Textile fabric weather resistance detection equipment

The gear is blocked by blocking the gear to prevent the roller rod from rotating, the moving rod removes impurities, and the single-sided mirror collects light and salt spray, solving the problems caused by tension changes and diffusion in UV and salt spray detection, and improving detection efficiency and equipment protection.

CN120558828AActive Publication Date: 2025-08-29JIANGSU WUYUXING YUZHIHUA NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510744049.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2025-08-29
Estimated Expiration
2045-06-05

AI Technical Summary

Technical Problem

Textile fabrics are wrinkled due to changes in tension during ultraviolet weather resistance detection, which affects the degree of aging, and salt spray diffusion during salt spray detection leads to equipment corrosion.

Method used

The jammed gear is used to prevent the roller rod from rotating, the moving rod removes impurities, the single-sided mirror collects light and salt spray, and the threaded rod controls salt spray and light diffusion.

Benefits of technology

Prevent fabric folds from affecting aging detection, improve detection efficiency, protect equipment components, and reduce salt spray corrosion.

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Abstract

The invention relates to the technical field of textile fabric detection equipment, in particular to textile fabric weather fastness detection equipment which comprises an equipment shell, a clamping assembly is installed in the equipment shell and comprises two sets of roller rods, gears are rotationally installed at one ends of the two sets of roller rods, clamping blocks are arranged on one sides of the gears, and the clamping blocks are arranged on the other sides of the two sets of roller rods. A moving rod is fixedly mounted on one side of the clamping block, a first spring is fixedly connected to the interior of the moving rod, a sliding rod is fixedly connected to one end of the first spring, a moving frame is fixedly connected to one end of the moving rod, a blade is arranged in the middle of the moving frame, and a push rod is slidably mounted on one side of the moving frame; the purpose of the invention is that when the roller rod rotates, the clamping block can clamp the gear, so that the roller rod does not rotate, and the tension of the textile fabric is prevented from changing, the textile fabric is easy to shrink and wrinkle, and the wrinkle part of the textile fabric affects the aging degree of the ultraviolet detection textile fabric.
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Description

Technical Field

[0001] The present invention relates to the technical field of textile fabric testing equipment, in particular to a textile fabric weather resistance testing equipment. Background Art

[0002] Weather resistance of textile fabrics refers to the ability of textile fabrics to maintain the stability of their physical, chemical and mechanical properties under the long-term effects of the natural environment (such as sunlight, temperature, humidity, rain, wind, sand, salt spray, etc.). It reflects the material's ability to resist environmental erosion, delay aging and functional degradation. For example, UV testing simulates the effects of ultraviolet rays on fabrics in the natural environment to evaluate the changes in fabric performance under ultraviolet radiation. Salt spray testing places textile fabrics in a spray environment containing a certain concentration of salt to simulate the corrosive effects of marine climate or salty environment on fabrics, so as to evaluate the corrosion resistance and durability of the fabric in such an environment. At present, in the process of ultraviolet weather resistance testing of textile fabrics, due to the high energy of ultraviolet rays, they can destroy the chemical bonds of fiber macromolecules in textile fabrics, causing changes in the tension of the fabrics. The textile fabrics are prone to shrinkage and wrinkles, which causes the wrinkled parts of the textile fabrics to affect the degree of aging of the textile fabrics detected by ultraviolet rays. Summary of the Invention

[0003] The purpose of the present invention is to provide a textile fabric weather resistance testing device. When the roller rod rotates, the block will jam the gear, so that the roller rod will not rotate, thereby preventing the tension of the textile fabric from changing, and the textile fabric from easily shrinking and wrinkling. The wrinkled part of the textile fabric affects the ultraviolet detection of the aging degree of the textile fabric.

