A testing equipment for new material fabric processing

By designing the detection equipment for fabric processing of new materials, using opening and closing motors and threaded rod components to achieve accurate stretching and multi-angle light transmittance detection of fabrics, the problem of inaccurate fabric detection in the prior art is solved, and the accuracy and comprehensiveness of the detection data are improved.

CN119780050BActive Publication Date: 2025-08-08SHANDONG JERRY TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202411966113.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-08-08
Estimated Expiration
2044-12-30

AI Technical Summary

Technical Problem

The existing fabric composition detection device cannot adjust the distance between the fabric and the detection device, resulting in inaccurate light transmittance detection, and cannot simulate the light transmittance detection when wearing different body types, and cannot perform detection after the fabric is stretched, resulting in inaccurate detection of detection data.

Method used

A new material fabric processing detection equipment is designed. Through the combination of fixed mechanism and detection mechanism, the precision stretching and multi-angle light transmittance detection of the fabric is achieved by using components such as opening and closing motors, threaded rods and sliding sleeves, and antibacterial mite removal and light transmittance detection are combined with infrared analyzers and light transmittance detectors.

Benefits of technology

It realizes accurate stretching and multi-angle light transmittance detection of fabrics, can simulate light transmittance detection under different body shapes, and improves the accuracy and comprehensiveness of the detection data.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a detection device for processing new material fabrics, which relates to the field of fabric detection technology. The device comprises a fixing mechanism and an infrared analyzer installed inside the fixing mechanism. A detection mechanism is provided on the top of the fixing mechanism, and a light transmittance detector is provided inside the detection mechanism. The fixing mechanism comprises a detection workbench, a clamping sliding groove is symmetrically provided on the top of the detection workbench, and support legs are fixedly installed around the bottom of the detection workbench, wherein a first motor cover is fixedly installed on one side of the detection workbench, and an opening and closing motor is fixedly installed on one side of the inner side of the first motor cover, wherein the output end of the opening and closing motor is fixedly connected to a first sprocket transmission assembly, and the stretching sliding sleeve slides on the outer side of the stretching sliding rod while driving the bottom clamping plate to move relative to each other, thereby realizing secondary stretching of the fabric, and by cooperating with the opening and closing motor, precise stretching of the fabric to be detected can be realized, thereby improving the stretching accuracy.
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Description

Technical Field

[0001] The present invention relates to the technical field of fabric detection, in particular to a detection device for processing new material fabrics. Background Art

[0002] Antibacterial and anti-mite fabric is a fabric with good safety. It can prevent the regeneration and reproduction of bacteria and keep the fabric clean. This type of fabric usually achieves its function through built-in antibacterial technologies such as silver ions, thereby effectively preventing the breeding and spread of bacteria. In addition, antibacterial and anti-mite fabric also has an excellent antibacterial and anti-mite finishing process, which can form a firm anti-mite film on the surface of the fabric. Even after repeated washing, it can still maintain a reliable repellent effect on mites, making sterilization and anti-mite safer. Antibacterial and anti-mite fabrics are widely used in the production and processing of sweaters, sweaters and other clothing.

[0003] Publication No. CN118671023A discloses a fabric composition detection device. By arranging a conveyor belt on a mounting plate, a carrying plate on the conveyor belt, and a clamping frame on the carrying plate, a sample of fabric can be quickly clamped and fixed by a snap assembly without cutting the fabric sample when clamping and fixing the fabric. The conveyor belt is driven by a motor to sequentially send the carrying plate holding the fabric to the bottom of a dust removal assembly and a hair removal assembly. Before the fabric is tested, the surface of the fabric can be cleaned to remove stray hair and dust to improve the accuracy of the subsequent tester when testing the fabric. The testing process is simple and convenient, saving time and effort. However, this patent still has the following problems in actual use:

[0004] Although the fabric composition detection device arranges a conveyor belt on the mounting plate, a supporting plate on the conveyor belt, and a clamping frame on the supporting plate, and can quickly clamp and fix the fabric by means of a snap assembly without cutting the fabric sample when clamping and fixing the fabric, the fabric cannot be adjusted during the detection, resulting in the inability to detect the strength and light transmittance of the fabric. At the same time, in the prior art, the distance between the fabric and the detection device cannot be adjusted simultaneously when the light transmittance of the fabric is detected, and the fabric cannot be tested after being stretched, and the light transmittance detection when the fabric is worn by fat or thin people cannot be simulated, resulting in inaccurate detection data.

