Textile fabric humidifying device

By designing a textile fabric humidification device including humidification, coating, extrusion and leveling components, the problem of decreasing cloth humidity in the prior art is solved, and uniform humidification and moisturization of textile fabrics are achieved, ensuring the stability of the humidity of the fabric during processing.

CN120119418AInactive Publication Date: 2025-06-10响水申鑫纺织有限公司
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Patent Information

Application Number
CN202510409924.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing textile fabric humidification device is directly released or rolled and stored after humidification, resulting in a decrease in the humidity of the fabric and cannot meet the processing requirements.

Method used

A textile fabric humidification device including a humidification assembly, a coating assembly, an extrusion assembly and a flattening assembly is designed. The humidification assembly generates high-pressure spray and nanoscale water mist through the circulation pump and filter to humidify the fabric evenly. The film coating assembly is used to coat the fabric to form a moisture regulating layer. The extrusion assembly moderately extrudes the humidified fabric through the extrusion roller to ensure uniform wetness. The leveling assembly flattens the fabric through a cylinder and a leveling roller to avoid wrinkles.

Benefits of technology

The uniform humidification and moisturization of textile fabrics is achieved, which slows down the moisture volatility of the fabric during transportation and storage, ensures that the humidity of the fabrics still meets the standards before the next step, and meets the processing requirements.

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Abstract

The invention relates to the technical field of textile fabric processing, and discloses a textile fabric humidifying device which comprises an equipment shell, inlet and outlet openings are formed in the outer walls of the left side and the right side of the equipment shell, fabric penetrates through the inlet and outlet openings, and a humidifying assembly, a film coating assembly, an extruding assembly and a flattening assembly are arranged in the equipment shell; the flattening assembly is located on the left side of the humidifying assembly, the extruding assembly is located between the humidifying assembly and the film coating assembly, a partition plate is fixedly installed on the inner wall of the equipment shell, the extruding assembly and the film coating assembly are separated through the partition plate, the humidifying assembly is used for humidifying cloth, the film coating assembly is arranged for coating the cloth for follow-up processing, and the equipment shell is provided with the film coating assembly. Or the cloth is coated with a compound of octadecane and hydrogel, a humidity adjusting layer is formed on the surface of the partition plate and used for retarding moisture volatilization of the cloth during transportation and storage, and then it is ensured that the humidity of the cloth still reaches the standard before the cloth enters the next procedure.
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Description

Technical Field

[0001] The present invention relates to the technical field of textile fabric processing, and particularly to a humidifying device for textile fabrics. Background Art

[0002] Currently, in the production process of the textile industry, a humidifying device is used to humidify fabrics, eliminate static electricity on the fabric surface, and at the same time increase the flexibility of the fabric to make it easier to process. After the common humidifying device humidifies the fabric, the fabric will be directly released and then transferred to the next process, or the wet fabric will be wound and placed in the warehouse. This design method will increase the process on the one hand and cause the humidity of the fabric itself to decrease on the other hand, failing to meet the required processing requirements. Summary of the Invention

[0003] The purpose of the present invention is to provide a humidifying device for textile fabrics to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solution: A humidifying device for textile fabrics includes an equipment housing. The outer walls on the left and right sides of the equipment housing are provided with inlets and outlets, and the fabric passes through the inlets and outlets. A humidifying component, a coating component, an extrusion component, and a flattening component are arranged inside the equipment housing; The flattening component is located on the left side of the humidifying component, the extrusion component is located between the humidifying component and the coating component, and a partition is fixedly installed on the inner wall of the equipment housing, and the partition separates the extrusion component and the coating component.

[0005] Further, the humidifying component includes a circulation pump and a filter. The circulation pump and the filter are fixedly installed on the back surface of the equipment housing. The input end of the circulation pump is connected to the inside of the equipment housing through a pipeline, the output end of the circulation pump is connected to the input end of the filter, and the output end of the filter is connected to a high-pressure spray component and an industrial ultrasonic spray component through pipelines.

[0006] Further, the coating component includes two sets of cylinders I, one set is located above the fabric and the other set is located below the fabric. The cylinders I are fixedly installed on the inner wall of the equipment housing. The extending end of the cylinder I is fixedly installed with a mounting seat I. A feeder, an upper glue roller, and a coating roller are installed inside the mounting seat I. The upper glue roller is in contact with the coating roller, and the discharge port of the feeder is close to the upper glue roller.