[0004] To achieve the above-mentioned object, the present invention provides the following technical solutions: a textile fabric weather resistance testing device, comprising a device housing, a clamping assembly installed inside the device housing, the clamping assembly including two groups of roller rods, one end of each of the two groups of roller rods is rotatably mounted with a gear, one side of the gear is provided with a block, one side of the block is fixedly mounted with a moving rod, a first spring is fixedly connected to the inside of the moving rod, one end of the first spring is fixedly connected to a sliding rod, one end of the moving rod is fixedly connected to a moving frame, a blade is provided in the middle of the moving frame, a push rod is slidably mounted on one side of the moving frame, an inclined block is fixedly mounted on one end of the push rod, and a second spring is mounted on the lower end of the push rod; An auxiliary component is installed on the device housing, and the auxiliary component includes a threaded rod. Two groups of connecting rods are movably installed on both sides of the threaded rod. One end of the two groups of connecting rods is fixedly installed with a one-way mirror, and a groove is provided on the one-way mirror.

[0005] Preferably, a device door is provided on one side of the device housing, a handle is provided on the device door, and both groups of roller rods are provided with card slots, and the textile fabrics are placed on the two groups of card slots.

[0006] Preferably, one end of the first spring is fixedly connected to the inside of the moving rod, and the other end of the first spring is fixedly connected to one side of the sliding rod, and the moving rod is slidably mounted on the sliding rod.

[0007] Preferably, one end of the moving rod is fixedly connected to a first moving sleeve, the first moving sleeve is slidably mounted on the slide rod, and one end of the moving frame is fixedly connected to the first moving sleeve.

[0008] Preferably, one end of the push rod is fixedly connected to a second spring, and one side of the second spring is fixedly connected to a pressure block.

[0009] Preferably, a motor is installed on the threaded rod, and the motor is fixedly installed on the device housing. Second movable sleeves are movably installed on both sides of the threaded rod, and one end of the two groups of connecting rods are fixedly installed on the connecting rods.

[0010] Preferably, one end of the two groups of connecting rods extends through the device housing for installation, and one side of the connecting rod is fixedly installed on the one-way mirror. The one-way mirror is provided with an inclined groove, which is slidably connected to the inclined block.

[0011] Preferably, an ultraviolet lamp and a salt mist nozzle are provided inside the device housing, and the two groups of one-way mirrors are both tiltedly arranged between the ultraviolet lamp and the salt mist nozzle.

[0012] Compared with the prior art, the present invention has the following beneficial effects: 1. In this invention, when the inspector activates the UV instrument, the UV lamp irradiates the textile fabric, causing the fabric to wrinkle and shrink, which in turn drives the rollers on both sides to rotate. Because the other side of the clamping block is not inclined, the clamping block will jam the gear when the rollers rotate, preventing the rollers from rotating. This prevents the tension of the textile fabric from changing, which could lead to shrinkage and wrinkling of the textile fabric. This wrinkled portion of the textile fabric could affect the UV detection of the textile fabric's aging degree. 2. In the present invention, the movable rod reciprocates on the slide rod, thereby driving the movable frame to move reciprocally through the first movable sleeve, so that the blade on the movable frame removes impurities on the textile fabric, thereby preventing the presence of impurities on the textile fabric from causing deviation in the test results; 3. In the present invention, the threaded rod drives the connecting rod toward the salt spray nozzle through the second movable sleeves on both sides, so that the two sets of connecting rods drive the one-way mirror toward the salt spray nozzle, which can effectively prevent the salt spray nozzle from spreading salt spray to the surrounding area, and make the salt spray diffuse toward the textile fabric along the one-way mirror, preventing the salt spray from adhering to the internal device area of ​​the equipment housing and increasing the area, thereby avoiding the corrosion of other parts of the equipment by the salt spray and affecting the normal operation of other parts of the equipment; 4. In the present invention, after the textile fabric is tested, the threaded rod drives the connecting rod to approach the UV instrument through the second movable sleeves on both sides, so that the two sets of connecting rods drive the one-way mirror to approach the UV instrument. Because the one-way mirrors are all inclined, the physical properties of the one-way mirrors can concentrate the light of the ultraviolet lamp and then reflect it onto the textile fabric, which can increase the testing efficiency of the ultraviolet lamp on the textile fabric and prevent the situation where the radiation diffuses more when the power output of the ultraviolet lamp is greater, the radiation is not concentrated, and the testing efficiency of the textile fabric is reduced. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 A cross-sectional view of the device housing structure of the present invention; Figure 3 This is a schematic diagram of the structure of the clamping assembly of the present invention; Figure 4 This is the second schematic diagram of the clamping assembly structure of the present invention; Figure 5 For the present invention Figure 4 Enlarged view of part B; Figure 6 For the present invention Figure 4 Enlarged view of part A; Figure 7 Schematic diagram of the auxiliary component structure of the present invention.