[0005] Therefore, a new material fabric processing detection equipment is proposed to solve the problems raised above. Summary of the Invention

[0006] The object of the present invention is to provide a detection equipment for processing new material fabrics, so as to solve the problem that although the fabric composition detection device proposed in the above background technology arranges a conveyor belt on the mounting plate, a carrying plate on the conveyor belt, and a clamping frame on the carrying plate, the fabric sample does not need to be cut when clamping and fixing the fabric, and the fabric can be quickly clamped and fixed by a snap assembly, the fabric cannot be adjusted during the detection, resulting in the inability to detect the strength and light transmittance of the fabric. At the same time, in the prior art, when performing the light transmittance detection of the fabric, the distance between the fabric and the detection device cannot be adjusted at the same time, and the fabric cannot be tested after stretching, and the light transmittance detection when the fabric is worn by a fat or thin body cannot be simulated, resulting in inaccurate detection data.

[0007] To achieve the above-mentioned object, the present invention provides the following technical solutions: a detection device for processing new material fabrics, comprising a fixing mechanism and an infrared analyzer installed inside the fixing mechanism;

[0008] A detection mechanism is provided on the top of the fixing mechanism, and a light transmission detector is provided inside the detection mechanism;

[0009] Also includes:

[0010] The fixing mechanism includes a detection workbench, the top of which is symmetrically provided with clamping sliding grooves, and the bottom of which is fixedly provided with supporting legs.

[0011] Wherein, a first motor cover is fixedly installed on one side of the detection workbench, and an opening and closing motor is fixedly installed on one side inside the first motor cover;

[0012] The output end of the opening and closing motor is fixedly connected to a first sprocket transmission assembly, and one side of the first sprocket transmission assembly is symmetrically connected to an opening and closing bidirectional threaded rod;

[0013] The outer sides of the two opening and closing bidirectional threaded rods are symmetrically threadedly connected with opening and closing threaded sleeves, the tops of the two opening and closing threaded sleeves are fixedly installed with opening and closing brackets, the tops of the two opening and closing brackets are fixedly installed with support springs, the tops of the two support springs are fixedly installed with stretching brackets, and the interior of the stretching brackets is fixedly installed with a stretching sliding rod;

[0014] The outer side of the stretching sliding rod is slidably connected to a stretching sliding sleeve, one side of the stretching sliding sleeve is fixedly connected to a return spring, the bottom of the stretching sliding sleeve is rotatably connected to a stretching rotating rod, the stretching rotating rod is rotatably connected to the opening and closing bracket, the top of the stretching sliding sleeve is fixedly installed with a bottom clamping plate, and both sides of the interior of the bottom clamping plate are threadedly connected to clamping threaded rods;

[0015] The outer sides of the two clamping threaded rods are threadedly connected with locking nuts, and the tops of the two clamping threaded rods are rotatably connected with top clamping plates. The bottom side of the top clamping plate and the top side of the bottom clamping plate are both provided with clamping grooves, and the bottom side of the top clamping plate and the bottom clamping plate are engaged and connected through the clamping grooves.

[0016] A testing box is fixedly mounted on the bottom of the testing workbench, a box door is rotatably connected to the front of the testing box, a handle is fixedly mounted on the outside of the box door, a collection box is placed inside the testing box, and protective baffles are symmetrically mounted on the inner side of the top of the testing box. A second motor cover is fixedly mounted on one side of the testing box, a first moving motor is fixedly mounted on one side of the inner side of the second motor cover, and an output end of the first moving motor is fixedly connected to a second sprocket transmission assembly;

[0017] A first movable threaded rod is symmetrically connected to one side of the second sprocket transmission assembly, and the outer sides of the two first movable threaded rods are threadedly connected to the first movable threaded sleeves, and the tops of the two first movable threaded sleeves are fixedly installed with longitudinal brackets, one end of the longitudinal bracket is fixedly installed with a longitudinal motor, the output end of the longitudinal motor is fixedly connected to the longitudinal threaded rod, the outer side of the longitudinal threaded rod is threadedly connected to the longitudinal threaded sleeve, and the infrared analyzer is fixedly installed on the top of the longitudinal threaded sleeve.

[0018] Preferably, the detection mechanism includes a lifting sliding rod, which is fixedly installed around the top of the detection workbench, a supporting top plate is fixedly installed on the top of the lifting sliding rod, a lifting cylinder is fixedly installed at the bottom center of the supporting top plate, a lifting plate is fixedly installed at the bottom of the lifting cylinder, a lifting sliding sleeve is fixedly installed around the lifting plate, and the lifting sliding sleeve is slidably connected to the lifting sliding rod.