[0007] Furthermore, the extrusion assembly includes a guide rail fixedly installed on the inner wall of the equipment housing. A second mounting seat is slidably arranged inside the guide rail, and a third mounting seat is fixedly installed inside the guide rail. The inner wall of the second mounting seat is rotatably connected with an upper extrusion roller through a bearing, and the inner wall of the third mounting seat is rotatably connected with a lower support roller through a bearing. The upper extrusion roller is located above the fabric, and the lower support roller is located below the fabric. The second mounting seat and the third mounting seat are separated by an elastic cushion block.

[0008] Furthermore, a heat insulation lining is arranged inside the equipment housing. A cavity is formed between the heat insulation lining and the cavity, and the cavity is filled with heat insulation material.

[0009] Furthermore, a heating device is arranged outside the equipment housing. The input and output ends of the heating device are connected to a plate heat exchanger, and the plate heat exchanger is arranged inside the equipment housing.

[0010] Furthermore, the high-pressure spray component includes a high-pressure sprayer, and the industrial ultrasonic spray component includes an industrial ultrasonic sprayer. The high-pressure sprayer is fixedly installed on the back surface of the equipment housing. The input end of the high-pressure sprayer is connected to the output end of a filter through a pipeline. The output end of the high-pressure sprayer is connected to a first connecting pipe, and the front end of the first connecting pipe is connected to a spray knife head located inside the equipment housing. The industrial ultrasonic sprayer is fixedly installed on the inner wall of the equipment housing. The input end of the industrial ultrasonic sprayer is connected to the output end of the filter through a pipeline. The output end of the industrial ultrasonic sprayer is connected to a second connecting pipe, and the front end of the second connecting pipe is connected to an ultrasonic spray head located inside the equipment housing. Two spray knife heads and two ultrasonic spray heads are provided, and they are respectively located above and below the fabric.

[0011] Furthermore, a connecting plate is fixedly installed on the outer wall of the first mounting seat, and a spreading roller is fixedly installed on the outer wall of the connecting plate. Two spreading rollers are provided, and they are respectively located above and below the fabric.

[0012] Furthermore, the flattening assembly includes a second cylinder and a smooth platform. The second cylinder is fixedly installed on the top inner wall of the equipment housing, and the smooth platform is fixedly installed on the inner wall of the equipment housing. The fabric passes over the upper surface of the smooth platform. The extending end of the second cylinder is fixedly installed with a mounting frame. The inner side of the mounting frame is rotatably connected with a rotating shaft through a bearing. A flattening roller is fixedly installed on the outer wall of the rotating shaft. The axis of the rotating shaft is parallel to the advancing direction of the fabric. A motor is fixedly installed on the inner wall of the mounting frame. The output end of the motor is fixedly installed with a worm, and the worm meshes with a worm gear. The worm gear is fixedly installed on the rotating shaft. Two groups of rotating shafts are provided, and the rotating directions of the two groups of rotating shafts are opposite and symmetrically distributed about the center of the fabric in the front and back directions.