[0014] In the figure: 1. Equipment housing; 101. Equipment door; 102. Handle; 2. Clamping assembly; 201. Roller rod; 202. Gear; 203. Block; 204. Moving rod; 205. First spring; 206. Sliding rod; 207. First moving sleeve; 208. Moving frame; 209. Blade; 210. Push rod; 211. Bevel block; 212. Second spring; 213. Pressing block; 3. Auxiliary assembly; 301. Motor; 302. Threaded rod; 303. Second moving sleeve; 304. Connecting rod; 305. One-way mirror; 306. Groove; 307. UV instrument; 308. Salt spray nozzle. DETAILED DESCRIPTION

[0015] To make the purpose, technical solutions and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the invention claimed for protection, but merely represents selected embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0016] See Figures 1 to 6 As shown, the present invention provides a textile fabric weather resistance testing device, including a device housing 1, a clamping assembly 2 is installed inside the device housing 1, and the clamping assembly 2 includes two groups of roller rods 201, and a gear 202 is rotatably installed on one end of the two groups of roller rods 201. A block 203 is provided on one side of the gear 202, and a moving rod 204 is fixedly installed on one side of the block 203. A first spring 205 is fixedly connected to the inside of the moving rod 204, and a sliding rod 206 is fixedly connected to one end of the first spring 205. A moving frame 208 is fixedly connected to one end of the moving frame 208, and a blade 209 is provided in the middle of the moving frame 208. A push rod 210 is slidably installed on one side of the moving frame 208, and an inclined block 211 is fixedly installed on one end of the push rod 210. A second spring 212 is installed at the lower end of the push rod 210; The inspector passes both sides of the textile fabric through the movable frame 208 respectively, and then inserts them into the card slot of the roller rod 201, starts the roller rod 201 to rotate, and the roller rod 201 drives the textile fabric to rotate, so that the two groups of textile fabric are tightened and fixed by the roller rod 201, and the roller rod 201 drives the textile fabric to rotate, which drives the gear 202 to rotate. Because one side of the block 203 is an inclined surface, the gear 202 will reciprocally squeeze the block 203, so that the block 203 reciprocally squeezes the first spring 205 inside the movable rod 204, and the first spring 205 undergoes elastic deformation, compression and stretching, so that the movable rod 204 moves back and forth on the slide rod 206, so that the movable rod drives the movable frame 208 to move back and forth through the first movable sleeve 207, so that the blade 209 on the movable frame 208 removes impurities on the textile fabric, thereby preventing the presence of impurities on the textile fabric, which leads to deviation in the test results; When the tester starts the ultraviolet instrument 307, the tension of the textile fabric changes under the irradiation of the ultraviolet lamp 307, and the textile fabric wrinkles and shrinks, which drives the roller rods 201 on both sides to rotate. When the roller rods 201 rotate, the block 203 will block the gear 202, so that the roller rods 201 will not rotate, preventing the textile fabric from shrinking and wrinkling due to tension changes during the test. The wrinkled part of the textile fabric affects the aging degree of the textile fabric detected by ultraviolet light; See Figure 7 As shown, an auxiliary component 3 is installed on the device housing 1, and the auxiliary component 3 includes a threaded rod 302, two sets of connecting rods 304 are movably installed on both sides of the threaded rod 302, and one end of each set of connecting rods 304 is fixedly installed with a one-way mirror 305, and a groove 306 is provided on the one-way mirror 305; After the clamping assembly 2 clamps and fixes the textile fabric, the salt spray nozzle 308 is first started. The salt spray nozzle 308 is connected to a salt spray machine to spray the textile fabric to test the weather resistance of the textile fabric in a salt spray environment. If the output size of the salt spray nozzle 308 to the textile fabric is adjusted, the output of the salt spray nozzle 308 is too large, the salt spray spreads more inside the device housing 1, and the area of ​​the device attached to the internal device of the device housing 1 increases. In order to prevent the salt spray from adhering to the device area inside the device housing 1, the motor 301 is started, and the motor 301 drives the threaded rod 302 The threaded rod 302 rotates, and the connecting rod 304 is driven by the second movable sleeves on both sides to approach the