[0019] Preferably, lifting and lowering pressure plates are fixedly installed on the front and back sides of the bottom of the lifting plate, a second movable bracket is fixedly installed at the center position of the bottom of the lifting plate, a second movable motor is fixedly installed at one end of the second movable bracket, a second movable threaded rod is fixedly connected to the output end of the second movable motor, and the outer side of the second movable threaded rod is threadedly connected to the second movable threaded sleeve and the third movable threaded sleeve.

[0020] Preferably, the bottom of the second movable threaded sleeve and the third movable threaded sleeve are fixedly installed with a movable limit plate, the bottom of the movable limit plate is fixedly installed with an air permeability detection cover, the light transmittance detector is fixedly installed on the bottom of the movable limit plate, and a number of ventilation holes are symmetrically opened on both sides of the top of the air permeability detection cover, a fan bracket is fixedly installed inside the air permeability detection cover, a detection fan is fixedly installed at the inner center position of the fan bracket, a heating rod is fixedly installed on the inner side of the bottom of the fan bracket, and a dustproof net is fixedly installed on the bottom of the fan bracket.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows: in this new material fabric processing testing equipment, the stretching sliding sleeve slides on the outside of the stretching sliding rod, while driving the bottom clamping plate to move relative to each other, thereby realizing secondary stretching of the fabric, and by cooperating with the opening and closing motor, the fabric to be tested can be accurately stretched, thereby improving the stretching accuracy and facilitating the light transmittance test of the fabric after stretching. When the air permeability and thermal insulation of the fabric need to be tested, the heating rod can be used to heat it, and the detection fan can be used to blow hot air to the fabric, thereby realizing the air permeability and thermal insulation of the fabric. The specific contents are as follows:

[0022] 1. By setting up a fixing mechanism, not only can the opening and closing motor be used to drive the first sprocket transmission assembly and the opening and closing bidirectional threaded rod to rotate, so that the opening and closing threaded sleeve drives the opening and closing bracket to move relatively, thereby realizing the initial stretching of the fabric to be tested, and the fabric is flattened, which is convenient for cooperating with the infrared analyzer to perform antibacterial and mite removal testing of the fabric, and the clamping grooves on one side of the bottom clamping plate and the top clamping plate are used to clamp the fabric to be tested, and the locking nut is threadedly connected to the clamping threaded rod to fix the fabric to be tested, thereby improving the stability of fabric clamping, and by pressing down the lifting and lowering plate, the top clamping plate can be subjected to pressure, driving the stretching bracket to squeeze the support spring, causing the stretching bracket to descend while driving the stretching rotating rod to rotate, causing the stretching sliding sleeve to slide on the outside of the stretching sliding rod while driving the bottom clamping plate to move relatively, thereby realizing secondary stretching of the fabric, and by cooperating with the opening and closing motor, precise stretching of the fabric to be tested can be achieved, thereby improving the accuracy of stretching, and facilitating the light transmittance detection of the fabric after stretching. , and at the same time, continue to press down the stretching bracket to make the bottom clamping plate and the top clamping plate continue to stretch the fabric to be tested, so that the tensile strength of the fabric can be tested, and the second sprocket transmission assembly and the first movable threaded rod are driven to rotate by the first movable threaded sleeve to drive the longitudinal bracket to move, and at the same time, the longitudinal motor is started to drive the longitudinal threaded rod to rotate, so that the longitudinal threaded sleeve drives the infrared analyzer to move longitudinally, thereby realizing the full-dimensional movement of the infrared analyzer, which is convenient for detecting bacteria and mites on the surface of the fabric to be tested. After a period of time, the fabric is tested a second time, and whether the fabric has anti-mite performance is determined by judging the increase or decrease in the number of mites in the fabric. For the antibacterial test of the fabric, the colony counter can be used to test the corresponding antibacterial performance, and the light transmittance detector can be used to test the light transmittance of the fabric. When it is necessary to test the water permeability of the fabric, water can be poured on the top of the fabric, and the box door can be opened by the handle for easy observation, and the water can be collected by using the collection box;