[0013] Further, the flattening roller is in the shape of a spinning bobbin with smaller ends and larger middle, and the outer wall of the flattening roller is coated with a smooth coating.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. The humidifying component is used to humidify the fabric, and the coating film component is provided for coating the fabric for subsequent processing, or coating a composite of octadecane and hydrogel on the fabric to form a humidity-adjusting layer on the partition surface, so as to slow down the volatilization of moisture in the fabric during transportation and storage, and thus ensure that the humidity of the fabric is still up to standard before entering the next process; 2. The water in the equipment housing is pumped into the filter by the circulation pump, the filter filters the water, and the filtered water enters the high-pressure spray component and the industrial ultrasonic spray component. The high-pressure spray component generates high-pressure spray to humidify the fabric, and the industrial ultrasonic spray component generates a finer spray. Specifically, the industrial ultrasonic spray component generates nano-scale water mist with a size of 1 - 5 μm, and the high-pressure spray component forms droplets with a size of 50 - 100 μm, which can more effectively wet the fibers constituting the fabric, making the humidification more uniform and ensuring the humidification of the interior of the fabric; 3. The height of the mounting frame is adjusted up and down by the second cylinder, and then the height of the flattening roller is adjusted, so that the flattening roller can contact the fabric. When there are wrinkles on the fabric, the wrinkled part is higher than the flat part, so it can be flattened by the flattening roller. At the same time, the flattening roller rotates to flatten the fabric by using the small frictional force between the flattening roller and the fabric. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is of the present invention Figure 1 is a schematic structural diagram of the rear view; Figure 3 is of the present invention Figure 1 is a schematic structural diagram of the front cross-sectional view; Figure 4 is a schematic structural diagram of the humidifying component of the present invention; Figure 5 is a schematic structural diagram of the industrial ultrasonic spray component and the high-pressure spray component of the present invention; Figure 6 is a schematic structural diagram of the coating film component of the present invention; Figure 7 is a schematic structural diagram of the front cross-sectional view of the coating film component of the present invention; Figure 8 is a schematic structural diagram of the extrusion component of the present invention; Figure 9 is a schematic structural diagram of the flattening component of the present invention; Figure 10This is a schematic structural view of the left side sectional view of the mounting bracket of the present invention.

[0016] In the figure: 1. Equipment housing; 101. Cavity; 102. Heat insulation lining; 2. Humidification component; 201. Circulation pump; 202. Filter; 203. High-pressure spray component; 204. Industrial ultrasonic spray component; 2031. High-pressure sprayer; 2032. Connecting pipe 1; 2033. Spray cutter head; 2041. Industrial ultrasonic sprayer; 2042. Connecting pipe 2; 2043. Ultrasonic spray head; 3. Coating component; 301. Cylinder 1; 302. Mounting seat 1; 303. Feeder; 304. Glue application roller; 305. Glue spreading roller; 4. Extrusion component; 401. Guide rail; 402. Mounting seat 2; 403. Mounting seat 3; 404. Upper extrusion roller; 405. Lower support roller; 406. Elastic cushion block; 5. Flattening component; 501. Cylinder 2; 502. Mounting bracket; 503. Smooth platform; 504. Motor; 505. Worm; 506. Worm gear; 507. Rotating shaft; 508. Flattening roller; 6. Heating equipment; 7. Plate heat exchanger; 8. Fabric; 9. Partition board; 10. Connecting plate; 11. Smoothing roller. Specific embodiments