salt spray nozzle 308, so that the two sets of connecting rods 304 drive the one-way mirror 305 to approach the salt spray nozzle 308. Because the one-way mirror 305 is set at an angle, it can effectively block the salt spray nozzle 308 from diffusing salt mist to the surrounding area, so that the salt mist is concentratedly diffused toward the textile fabric along the one-way mirror 305, preventing the salt mist from adhering to the internal device area of ​​the device housing 1 and increasing the area, thereby avoiding the corrosion of other parts of the device by the salt mist and affecting the normal operation of other parts of the device; After the textile fabric is inspected, the inspector starts the ultraviolet instrument 307 to irradiate the textile fabric to detect the weather resistance of the textile fabric in the sunlight environment. Because ultraviolet rays diffuse, the thicker the textile fabric, the greater the power output of the ultraviolet lamp 307, and the greater the ray diffusion. When the textile fabric is thicker and the power output of the ultraviolet instrument 307 is greater, the inspector also starts the motor 301. The motor 301 drives the threaded rod 302 to rotate. The threaded rod 302 drives the connecting rod 304 to approach the ultraviolet instrument 307 through the second movable sleeves on both sides, so that the two sets of connecting rods 304 drive the one-way mirror 305 to approach the ultraviolet instrument 307. Because the one-way mirror 305 is tilted, The physical properties of the one-way mirror 305 can concentrate the light of the ultraviolet lamp 307 and then reflect it onto the textile fabric, which can increase the testing efficiency of the ultraviolet lamp 307 on the textile fabric and prevent the ultraviolet lamp 307 from diffusing more and more rays when the power output is greater, causing the rays to be unfocused, thereby reducing the testing efficiency of the textile fabric. At the same time, when the one-way mirror 305 approaches the ultraviolet instrument 307, it can clean the salt mist on the upper wall of the device housing 1. The cooled saline solution can be guided by the groove on the one-way mirror 305 to flow into the collection chamber at the lower end of the device housing 1, thereby preventing the saline solution from corroding the upper wall of the device housing 1 for a long time and affecting the normal operation of the device housing 1. As the one-way mirror 305 moves, it squeezes the oblique block 211 through the oblique slot below. The oblique block 211 drives the pressing block 213 to squeeze the textile fabric through the roller rod 210 and the oblique block 212. If the oblique block 212 undergoes elastic deformation and shrinkage, it means that the textile fabric has not been deformed during the test and is still being tightened by the roller rod 201. If the oblique block 212 does not undergo elastic deformation and the textile fabric is deformed, it means that the textile fabric has not been deformed during the test. The tester starts the roller rod 201 to tighten the textile fabric to prevent it from affecting subsequent tests. Under the irradiation of the ultraviolet lamp 307, if the tension of the textile fabric changes, the textile fabric wrinkles and shrinks, which will drive the rollers 201 on both sides to rotate. The blocking block 203 prevents the rollers 201 from rotating, preventing the textile fabric from easily shrinking and wrinkling due to tension changes during the test. The wrinkled part of the textile fabric affects the ultraviolet detection of the aging degree of the textile fabric. At the beginning of the test, the auxiliary component 3 can, on the one hand, block the salt mist nozzle 308 from spreading salt mist to the surrounding area, causing the salt mist to diffuse toward the textile fabric along the one-way mirror 305, preventing the salt mist from adhering to the device area inside the device housing 1 and increasing the corrosion of other parts of the device by the salt mist, thereby affecting the normal operation of other parts of the device. On the other hand, it can increase the testing efficiency of the ultraviolet lamp 307 on the textile fabric, preventing the UV instrument 307 from outputting greater power, resulting in greater radiation diffusion and unfocused radiation, thereby reducing the testing efficiency of the textile fabric. At the same time, it can also guide the saline solution into the collection chamber at the lower end of the device housing 1, preventing the saline solution from corroding the device housing 1 for a long time on the upper wall of the device housing 1 and affecting the normal operation of the device housing 1.

