Woven fabric ultraviolet-proof detection device

By designing a woven fabric anti-ultraviolet detection device including support components, steam conveying mechanism, fabric placement mechanism and ultraviolet detection mechanism, the problems of frequent fixing and inserting of fabrics, cumbersome and high cost in the prior art, and a more efficient and economical detection process is achieved.

CN222926618UActive Publication Date: 2025-05-30ZHEJIANG HUANFENG TEXTILE CO LTD
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Patent Information

Application Number
CN202421044232.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-14
Publication Date
2025-05-30
Estimated Expiration
2034-05-14

AI Technical Summary

Technical Problem

When testing the UV-proof effect at different humidity, the existing UV-proof detection device requires frequent fixing of the fabric and inserting it into the device, which is cumbersome and costly.

Method used

A woven fabric anti-ultraviolet detection device is designed, including a support assembly, a steam conveying mechanism, a fabric placement mechanism and an ultraviolet detection mechanism. The fabric placement mechanism can simply and quickly fix the fabric through the design of the middle partition and insert plate, and reduce the demand for multiple groups of ultraviolet devices through the lifting and sliding function of the ultraviolet detection mechanism.

Benefits of technology

The device can significantly improve the testing speed and efficiency, reduce the frequency of fabric fixation and insertion, reduce production costs, and flexibly detect fabrics at different levels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ultraviolet-proof detection device for a woven fabric, which belongs to the technical field of fabric detection devices, and aims to solve the problems that the fabric needs to be fixed and then inserted into the device during placement, the test quantity is large, time and labor are wasted, the operation is more troublesome, and the cost is higher. The steam conveying mechanism is installed in the supporting assembly. The bottom of the fabric placing mechanism is inserted into the supporting assembly; one end of the ultraviolet detection mechanism is inserted into the supporting assembly; according to the utility model, the fabric is inserted simply and quickly, and the fabric does not need to be fixed and inserted frequently, so that the testing speed and efficiency of the whole device can be effectively improved; the manufacturing cost is reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of fabric detection devices, and more specifically, particularly relates to an anti-ultraviolet detection device for woven fabrics. Background Technique

[0002] Woven fabrics have warp and weft directions on the cloth surface. When the raw materials, yarn counts, and densities of the warp and weft directions of the fabric are different, the fabric shows anisotropy. Different interweaving rules and post-finishing conditions can form different appearance styles. Woven fabrics are made of fabrics and can play a certain role in blocking ultraviolet rays. Different materials have different ultraviolet blocking effects. Therefore, it is necessary to detect the anti-ultraviolet performance of finished woven fabrics.

[0003] Existing anti-ultraviolet detection devices, such as the anti-ultraviolet fabric detection device disclosed in Chinese Patent CN217901549U, belong to the technical field of textile equipment. Through the setting of the partition plate in the humid cavity, the humid cavity is divided into upper and lower multi-layer structures. Then, through the setting of the steam generator and the steam nozzle, the humidity of each layer of the humid cavity can be different. Since ultraviolet generators are arranged in the left cavity and ultraviolet detectors are arranged in the right cavity, the anti-ultraviolet performance of the fabric on the first clamping plate can be detected under different humidities. At the same time, the setting of the drying cavity can detect the anti-ultraviolet performance of the fabric in the drying cavity. And because the second clamping plate is inclined with the side wall of the drying cavity, the space in the drying cavity can be minimized, thereby reducing the volume and weight of the anti-ultraviolet fabric detection device.

[0004] The problems existing in the existing anti-ultraviolet detection device are as follows: To test the anti-ultraviolet effect under different humidities, multiple groups of humid cavities are set. Before each group of tests, the fabric needs to be fixed and then inserted into the device. The number of tests is large, time-consuming and laborious, and it is rather troublesome. Moreover, ultraviolet emitters and detectors are arranged inside each group of humid cavities, and the cost is relatively high. Therefore, such an anti-ultraviolet detection device has certain defects and needs to be improved. Content of the Utility Model

[0005] In order to solve the above technical problems, the utility model provides an anti-ultraviolet detection device for woven fabrics to solve the problems that the fabric needs to be fixed and then inserted into the device, the number of tests is large, time-consuming and laborious, and it is rather troublesome, and the cost is relatively high as mentioned in the above background technique.

