Waterproof ultraviolet resistant nylon fabric and its processing technology

By sewing a PVC waterproof layer and a dark UV-resistant layer onto the outside of the nylon fabric, and using a special washing device for water washing and steam cleaning, the problem of insufficient waterproof and UV-resistant capabilities of nylon fabrics is solved, improving the practicality and cleaning effect of the fabric.

CN116985494BActive Publication Date: 2025-12-16WUJIANG LIANGYU WEAVING CO LTD
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Patent Information

Application Number
CN202310817393.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-05
Publication Date
2025-12-16
Estimated Expiration
2043-07-05

AI Technical Summary

Technical Problem

Existing nylon fabrics are mostly woven using a woven method, resulting in larger gaps between fibers, weaker waterproof and UV-resistant capabilities, and affecting the user experience.

Method used

A waterproof layer made of PVC coated fabric is sewn onto the outside of the nylon core and coated with a dark-colored UV-resistant layer. At the same time, a nylon fabric washing device is used for water washing and steam cleaning to enhance the waterproof and UV-resistant properties.

Benefits of technology

It improves the waterproof and UV-resistant properties of nylon fabrics, increases the practicality and aesthetics of the fabric, reduces the presence of loose dye and dust, and improves cleaning effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses waterproof ultraviolet-resistant nylon fabric and a processing technology thereof and relates to the technical field of nylon fabric. The application comprises a nylon inner core formed by nylon fiber weaving; a waterproof layer sewn on both sides of the nylon inner core, wherein the waterproof layer is composed of PVC coated fabric; and an ultraviolet-resistant layer coated on the surface of the waterproof layer, wherein the ultraviolet-resistant layer is dark paint. The waterproof layer made of PVC coated fabric is sewn on the outer side of the nylon inner core. In use, the waterproof effect of the nylon inner core itself is improved, and the outer side of the waterproof layer is coated with dark paint. When the fabric is the same, the deeper the color, the better the protection effect against ultraviolet rays. Without additional increase in the weight of the fabric, the ultraviolet-resistant performance of the nylon fabric after forming is improved, the practicality of the fabric after being made into a coat is improved, the nylon fabric has the properties of waterproofness and ultraviolet resistance under the action of the paint, the quality of the nylon fabric is improved, and the service life is prolonged.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of nylon fabric processing equipment, in particular to a waterproof and ultraviolet-resistant nylon fabric and a processing technology thereof. BACKGROUND

[0002] Nylon is the first synthetic fiber in the world. The emergence of nylon has completely changed the appearance of textiles. The synthesis of nylon is a major breakthrough in the synthetic fiber industry and also a very important milestone in polymer chemistry. The existing nylon has multiple purposes. Nylon is woven to form nylon fabric, which is used for industrial manufacturing. Nylon fabric is also dyed after being made. The process includes the following steps: pre-shaping, jet dyeing, washing, color fixing, washing and drying, etc., to improve the internal appearance of nylon fabric.

[0003] The existing nylon fabric is usually processed into a coat for use. However, the nylon fabric is usually woven by using a shuttle loom, and the gap between the fibers of the shuttle fabric is large. When used, the waterproof and ultraviolet-resistant ability of the nylon fabric is weak, so that the waterproof and ultraviolet-resistant ability of the clothes made of the nylon fabric is weak, which affects the experience of the user. Therefore, the application provides a waterproof and ultraviolet-resistant nylon fabric and a processing technology thereof to solve the problem. SUMMARY

[0004] The application aims to solve the problem that the existing nylon fabric is usually processed into a coat for use, the nylon fabric is usually woven by using a shuttle loom, and the gap between the fibers of the shuttle fabric is large. When used, the waterproof and ultraviolet-resistant ability of the nylon fabric is weak, so that the waterproof and ultraviolet-resistant ability of the clothes made of the nylon fabric is weak, which affects the experience of the user. The application provides a waterproof and ultraviolet-resistant nylon fabric and a processing technology thereof.

