Cloth drying device

By combining an extrusion mechanism and a segmented drying chamber with a hot air circulation system, the problems of fabric deformation, heat waste, and uneven drying in traditional fabric drying equipment are solved, achieving a highly efficient and energy-saving fabric drying process.

CN224065838UActive Publication Date: 2026-03-31SHAOXING HAITONG PRINTING & DYEING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Traditional fabric drying equipment leads to fabric deformation and damage, waste of heat energy, uneven drying, high energy consumption, and high production costs.

Method used

The system employs an extrusion mechanism, segmented drying chambers, and a hot air circulation system. Moisture is removed by the extrusion mechanism, and the first and second drying chambers are used for segmented drying. Combined with hot air circulation, this ensures temperature gradient control and uniform drying.

Benefits of technology

It improves drying efficiency and quality, reduces energy consumption, avoids fabric deformation and damage, reduces production costs, and conforms to the concept of green manufacturing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224065838U_ABST
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Abstract

The utility model belongs to the technical field of textile equipment, and particularly relates to a cloth drying device which comprises an extrusion mechanism, a first drying box and a second drying box, the extrusion mechanism comprises a frame body, two extrusion rollers which are oppositely arranged are arranged on the frame body, and telescopic pieces are arranged at the two ends of the two extrusion rollers; an air inlet pipeline and an air return pipeline are arranged between the first drying box and the second drying box, a hot air generator and a main fan are arranged on the air inlet pipeline, the main fan is used for conveying hot air generated by the hot air generator into the second drying box, and the air return pipeline is used for recycling the hot air in the second drying box into the first drying box. According to the cloth drying device, dyed cloth is firstly extruded through the extrusion mechanism to discharge water, and then the cloth is dried step by step through the first drying box and the second drying box, so that the cloth can be pre-dried and finally dried under different temperature conditions, and the drying efficiency and quality are further improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to textile equipment technical field, concretely relates to a cloth drying device. BACKGROUND

[0002] At present, cloth drying treatment widely adopts the drying machine of direct use box type shell. This traditional drying equipment is usually designed as cloth transversely passing through the inside of the shell of drying machine, and simultaneously through the blower and heating pipe to the inside cavity of shell longitudinal delivery hot air to dry. Such setting will make the instant temperature of wet cloth too high, lead to deformation, breakage, wrinkle, influence cloth quality, and hot air only carries out single heating process to cloth, cannot realize the efficient cyclic utilization of heat, and most of heat energy is wasted along with waste gas discharge, not only increases energy consumption, but also pushes up production cost. In addition, single heating is difficult to ensure that the inside and outside of cloth reach uniform drying effect, and can lead to local over-drying or not completely dried problem.

[0003] In view of this, the utility model is provided. UTILITY MODEL CONTENT

[0004] The utility model discloses a cloth drying device to solve the technical problems in the prior art.

[0005] To achieve the above object, the utility model adopts the following technical scheme:

[0006] A cloth drying device, comprising an extrusion mechanism, a first drying box and a second drying box, cloth is transported through the extrusion mechanism, the first drying box and the second drying box in turn, the extrusion mechanism comprises a frame body, two extrusion rollers are arranged on the frame body in opposite, two ends of the two extrusion rollers are provided with telescopic pieces, the telescopic pieces are used to drive the two extrusion rollers to approach or move away from each other, an air inlet pipeline and an air return pipeline are arranged between the first drying box and the second drying box, a hot air generator and a main fan are arranged on the air inlet pipeline, the main fan is used to transport the hot air generated by the hot air generator into the second drying box, and the air return pipeline is used to recycle the hot air in the second drying box into the first drying box.

[0007] The first drying box bottom is equipped with a plurality of fans.

[0008] The air return pipeline is provided with a pipeline fan.

[0009] The second drying box top is provided with a baffle, and the baffle is provided with a plurality of through holes.

[0010] The second drying box one side is equipped with temperature sensor.

[0011] The first drying box and the second drying box are both provided with a plurality of cloth guide rollers, and both sides of the first drying box and the second drying box are both respectively provided with a cloth inlet and a cloth outlet.

[0012] The frame body is further provided with a collecting groove, and the collecting groove is arranged below the extrusion roller.

[0013] The collecting groove is provided with a liquid outlet pipe, and the liquid outlet pipe is provided with a valve.