[0006] An anti-ultraviolet detection device for woven fabrics of the utility model is achieved by the following specific technical means:

[0007] An anti-ultraviolet detection device for woven fabrics, comprising: a support assembly, a steam delivery mechanism, a fabric placement mechanism, and an ultraviolet detection mechanism; the support assembly is a cuboid structure as a whole; the steam delivery mechanism is installed inside the support assembly; the bottom of the fabric placement mechanism is inserted into the support assembly; one end of the ultraviolet detection mechanism is inserted into the support assembly; the fabric placement mechanism includes: a middle partition and an insertion plate; the middle partition is a cuboid structure with a groove opened at the top, and a square slot is opened on the surface of the middle partition; the insertion plate is a cuboid structure with a hollow interior, a slot is opened in the middle of the insertion plate, and the insertion plate is slidably inserted into the middle partition.

[0008] In at least some embodiments, the support assembly includes: a box body, a support plate, and a support board; the box body is a cuboid structure with a hollow interior, and the bottom of the middle partition is inserted into the box body; the support plate is fixedly installed inside the box body; the support board is a cuboid structure with a square groove opened at the top, and the support board is fixedly installed inside the box body.

[0009] In at least some embodiments, the steam delivery mechanism includes: an evaporator and a mist nozzle; the evaporator is fixedly installed inside the box body; the mist nozzle is installed on the surface of the support board, and the spray amounts of the mist nozzles at different positions are different. Different spray amounts of the mist nozzles result in different indoor humidities, which are used to assist in testing the anti-ultraviolet effect of the fabric in different humidity environments.

[0010] In at least some embodiments, the fabric placement mechanism further includes: a tightening component and a clamping component; one end of the tightening component is connected to the insertion plate; the clamping component is inserted into the insertion plate, and one side of the top of the clamping component is connected to the tightening component.

[0011] In at least some embodiments, the tightening component further includes: a top box, a threaded rotating rod, a gear belt, and a main control rod; the top box is a cuboid structure with a hollow interior, and the top box is fixedly installed on the surface of the insertion plate; the threaded rotating rod has two sets of threads with opposite directions on its surface, and a gear is fixedly provided at one end of the threaded rotating rod. One end of the threaded rotating rod is rotatably inserted into the top box; the inner side of the gear belt is meshed with the gears at one ends of the two threaded rotating rods; a gear is provided at one end of the main control rod, and one end of the main control rod is rotatably inserted into the top box. The gear at one end of the main control rod is meshed with the gear belt, and the main control rod can control the two threaded rotating rods to rotate simultaneously through the gear belt.

[0012] In at least some embodiments, the clamping component further includes: a clamping frame, a connecting plate, and a closed blocking frame; the number of clamping frames is set to two. The clamping frames are overall square frame structures, and the clamping frames are slidably installed inside the insertion plate. The other end of the threaded rotating rod is rotatably inserted into the insertion plate and is threadedly connected to the clamping frame. The rotation of the threaded rotating rod can control the two clamping frames to clamp and fix the fabric; one side of the connecting plate is fixedly connected to the clamping frame; the closed blocking frame is a square frame structure, and one end of the closed blocking frame passes through the square slot of the closed blocking frame and is fixedly connected to the connecting plate.

[0013] In at least some embodiments, the ultraviolet detection mechanism includes: a support frame, an ultraviolet generator, an ultraviolet detector, a driving rod, an outer box, and a control screw; the support frame is of a U-shaped structure as a whole, one side of the support frame is slidably inserted into the inner part of the groove of the support plate, and the other side of the support frame is slidably inserted into the inner part of the box body; the ultraviolet generator is fixedly installed on the inner side of the bottom of the support frame; the ultraviolet detector is fixedly installed on the inner side of the bottom of the support frame; the driving rod is of a Z-shaped structure as a whole, and one side of the top of the driving rod is fixedly connected to the support frame; the outer box is fixedly installed on the surface of the box body, and the other end of the driving rod is slidably inserted into the inner part of the outer box; the bottom of the control screw is rotatably inserted into the inner part of the outer box and is threadedly connected to the driving rod.