[0005] In order to achieve the above-mentioned purpose, the application specifically adopts the following technical scheme:

[0006] The waterproof and ultraviolet-resistant nylon fabric comprises:

[0007] A nylon inner core formed by weaving nylon fibers by using a shuttle loom;

[0008] A waterproof layer sewn on both sides of the nylon inner core, wherein the waterproof layer is composed of PVC coated fabric;

[0009] An ultraviolet-resistant layer coated on the surface of the waterproof layer, wherein the ultraviolet-resistant layer is dark-colored paint.

[0010] The application also provides a processing technology of waterproof and ultraviolet resistant nylon fabric, which uses a nylon fabric washing device, comprising a mounting shell, a plurality of conveying rollers for conveying nylon fabric are rotatably installed in the mounting shell, the mounting shell comprises a washing part and a steam part which are in communication with each other, a through opening is formed in the washing part and communicates with the steam part, an industrial heating pipe for heating water flow is installed in the steam part, and the steam part is located behind the washing part along the conveying direction of the conveying rollers;

[0011] A flushing part is installed in the washing part, and the flushing part is used for spraying water flow on the nylon fabric;

[0012] A scraping part is installed in the washing part, the scraping part is connected with the conveying roller, and the scraping part is used for scraping the surface of the nylon fabric;

[0013] A shaking part is installed in the washing part, and the shaking part is used for impacting the nylon fabric;

[0014] When the nylon fabric is washed by using the nylon fabric washing device, the following steps are included:

[0015] S1, placing dyed nylon fabric on the conveying roller;

[0016] S2, turning on the device to clean the nylon fabric by the flushing part and the steam heated by the industrial heating pipe;

[0017] S3, in the cleaning process, the activity of the nylon fabric in the mounting shell is increased by the scraping part and the shaking part, so as to increase the cleaning effect of the nylon fabric in the mounting shell;

[0018] S4, taking out the cleaned nylon fabric for subsequent drying operation.

[0019] Further, the flushing part comprises:

[0020] A water tank is installed on the top of the washing part, and a water outlet is formed in the water tank and communicates with the washing part;

[0021] A water pump is installed in the water tank, and a water pipe is connected to the water tank and communicates with the bottom of the washing part.

[0022] Further, the scraping part comprises:

[0023] A lower backing plate and an upper backing plate are installed in the washing part, a gap for the nylon fabric to pass through is formed between the upper backing plate and the lower backing plate, the lower backing plate is in sliding fit with the washing part, and the upper backing plate and the lower backing plate are located between two adjacent conveying rollers;

[0024] A hinged rod is hinged at one end to the upper base plate, and a driving rod is eccentrically mounted on one of the transport roller shafts, the other end of the hinged rod is hinged to the driving rod.

[0025] Further, the transport roller with the driving rod and the adjacent transport roller have a height difference with other transport rollers, the scraping member is located between the two transport rollers with the height difference, a chute is formed in the washing part, a sliding block is mounted on the lower base plate and slidingly matches with the chute, a connecting spring is mounted between the upper base plate and the lower base plate, an inclined plate is mounted on the upper base plate, and the tangential direction of the inclined plate is consistent with the radial direction of the connecting spring.

[0026] Further, the shaking member comprises:

[0027] An installation plate is slidingly installed in the washing part in the vertical direction, a contact plate for contacting with the nylon cloth is mounted on the installation plate, and an extension plate is mounted on the side of the installation plate close to the transport roller;

[0028] A resisting rod is mounted on the transport roller shafts at the same height, the resisting rod and the extension plate abut to force the extension plate to move in the vertical downward direction.

[0029] Further, an outer sleeve is mounted on the upper base plate, an insertion rod for being inserted into the outer sleeve is mounted on the lower base plate, and the connecting spring is sleeved outside the outer sleeve.

[0030] Further, an air bag is mounted at the bottom of the installation plate, and the air bag is used to provide buoyancy to the installation plate.