[0023] 2. By setting up the detection mechanism, not only can the characteristics of the sliding connection between the lifting sliding rod and the lifting sliding sleeve be utilized, but also the stable lifting of the lifting plate can be achieved under the action of the lifting cylinder, and at the same time, the second moving motor is started to drive the second moving threaded rod to rotate, so that the second moving threaded sleeve and the third moving threaded sleeve drive the movable limit plate, the light transmittance detector and the air permeability detection cover to move. When it is necessary to detect the light transmittance of the fabric, the light transmittance detector can be moved to the top of the fabric, and the light transmittance of the fabric can be detected by adjusting the distance between the light transmittance detector and the fabric. At the same time, the distance between the light transmittance detector and the fabric can be adjusted while the fabric is pulled up, which can simulate the light transmittance of the fabric under different body shapes, thereby obtaining a variety of test data results. When it is necessary to test the air permeability and thermal insulation of the fabric, it can be heated by the heating rod, and the detection fan can be used to blow hot air to the fabric, so that the air permeability and thermal insulation of the fabric can be detected. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present invention;

[0025] Figure 2 Schematic diagram of the three-dimensional structure of the fixing mechanism in the present invention;

[0026] Figure 3 A schematic diagram of the three-dimensional structure of the first sprocket transmission assembly and the opening and closing bidirectional threaded rod in the present invention;

[0027] Figure 4 This is a schematic diagram of the three-dimensional structure of the opening and closing bracket in the present invention;

[0028] Figure 5 Schematic diagram of the three-dimensional structure of the cross section of the tensile stent in the present invention;

[0029] Figure 6 Schematic diagram of the three-dimensional cross-section structure of the top clamping plate in the present invention;

[0030] Figure 7 Schematic diagram of the three-dimensional structure of the detection box in the present invention;

[0031] Figure 8 Schematic diagram of the three-dimensional structure of the longitudinal bracket cross section in the present invention;

[0032] Figure 9 Schematic diagram of the three-dimensional structure of the detection mechanism in the present invention;

[0033] Figure 10 Schematic diagram of the three-dimensional cross-section of the second movable bracket in the present invention;

[0034] Figure 11 It is a schematic diagram of the three-dimensional cross-sectional structure of the air permeability detection cover in the present invention.

[0035] 10. In the figure: 1. fixing mechanism; 101. detection workbench; 102. clamping sliding groove; 103. supporting leg; 104. first motor cover; 105. opening and closing motor; 106. first sprocket transmission assembly; 107. opening and closing bidirectional threaded rod; 108. opening and closing threaded sleeve; 109. opening and closing bracket; 110. supporting spring; 111. stretching bracket; 112. stretching sliding rod; 113. stretching sliding sleeve; 114. return spring; 115. stretching rotating rod; 116. bottom clamping plate; 117. clamping threaded rod; 118. locking nut; 119. top clamping plate; 120. clamping groove; 121. detection box; 122. box door; 123. handle; 124. collection box; 125. protective baffle; 126. second motor cover; 127. first moving motor; 128. second Sprocket drive assembly; 129, first movable threaded rod; 130, first movable threaded sleeve; 131, longitudinal bracket; 132, longitudinal motor; 133, longitudinal threaded rod; 134, longitudinal threaded sleeve; 135, infrared analyzer; 2, detection mechanism; 201, lifting sliding rod; 202, supporting top plate; 203, lifting cylinder; 204, lifting plate; 205, lifting sliding sleeve; 206, lifting pressure plate; 207, second movable bracket; 208, second movable motor; 209, second movable threaded rod; 210, second movable threaded sleeve; 211, third movable threaded sleeve; 212, movable limit plate; 213, light transmittance detector; 214, breathable detection cover; 215, ventilation hole; 216, fan bracket; 217, detection fan; 218, heating rod; 219, dustproof net. DETAILED DESCRIPTION

[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the implementation regulations described are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention. Example 1

