Drying device for textile processing

By adopting a design with drying components on both sides and a transmission component in the drying device for textile processing, the problems of uneven drying and low efficiency of textile fabrics are solved, achieving uniform and rapid drying and wastewater collection.

CN223976383UActive Publication Date: 2026-03-06HUBEI XIAOMAN TEXTILE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing drying equipment suffers from unevenness and low efficiency in the drying process of textile fabrics. In particular, the time difference between the fast drying side and the slow drying side caused by the single-sided drying component is obvious, and it cannot effectively spread out long textile fabrics for overall uniform drying.

Method used

Design a drying device for textile processing, which adopts a structure with drying components on both sides, and uses a transmission component to spread the textile fabric out for drying. The speed and temperature are adjusted by a drive component to adapt to the thickness of the fabric, and a collection component is used to collect dripping water to ensure uniform drying and efficient processing.

Benefits of technology

It achieves uniform and rapid drying of textile fabrics, reduces drying time, and effectively collects and treats dripping water through the design of the guide trough and wastewater box, improving drying efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a drying device for textile processing, and particularly relates to the technical field of drying devices, the drying device comprises a drying assembly, a transmission assembly and a collecting assembly, the transmission assembly is placed above the drying assembly, and the collecting assembly is installed on the side face of the drying assembly. And the drying assembly comprises an electric heating wire, an electric heating pipe and a protection assembly, the electric heating wire is placed on the inner wall of the electric heating pipe, and the protection assembly is placed on the side face of the electric heating pipe. The driving assembly can guide the textile cloth to move in the direction of the recovery rolling shaft, the distance and speed of the textile cloth pushed by the driving assembly and the drying temperature of the drying assembly can be adjusted according to the thickness and the length of the textile cloth, and drying can be achieved by the distance of the textile cloth moving on the driving assembly.
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Description

Technical Field

[0001] This utility model relates to the field of drying equipment technology, and more specifically, to a drying equipment for textile processing. Background Technology

[0002] A drying device is a machine used to dry the surface of different objects during processing. Because the objects being dried vary, the design and function of the drying components also differ significantly. During operation, the drying device uses various mechanisms such as tilting and conveying mechanisms to achieve sustained and uniform drying of the objects. Drying devices are mainly used in the textile, building materials, chemical, and printing industries.

[0003] A search revealed existing publication number CN221975641 U, which discloses a drying device relating to the technical field of reactor drying. The drying device is used to dry reactors and includes a container and an air blowing assembly. The container is capable of housing the reactor and has an air inlet and an air outlet. The air blowing assembly is connected to the air inlet and is used to blow air into the container to dry the reactor. This invention solves the technical problem of poor effectiveness in existing, commonly used reactor drying methods. The inventors discovered the following problems in the prior art during the development of this invention:

[0004] Most existing drying devices have a drying component on one side and not on the other. For textiles, drying on only one side cannot dry the fabric evenly. The side of the fabric closer to the drying component dries faster, while the other side takes longer to dry completely. In addition, traditional drying devices cannot dry long textiles by spreading them out as a whole. They can only dry the textiles by folding them into blocks or rolling them up. This not only increases the drying time but also makes the drying of the textiles uneven.

[0005] Therefore, a drying device for textile processing is proposed to address the above problems. Utility Model Content

[0006] In order to overcome the above-mentioned defects of the prior art, the present invention provides a drying device for textile processing to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, the present invention provides the following technical solution: a drying device for textile processing, comprising a drying component, a transmission component, and a collecting component. The transmission component is placed above the drying component, and the collecting component is installed on the side of the drying component. The drying component includes a heating wire, a heating tube, and a protective component. The heating wire is placed on the inner wall of the heating tube, and the protective component is placed on the side of the heating tube.

[0008] Preferably, the transmission assembly includes a discharge roller, a drive assembly, and a recovery roller, with the drive assembly placed on the side of the discharge roller and the recovery roller placed on the side of the drive assembly away from the discharge roller.