[0031] Further, a communication shell is mounted in the steam part and communicates with the through hole, a filter plate is mounted on the through hole, and a one-way valve is mounted on the communication shell.

[0032] Further, a cleaning member is further mounted in the washing part, and the cleaning member comprises:

[0033] A cleaning cylinder is slidingly installed in the washing part, an outlet is formed in the cleaning cylinder and communicates with the washing part, and an adsorptive substance is arranged in the cleaning cylinder;

[0034] A telescopic rod is obliquely installed on the cleaning cylinder, and the telescopic rod is used to abut against the resisting rod;

[0035] An elastic sheet is mounted in the washing part, and the force applied by the elastic sheet to the cleaning cylinder is opposite to the force applied by the resisting rod to the telescopic rod.

[0036] The beneficial effects of the present application are as follows:

[0037] 1. The application is sewn with PVC coated fabric outside the nylon inner core to form a waterproof layer. In use, the waterproof effect of the nylon inner core itself is improved, and a dark colored paint is coated on the outside of the waterproof layer. When the fabric is the same, the darker the color, the better the protection effect against ultraviolet rays. Without additional weight of the fabric, the anti-ultraviolet performance of the nylon fabric after molding is increased, and the practicality of the fabric after being made into a jacket is increased.

[0038] 2. After the fabric is dyed, it is first cleaned by the flushing member, then cleaned by steam, which increases the cleaning effect of the fabric. Finally, the steam is used for disinfection treatment. When washing, the movement amplitude of the fabric in the water is increased by the shaking member and the scraping member, which further increases the cleaning effect of the fabric, reduces the possibility of floating color and dust on the fabric, and improves the appearance of the fabric. BRIEF DESCRIPTION OF DRAWINGS

[0039] Figure 1 is a schematic diagram of the three-dimensional structure of the nylon fabric of the application;

[0040] Figure 2 is a schematic diagram of the washing device of the nylon fabric of the application;

[0041] Figure 3 is an exploded view of part of the application; Figure 2

[0042] Figure 4 is an exploded view of the scraping member of the application;

[0043] Figure 5 is an exploded view of the shaking member and the cleaning member of the application;

[0044] Figure 6 is a three-dimensional half-sectional view of the application; Figure 1

[0045] Figure 7 is an enlarged view of A in the application; Figure 6

[0046] ​​​Mark No. : 1, nylon inner core; 2, waterproof layer; 3, mounting shell; 301, water washing part; 302, steam part; 4, conveying roller; 5, flushing piece; 501, water tank; 502, water pump; 503, water outlet; 504, water pipe; 6, scraping piece; 601, lower pad plate; 602, upper pad plate; 603, hinged rod; 604, driving rod; 7, shaking piece; 701, mounting plate; 702, contact plate; 703, abutting rod; 704, extension plate; 8, industrial heating pipe; 9, chute; 10, sliding block; 11, connecting spring; 12, inclined plate; 13, outer sleeve; 14, insertion rod; 15, air bag; 16, communication shell; 17, filter plate; 18, one-way valve; 19, cleaning piece; 1901, cleaning cylinder; 1902, outlet; 1903, telescopic rod; 1904, elastic sheet. DETAILED DESCRIPTION

[0047] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application.

[0048] As shown in the drawings, Figure 1 the waterproof and ultraviolet-resistant nylon fabric provided by one embodiment of the present application comprises:

[0049] a nylon inner core 1 formed by weaving nylon fibers;

[0050] a waterproof layer 2 sewn on both sides of the nylon inner core 1, the waterproof layer 2 being composed of PVC coated cloth, in use, the waterproof layer 2 is sewn on the surface of the nylon inner core 1 to shield the outside thereof, thereby increasing the waterproof effect of the formed nylon fabric;

[0051] an ultraviolet-resistant layer coated on the surface of the waterproof layer 2, the ultraviolet-resistant layer being dark paint, the color of the ultraviolet-resistant layer can be black, purple or brown, in use, the deeper the color of the same cloth, the better the protection effect against ultraviolet rays, without increasing the weight of the cloth, the ultraviolet-resistant performance of the formed nylon fabric is increased, thereby increasing the practicality of the nylon fabric when made into a coat.