[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0018] Embodiment 1 Please refer to Figures 1-8 , the present invention provides a technical solution: a textile fabric humidifying device, including an equipment housing 1, the outer walls of the left and right sides of the equipment housing 1 are provided with inlets and outlets, and the fabric 8 passes through the inlets and outlets, and a humidification component 2, a coating component 3, an extrusion component 4, and a flattening component 5 are arranged inside the equipment housing 1; The flattening component 5 is located on the left side of the humidification component 2, the extrusion component 4 is located between the humidification component 2 and the coating component 3, a partition board 9 is fixedly installed on the inner wall of the equipment housing 1, and the partition board 9 separates the extrusion component 4 and the coating component 3. The humidification component 2 is used to humidify the fabric 8. Before the fabric 8 is humidified, the flattening component 5 is used to flatten the fabric 8 to prevent the fabric 8 from being wrinkled and unable to be evenly humidified. The humidified fabric 8 is moderately extruded by the extrusion component 4. On the one hand, it prevents the fabric 8 from being too wet. On the other hand, when the fabric 8 is extruded, the moisture in the fabric 8 can flow, further improving the uniformity of the wetting of the fabric 8. The coating component 3 is provided for coating the fabric 8 for subsequent processing, or coating a composite of octadecane and hydrogel on the fabric 8 to form a humidity adjustment layer on the surface of the partition board 9 to slow down the volatilization of moisture in the fabric 8 during transportation and storage, thereby ensuring that the humidity of the fabric 8 is still up to standard before entering the next process; The humidifying component 2 includes a circulation pump 201 and a filter 202. The circulation pump 201 and the filter 202 are fixedly installed on the back surface of the equipment housing 1. The input end of the circulation pump 201 is communicated with the inside of the equipment housing 1 through a pipeline. The output end of the circulation pump 201 is communicated with the input end of the filter 202. The output end of the filter 202 is communicated with a high-pressure spray component 203 and an industrial ultrasonic spray component 204 through pipelines. The water in the equipment housing 1 is pumped into the filter 202 by the circulation pump 201. The filter 202 filters the water. The filtered water enters the high-pressure spray component 203 and the industrial ultrasonic spray component 204. The high-pressure spray component 203 generates high-pressure spray to humidify the fabric 8. The industrial ultrasonic spray component 204 generates finer spray. Specifically, the industrial ultrasonic spray component 204 generates nano-scale water mist with a size of 1-5 μm, and the high-pressure spray component 203 forms droplets with a size of 50-100 μm, which can more effectively wet the fibers constituting the fabric 8, making the humidification more uniform and ensuring humidification inside the fabric 8; The film coating component 3 includes a first cylinder 301. There are two sets of the first cylinder 301 arranged up and down, and one set is located above the fabric 8 and the other set is located below the fabric 8. The first cylinder 301 is fixedly installed on the inner wall of the equipment housing 1. The extended end of the first cylinder 301 is fixedly installed with a first mounting seat 302. A feeder 303, an upper glue roller 304, and a glue coating roller 305 are installed inside the first mounting seat 302. The upper glue roller 304 is in contact with the glue coating roller 305. The discharge port of the feeder 303 is close to the upper glue roller 304. By adjusting the position of the first mounting seat 302 up and down through the first cylinder 301, the position of the glue coating roller 305 is adjusted, so that the glue coating roller 305 can be close to the upper and lower surfaces of the fabric 8. The feeder 303 adds coating to the upper glue roller 304. During the rotation of the upper glue roller 304, the coating can be applied to the glue coating roller 305, and the glue coating roller 305 then applies the coating to the fabric 8; The extrusion component 4 includes a guide rail 401. The guide rail 401 is fixedly installed on the inner wall of the equipment housing 1. A second mounting seat 402 is slidably arranged inside the guide rail 401. A third mounting seat 403 is fixedly installed inside the guide rail 401. The inner wall of the second mounting seat 402 is rotationally connected with an upper extrusion roller 404 through a bearing. The inner wall of the third mounting seat 403 is rotationally connected with a lower support roller 405 through a bearing. The upper extrusion roller 404 is located above the fabric 8, and the lower support roller 405 is located below the fabric 8. The second mounting seat 402 and the third mounting seat 403 are separated by an elastic cushion block 406. The lower support roller 405 is provided to support the fabric 8, and the upper extrusion roller 404 can press on the fabric 8 to extrude the fabric 8. The distance between the upper extrusion roller 404 and the lower support roller 405 is adjusted by the elastic cushion block 406 between the second mounting seat 402 and the third mounting seat 403, so that the distance between the upper extrusion roller 404 and the lower support roller 405 can be adjusted according to fabrics 8 with different thicknesses and materials, and thus the force pressing on the fabric 8 can be adjusted; An insulating lining 102 is provided inside the equipment housing 1. A cavity 101 is formed between the insulating lining 102 and the cavity 101. The cavity 101 is filled with heat-insulating material to reduce the heat damage inside the equipment housing 1, so that the inside of the equipment housing 1 can be better maintained in a high-temperature and humid environment. A heating device 6 is provided outside the equipment housing 1. The input and output ends of the heating device 6 are connected to a plate heat exchanger 7. The plate heat exchanger 7 is arranged inside the equipment housing 1. A circulating heat exchange medium is generated by the heating device 6. After the heat exchange medium enters the plate heat exchanger 7, it exchanges heat with the water inside the equipment housing 1, thereby heating the water inside the equipment housing 1, and the heated water can be better atomized. The high-pressure spray component 203 includes a high-pressure sprayer 2031, and the industrial ultrasonic spray component 204 includes an industrial ultrasonic sprayer 2041. The high-pressure sprayer 2031 is fixedly installed on the back surface of the equipment housing 1. The input end of the high-pressure sprayer 2031 is connected to the output end of the filter 202 through a pipeline. The output end of the high-pressure sprayer 2031 is connected to a first connecting pipe 2032. The front end of the first connecting pipe 2032 is connected to a spray knife head 2033. The spray knife head 2033 is located inside the equipment housing 1. The industrial ultrasonic sprayer 2041 is fixedly installed on the inner wall of the equipment housing 1. The input end of the industrial ultrasonic sprayer 2041 is connected to the output end of the filter 202 through a pipeline. The output end of the industrial ultrasonic sprayer 2041 is connected to a second connecting pipe 2042. The front end of the second connecting pipe 2042 is connected to an ultrasonic spray head 2043. The ultrasonic spray head 2043 is located inside the equipment housing 1. There are two spray knife heads 2033 and ultrasonic spray heads 2043, which are respectively located above and below the fabric 8. High-pressure spray is generated by the ultrasonic spray head 2043. The high-pressure spray enters the spray knife head 2033 from the first connecting pipe 2032 and then sprays onto the fabric 8. Finer spray is generated by the industrial ultrasonic sprayer 2041. The spray enters the ultrasonic spray head 2043 from the second connecting pipe 2042 and then sprays onto the fabric 8. A connecting plate 10 is fixedly installed on the outer wall of the first mounting seat 302. A coating roller 11 is fixedly installed on the outer wall of the connecting plate 10. There are two coating rollers 11, which are respectively located above and below the fabric 8. After the coating roller 305 applies the coating on the fabric 8, the coating roller 11 can further smooth the coating on the fabric 8.