[0009] Preferably, the collection assembly includes a guide channel, a connecting pipe, and a wastewater box, with the connecting pipe installed on the side of the guide channel and the wastewater box installed on the side of the connecting pipe away from the guide channel.

[0010] Preferably, the protection component includes a protective wire, a protection box, and a wiring port, wherein the protective wire is placed on the inner wall of the protection box, and the wiring port is slotted on the side wall of the protection box.

[0011] Preferably, the drive assembly includes a motor, a drive gear, a transmission gear, a rotating shaft, and a friction shaft. The rotating shaft is mounted on the side of the motor, the drive gear is mounted on the outer diameter surface of the rotating shaft, the transmission gear is placed below the drive gear, and the friction shaft is mounted on the side of the rotating shaft away from the motor.

[0012] The technical effects and advantages of this utility model are as follows:

[0013] 1. Compared with the prior art, this drying device for textile processing reduces the drying time of the textile fabric by changing the drying device to have drying components placed on both sides, and the drying is more uniform. During the drying process, the dripping water will flow into the wastewater box along the guide groove of the collection component.

[0014] 2. Compared with the prior art, this textile drying device uses a transmission component to spread the textile fabric out for localized drying. The drive component guides the textile fabric to move towards the recovery roller. The distance and speed at which the drive component pushes the textile fabric, as well as the drying temperature of the drying component, need to be adjusted according to the thickness of the textile fabric and the drying time, so that the textile fabric can be dried within the distance it moves on the drive component. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall three-dimensional structure of a drying device for textile processing according to the present invention.

[0016] Figure 2 This is a schematic diagram of the drive component structure of a drying device for textile processing according to the present invention.

[0017] Figure 3 This is a schematic diagram of the wastewater box structure of a drying device for textile processing according to this utility model.

[0018] Figure 4This is a schematic diagram of the drying component structure of a drying device for textile processing according to the present invention.

[0019] The attached diagram is labeled as follows: 1. Drying assembly; 2. Transmission assembly; 3. Collection assembly; 4. Heating wire; 5. Heating tube; 6. Protection assembly; 7. Discharge roller; 8. Drive assembly; 9. Recycling roller; 10. Guide groove; 11. Connecting pipe; 12. Wastewater box; 13. Protective wire; 14. Protective box; 15. Wiring port; 16. Motor; 17. Drive gear; 18. Transmission gear; 19. Rotating shaft; 20. Friction shaft. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Example 1

[0022] As attached Figures 1 to 4 A drying device for textile processing is shown, including a drying component 1, a transmission component 2, and a collecting component 3. The transmission component 2 is placed on top of the drying component 1, and the collecting component 3 is installed on the side of the drying component 1. The drying component 1 includes a heating wire 4, a heating tube 5, and a protective component 6. The heating wire 4 is placed on the inner wall of the heating tube 5, and the protective component 6 is placed on the side of the heating tube 5.

[0023] The drying assembly 1 is equipped with a transmission assembly 2 above it. The drying assembly 1 can partially dry the fabric, while the transmission assembly 2 allows the fabric to move unidirectionally, enabling the drying assembly 1 to dry the entire fabric. If the fabric being dried is thick, a reflector plate needs to be added to the surface of the drying assembly 1 to improve the heat utilization rate of the heating wire 4, or it can be used in conjunction with an air circulation system to more effectively remove moisture from the fabric and improve drying efficiency. A collection assembly 3 collects dripping wastewater from the fabric. The collection assembly 3 is bolted to the side of the drying assembly 1. The drying assembly 1 includes a heating wire 4, a heating tube 5, and a protective assembly 6. The heating wire 4 provides heat to the drying component 1, the heating tube 5 provides space for the heating wire 4, and the protection component 6 protects the drying component 1 from spontaneous combustion due to excessive temperature. The heating wire 4 is placed on the inner wall of the heating tube 5, and the protection component 6 is placed on the side of the heating tube 5. When the worker dries the textile, the worker needs to put the textile into the transmission component 2, turn on the switch of the drying component 1, and manually place one end of the textile out of the drying component 1 to dry. Then, the textile is placed in the middle of the drive component 8, and one end of the dried textile is rolled onto the recycling roller 9. The switch of the transmission component 2 is then turned on so that the drying device can dry the entire textile.