[0014] Compared with the prior art, the utility model has the following beneficial effects:

[0015] A fabric placing mechanism is arranged inside the utility model. When detecting, the fabric is inserted into the fabric placing mechanism. The fabric placing mechanism can simply and quickly fix the fabric, and there is no need to frequently fix and insert the fabric, which can effectively improve the testing speed and efficiency of the whole device; an ultraviolet detection mechanism, the ultraviolet detection mechanism can perform lifting and sliding, and can detect fabrics at different levels, and there is no need to install multiple groups of ultraviolet devices, reducing the manufacturing cost. Description of the Drawings

[0016] Figure 1 is the main body axonometric view structural schematic diagram of the utility model.

[0017] Figure 2 is the main body sectional view structural schematic diagram of the utility model.

[0018] Figure 3 is the axonometric view structural schematic diagram of the conveying device of the utility model.

[0019] Figure 4 is the sectional view structural schematic diagram of the sliding control mechanism of the utility model.

[0020] Figure 5 is the partial enlarged view structural schematic diagram A of the utility model.

[0021] Figure 6 is the exploded view structural schematic diagram of the replaceable filtering mechanism of the utility model.

[0022] In the figure, the corresponding relationship between the component names and the drawing reference numerals is as follows:

[0023] 1. Support assembly; 101. Box body; 102. Support plate; 103. Support board; 2. Steam delivery mechanism; 201. Evaporator; 202. Mist nozzle; 3. Fabric placement mechanism; 301. Middle partition board; 302. Insertion plate; 303. Tightening assembly; 3031. Top box; 3032. Threaded rotating rod; 3033. Gear belt; 3034. Main control rod; 304. Clamping assembly; 3041. Clamping frame; 3042. Connecting plate; 3043. Enclosing blocking frame; 4. Ultraviolet detection mechanism; 401. Support frame; 402. Ultraviolet generator; 403. Ultraviolet detector; 404. Driving rod; 405. Outer box; 406. Control screw rod. Detailed implementation manners

[0024] The following further describes in detail the implementation manners of the present utility model in conjunction with the drawings and embodiments.

[0025] Embodiment 1:

[0026] As shown in the attached Figure 1 to the attached Figure 6 figures:

[0027] The present utility model provides a woven fabric anti-ultraviolet detection device, including: a support assembly 1, a steam delivery mechanism 2, a fabric placement mechanism 3, and an ultraviolet detection mechanism 4; the support assembly 1 is an overall cuboid structure; the steam delivery mechanism 2 is installed inside the support assembly 1; the bottom of the fabric placement mechanism 3 is inserted into the support assembly 1; one end of the ultraviolet detection mechanism 4 is inserted into the support assembly 1; the fabric placement mechanism 3 includes: a middle partition board 301 and an insertion plate 302; the middle partition board 301 is a cuboid structure with a groove opened at the top, and a square slot is opened on the surface of the middle partition board 301; the insertion plate 302 is a cuboid structure with a hollow interior, a slot is opened in the middle of the insertion plate 302, and the insertion plate 302 is slidably inserted into the middle partition board 301.

[0028] As Figure 3 shown, the support assembly 1 includes: a box body 101, a support plate 102, and a support board 103; the box body 101 is a cuboid structure with a hollow interior, and the bottom of the middle partition board 301 is inserted into the box body 101; the support plate 102 is fixedly installed inside the box body 101; the support board 103 is a cuboid structure with a square groove opened at the top, and the support board 103 is fixedly installed inside the box body 101.

[0029] As Figure 3 shown, the steam delivery mechanism 2 includes: an evaporator 201 and a mist nozzle 202; the evaporator 201 is fixedly installed inside the box body 101; the mist nozzle 202 is installed on the surface of the support board 103, the spray amounts of the mist nozzles 202 at different positions are different, and the detection indoor humidity is different due to the different spray amounts of the mist nozzles 202, which is used to assist in testing the anti-ultraviolet effect of the fabric in different humidity environments.

[0030] As Figure 4 shown, the fabric placing mechanism 3 further includes: a tightening component 303 and a clamping component 304; one end of the tightening component 303 is connected to the plug board 302; the clamping component 304 is inserted into the inside of the plug board 302, and one side of the top of the clamping component 304 is connected to the tightening component 303.