[0019] Working principle: When in use, the fabric 8 is passed through the inlets and outlets at the left and right ends of the equipment housing 1. After the fabric 8 passes through the humidifying component 2, the humidifying component 2 humidifies the fabric 8. Specifically, the circulation pump 201 pumps the water in the equipment housing 1 into the filter 202, and the filter 202 filters the water. The filtered water enters the high-pressure spray component 203 and the industrial ultrasonic spray component 204. The output end of the industrial ultrasonic sprayer 2041 is connected with a second connecting pipe 2042, and the front end of the second connecting pipe 2042 is connected with an ultrasonic spray head 2043. The ultrasonic spray head 2043 is located inside the equipment housing 1. There are two spray knife heads 2033 and ultrasonic spray heads 2043, which are respectively located above and below the fabric 8. High-pressure spray is generated by the ultrasonic spray head 2043. The high-pressure spray enters the spray knife head 2033 through the first connecting pipe 2032 and then sprays onto the fabric 8. Finer spray is generated by the industrial ultrasonic sprayer 2041. The spray enters the ultrasonic spray head 2043 through the second connecting pipe 2042 and then sprays onto the fabric 8. When the fabric 8 passes through the squeezing component 4, the upper squeezing roller 404 presses on the fabric 8. By moderately squeezing the humidified fabric 8, on the one hand, it avoids the fabric 8 from being too wet, and on the other hand, when squeezing the fabric 8, the moisture in the fabric 8 can flow, further improving the uniformity of the wetting of the fabric 8. When the fabric 8 passes through the coating component 3, the feeder 303 applies the coating onto the upper glue roller 304. During the rotation of the upper glue roller 304, the coating can be applied onto the coating roller 305, and the coating roller 305 then applies the coating onto the fabric 8.