[0024] Example 2

[0025] Based on Example 1, the solution in Example 1 will be further described in detail below with reference to the specific working method, such as... Figures 1 to 4 As shown below, see details:

[0026] In a preferred embodiment, the transmission assembly 2 includes a discharge roller 7, a drive assembly 8, and a recovery roller 9. The discharge roller 7 provides a space for undried textile fabric, the drive assembly 8 moves the textile fabric in one direction, and the recovery roller 9 allows dried textile fabric to pass through the space. One side of the discharge roller 7 is connected to the drying device housing via a bearing, and one side of the drive assembly 8 is connected to the drying device housing via a bearing. The drive assembly 8 is placed on the side of the discharge roller 7, and the recovery roller 9 is placed on the side of the drive assembly 8 away from the discharge roller 7. One side of the recovery roller 9 is connected to the roller motor via a thread, and the side away from the roller motor is connected to the drying device housing via a bearing.

[0027] In a preferred embodiment, the collection component 3 includes a guide channel 10, a connecting pipe 11, and a wastewater box 12. The guide channel 10 can guide the sewage dripping from the textile fabric to the wastewater box 12. The connecting pipe 11 connects the guide channel 10 and the wastewater pipe. The wastewater box 12 can collect and treat the recycled sewage. The connecting pipe 11 is installed on the side of the guide channel 10. The guide channel 10 and the connecting pipe 11 are connected by threads. The connecting pipe 11 and the wastewater box 12 are connected by threads. The wastewater box 12 is installed on the side of the connecting pipe 11 away from the guide channel 10.

[0028] In a preferred embodiment, the protection component 6 includes a protection wire 13, a protection box 14, and a wiring port 15. The protection wire 13 can disconnect in time when the temperature of the drying component 1 is too high. The protection box 14 provides a space for the protection wire 13. The wiring port 15 is an interface for connecting the protection wire 13 and an external wire. The protection wire 13 is placed on the inner wall of the protection box 14, and the wiring port 15 is slotted on the side wall of the protection box 14.

[0029] In a preferred embodiment, the drive assembly 8 includes a motor 16, a drive gear 17, a transmission gear 18, a rotating shaft 19, and a friction shaft 20. The motor 16 provides power to the drive assembly 8 and drives the rotating shaft 19 to rotate. The rotating shaft 19 then transmits torque to the friction shaft 20. Because the drive gear 17 and the transmission gear 18 mesh, the drive gear 17 drives the transmission gear 18 to rotate. To prevent the friction shaft 20 from slipping between itself and the fabric during operation, the surface of the friction shaft 20 is coated with a graphite-based material with a high coefficient of friction. The graphite-based material also exhibits good frictional performance in environments with high humidity. Furthermore, the surface of the friction shaft 20 is textured to further increase the frictional force of the friction shaft 20. The rotating shaft 19 is bolted to the side of the motor 16. The drive gear 17 is bolted to the outer diameter surface of the rotating shaft 19. The transmission gear 18 is placed below the drive gear 17. The friction shaft 20 is mounted on the side of the rotating shaft 19 away from the motor 16. The rotating shaft 19 and the friction shaft 20 are connected by threads.