[0037] See also Figures 1-8The present invention provides a technical solution: a detection device for processing new material fabrics, comprising a fixing mechanism 1, and an infrared analyzer 135 installed inside the fixing mechanism 1, a detection mechanism 2 is provided on the top of the fixing mechanism 1, and a light transmittance detector 213 is provided inside the detection mechanism 2, the fixing mechanism 1 comprises a detection workbench 101, a clamping sliding groove 102 is symmetrically opened on the top of the detection workbench 101, and support legs 103 are fixedly installed around the bottom of the detection workbench 101, wherein a first motor cover 104 is fixedly installed on one side of the detection workbench 101, and an opening and closing motor 105 is fixedly installed on one side of the inner side of the first motor cover 104, wherein the opening and closing motor The output end of the machine 105 is fixedly connected to the first sprocket transmission assembly 106, and one side of the first sprocket transmission assembly 106 is symmetrically connected to the opening and closing bidirectional threaded rod 107. The outer sides of the two opening and closing bidirectional threaded rods 107 are symmetrically threaded with opening and closing threaded sleeves 108. The tops of the two opening and closing threaded sleeves 108 are fixedly installed with an opening and closing bracket 109. The opening and closing motor 105 is used to drive the first sprocket transmission assembly 106 and the opening and closing bidirectional threaded rod 107 to rotate, so that the opening and closing threaded sleeves 108 drive the opening and closing bracket 109 to move relative to each other, thereby achieving preliminary stretching of the fabric to be tested and smoothing the fabric, which is convenient for cooperating with the infrared analyzer 135 to perform antibacterial and mite removal detection on the fabric.

[0038] The top of the two opening and closing brackets 109 are fixedly installed with support springs 110 all around, and the top of the two support springs 110 is fixedly installed with a stretching bracket 111, and a stretching sliding rod 112 is fixedly installed inside the stretching bracket 111, and the outer side of the stretching sliding rod 112 is slidably connected to the stretching sliding sleeve 113, and one side of the stretching sliding sleeve 113 is fixedly connected to the return spring 114, and the bottom of the stretching sliding sleeve 113 is rotatably connected to the stretching rotating rod 115, and the stretching rotating rod 115 is rotatably connected to the opening and closing bracket 109, and the top of the stretching sliding sleeve 113 is fixedly installed with a bottom clamping plate 116, and the inner sides of the bottom clamping plate 116 are threadedly connected to the clamping threaded rod 117, and the outer sides of the two clamping threaded rods 117 are threadedly connected to the locking nuts 118, and the tops of the two clamping threaded rods 117 are rotatably connected to the top clamping plate 119, and the bottom side of the top clamping plate 119 and the bottom A clamping groove 120 is provided on one side of the top of the clamping plate 116. The clamping grooves 120 on one side of the bottom clamping plate 116 and the top clamping plate 119 are used to clamp the fabric to be tested, and the locking nut 118 is threadedly connected to the clamping threaded rod 117, so that the fabric to be tested is fixed, and the stability of the fabric clamping is improved. By pressing down the lifting and lowering plate 206, the top clamping plate 119 can be subjected to pressure, driving the stretching bracket 111 to squeeze the support spring 110, so that the stretching bracket 111 descends and drives the stretching rotating rod 115 to rotate, so that the stretching sliding sleeve 113 slides on the outside of the stretching sliding rod 112, and drives the bottom clamping plate 116 to move relative to each other, so that the fabric can be stretched twice. By cooperating with the opening and closing motor 105, the fabric to be tested can be stretched accurately, thereby improving the stretching accuracy and facilitating the light transmittance detection of the fabric after stretching.

[0039] The bottom side of the top clamping plate 119 is engaged with the bottom clamping plate 116 through the clamping groove 120. The bottom of the detection workbench 101 is fixedly installed with a detection box 121. The front of the detection box 121 is rotatably connected to the box door 122. The outside of the box door 122 is fixedly installed with a handle 123. A collection box 124 is placed inside the detection box 121. A protective baffle 125 is symmetrically installed on the inside of the top of the detection box 121. A second motor cover 126 is fixedly installed on one side of the detection box 121. One side of the inner side of the second motor cover 126 is fixed. A first moving motor 127 is fixedly installed, and the output end of the first moving motor 127 is fixedly connected to the second sprocket transmission assembly 128. One side of the second sprocket transmission assembly 128 is symmetrically connected to a first moving threaded rod 129. The outer sides of the two first moving threaded rods 129 are both threadedly connected to the first moving threaded sleeves 130. The tops of the two first moving threaded sleeves 130 are fixedly installed with a longitudinal bracket 131. One end of the longitudinal bracket 131 is fixedly installed with a longitudinal motor 132. The output end of the longitudinal motor 132 is fixedly connected to the longitudinal threaded sleeve 131. Rod 133, the outer side of the longitudinal threaded rod 133 is threadedly connected to the longitudinal threaded sleeve 134, and the infrared analyzer 135 is fixedly installed on the top of the longitudinal threaded sleeve 134. The stretching bracket 111 is continuously pressed down to make the bottom clamping plate 116 and the top clamping plate 119 continue to stretch the fabric to be tested, so that the tensile strength of the fabric can be tested. The second sprocket transmission assembly 128 and the first movable threaded rod 129 are driven to rotate by the first movable threaded sleeve 130, so that the longitudinal bracket 131 is driven to move. At the same time, the longitudinal motor 132 is started to drive the longitudinal threaded rod 133 to rotate, so that the longitudinal threaded sleeve 134 drives the infrared analyzer 135 to move longitudinally, thereby realizing the all-round movement of the infrared analyzer 135, which is convenient for detecting bacteria and mites on the surface of the fabric to be tested. At the same time, the light transmittance detector 213 is used to detect the light transmittance of the fabric. When it is necessary to test the water permeability of the fabric, water can be poured onto the top of the fabric, and the box door 122 can be opened by the handle 123 for easy observation. At the same time, the collection box 124 is used to collect water. Example 2

