the rectangular frame (21). The connecting frames (23) are connected to the several parts of the heat sink (1) by bolts to the threaded holes (14) on the heat sink (1).

4. A cooling and shaping device for producing imitation silk cotton according to claim 3, characterized in that: The inner side of the rectangular frame (21) is provided with a hollow groove, and the hollow groove of the rectangular frame (21) is located inside the heat sink (1).

5. A cooling and shaping device for producing imitation silk cotton according to claim 3, characterized in that: A square cover (24) is installed on the top of the rectangular frame (21). The interior of the square cover (24) is connected to the interior hollow cavity of the rectangular frame (21). A round hole (25) is opened on the outer side of the square cover (24).

6. A cooling and shaping device for producing imitation silk cotton according to claim 5, characterized in that: The air intake mechanism (3) is equipped with a fan shroud (31), which is installed on the top of the heat sink (1). Inside the fan shroud (31) is a fan (32) for drawing air into the fan shroud (31). On both sides of the fan shroud (31), there are exhaust pipes (33) that communicate with the inside of the fan shroud (31). The exhaust pipes (33) are connected to the round holes (25) on the corresponding square cover (24).