[0030] The working process of this utility model is as follows: A transmission component 2 is placed above the drying component 1. The drying component 1 can partially dry the textile fabric, and the transmission component 2 can move the textile fabric in one direction, so that the drying component 1 can dry the entire textile fabric. The transmission component 2 includes a discharge roller 7, a drive component 8, and a recovery roller 9. The discharge roller 7 can provide a space for the undried textile fabric, and the drive component 8 can move the textile fabric in one direction. The drive component 8 includes a motor 16, a drive gear 17, a transmission gear 18, a rotating shaft 19, and a friction shaft 20. The electric motor 16 provides power to the drive assembly 8. The electric motor 16 drives the rotating shaft 19 to rotate. The rotating shaft 19 then transmits torque to the friction shaft 20. Because the drive gear 17 and the transmission gear 18 are meshed, the drive gear 17 drives the transmission gear 18 to rotate. The rotating shaft 19 is bolted to the side of the electric motor 16. The drive gear 17 is bolted to the outer diameter surface of the rotating shaft 19. The transmission gear 18 is placed below the drive gear 17. The friction shaft 20 is mounted on the side of the rotating shaft 19 away from the electric motor 16. The rotating shaft 19 and the friction shaft 20 are connected by threads.

[0031] The recycling roller 9 provides a storage space for the dried textile fabric. One side of the discharge roller 7 is connected to the drying device housing via a bearing, and one side of the drive assembly 8 is connected to the drying device housing via a bearing. The drive assembly 8 is placed on the side of the discharge roller 7, and the recycling roller 9 is placed on the side of the drive assembly 8 away from the discharge roller 7. One side of the recycling roller 9 is connected to the roller motor via a thread, and the side away from the roller motor is connected to the drying device housing via a bearing. The collection assembly 3 collects the wastewater dripping from the textile fabric. The collection assembly 3 includes a guide trough 10, a connecting pipe 11, and a wastewater box 12. The guide trough 10 guides the wastewater dripping from the textile fabric to the wastewater box 12. The connecting pipe 11 connects the guide trough 10 and the wastewater pipe. The wastewater box 12 collects and treats the recycled wastewater. The connecting pipe 11 is installed on the side of the guide trough 10, and the guide trough 10 and the connecting pipe 11 are connected via a thread. The connecting pipe 11 and the wastewater box 12 are connected by threads. The wastewater box 12 is installed on the side of the connecting pipe 11 away from the guide groove 10. The collecting component 3 is installed on the side of the drying component 1 by bolts. The drying component 1 includes a heating wire 4, a heating tube 5 and a protection component 6. The heating wire 4 can provide heat to the drying component 1. The heating tube 5 provides a space for the heating wire 4. The protection component 6 can protect the drying component 1 from spontaneous combustion due to its own high temperature. The protection component 6 includes a protection wire 13, a protection box 14 and a wiring port 15. The protection wire 13 can disconnect in time when the temperature of the drying component 1 is too high. The protection box 14 provides a space for the protection wire 13. The wiring port 15 is the interface for connecting the protection wire 13 to the external wire. The protection wire 13 is placed on the inner wall of the protection box 14. The wiring port 15 is slotted on the side wall of the protection box 14. The heating wire 4 is placed on the inner wall of the heating tube 5. The protection component 6 is placed on the side of the heating tube 5.

[0032] When textile fabric needs drying, workers need to roll the undried fabric onto the discharge roller 7 and move the drying device to a well-ventilated location or use a slow-speed blower to generate airflow. The airflow should not be too fast because textile fabric is relatively thin compared to other objects. For objects with a certain thickness, the blower speed needs to be adjusted according to the thickness. Therefore, during the drying process, only a slight airflow is needed to remove surface moisture. If the airflow is too fast, the airflow will blow the textile fabric to one side, preventing it from being laid flat on the drive assembly 2. After the worker has rolled the entire textile fabric onto the discharge roller 7, the drying assembly 1 needs to be opened. One end of the textile fabric is manually placed in the middle of the drying assembly 1 to dry. Then, the fabric is placed in the middle of the drive assembly 8, and the dried end of the textile fabric is rolled onto the recovery roller. On shaft 9, and turn on the switch of drive assembly 8, drive assembly 8 will provide power to transmission assembly 2. The motor 16 of drive assembly 8 will drive shaft 19 to rotate. The rotation of shaft 19 will drive drive gear 17 to rotate. Drive gear 17 and transmission gear 18 mesh. When drive gear 17 rotates, transmission gear 18 will rotate in the opposite direction, so it will drive transmission shaft connected to transmission gear 18 to rotate in the opposite direction. Friction shaft 20 connected to shaft 19 and friction shaft 20 connected to transmission shaft will give the textile fabric friction in the same direction, causing the textile fabric to move in one direction. The width of the textile fabric is exactly the thickness that passes through the middle of the two friction shafts 20, so that friction shaft 20 can fully contact the surface of the textile fabric. The textile fabric will move in one direction due to the friction of drive assembly 8.