[0052] Compared with the prior art, the waterproof layer 2 made of PVC coated cloth is sewn on the outside of the nylon inner core 1, in use, the waterproof effect of the nylon inner core 1 itself is improved, and the dark paint is coated on the outside of the waterproof layer 2, when the cloth is the same, the deeper the color, the better the protection effect against ultraviolet rays, without increasing the weight of the cloth, the ultraviolet-resistant performance of the formed nylon fabric is increased, thereby increasing the practicality of the cloth when made into a coat.

[0053] As shown in the drawings, Figures 2-7The application also provides a processing technology of waterproof and ultraviolet resistant nylon fabric, which is used for preparing the waterproof and ultraviolet resistant nylon fabric, and uses a nylon fabric washing device, which comprises a mounting shell 3, a plurality of conveying rollers 4 for conveying nylon fabric are rotatably arranged in the mounting shell 3, the mounting shell 3 comprises a washing part 301 and a steam part 302 which are communicated with each other, the washing part 301 is provided with a through port which is communicated with the steam part 302, an industrial heating pipe 8 for heating water flow is arranged in the steam part 302, and the steam part 302 is located at the rear of the washing part 301 along the conveying direction of the conveying roller 4. In use, when the conveying roller 4 conveys the nylon fabric, the nylon fabric is first conveyed through the washing part 301 and then through the steam part 302, so that the nylon fabric is cleaned by first being washed and then being cleaned by steam, the nylon fabric is conveniently sterilized after being cleaned, the cleaning effect of the nylon fabric is improved, in use, the water in the washing part 301 enters the steam part 302 through the through port, is heated by the industrial heating pipe 8, and forms steam for cleaning the nylon fabric, the steam enters the gap of the nylon fiber for cleaning, and the cleaning effect of the nylon fabric is further improved;

[0054] The flushing part 5 arranged in the washing part 301 is used for spraying water flow on the nylon fabric, in use, the nylon fabric is flushed by the water flow sprayed by the flushing part 5, and the floating color and dust on the nylon fabric are conveniently cleaned;

[0055] The scraping part 6 arranged in the washing part 301 is connected with the conveying roller 4, and the scraping part 6 is used for scraping the surface of the nylon fabric, in the cleaning process, the surface of the nylon fabric is scraped by the scraping part 6, and the cleaning effect of the nylon fabric is further improved;

[0056] The shaking part 7 arranged in the washing part 301 is used for impacting the nylon fabric, in use, the nylon fabric is shaken in water by the impact of the shaking part 7, the movement range of the nylon fabric in water is increased, and the cleaning effect of the nylon fabric is improved;

[0057] When the nylon fabric is washed by using the nylon fabric washing device, the following steps are included:

[0058] S1, placing the dyed nylon fabric on the conveying roller 4;

[0059] S2, starting the device and cleaning the nylon fabric by the flushing part 5 and the steam heated by the industrial heating pipe 8;

[0060] S3, in the cleaning process, the nylon fabric is moved in the mounting shell 3 by the scraping part 6 and the shaking part 7, and the cleaning effect of the nylon fabric in the mounting shell 3 is improved;

[0061] S4, the nylon fabric after being cleaned is taken out for subsequent drying operation;

[0062] Compared with the prior art, after dyeing the fabric, the fabric is first cleaned by the flushing part 5, then cleaned by steam, which increases the cleaning effect of the fabric, and finally sterilized by steam. When washing, the movement amplitude of the fabric in water is increased by the shaking part 7 and the scraping part 6, which further increases the cleaning effect of the fabric, reduces the possibility of floating color and dust on the fabric, and improves the appearance of the fabric.