[0017] In an optional embodiment, a device door 101 is provided on one side of the device housing 1, and a handle 102 is provided on the device door 101. The inspector opens the device door 101 through the handle 102 and puts the textile fabric into the clamping assembly 2. The two groups of roller rods 201 are provided with slots, and the textile fabric is placed on the two groups of slots. The inspector passes both sides of the textile fabric through the mobile frame 208 respectively, and then clamps them into the slots of the roller rod 201, starts the roller rod 201 to rotate, and the roller rod 201 drives the textile fabric to rotate, so that the two groups of textile fabrics are tightened and fixed by the roller rod 201.

[0018] In an optional embodiment, one end of the first spring 205 is fixedly connected to the inside of the moving rod 204, and the other end of the first spring 205 is fixedly connected to one side of the sliding rod 206. The moving rod 204 is slidably installed on the sliding rod 206, so the gear 202 will reciprocatingly squeeze the block 203, thereby causing the block 203 to reciprocatingly squeeze the first spring 205 inside the moving rod 204. The first spring 205 undergoes elastic deformation, compression and stretching, thereby causing the moving rod 204 to reciprocate on the sliding rod 206.

[0019] In an optional embodiment, one end of the moving rod 204 is fixedly connected to a first moving sleeve 207, and the first moving sleeve 207 is slidably installed on the slide rod 206. One end of the moving frame 208 is fixedly connected to the first moving sleeve 207. The moving rod drives the moving frame 208 to move back and forth through the first moving sleeve 207, so that the blade 209 on the moving frame 208 removes impurities on the textile fabric to prevent the presence of impurities on the textile fabric, which may cause deviation in the test results.

[0020] In an optional embodiment, one end of the push rod 210 is fixedly connected to a second spring 212, and one side of the second spring 212 is fixedly connected to a pressure block 213. The inclined block 211 will drive the pressure block 213 to squeeze the textile fabric through the roller rod 210 and the inclined block 212. If the inclined block 212 undergoes elastic deformation and shrinks, it means that the textile fabric has not been deformed during the test and is still tightened by the roller rod 201. If the inclined block 212 does not undergo elastic deformation and the textile fabric is deformed, it means that the textile fabric has not been deformed during the test. The inspector starts the roller rod 201 to tighten the textile fabric to prevent it from affecting subsequent tests.

[0021] In an optional embodiment, a motor 301 is installed on the threaded rod 302, and the motor 301 is fixedly installed on the device housing 1. A second movable sleeve 303 is movably installed on both sides of the threaded rod 302, and one end of the two groups of connecting rods 304 are fixedly installed on the connecting rod 304. The motor 301 drives the threaded rod 302 to rotate, and the threaded rod 302 drives the connecting rod 304 to move through the second movable sleeves on both sides.

[0022] In an optional embodiment, one end of the two sets of connecting rods 304 extend through the device housing 1 for installation, and one side of the connecting rod 304 is fixedly installed on the one-way mirror 305. The one-way mirror 305 is provided with an inclined groove, which is slidingly connected to the inclined block 211. When the one-way mirror 305 moves, it will squeeze the inclined block 211 through the inclined groove below, and the inclined block 211 will drive the pressing block 213 to extrude the textile fabric through the roller rod 210 and the inclined block 212.

[0023] In an optional embodiment, an ultraviolet lamp 307 and a salt mist nozzle 308 are provided inside the device housing 1, and the two groups of one-way mirrors 305 are tilted between the ultraviolet instrument 307 and the salt mist nozzle 308. On the one hand, the two groups of one-way mirrors 305 can block the salt mist nozzle 308 from diffusing salt mist to the surrounding area, so that the salt mist is concentrated and diffused toward the textile fabric along the one-way mirror 305, preventing the salt mist from adhering to the device area inside the device housing 1 and increasing the corrosion of other parts of the equipment by the salt mist, thereby affecting the normal operation of other parts of the equipment. On the other hand, it can increase the testing efficiency of the ultraviolet lamp 307 on the textile fabric, and prevent the ultraviolet instrument 307 from outputting a greater power, causing the rays to diffuse more and the rays to be less concentrated, thereby reducing the testing efficiency of the textile fabric.