[0033] Similarly, when the textile fabric passes through another drive component 8, it is driven in the same way, and the rotation speed and frequency of the two drive components 8 are exactly the same. Finally, it is wound onto the recovery roller 9. One side of the recovery roller 9 is also driven by a roller motor to rotate, and the rotation speed is the same as that of the two drive components 8. During the drying process of the textile fabric, water droplets will drip downwards. The surface of the heating tube 5 is completely covered with a waterproof membrane, which does not affect the normal use of the heating tube 5. When the water droplets fall on the surface of the drying component 1 below, because the drying component 1 has a slight sideways tilt, Water droplets flow into the guide groove 10 of the collection component 3. The guide groove 10 has a slight vertical tilt. A connecting pipe 11 is installed below the guide groove 10 and is connected to the wastewater box 12. Therefore, the water droplets that fall after drying will flow into the wastewater box 12. The side of the heating wire 4 is connected to the protection component 6 through a wire. When the temperature inside the circuit of the drying component 1 is high, the protection wire 13 in the protection component 6 will burn out, thereby disconnecting the circuit and preventing the drying component 1 from spontaneously combusting due to its own high temperature. The above is the working principle of this drying device for textile processing.

Claims

1. A drying device for textile processing, comprising a drying assembly (1), a transmission assembly (2) and a collection assembly (3), characterized in that: The upper side of the drying assembly (1) is provided with a transmission assembly (2), and the side of the drying assembly (1) is provided with a collection assembly (3), and the drying assembly (1) comprises an electric heating wire (4), an electric heating tube (5) and a protection assembly (6), the inner wall of the electric heating tube (5) is provided with an electric heating wire (4), and the side of the electric heating tube (5) is provided with a protection assembly (6).

2. A drying device for textile processing according to claim 1, characterized in that: The transmission assembly (2) comprises a discharge roller (7), a driving assembly (8) and a recovery roller (9), the side of the discharge roller (7) is provided with a driving assembly (8), and the side away from the discharge roller (7) of the driving assembly (8) is provided with a recovery roller (9).

3. A drying unit for textile processing as claimed in claim 1 wherein: The collection assembly (3) comprises a guide groove (10), a connecting pipe (11) and a wastewater box (12), the side of the guide groove (10) is provided with a connecting pipe (11), and the side away from the guide groove (10) of the connecting pipe (11) is provided with a wastewater box (12).

4. A drying unit for textile processing as claimed in claim 1, wherein: The protection assembly (6) comprises a protection wire (13), a protection box (14) and a wiring port (15), the inner wall of the protection box (14) is provided with a protection wire (13), and the side wall of the protection box (14) is provided with a wiring port (15).

5. A drying device for textile processing according to claim 2, characterized in that: The driving assembly (8) comprises a motor (16), a driving gear (17), a transmission gear (18), a rotating shaft (19) and a friction shaft (20), the side of the motor (16) is provided with a rotating shaft (19), the outer diameter surface of the rotating shaft (19) is provided with a driving gear (17), the lower side of the driving gear (17) is provided with a transmission gear (18), and the side away from the motor (16) of the rotating shaft (19) is provided with a friction shaft (20).

Citation Information

Patent Citations

  • Drying device

    CN221975641U