[0040] See also Figures 9-11, the detection mechanism 2 includes a lifting sliding rod 201, the lifting sliding rod 201 is fixedly installed around the top of the detection workbench 101, a supporting top plate 202 is fixedly installed on the top of the lifting sliding rod 201, a lifting cylinder 203 is fixedly installed at the bottom center of the supporting top plate 202, a lifting plate 204 is fixedly installed at the bottom of the lifting cylinder 203, a lifting sliding sleeve 205 is fixedly installed around the lifting plate 204, the lifting sliding sleeve 205 is slidably connected to the lifting sliding rod 201, and lifting pressure plates 206 are fixedly installed on the front and back of the bottom of the lifting plate 204, a second movable bracket 207 is fixedly installed at the bottom center of the lifting plate 204, one end of the second movable bracket 207 is fixedly installed with a second movable motor 208, and the output end of the second movable motor 208 is fixedly connected to a second movable threaded rod 209, the second The outer side of the movable threaded rod 209 is threadedly connected to the second movable threaded sleeve 210 and the third movable threaded sleeve 211. The bottom of the second movable threaded sleeve 210 and the third movable threaded sleeve 211 are fixedly installed with a movable limit plate 212. By utilizing the characteristics of the sliding connection between the lifting sliding rod 201 and the lifting sliding sleeve 205, under the action of the lifting cylinder 203, the stable lifting of the lifting plate 204 is achieved. At the same time, the second movable motor 208 is started to drive the second movable threaded rod 209 to rotate, so that the second movable threaded sleeve 210 and the third movable threaded sleeve 211 drive the movable limit plate 212, the light transmittance detector 213 and the air permeability detection cover 214 to move. When it is necessary to perform a light transmittance test on the fabric, the light transmittance detector 213 can be moved to the top of the fabric, and the light transmittance test of the fabric can be performed by adjusting the distance between the light transmittance detector 213 and the fabric.

[0041] An air permeability detection cover 214 is fixedly installed at the bottom of the movable limiting plate 212, and a light transmittance detector 213 is fixedly installed at the bottom of the movable limiting plate 212. A number of ventilation holes 215 are symmetrically provided on both sides of the top of the air permeability detection cover 214. A fan bracket 216 is fixedly installed inside the air permeability detection cover 214, and a detection fan 217 is fixedly installed at the inner center position of the fan bracket 216. A heating rod 218 is fixedly installed on the inner side of the bottom of the fan bracket 216, and a dustproof net 219 is fixedly installed on the bottom of the fan bracket 216. The distance between the light transmittance detector 213 and the fabric can be adjusted while the fabric is pulled up, and the light transmittance of the fabric under different body shapes can be simulated, thereby obtaining a variety of test data results. When it is necessary to test the air permeability and thermal insulation of the fabric, it can be heated by the heating rod 218, and the detection fan 217 can be used to blow hot air to the fabric, so that the air permeability and thermal insulation of the fabric can be tested.

[0042] Working principle: Before using this new material fabric processing testing equipment, you need to check the overall condition of the device to make sure it can work normally. Figure 1 - Figure 11As shown, first, the fabric to be tested is clamped by the clamping groove 120 on one side of the bottom clamping plate 116 and the top clamping plate 119, and the locking nut 118 is threadedly connected to the clamping threaded rod 117 to fix the fabric to be tested, thereby improving the stability of the fabric clamping, and the opening and closing motor 105 is used to drive the first sprocket transmission assembly 106 and the opening and closing bidirectional threaded rod 107 to rotate, so that the opening and closing threaded sleeve 108 drives the opening and closing bracket 109 to move relative to each other, thereby achieving preliminary stretching of the fabric to be tested and flattening the fabric, which is convenient for cooperating with the infrared analyzer 135 to perform antibacterial and mite removal detection of the fabric. After a period of time, the fabric is subjected to a secondary inspection, and the anti-mite performance of the fabric is judged by judging the increase or decrease in the number of mites in the fabric. The antibacterial detection of the fabric can be carried out in conjunction with the colony counter to perform corresponding antibacterial performance detection.