[0024] Working principle: The inspector passes both sides of the textile fabric through the movable frame 208 respectively, and then inserts them into the slot of the roller rod 201, starts the roller rod 201 to rotate, and the roller rod 201 drives the textile fabric to rotate, so that the two groups of textile fabrics are tightened and fixed by the roller rod 201, and the roller rod 201 drives the textile fabric to rotate, which drives the gear 202 to rotate. Because one side of the block 203 is an inclined surface, the gear 202 will reciprocally squeeze the block 203, so that the block 203 reciprocally squeezes the first spring 205 inside the moving rod 204, and the first spring 205 undergoes elastic deformation, compression and stretching, so that the moving rod 204 moves back and forth on the slide rod 206, so that the moving rod drives the movable frame 208 to move back and forth through the first movable sleeve 207, so that the blade 209 on the movable frame 208 removes impurities on the textile fabric, thereby preventing the presence of impurities on the textile fabric, which leads to deviation in the test results; When the tester starts the ultraviolet instrument 307, the tension of the textile fabric changes under the irradiation of the ultraviolet lamp 307, and the textile fabric wrinkles and shrinks, which drives the roller rods 201 on both sides to rotate. When the roller rods 201 rotate, the block 203 will block the gear 202, so that the roller rods 201 will not rotate, preventing the textile fabric from shrinking and wrinkling due to tension changes during the test. The wrinkled part of the textile fabric affects the aging degree of the textile fabric detected by ultraviolet light; After the clamping assembly 2 clamps and fixes the textile fabric, the salt spray nozzle 308 is first started. The salt spray nozzle 308 is connected to a salt spray machine to spray the textile fabric to test the weather resistance of the textile fabric in a salt spray environment. If the output size of the salt spray nozzle 308 to the textile fabric is adjusted, the output of the salt spray nozzle 308 is too large, the salt spray spreads more inside the device housing 1, and the area of ​​the device attached to the internal device of the device housing 1 increases. In order to prevent the salt spray from adhering to the device area inside the device housing 1, the motor 301 is started, and the motor 301 drives the threaded rod 302 The threaded rod 302 rotates, and the connecting rod 304 is driven by the second movable sleeves on both sides to approach the salt spray nozzle 308, so that the two sets of connecting rods 304 drive the one-way mirror 305 to approach the salt spray nozzle 308. Because the one-way mirror 305 is set at an angle, it can effectively block the salt spray nozzle 308 from diffusing salt mist to the surrounding area, so that the salt mist is concentratedly diffused toward the textile fabric along the one-way mirror 305, preventing the salt mist from adhering to the internal device area of ​​the device housing 1 and increasing the area, thereby avoiding the corrosion of other parts of the device by the salt mist and affecting the normal operation of other parts of the device; After the textile fabric is inspected, the inspector starts the ultraviolet instrument 307 to irradiate the textile fabric to detect the weather resistance of the textile fabric in the sunlight environment. Because ultraviolet rays diffuse, the thicker the textile fabric, the greater the power output of the ultraviolet lamp 307, and the greater the ray diffusion. When the textile fabric is thicker and the power output of the ultraviolet instrument 307 is greater, the inspector also starts the motor 301. The motor 301 drives the threaded rod 302 to rotate. The threaded rod 302 drives the connecting rod 304 to approach the ultraviolet instrument 307 through the second movable sleeves on both sides, so that the two sets of connecting rods 304 drive the one-way mirror 305 to approach the ultraviolet instrument 307. Because the one-way mirror 305 is tilted, The physical properties of the one-way mirror 305 can concentrate the light of the ultraviolet lamp 307 and then reflect it onto the textile fabric, which can increase the testing efficiency of the ultraviolet lamp 307 on the textile fabric and prevent the ultraviolet lamp 307 from diffusing more and more rays when the power output is greater, causing the rays to be unfocused, thereby reducing the testing efficiency of the textile fabric. At the same time, when the one-way mirror 305 approaches the ultraviolet instrument 307, it can clean the salt mist on the upper wall of the device housing 1. The cooled saline solution can be guided by the groove on the one-way mirror 305 to flow into the collection chamber at the lower end of the device housing 1, thereby preventing the saline solution from corroding the upper wall of the device housing 1 for a long time and affecting the normal operation of the device housing 1. When the one-way mirror 305 moves, it will squeeze the inclined block 211 through the inclined groove below. The inclined block 211 will drive the pressure block 213 to squeeze the textile fabric through the roller rod 210 and the inclined block 212. If the inclined block 212 undergoes elastic deformation and shrinks, it means that the textile fabric has not been deformed during the test and is still tightened by the roller rod 201. If the inclined block 212 does not undergo elastic deformation and the textile fabric is deformed, it means that the textile fabric has not been deformed during the test. The tester will start the roller rod 201 to tighten the textile fabric to prevent it from affecting subsequent tests.