[0020] Embodiment 2 Please refer to Figures 1-10 , the present invention provides a technical solution: a textile fabric humidifying device, including an equipment housing 1. Inlet and outlet openings are provided on the outer walls of the left and right sides of the equipment housing 1, and the fabric 8 passes through the inlet and outlet openings. A humidifying component 2, a coating component 3, a squeezing component 4, and a flattening component 5 are arranged inside the equipment housing 1; The flattening component 5 is located on the left side of the humidifying component 2, and the squeezing component 4 is located between the humidifying component 2 and the coating component 3. A partition 9 is fixedly installed on the inner wall of the equipment housing 1, and the partition 9 separates the squeezing component 4 and the coating component 3. The humidifying component 2 is used to humidify the fabric 8. Before the fabric 8 is humidified, the flattening component 5 flattens the fabric 8 to prevent the fabric 8 from being wrinkled and unable to be uniformly humidified. The squeezing component 4 moderately squeezes the humidified fabric 8. On the one hand, it avoids the fabric 8 from being too wet, and on the other hand, when squeezing the fabric 8, the moisture in the fabric 8 can flow, further improving the uniformity of the wetting of the fabric 8. The coating component 3 is provided for coating the fabric 8 for subsequent processing, or coating a composite of octadecane and hydrogel on the fabric 8 to form a humidity-adjusting layer on the surface of the partition 9, which is used to slow down the volatilization of moisture in the fabric 8 during transportation and storage, thereby ensuring that the humidity of the fabric 8 is still up to standard before entering the next process; The humidifying component 2 includes a circulation pump 201 and a filter 202. The circulation pump 201 and the filter 202 are fixedly installed on the back surface of the equipment housing 1. The input end of the circulation pump 201 is connected to the inside of the equipment housing 1 through a pipeline. The output end of the circulation pump 201 is connected to the input end of the filter 202. The output end of the filter 202 is connected to a high-pressure spray component 203 and an industrial ultrasonic spray component 204 through pipelines. The film coating component 3 includes a first cylinder 301. There are two sets of the first cylinder 301 arranged vertically, with one set above the fabric 8 and the other set below the fabric 8. The first cylinder 301 is fixedly installed on the inner wall of the equipment housing 1. The extending end of the first cylinder 301 is fixedly installed with a first mounting seat 302. A feeder 303, an upper glue roller 304, and a glue coating roller 305 are installed inside the first mounting seat 302. The upper glue roller 304 is in contact with the glue coating roller 305. The discharge port of the feeder 303 is close to the upper glue roller 304. The extrusion component 4 includes a guide rail 401. The guide rail 401 is fixedly installed on the inner wall of the equipment housing 1. A second mounting seat 402 is slidably arranged inside the guide rail 401. A third mounting seat 403 is fixedly installed inside the guide rail 401. The inner wall of the second mounting seat 402 is rotatably connected to an upper extrusion roller 404 through a bearing. The inner wall of the third mounting seat 403 is rotatably connected to a lower support roller 405 through a bearing. The upper extrusion roller 404 is located above the fabric 8, and the lower support roller 405 is located below the fabric 8. The second mounting seat 402 and the third mounting seat 403 are separated by an elastic cushion block 406. An insulating lining 102 is arranged inside the equipment housing 1. A cavity 101 is formed between the insulating lining 102 and the cavity 101, and the cavity 101 is filled with insulating material. A heating device 6 is arranged outside the equipment housing 1. The input and output ends of the heating device 6 are connected to a plate heat exchanger 7, and the plate heat exchanger 7 is arranged inside the equipment housing 1. The high-pressure spray component 203 includes a high-pressure sprayer 2031, and the industrial ultrasonic spray component 204 includes an industrial ultrasonic sprayer 2041. The high-pressure sprayer 2031 is fixedly installed on the back surface of the equipment housing 1. The input end of the high-pressure sprayer 2031 is communicated with the output end of the filter 202 through a pipeline. A first connecting pipe 2032 is communicated with the output end of the high-pressure sprayer 2031. The front end of the first connecting pipe 2032 is communicated with a spray cutter head 2033. The spray cutter head 2033 is located inside the equipment housing 1. The industrial ultrasonic sprayer 2041 is fixedly installed on the inner wall of the equipment housing 1. The input end of the industrial ultrasonic sprayer 2041 is communicated with the output end of the filter 202 through a pipeline. A second connecting pipe 2042 is communicated with the output end of the industrial ultrasonic sprayer 2041. The front end of the second connecting pipe 2042 is communicated with an ultrasonic spray head 2043. The ultrasonic spray head 2043 is located inside the equipment housing 1. There are two spray cutter heads 2033 and ultrasonic spray heads 2043, and they are respectively located above and below the fabric 8. A connecting plate 10 is fixedly installed on the outer wall of the first mounting seat 302. A spreading roller 11 is fixedly installed on the outer wall of the connecting plate 10. There are two spreading rollers 11, and they are respectively located above and below the fabric 8. The flattening assembly 5 includes a second cylinder 501 and a smooth platform 503. The second cylinder 501 is fixedly installed on the inner wall of the top of the equipment housing 1. The smooth platform 503 is fixedly installed on the inner wall of the equipment housing 1. The fabric 8 passes over the upper surface of the smooth platform 503. The extending end of the second cylinder 501 is fixedly installed with a mounting frame 502. The inner side of the mounting frame 502 is rotatably connected with a rotating shaft 507 through a bearing. A flattening roller 508 is fixedly installed on the outer wall of the rotating shaft 507. The axis of the rotating shaft 507 is parallel to the advancing direction of the fabric 8. A motor 504 is fixedly installed on the inner wall of the mounting frame 502. The output end of the motor 504 is fixedly installed with a worm 505. The worm 505 meshes with a worm gear 506. The worm gear 506 is fixedly installed on the rotating shaft 507. There are two groups of rotating shafts 507. The rotation directions of the two groups of rotating shafts 507 are opposite, and the two groups of rotating shafts 507 are symmetrically distributed about the center of the fabric 8 in the front and back. By adjusting the height of the mounting frame 502 up and down through the second cylinder 501, the height of the flattening roller 508 is adjusted, so that the flattening roller 508 can contact the fabric 8. When there are wrinkles on the fabric 8, the wrinkled part is higher than the flat part, so it can be flattened by the flattening roller 508. At the same time, the flattening roller 508 rotates to flatten the fabric 8 by using the small friction force between the flattening roller 508 and the fabric 8. The motor 504 drives the worm 505 to rotate, thereby driving the worm gear 506 to rotate, and then driving the rotating shaft 507 to rotate. The rotation of the rotating shaft 507 drives the flattening roller 508 to rotate. The flattening roller 508 is in the shape of a spindle with smaller ends and a larger middle. The outer wall of the flattening roller 508 is coated with a smooth coating, so that the friction force received by the fabric 8 when it moves below the flattening roller 508 is smaller, thereby avoiding the fabric 8 from being damaged.