[0063] As shown in Figure 2 and Figure 6 in some embodiments, the flushing part 5 comprises:

[0064] The water tank 501 is installed on the top of the washing part 301, and the water outlet 503 is provided on the water tank 501 and communicates with the washing part 301. In use, the water in the water tank 501 enters the washing part 301 through the water outlet 503 to clean the nylon fabric;

[0065] The water pump 502 is installed in the water tank 501, and the water pipe 504 is connected to the water tank 501 and communicates with the bottom of the washing part 301. The water outlet of the water pump 502 is directed to the water outlet 503, and the water inlet is connected to the water pipe 504. In use, the washing part 301 is first filled with cleaning water, and when the nylon fabric needs to be cleaned, the water pump 502 is started to pump water in the washing part 301 to spray on the nylon fabric, which plays a circulating role. The filter bag is installed in the water pipe 504 to reduce the possibility of dust being sucked into the water tank 501 when the water in the washing part 301 is circulated. The use of water is increased while the nylon fabric is cleaned.

[0066] As shown in Figure 4 in some embodiments, the scraping part 6 comprises:

[0067] The lower pad 601 and the upper pad 602 are installed in the washing part 301. The gap for the nylon fabric to pass through exists between the upper pad 602 and the lower pad 601. The lower pad 601 is in sliding fit with the washing part 301, and the upper pad 602 and the lower pad 601 are located between the adjacent two transport rollers 4. The upper pad 602 is installed on the lower pad 601, and when the lower pad 601 moves, the upper pad 602 moves. They are respectively located on both sides of the nylon fabric, and when moving, they facilitate scraping and cleaning the surface of the nylon fabric and scraping the dust attached thereto;

[0068] The articulated rod 603 is hinged at one end to the upper base plate 602, and a driving rod 604 is eccentrically installed on the rotating shaft of one of the conveying rollers 4, the other end of the articulated rod 603 is hinged to the driving rod 604, in use, when the conveying roller 4 rotates, the driving rod 604 is driven to make a circular motion around the axis direction of the conveying roller 4, so that the position of the articulated rod 603 in the washing part 301 changes, and then the upper base plate 602 and the lower base plate 601 slide in the washing part 301, the movement of the conveying roller 4 drives the movement of the upper base plate 602 and the lower base plate 601, which facilitates the driving of the upper base plate 602 and the lower base plate 601, and cleans the nylon fabric during transportation, thereby increasing the practicability of the device.

[0069] As shown in Figure 3 , Figure 4 and Figure 6 , in some embodiments, the conveying roller 4 on which the driving rod 604 is installed and the adjacent conveying roller 4 have a height difference with other conveying rollers 4, the scraping member 6 is located between the two conveying rollers 4 with a height difference, a sliding groove 9 is formed in the washing part 301, a sliding block 10 that is in sliding cooperation with the sliding groove 9 is installed on the lower base plate 601, a connecting spring 11 is installed between the upper base plate 602 and the lower base plate 601, an inclined plate 12 is installed on the upper base plate 602, the tangential direction of the inclined plate 12 is consistent with the radial direction of the connecting spring 11, and a structure similar to a V-shaped structure is formed between the three conveying rollers 4 at the inlet of the washing part 301 to form a height difference, the sliding block 10 is inserted into the sliding groove 9, and the sliding block 10 is blocked by the inner wall of the sliding groove 9, so that the upper base plate 602 and the lower base plate 601 slide in the inclined direction in the washing part 301;

[0070] In use, when they slide downward, they will be affected by the buoyancy of the water, the greater the downward buoyancy, and then the buoyancy pushes the inclined plate 12, when the buoyancy pushes the inclined plate 12, part of the force will be transmitted through the tangential direction to compress the connecting spring 11, so that the gap between the upper base plate 602 and the lower base plate 601 is reduced, and the upper base plate 602 and the lower base plate 601 are in contact with the surface of the fabric, which increases the scraping effect of the upper base plate 602 and the lower base plate 601 on the nylon fabric, and then increases the cleaning effect on the fabric.