[0014] The beneficial effects of the utility model are as follows:

[0015] The dyed cloth is first extruded by the extrusion mechanism to remove water, and then is subjected to segmented drying by the first drying box and the second drying box, so that the cloth can be subjected to pre-drying and final drying under different temperature conditions, and the drying efficiency and quality are further improved; meanwhile, the hot air is recycled, the deformation problem of the cloth caused by sudden high temperature in the traditional equipment is effectively solved, the energy consumption of the whole process is reduced, the operation cost is reduced, and the concept of green manufacturing is met. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural schematic view of the cloth drying device of the utility model;

[0017] Figure 2 It is a partial structural schematic view of the cloth drying device of the utility model Figure One ;

[0018] Figure 3 It is a partial structural schematic view of the cloth drying device of the utility model Figure Two ;

[0019] Figure 4 It is a partial structural schematic view of the cloth drying device of the utility model Figure Three ;

[0020] Wherein, the reference numerals are as follows: 1, frame body; 2, first drying box; 3, second drying box; 4, cloth; 5, air inlet pipeline; 6, air return pipeline; 7, hot air generator; 8, main fan; 9, cloth guide roller; 10, cloth inlet; 11, cloth outlet; 12, fan; 13, pipeline fan; 14, extrusion roller; 15, telescopic part; 16, collecting groove; 17, liquid outlet pipe; 18, partition plate; 19, through hole; 20, temperature sensor. DETAILED DESCRIPTION

[0021] The utility model will be further described below in combination with the specific implementation mode.

[0022] In the following description, the concepts of up, down, left, right, front and back (or orientation) are relative to the position of the figure being described, and are intended to facilitate public understanding, and therefore cannot be understood as a special limitation on the technical solutions provided by the present application.

[0023] As shown in Figures 1-4 A cloth drying device, including a squeezing mechanism, a first drying box 2 and a second drying box 3, cloth 4 is transported through the squeezing mechanism, the first drying box 2 and the second drying box 3 in turn; the squeezing mechanism includes a frame body 1, the frame body 1 is provided with two oppositely arranged squeezing rollers 14, both ends of the two squeezing rollers 14 are provided with telescopic pieces 15, the telescopic pieces 15 are used to drive the two squeezing rollers 14 to approach or move away from each other, and the squeezing degree can be flexibly adjusted according to the thickness and dyeing condition of the cloth 4, so as to ensure that the cloth 4 reaches the best state before entering the drying box. Among them, the telescopic piece 15 can adopt various forms such as hydraulic cylinder, air cylinder or electric push rod, and the specific selection can be adjusted according to actual needs. The surface of the squeezing roller 14 can be covered with a cladding layer of different materials to adapt to different types of cloth 4 and prevent the cloth 4 from being damaged during the squeezing process. The design of the frame body 1 can also be customized according to the layout of the production line to ensure the stability of the equipment and the convenience of operation.

[0024] The first drying box 2 and the second drying box 3 are provided with an air inlet pipeline 5 and an air return pipeline 6, the air inlet pipeline 5 is provided with a hot air generator 7 (the hot air generator 7 uses a gas heater or an electric heater as a heat source to generate high-temperature hot air, and a temperature controller can be provided on the hot air generator 7 to ensure the stability of the hot air temperature) and a main fan 8, the main fan 8 is used to transport the hot air generated by the hot air generator 7 into the second drying box 3, the air return pipeline 6 is used to return the hot air in the second drying box 3 to the first drying box 2, and the hot air in the first drying box 2 can also be sent back to the hot air generator 7 for secondary heating and recycling.

[0025] The first drying box 2 is provided with a plurality of fans 12 at the bottom, which effectively enhances the air circulation in the first drying box 2, thereby improving the drying efficiency. The air return pipeline 6 is provided with a pipeline fan 13, which effectively returns the hot air in the second drying box 3 to the first drying box 2, thereby improving the recycling efficiency of the hot air.

[0026] The second drying box 3 is provided with a partition plate 18 at the top. The partition plate 18 can be made of high-temperature-resistant materials, such as stainless steel or aluminum alloy, to ensure its stability and durability in a high-temperature environment. The partition plate 18 is provided with a plurality of through holes 19. The hot air is uniformly distributed through the through holes 19 on the partition plate 18 to prevent the cloth 4 from being locally overheated and deformed under pressure, thereby ensuring the drying quality of the cloth 4 and improving the overall drying efficiency. The second drying box 3 is provided with a temperature sensor 20 on one side. The temperature sensor 20 can monitor the temperature in the second drying box 3 in real time to avoid overheating in the second drying box 3 and damage to the cloth 4.