[0043] Secondly, by pressing down the lifting and lowering plate 206, the top clamping plate 119 can be subjected to pressure, driving the stretching bracket 111 to squeeze the support spring 110, causing the stretching bracket 111 to descend while driving the stretching rotating rod 115 to rotate, causing the stretching sliding sleeve 113 to slide on the outside of the stretching sliding rod 112 while driving the bottom clamping plate 116 to move relatively, thereby achieving secondary stretching of the fabric, and by cooperating with the opening and closing motor 105, accurate stretching of the fabric to be tested can be achieved, thereby improving the accuracy of stretching and facilitating the light transmittance detection of the fabric after stretching. At the same time, the stretching bracket 111 is continued to be pressed down, so that the bottom clamping plate 116 and the top clamping plate 119 continue to stretch the fabric to be tested, thereby being able to control the tensile strength of the fabric. To carry out the inspection, the first moving motor 127 drives the second sprocket transmission assembly 128 and the first moving threaded rod 129 to rotate, so that the first moving threaded sleeve 130 drives the longitudinal bracket 131 to move, and at the same time, the longitudinal motor 132 is started to drive the longitudinal threaded rod 133 to rotate, so that the longitudinal threaded sleeve 134 drives the infrared analyzer 135 to move longitudinally, thereby realizing the all-round movement of the infrared analyzer 135, which is convenient for detecting bacteria and mites on the surface of the fabric to be inspected, and at the same time cooperates with the light transmittance detector 213 to detect the light transmittance of the fabric. When it is necessary to test the water permeability of the fabric, water can be poured onto the top of the fabric, and the box door 122 can be opened by the handle 123 for easy observation, and the collection box 124 is used to collect water.

[0044] Finally, by utilizing the characteristics of the sliding connection between the lifting sliding rod 201 and the lifting sliding sleeve 205, under the action of the lifting cylinder 203, the lifting plate 204 is stably lifted and lowered. At the same time, the second moving motor 208 is started to drive the second moving threaded rod 209 to rotate, so that the second moving threaded sleeve 210 and the third moving threaded sleeve 211 drive the moving limit plate 212, the light transmittance detector 213 and the air permeability detection cover 214 to move. When it is necessary to test the light transmittance of the fabric, the light transmittance detector 213 can be moved to the top of the fabric, and the light transmittance of the fabric can be tested by adjusting the distance between the light transmittance detector 213 and the fabric. At the same time, the distance between the light transmittance detector 213 and the fabric can be adjusted while the fabric is pulled up, which can simulate the light transmittance of the fabric under different body shapes, thereby obtaining a variety of test data results. When it is necessary to test the air permeability and thermal insulation of the fabric, it can be heated by the heating rod 218 and the detection fan 217 can be used to blow hot air to the fabric, so that the air permeability and thermal insulation of the fabric can be tested.