[0071] As shown in Figure 5 , in some embodiments, the shaking member 7 includes:

[0072] The installation plate 701 is slidably installed in the water washing part 301 in the vertical direction, the contact plate 702 for contacting the nylon fabric is installed on the installation plate 701, the extension plate 704 is installed on the side of the installation plate 701 close to the conveying roller 4, in use, the installation plate 701 is slid in the vertical downward direction to make the contact plate 702 away from the nylon fabric, and then the contact plate 702 is reset by the buoyancy of water, and after the reset, the contact plate 702 moves upward for a distance due to inertia, and then collides with the nylon fabric to make the nylon fabric swing in water.

[0073] The abutting rod 703 is installed on the rotating shaft of the conveying roller 4 at the same height, the abutting rod 703 abuts against the extension plate 704 to force the extension plate 704 to move in the vertical downward direction, the extension plate 704 is used to make the installation plate 701 closer to the abutting rod 703, in use, the abutting rod 703 moves in the circumferential direction of the axis when the conveying roller 4 rotates, and then the position of the abutting rod 703 in the vertical direction changes to push the extension plate 704 to move downward, and then the installation plate 701 and the contact plate 702 move downward away from the fabric, when the abutting rod 703 is out of contact with the extension plate 704, the contact plate 702 and the installation plate 701 are reset by the buoyancy to complete the impact on the fabric, in use, the nylon fabric is transported while being impacted by the contact plate 702 to make the fabric swing in water, so that the fabric is better cleaned, and the practicability of the device is improved.

[0074] As shown in Figure 4 some embodiments, the outer sleeve 13 is installed on the upper base plate 602, the insertion rod 14 for being inserted into the outer sleeve 13 is installed on the lower base plate 601, and the connecting spring 11 is sleeved outside the outer sleeve 13, in use, the deformation direction of the connecting spring 11 is limited by the sliding fit between the outer sleeve 13 and the insertion rod 14, so that the upper base plate 602 can only move close to or away from the lower base plate 601 in the linear direction when moving, the stability of the upper base plate 602 when moving is improved, the fabric is better scraped, and the cleaning effect on the fabric is improved.

[0075] As shown in Figure 5 some embodiments, the air bag 15 is installed at the bottom of the installation plate 701, the air bag 15 is used to provide the installation plate 701 with buoyancy, when the installation plate 701 is pushed away from the fabric by the abutting rod 703, and when the abutting rod 703 is out of contact with the extension plate 704, the installation plate 701 is provided with buoyancy by the air bag 15 to make the contact plate 702 reset faster, the frequency of the impact of the contact plate 702 on the fabric when the fabric is transported is improved, and then the cleaning effect on the fabric is improved.

[0076] As shown in Figure 3As shown, in some embodiments, the steam part 302 is provided with a communication shell 16 communicating with the through port, the through port is provided with a filter plate 17, and the communication shell 16 is provided with a one-way valve 18. In use, part of the water flow of the water washing part 301 enters the steam part 302 to be heated, and the dust entering the steam part 302 is reduced through the filter plate 17. In the heating process, the one-way valve 18 is matched to reduce the possibility of backflow of the heated water, thereby increasing the heating effect of the water, so that the water can be quickly heated to more than 100℃. Before the cloth is transported, the water entering the steam part 302 can be preheated, which facilitates the use in time when the cloth is transported, and increases the practicability of the device.