[0027] The first drying box 2 and the second drying box 3 are each provided with a plurality of cloth guide rollers 9, and the two sides of the first drying box 2 and the second drying box 3 are respectively provided with an inlet 10 and an outlet 11. The cloth guide rollers 9 help stabilize the cloth 4 during the drying process, and the inlet 10 and the outlet 11 ensure that the cloth 4 can smoothly enter and exit each processing box, realizing a continuous processing flow. Through the cooperation of these technical features, the problem of unstable cloth 4 conveying during the drying process is solved, and the quality and efficiency of cloth 4 processing are improved.

[0028] The frame body 1 is also provided with a collection tank 16, which is arranged below the extrusion roller 14. The collection tank 16 is provided with a liquid outlet pipe 17 at the bottom. The liquid outlet pipe 17 is provided with a valve. The liquid outlet pipe 17 can be made of corrosion-resistant materials to ensure its durability during long-term use. Specifically, the liquid outlet pipe 17 can be connected to the bottom of the collection tank 16 through threaded connection or welding, etc., to ensure its stability and sealing performance. As a preferred embodiment, the liquid outlet pipe 17 can be connected to a liquid storage tank or a liquid drainage system, so that the excess liquid can be treated or reused.

[0029] The cloth 4 after dyeing is first extruded by the extrusion mechanism to remove water, and then is subjected to segmented drying by the first drying box 2 and the second drying box 3 to realize gradual drying of the cloth 4, so that the cloth 4 can be pre-dried and finally dried at different temperature conditions (i.e., first passing through the first drying box 2, using the hot air and the fan 12 in the first drying box 2 to pre-dry, and then passing through the hot air in the second drying box 3 for complete drying), further improving the drying efficiency and quality; at the same time, the hot air is recycled (more heat is needed for final drying, so the hot air in the second drying box 3 is reused in the first drying box 2 for pre-drying, at this time the heat of the hot air in the first drying box 2 is much smaller than that in the second drying box 3, avoiding the phenomenon of deformation of the cloth 4 caused by sudden high temperature), effectively solving the problem of deformation of the cloth 4 caused by sudden high temperature in traditional equipment, and reducing energy consumption and operation cost in the whole process, in line with the concept of green manufacturing. Through multiple extrusion and drying processes, uniform drying of the inside and outside of the cloth 4 is ensured, avoiding problems such as deformation, damage and wrinkles of the cloth 4.

[0030] The above is a further detailed description of the provided technical solutions in combination with the preferred embodiments of the present patent, and cannot be deemed to limit the specific implementation of the present patent to the above description. For ordinary skilled persons in the technical field to which the present patent belongs, some simple deductions or replacements can be made without departing from the concept of the present patent, and all of them shall be deemed to fall within the protection scope of the present patent.

Claims

1. A fabric drying apparatus, characterized by: The utility model provides an improved cloth drying machine, which comprises a squeezing mechanism, a first drying box and a second drying box, and cloth is conveyed through the squeezing mechanism, the first drying box and the second drying box in sequence.

2. The fabric drying apparatus of claim 1, wherein: The first drying box is provided with a plurality of fans at the bottom.

3. The fabric drying apparatus of claim 1, wherein: The return air duct is provided with a duct fan.

4. The fabric drying apparatus of claim 1, wherein: The second drying box is provided with a baffle at the top, and the baffle is provided with a plurality of through holes.

5. The fabric drying apparatus according to claim 1 or 4, wherein: One side of the second drying box is provided with a temperature sensor.

6. The fabric drying apparatus of claim 1, wherein: The first drying box and the second drying box are each provided with a plurality of cloth guide rollers, and the two sides of the first drying box and the second drying box are each provided with a cloth inlet and a cloth outlet.

7. The fabric drying apparatus of claim 1, wherein: The frame is further provided with a collection groove below the squeezing rollers.

8. The fabric drying apparatus of claim 7, wherein: The collection groove is provided with a liquid outlet pipe at the bottom, and the liquid outlet pipe is provided with a valve.