[0031] As Figure 5 shown, the tightening component 303 further includes: a top box 3031, a threaded rotating rod 3032, a gear belt 3033, and a main control rod 3034; the top box 3031 is a cuboid structure with a hollow interior, and the top box 3031 is fixedly installed on the surface of the plug board 302; two sets of threads with opposite directions are provided on the surface of the threaded rotating rod 3032, and a gear is fixedly arranged at one end of the threaded rotating rod 3032. One end of the threaded rotating rod 3032 is rotatably inserted into the inside of the top box 3031; the inner side of the gear belt 3033 is meshed and connected to the gears at one end of the two threaded rotating rods 3032; a gear is arranged at one end of the main control rod 3034, and one end of the main control rod 3034 is rotatably inserted into the inside of the top box 3031. The gear at one end of the main control rod 3034 is meshed and connected to the gear belt 3033, and the main control rod 3034 can control the two threaded rotating rods 3032 to rotate simultaneously through the gear belt 3033.

[0032] As Figure 5 shown, the clamping component 304 further includes: a clamping frame 3041, a connecting plate 3042, and a closed blocking frame 3043; the number of the clamping frames 3041 is set to two. The clamping frame 3041 is an overall square frame structure. The clamping frame 3041 is slidably installed inside the plug board 302. The other end of the threaded rotating rod 3032 is rotatably inserted into the inside of the plug board 302 and is threadedly connected to the clamping frame 3041. The rotation of the threaded rotating rod 3032 can control the two clamping frames 3041 to clamp and fix the fabric; one side of the connecting plate 3042 is fixedly connected to the clamping frame 3041; the closed blocking frame 3043 is a square frame structure, and one end of the closed blocking frame 3043 passes through the square slot of the closed blocking frame 3043 and is fixedly connected to the connecting plate 3042.

[0033] As Figure 6As shown in the figure, the ultraviolet detection mechanism 4 includes: a support frame 401, an ultraviolet generator 402, an ultraviolet detector 403, a driving rod 404, an outer box 405, and a control screw 406; the support frame 401 is of an overall U-shaped structure, one side of the support frame 401 is slidably inserted into the groove of the support plate 103, and the other side of the support frame 401 is slidably inserted into the box body 101; the ultraviolet generator 402 is fixedly installed on the inner side of the bottom of the support frame 401; the ultraviolet detector 403 is fixedly installed on the inner side of the bottom of the support frame 401; the driving rod 404 is of an overall Z-shaped structure, and one side of the top of the driving rod 404 is fixedly connected to the support frame 401; the outer box 405 is fixedly installed on the surface of the box body 101, and the other end of the driving rod 404 is slidably inserted into the outer box 405; the bottom of the control screw 406 is rotatably inserted into the outer box 405 and is threadedly connected to the driving rod 404.

[0034] Specific usage and functions of this embodiment:

[0035] In the present utility model, during use, the staff can directly insert a whole piece of fabric into the chute of the insertion plate 302. At this time, the fabric is inserted in the middle position between the two clamping frames 3041. The staff can directly rotate the main control rod 3034. The threads on the surface of the main control rod 3034 control the simultaneous rotation of the two threaded rods 3032 through the gear belt 3033. Since there are two sets of threads with opposite directions on the surface of the threaded rod 3032, when the threaded rod 3032 rotates, the two clamping frames 3041 slide inward simultaneously to assist in clamping the inserted fabric. When the clamping frame 3041 slides, the clamping frame 3041 will drive the closed blocking frame 3043 to slide inside the chute of the middle partition plate 301, reducing the mutual flow of gases in different layers; the clamping frame 3041 slides to fix the fabric, eliminating the need for frequent and multiple fabric fixations. During detection, the control screw 406 can be rotated. The threads on the surface of the control screw 406 can control the support frame 401, the ultraviolet generator 402, and the ultraviolet detector 403 to slide upward simultaneously through the driving rod 404, successively detecting fabrics at different layers, reducing costs.

[0036] In this article, the following points need to be noted:

[0037] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.

[0038] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0039] The above are only specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.