[0077] As shown in Figure 5 and Figure 7 As shown, in some embodiments, the water washing part 301 is also provided with a cleaning part 19, and the cleaning part 19 comprises:

[0078] The cleaning barrel 1901 is slidingly installed in the water washing part 301, the cleaning barrel 1901 is provided with an outlet 1902 communicating with the water washing part 301, the cleaning barrel 1901 is provided with adsorbent, and the adsorbent is activated carbon. The cleaning barrel 1901 is also installed below the transportation roller 4, and the lower cleaning barrel 1901 is fixedly connected with the water washing part 301. In use, the activated carbon contacts the washing water in the water washing part 301 through the outlet 1902 to adsorb the floating color and dust in the water, thereby reducing the possibility of the floating color and dust contacting the cloth again.

[0079] The telescopic rod 1903 is obliquely installed on the cleaning barrel 1901, and the telescopic rod 1903 is used to abut against the abutting rod 703. The telescopic rod 1903 is a spring telescopic rod. In use, the abutting rod 703 not only pushes the extension plate 704, but also pushes the telescopic rod 1903. Since the telescopic rod 1903 is obliquely arranged, the force of the abutting rod 703 pushing the telescopic rod 1903 has a horizontal component, so that the cleaning barrel 1901 slides in the water washing part 301. When the abutting rod 703 is pushed to the limit, the abutting rod 703 continues to push, so that the telescopic end of the telescopic rod 1903 is shortened, and the abutting rod 703 is out of contact with the telescopic rod 1903. In the process, the activity of the cleaning barrel 1901 in the water washing part 301 is increased, thereby increasing the cleaning effect of the adsorbent on the floating color and dust.

[0080] The elastic sheet 1904 installed in the water washing part 301 exerts a force on the cleaning cylinder 1901 in a direction opposite to the force exerted by the stopper 703 on the telescopic rod 1903. In use, when the stopper 703 pushes the telescopic rod 1903 to the maximum position, the cleaning cylinder 1901 pushes the elastic sheet 1904 to deform. When the telescopic rod 1903 and the stopper 703 are disengaged, the elastic sheet 1904 returns to its original position and pushes the cleaning cylinder 1901 to return to its original position, facilitating the cleaning cylinder 1901 to be pushed again, further increasing the movement range of the cleaning cylinder 1901 in the water washing part 301 and improving the cleaning effect on the floating color and dust.

[0081] The above description of disclosed embodiments enables one skilled in the art to make or use the application. Numerous modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Therefore, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A processing technology of waterproof and ultraviolet resistant nylon fabric, the waterproof and ultraviolet resistant nylon fabric comprises a nylon inner core (1) formed by nylon fiber weaving, a waterproof layer (2) is sewn on both sides of the nylon inner core (1), the waterproof layer (2) is composed of PVC coated fabric, an ultraviolet resistant layer is coated on the surface of the waterproof layer (2), and the ultraviolet resistant layer is dark paint, and the processing technology is used for preparing the waterproof and ultraviolet resistant nylon fabric, characterized in that, The process uses a nylon fabric washing device, which comprises a mounting shell (3), a plurality of transport rollers (4) for transporting nylon fabric are rotatably mounted in the mounting shell (3), the mounting shell (3) comprises a washing part (301) and a steam part (302) which are in communication with each other, the washing part (301) is provided with a through opening which is in communication with the steam part (302), the steam part (302) is provided with an industrial heating pipe (8) for heating water flow, and the steam part (302) is located behind the washing part (301) along the transport direction of the transport roller (4); A flushing part (5) is mounted in the washing part (301), and the flushing part (5) is used for spraying water flow on the nylon fabric; A scraping part (6) is mounted in the washing part (301), the scraping part (6) is connected with the transport roller (4), and the scraping part (6) is used for scraping the surface of the nylon fabric; A shaking part (7) is mounted in the washing part (301), and the shaking part (7) is used for impacting the nylon fabric, the shaking part (7) comprises a mounting plate (701) which is slidably mounted in the washing part (301) along the vertical direction, the mounting plate (701) is provided with a contact plate (702) which is used for contacting the nylon fabric, and an extension plate (704) is mounted on one side of the mounting plate (701) which is close to the transport roller (4), the shaking part (7) further comprises a resisting rod (703) which is mounted on the rotating shaft of the transport roller (4) at the same height, the resisting rod (703) abuts against the extension plate (704) to force the extension plate (704) to move in the vertical downward direction, and a cleaning part (19) is further mounted in the washing part (301), the cleaning part (19) comprises a cleaning cylinder (1901) which is slidably mounted in the washing part (301), the cleaning cylinder (1901) is provided with an outlet (1902) which is in communication with the washing part (301), the cleaning cylinder (1901) is provided with an adsorbent, and a telescopic rod (1903) is obliquely mounted on the cleaning cylinder (1901), the telescopic rod (1903) is used for abutting against the resisting rod (703), and an elastic sheet (1904) is mounted in the washing part (301), the force applied by the elastic sheet (1904) on the cleaning cylinder (1901) is opposite to the force applied by the resisting rod (703) on the telescopic rod (1903).