[0021] Working principle: When in use, the fabric 8 is passed through the inlet and outlet at both left and right ends of the device housing 1. When the fabric 8 passes through the flattening assembly 5, the motor 504 is started to drive the worm 505 to rotate, which in turn drives the worm gear 506 to rotate, and then drives the rotating shaft 507 to rotate. The rotation of the rotating shaft 507 drives the flattening roller 508 to rotate, and the fabric 8 is flattened by the relatively small frictional force between the flattening roller 508 and the fabric 8. After the fabric 8 passes through the humidifying assembly 2, the humidifying assembly 2 humidifies the fabric 8. When the fabric 8 passes through the squeezing assembly 4, the upper squeezing roller 404 presses on the fabric 8, and the humidified fabric 8 is moderately squeezed. When the fabric 8 passes through the coating assembly 3, the feeder 303 applies the coating material onto the upper glue roller 304. During the rotation of the upper glue roller 304, the coating material can be applied onto the coating roller 305, and the coating roller 305 then applies the coating material onto the fabric 8.

[0022] Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the scope of protection of the present invention.

Claims

1. A textile fabric humidifying device, comprising a device housing (1), characterized in that: The left and right outer walls of the device housing (1) are provided with inlets and outlets, and the cloth (8) passes through the inlets and outlets. The interior of the device housing (1) is provided with a humidifying component (2), a coating component (3), an extruding component (4), and a flattening component (5); The flattening component (5) is located on the left side of the humidifying component (2), the extruding component (4) is located between the humidifying component (2) and the film coating component (3), and a partition (9) is fixedly mounted on the inner wall of the device housing (1), and the partition (9) separates the extruding component (4) and the film coating component (3).

2. A textile fabric humidifying device according to claim 1, characterized in that: The humidifying component (2) comprises a circulation pump (201) and a filter (202). The circulation pump (201) and the filter (202) are fixedly mounted on the back of the device housing (1). The input end of the circulation pump (201) is connected to the inside of the device housing (1) via a pipeline. The output end of the circulation pump (201) is connected to the input end of the filter (202). The output end of the filter (202) is connected to a high-pressure spray component (203) and an industrial ultrasonic spray component (204) via a pipeline.

3. A textile fabric humidifying device according to claim 1, characterized in that: The coating assembly (3) comprises a cylinder 1 (301), wherein the cylinder 1 (301) is provided with two upper and lower groups, one group being located above the cloth (8) and the other group being located below the cloth (8), wherein the cylinder 1 (301) is fixedly mounted on the inner wall of the equipment housing (1), and a mounting seat 1 (302) is fixedly mounted on the extended end of the cylinder 1 (301), and a feeder (303), a glue roller (304), and a glue coating roller (305) are mounted on the inner side of the mounting seat 1 (302), wherein the glue roller (304) is in contact with the glue coating roller (305), and the discharge port of the feeder (303) is close to the glue roller (304).