Claims

1. A woven fabric anti-ultraviolet detection device, comprising: A support component (1), a steam conveying mechanism (2), a fabric placement mechanism (3) and an ultraviolet detection mechanism (4); the support component (1) is a rectangular parallelepiped structure as a whole; it is characterized in that the steam conveying mechanism (2) is installed inside the support component (1); the bottom of the fabric placement mechanism (3) is inserted into the support component (1); one end of the ultraviolet detection mechanism (4) is inserted into the support component (1); the fabric placement mechanism (3) comprises: a middle partition (301) and an insert plate (302); a square slot is provided on the surface of the middle partition (301); the insert plate (302) is a rectangular parallelepiped structure with a hollow interior, a slot is provided in the middle of the insert plate (302), and the insert plate (302) is slidably inserted into the middle partition (301).

2. The device for detecting ultraviolet rays against woven fabrics according to claim 1, characterized in that: The support assembly (1) comprises: a box body (101), a support plate (102) and a support plate (103); the bottom of the middle partition plate (301) is inserted into the box body (101); the support plate (102) is fixedly installed inside the box body (101); the support plate (103) is a rectangular parallelepiped structure with a square groove on the top, and the support plate (103) is fixedly installed inside the box body (101).

3. The device for detecting ultraviolet rays against woven fabrics according to claim 1, characterized in that: The steam delivery mechanism (2) comprises: an evaporator (201) and a mist nozzle (202); the evaporator (201) is fixedly installed inside the box (101); and the mist nozzle (202) is installed on the surface of the support plate (103).

4. The device for detecting ultraviolet rays against woven fabrics according to claim 1, characterized in that: The fabric placement mechanism (3) further comprises: a tightening component (303) and a clamping component (304); one end of the tightening component (303) is connected to the plug board (302); the clamping component (304) is inserted into the plug board (302), and one side of the top of the clamping component (304) is connected to the tightening component (303).

5. The device for detecting ultraviolet rays against woven fabrics according to claim 4, characterized in that: The tightening assembly (303) further comprises: a top box (3031), a threaded rotating rod (3032), a gear belt (3033) and a main control rod (3034); the top box (3031) is fixedly mounted on the surface of the plug board (302); the surface of the threaded rotating rod (3032) is provided with two groups of threads in opposite directions, one end of the threaded rotating rod (3032) is fixedly provided with a gear, and one end of the threaded rotating rod (3032) is rotatably inserted into the interior of the top box (3031); the inner side of the gear belt (3033) is meshedly connected with the gears at one end of the two groups of threaded rotating rods (3032); one end of the main control rod (3034) is provided with a gear, and one end of the main control rod (3034) is rotatably inserted into the interior of the top box (3031), and the gear at one end of the main control rod (3034) is meshedly connected with the gear belt (3033).

6. The device for detecting ultraviolet rays of woven fabrics according to claim 4, characterized in that: The clamping assembly (304) further comprises: a clamping frame (3041), a connecting plate (3042) and a closed baffle frame (3043); the number of the clamping frames (3041) is set to two groups, the clamping frames (3041) are slidably installed inside the plug plate (302), the other end of the threaded rotating rod (3032) is rotated and inserted into the plug plate (302) and is threadedly connected to the clamping frame (3041); one side of the connecting plate (3042) is fixedly connected to the clamping frame (3041); the closed baffle frame (3043) is a square frame structure, one end of the closed baffle frame (3043) passes through a square slot of the closed baffle frame (3043) and is fixedly connected to the connecting plate (3042).

7. The device for detecting ultraviolet rays of woven fabrics according to claim 2, characterized in that: The ultraviolet detection mechanism (4) comprises: a support frame (401), an ultraviolet generator (402), an ultraviolet detector (403), a driving rod (404), an outer box (405) and a control screw (406); one side of the support frame (401) is slidably inserted into the groove of the support plate (103), and the other side of the support frame (401) is slidably inserted into the box body (101); the ultraviolet generator (402) is fixedly mounted on the inner side of the bottom of the support frame (401); the ultraviolet detector (403) is fixedly mounted on the inner side of the bottom of the support frame (401); the driving rod (404) is a Z-shaped structure as a whole, and one side of the top of the driving rod (404) is fixedly connected to the support frame (401); the outer box (405) is fixedly mounted on the surface of the box body (101), and the other end of the driving rod (404) is slidably inserted into the outer box (405); the bottom of the control screw (406) is rotated and inserted into the outer box (405) and is threadedly connected to the driving rod (404).

Citation Information

Patent Citations

  • Detection equipment for ultraviolet-proof woven fabric

    CN217901549U