[0025] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A textile fabric weather resistance testing device, comprising a device housing (1), characterized in that: A clamping assembly (2) is installed inside the device housing (1), and the clamping assembly (2) includes two groups of roller rods (201), one end of each of the two groups of roller rods (201) is rotatably installed with a gear (202), one side of the gear (202) is provided with a block (203), one side of the block (203) is fixedly installed with a moving rod (204), the inside of the moving rod (204) is fixedly connected with a first spring (205), one end of the first spring (205) is fixedly connected with a sliding rod (206), one end of the moving rod (204) is fixedly connected with a moving frame (208), a blade (209) is provided in the middle of the moving frame (208), a push rod (210) is slidably installed on one side of the moving frame (208), one end of the push rod (210) is fixedly installed with an inclined block (211), and the lower end of the push rod (210) is installed with a second spring (212); An auxiliary component (3) is mounted on the device housing (1), the auxiliary component (3) comprising a threaded rod (302), two groups of connecting rods (304) being movably mounted on both sides of the threaded rod (302), one end of each of the two groups of connecting rods (304) being fixedly mounted with a single-sided mirror (305), and a groove (306) being provided on the single-sided mirror (305).

2. A textile fabric weather resistance testing device according to claim 1, characterized in that: A device door (101) is provided on one side of the device housing (1), and a handle (102) is provided on the device door (101). Both groups of roller rods (201) are provided with card slots, and the textile fabrics are placed on the two groups of card slots.

3. The textile fabric weather resistance testing device according to claim 1, characterized in that: One end of the first spring (205) is fixedly connected to the inside of the moving rod (204), and the other end of the first spring (205) is fixedly connected to one side of the sliding rod (206). The moving rod (204) is slidably mounted on the sliding rod (206).

4. The textile fabric weather resistance testing device according to claim 1, characterized in that: One end of the moving rod (204) is fixedly connected to a first moving sleeve (207), the first moving sleeve (207) is slidably mounted on the sliding rod (206), and one end of the moving frame (208) is fixedly connected to the first moving sleeve (207).

5. The textile fabric weather resistance testing device according to claim 1, characterized in that: One end of the push rod (210) is fixedly connected to a second spring (212), and one side of the second spring (212) is fixedly connected to a pressure block (213).

6. The textile fabric weather resistance testing device according to claim 1, characterized in that: A motor (301) is mounted on the threaded rod (302), and the motor (301) is fixedly mounted on the device housing (1). Second movable sleeves (303) are movably mounted on both sides of the threaded rod (302), and one end of the two groups of connecting rods (304) are fixedly mounted on the connecting rods (304).

7. The textile fabric weather resistance testing device according to claim 1, characterized in that: One end of each of the two groups of connecting rods (304) extends through the device housing (1) for installation, and one side of the connecting rod (304) is fixedly mounted on the one-way mirror (305). The one-way mirror (305) is provided with an inclined groove, which is slidably connected to the inclined block (211).

8. The textile fabric weather resistance testing device according to claim 1, characterized in that: An ultraviolet lamp (307) and a salt spray nozzle (308) are arranged inside the device housing (1), and the two sets of one-way mirrors (305) are both tiltedly arranged between the ultraviolet instrument (307) and the salt spray nozzle (308).

Citation Information

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