4. A textile fabric humidifying device according to claim 1, characterized in that: The extrusion assembly (4) comprises a guide rail (401), wherein the guide rail (401) is fixedly mounted on the inner wall of the device housing (1), a second mounting seat (402) is slidably arranged inside the guide rail (401), a third mounting seat (403) is fixedly mounted inside the guide rail (401), an upper extrusion roller (404) is rotatably connected to the inner wall of the second mounting seat (402) via a bearing, and a lower support roller (405) is rotatably connected to the inner wall of the third mounting seat (403) via a bearing, the upper extrusion roller (404) is located above the cloth (8), and the lower support roller (405) is located below the cloth (8), and the second mounting seat (402) and the third mounting seat (403) are separated by an elastic pad (406).

5. The textile fabric humidifying device according to claim 1, characterized in that: A heat-insulating lining (102) is provided inside the device housing (1), a cavity (101) is provided between the heat-insulating lining (102) and the cavity (101), and the cavity (101) is filled with a heat-insulating material.

6. A textile fabric humidifying device according to claim 1, characterized in that: A heating device (6) is arranged outside the device housing (1); the input and output ends of the heating device (6) are connected to a plate heat exchanger (7); and the plate heat exchanger (7) is arranged inside the device housing (1).

7. A textile fabric humidifying device according to claim 2, characterized in that: The high-pressure spray component (203) comprises a high-pressure spray machine (2031), and the industrial ultrasonic spray component (204) comprises an industrial ultrasonic spray machine (2041). The high-pressure spray machine (2031) is fixedly mounted on the back of the device housing (1). The input end of the high-pressure spray machine (2031) is connected to the output end of the filter (202) via a pipeline. The output end of the high-pressure spray machine (2031) is connected to a connecting pipe 1 (2032). The front end of the connecting pipe 1 (2032) is connected to a spray blade (2033). The spray blade (2033) is located in the device housing (1). The industrial ultrasonic spray machine (2041) is fixedly mounted on the inner wall of the equipment housing (1); the input end of the industrial ultrasonic spray machine (2041) is connected to the output end of the filter (202) via a pipeline; the output end of the industrial ultrasonic spray machine (2041) is connected to a second connecting pipe (2042); the front end of the second connecting pipe (2042) is connected to an ultrasonic spray head (2043); the ultrasonic spray head (2043) is located in the equipment housing (1); two spray blade heads (2033) and two ultrasonic spray heads (2043) are provided, and are respectively located above and below the cloth (8).

8. A textile fabric humidifying device according to claim 3, characterized in that: A connecting plate (10) is fixedly mounted on the outer wall of the mounting seat 1 (302), and a coating roller (11) is fixedly mounted on the outer wall of the connecting plate (10). Two coating rollers (11) are provided and are located above and below the cloth (8), respectively.

9. A textile fabric humidifying device according to claim 1, characterized in that: The leveling component (5) comprises a second cylinder (501) and a smooth platform (503). The second cylinder (501) is fixedly mounted on the top inner wall of the device housing (1). The smooth platform (503) is fixedly mounted on the inner wall of the device housing (1). The cloth (8) passes over the upper surface of the smooth platform (503). A mounting frame (502) is fixedly mounted on the extended end of the second cylinder (501). A rotating shaft (507) is rotatably connected to the inner side of the mounting frame (502) via a bearing. A leveling member (503) is fixedly mounted on the outer wall of the rotating shaft (507). A flat roller (508), the axis of the rotating shaft (507) is parallel to the travel direction of the cloth (8), a motor (504) is fixedly mounted on the inner wall of the mounting frame (502), a worm (505) is fixedly mounted on the output end of the motor (504), the worm (505) is meshed with a worm wheel (506), and the worm wheel (506) is fixedly mounted on the rotating shaft (507), and the rotating shaft (507) is provided with two groups, the two groups of rotating shafts (507) rotate in opposite directions, and the two groups of rotating shafts (507) are symmetrically distributed front and back about the center of the cloth (8).

10. A textile fabric humidifying device according to claim 9, characterized in that: The flattening roller (508) is of a spinning type with small ends and a large middle, and the outer wall of the flattening roller (508) is coated with a smooth coating.