2. The process for processing a waterproof ultraviolet resistant nylon fabric according to claim 1, characterized in that, When the nylon fabric is washed by using the nylon fabric washing device, the following steps are included: S1, placing the dyed nylon fabric on the transport roller (4); S2, turning on the device to clean the nylon fabric by the flushing part (5) and the steam which is heated by the industrial heating pipe (8); S3, in the cleaning process, the activity of the nylon fabric in the mounting shell (3) is increased by the scraping part (6) and the shaking part (7), so as to increase the cleaning effect of the nylon fabric in the mounting shell (3); S4, taking out the cleaned nylon fabric for subsequent drying operation. The flushing piece (5) comprises a water tank (501) installed on the top of the water washing part (301), a water outlet (503) is formed on the water tank (501) and communicates with the water washing part (301), a water pump (502) is installed in the water tank (501), and a water pipe (504) is connected to the water tank (501) and communicates with the bottom of the water washing part (301).

3. The process for processing of water proof UV resistant nylon fabric as claimed in claim 2 wherein, The scraping piece (6) comprises: A lower pad (601) and an upper pad (602) are installed in the water washing part (301), and a gap for nylon cloth to pass through is formed between the upper pad (602) and the lower pad (601), the lower pad (601) is in sliding fit with the water washing part (301), and the upper pad (602) and the lower pad (601) are located between two adjacent transport rollers (4); One end of an articulated rod (603) is articulated to the upper pad (602), and one of the transport rollers (4) is eccentrically provided with a driving rod (604) on a rotating shaft, and the other end of the articulated rod (603) is articulated to the driving rod (604).

4. The process for processing of water proof UV resistant nylon fabric as claimed in claim 3 wherein, The transport roller (4) provided with the driving rod (604) and the adjacent transport roller (4) are different in height from other transport rollers (4), the scraping piece (6) is located between the two transport rollers (4) with different heights, a sliding groove (9) is formed in the water washing part (301), a sliding block (10) is installed on the lower pad (601) and in sliding fit with the sliding groove (9), a connecting spring (11) is installed between the upper pad (602) and the lower pad (601), an inclined plate (12) is installed on the upper pad (602), and a tangent direction of the inclined plate (12) is consistent with a radial direction of the connecting spring (11).

5. The process for processing a waterproof ultraviolet resistant nylon fabric according to claim 4, wherein An outer sleeve (13) is installed on the upper pad (602), an insertion rod (14) is installed on the lower pad (601) and inserted into the outer sleeve (13), and the connecting spring (11) is sleeved outside the outer sleeve (13).

6. The process for processing of water proof UV resistant nylon fabric as claimed in claim 5 wherein, An air bag (15) is installed at the bottom of the mounting plate (701), and the air bag (15) is used to provide buoyancy to the mounting plate (701).

7. The process for processing a waterproof ultraviolet resistant nylon fabric according to claim 6, wherein A communication shell (16) is installed in the steam part (302) and communicates with the through hole, a filter plate (17) is installed on the through hole, and a one-way valve (18) is installed on the communication shell (16).

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