[0045] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A testing device for processing new material fabrics, comprising a fixing mechanism (1), and an infrared analyzer (135) installed inside the fixing mechanism (1); A detection mechanism (2) is provided on the top of the fixing mechanism (1), and a light transmission detector (213) is provided inside the detection mechanism (2); It is characterized by: Also includes: The fixing mechanism (1) comprises a detection workbench (101), the top of the detection workbench (101) is symmetrically provided with a clamping sliding groove (102), and the bottom of the detection workbench (101) is fixedly provided with supporting legs (103) around the periphery; Wherein, a first motor cover (104) is fixedly mounted on one side of the detection workbench (101), and an opening and closing motor (105) is fixedly mounted on one side inside the first motor cover (104); The output end of the opening and closing motor (105) is fixedly connected to a first sprocket transmission assembly (106), and one side of the first sprocket transmission assembly (106) is symmetrically connected to an opening and closing bidirectional threaded rod (107); The outer sides of the two opening and closing bidirectional threaded rods (107) are symmetrically threadedly connected to the opening and closing threaded sleeves (108), the tops of the two opening and closing threaded sleeves (108) are fixedly installed with opening and closing brackets (109), the tops of the two opening and closing brackets (109) are fixedly installed with support springs (110) all around, the tops of the two support springs (110) are fixedly installed with stretching brackets (111), and the interior of the stretching brackets (111) is fixedly installed with a stretching sliding rod (112); The outer side of the stretching sliding rod (112) is slidably connected to a stretching sliding sleeve (113), one side of the stretching sliding sleeve (113) is fixedly connected to a return spring (114), the bottom of the stretching sliding sleeve (113) is rotatably connected to a stretching rotating rod (115), the stretching rotating rod (115) is rotatably connected to the opening and closing bracket (109), the top of the stretching sliding sleeve (113) is fixedly mounted with a bottom clamping plate (116), and both sides of the interior of the bottom clamping plate (116) are threadedly connected to clamping threaded rods (117); The outer sides of the two clamping threaded rods (117) are both threadedly connected with locking nuts (118), the tops of the two clamping threaded rods (117) are rotatably connected with top clamping plates (119), the bottom side of the top clamping plates (119) and the top side of the bottom clamping plates (116) are both provided with clamping grooves (120), and the bottom side of the top clamping plates (119) and the bottom clamping plates (116) are engaged and connected via the clamping grooves (120); A detection box (121) is fixedly mounted on the bottom of the detection workbench (101), a box door (122) is rotatably connected to the front of the detection box (121), a handle (123) is fixedly mounted on the outside of the box door (122), a collection box (124) is placed inside the detection box (121), a protective baffle (125) is symmetrically mounted on the inner side of the top of the detection box (121), a second motor cover (126) is fixedly mounted on one side of the detection box (121), a first moving motor (127) is fixedly mounted on one side of the inner side of the second motor cover (126), and an output end of the first moving motor (127) is fixedly connected to a second sprocket transmission assembly (128); One side of the second sprocket transmission assembly (128) is symmetrically connected to a first movable threaded rod (129), the outer sides of the two first movable threaded rods (129) are both threadedly connected to a first movable threaded sleeve (130), the tops of the two first movable threaded sleeves (130) are fixedly mounted with a longitudinal bracket (131), one end of the longitudinal bracket (131) is fixedly mounted with a longitudinal motor (132), the output end of the longitudinal motor (132) is fixedly connected to a longitudinal threaded rod (133), the outer side of the longitudinal threaded rod (133) is threadedly connected to a longitudinal threaded sleeve (134), and the infrared analyzer (135) is fixedly mounted on the top of the longitudinal threaded sleeve (134).

2. The new material fabric processing detection equipment according to claim 1, characterized in that: The detection mechanism (2) includes a lifting sliding rod (201), the lifting sliding rod (201) is fixedly installed around the top of the detection workbench (101), a supporting top plate (202) is fixedly installed on the top of the lifting sliding rod (201), a lifting cylinder (203) is fixedly installed at the center position of the bottom of the supporting top plate (202), a lifting plate (204) is fixedly installed at the bottom of the lifting cylinder (203), a lifting sliding sleeve (205) is fixedly installed around the lifting plate (204), and the lifting sliding sleeve (205) is slidably connected to the lifting sliding rod (201).

3. The new material fabric processing detection equipment according to claim 2, characterized in that: The front and back sides of the bottom of the lifting plate (204) are both fixedly mounted with lifting and pressing plates (206); a second movable bracket (207) is fixedly mounted at the center of the bottom of the lifting plate (204); a second movable motor (208) is fixedly mounted at one end of the second movable bracket (207); an output end of the second movable motor (208) is fixedly connected to a second movable threaded rod (209); and an outer side of the second movable threaded rod (209) is threadedly connected to a second movable threaded sleeve (210) and a third movable threaded sleeve (211).

4. The new material fabric processing detection equipment according to claim 3 is characterized by: The bottoms of the second movable threaded sleeve (210) and the third movable threaded sleeve (211) are both fixedly mounted with movable limiting plates (212), the bottoms of the movable limiting plates (212) are fixedly mounted with an air permeability detection cover (214), the light transmittance detector (213) is fixedly mounted on the bottom of the movable limiting plate (212), a plurality of ventilation holes (215) are symmetrically provided on both sides of the top of the air permeability detection cover (214), a fan bracket (216) is fixedly mounted inside the air permeability detection cover (214), a detection fan (217) is fixedly mounted at the inner center of the fan bracket (216), a heating rod (218) is fixedly mounted on the inner side of the bottom of the fan bracket (216), and a dustproof net (219) is fixedly mounted on the bottom of the fan bracket (216).

Citation Information

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