Cloth inspecting equipment for woven fabric
Through the combination of cleaning components and ionic air rods, the problem of flying catkins and dirt interference on the cloth is solved, efficient and accurate detection of woven fabrics is achieved, and the automation level of cloth inspection equipment is improved.
Patent Information
- Application Number
- CN202421984385.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-15
AI Technical Summary
In existing cloth inspection equipment, the flying catkins and dirt attached to the cloth are difficult to clean, resulting in low cloth inspection efficiency and insufficient accuracy, and static electricity affects the inspection results.
The reverse-rotating cleaning brush roller in the cleaning assembly and the exhaust fan are combined to remove flying catkins and dirt from the cloth, and static electricity is eliminated through the ionic air rod. It combines infrared detection equipment and LED light plates with adjustable brightness to realize automatic cloth testing.
Effectively remove flying catkins and dirt from the cloth, prevent static electricity, improve cloth inspection efficiency and accuracy, and ensure the accuracy of detection.
Smart Images

Figure CN223061330U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of cloth inspection equipment, and particularly relates to a shuttle-woven cloth inspection equipment. Background Art
[0002] Cloth inspection equipment is a set of necessary special equipment for detecting extra-large-width, double-width and single-width cloth such as cotton, wool, linen, silk, chemical fiber, etc. before production in the garment industry. The operation method of the cloth inspection machine is to provide a hardware environment for cloth inspection, continuously unfold the fabric in segments, provide sufficient light sources, and judge and detect surface defects and color differences through operators' visual observation or automated infrared detection equipment. The cloth inspection machine automatically completes the work of length recording and roll packing. A cloth inspection machine with good performance is equipped with an electronic defect detection device, which is statistically analyzed by a computer to assist the cloth inspection operation and print out.
[0003] In the prior art, some flying fluffs or dirt are inevitably attached to the cloth to be inspected, which will interfere with the judgment of the inspectors or detection machines during the cloth inspection process. Moreover, manual cleaning has low efficiency, resulting in a decrease in the cloth inspection efficiency. At the same time, during the transmission of the cloth, static electricity will also be generated due to friction, resulting in the generation and adsorption of flying fluffs, making the cloth inspection environment not clean enough, and also affecting the accuracy of cloth inspection.
[0004] Therefore, a shuttle-woven cloth inspection equipment is proposed, which can clean the cloth to be detected before inspection, and at the same time has an electrostatic elimination measure, which can effectively avoid the generation of flying fluffs, thereby preventing the interference of flying fluffs, dirt, etc. to the cloth inspection. Content of the Utility Model
[0005] In order to overcome the problem that in the prior art, flying fluffs, dirt, etc. attached to the cloth during the cloth inspection process will interfere with the cloth inspection, and at the same time it is difficult to clean, resulting in low cloth inspection efficiency.
[0006] The technical solution of the utility model is: a shuttle-woven cloth inspection equipment, including a frame, an infrared detection device, a support rod, a cleaning component and an anti-flying fluff component; an infrared detection device for automatically inspecting the quality of the cloth is fixedly connected inside the frame; two support rods symmetrically distributed about the center of the frame are fixedly connected to the upper end of the frame; the support rods are of L-shaped structure; a cleaning component for cleaning the cloth is fixedly connected between the two support rods; an anti-flying fluff component for adsorbing flying fluffs is fixedly connected to the upper ends of the two support rods together; an ion wind bar for eliminating static electricity is fixedly connected to the front end of the frame; the air outlet of the ion wind bar is located below.
[0007] Preferably, through the setting of the feeding roller which is convenient for disassembly and assembly, continuous cloth inspection operation can be realized. Through the setting of the cleaning component, two cleaning brush rollers rotating in the opposite direction to the transmission direction of the shuttle cloth will sweep off the flying fluffs, dirt, etc. attached to the surface of the shuttle cloth, and collect and intercept them on the surface of the intercepting net through the suction fan for unified cleaning. At the same time, an ion wind bar is also arranged on the transmission path of the shuttle cloth to eliminate static electricity and avoid the generation of flying fluffs, solving the problems that the flying fluffs, dirt, etc. attached to the cloth will interfere with the inspection of the cloth and are difficult to clean, resulting in low cloth inspection efficiency. Through the cooperation of the infrared detection device and the LED light board with adjustable brightness, automatic cloth inspection is realized, which helps to improve the inspection efficiency and accuracy.
[0008] Preferably, the cleaning component includes a first motor, a first cleaning brush roller, a second motor and a second cleaning brush roller; a first cleaning brush roller and a second cleaning brush roller are rotatably installed between two support rods in a vertical distribution; a first motor and a second motor are fixedly connected to the right end of the support rod on the right side in a vertical distribution; the output shaft of the first motor passes through the support rod on the right side and is fixedly connected to the first cleaning brush roller; the output shaft of the second motor passes through the support rod on the right side and is fixedly connected to the second cleaning brush roller; through the setting of the first cleaning brush roller and the second cleaning brush roller, when the shuttle cloth passes through the gap between the first cleaning brush roller and the second cleaning brush roller, the first motor and the second motor will drive the first cleaning brush roller and the second cleaning brush roller to rotate in the opposite direction to the transmission direction of the shuttle cloth, sweeping off the flying fluffs, dirt, etc. attached to the surface of the shuttle cloth, ensuring that the shuttle cloth remains clean when passing above the LED light board and being inspected by the infrared detection device, and solving the problem that the flying fluffs, dirt, etc. attached to the shuttle cloth will interfere with the inspection and judgment of the cloth inspection equipment.
[0009] Preferably, the anti-flying fluff component includes a support block, a suction fan, a dust suction port, an intercepting net, a first positioning hole, a second positioning hole and an insertion block; a support block is fixedly connected to the upper end of the support rod; a suction fan is fixedly connected to the upper ends of the two support blocks; the lower end of the suction fan is fixedly connected in a penetrating manner with a dust suction port; an intercepting net is movably arranged on the inner wall of the dust suction port; first positioning holes are penetrated and opened at the left and right ends of the dust suction port; second positioning holes are penetrated and opened at the left and right ends of the intercepting net; the first positioning hole and the second positioning hole are of the same structure in one-to-one correspondence; an insertion block is slidably arranged on the inner walls of the first positioning hole and the second positioning hole; through the setting of the suction fan, the flying fluffs, dirt, etc. swept off the shuttle cloth by the cleaning component will be sucked in through the dust suction port and will be intercepted and adsorbed on the surface of the intercepting net at the same time, preventing them from invading the inside of the suction fan and causing blockage. At the same time, the design of limiting and fixing the intercepting net on the inner wall of the dust suction port through the insertion block helps to quickly disassemble the intercepting net for cleaning or replacement.
[0010] Preferably, a slot is formed in the front end face inside the support rod; a connecting rod is slidably arranged on the inner wall of the slot; a bearing seat is fixedly connected to the front end of the connecting rod; a feeding roller is rotatably installed on the inner walls of the two bearing seats; a shuttle-woven fabric is wound on the outer wall of the feeding roller; through holes are formed in the left and right ends of the support rod and are provided with second screw grooves; through holes are formed in the left and right ends of the connecting rod and are provided with first screw grooves; the first screw grooves and the second screw grooves are of the same structure and are in one-to-one correspondence; bolts are threadedly installed in the inner walls of the first screw grooves and the second screw grooves; by rotatably installing the feeding roller on the inner walls of the two bearing seats, then inserting the connecting rod into the slot formed in the support rod, and locking and fixing with bolts, it helps to quickly disassemble and assemble the feeding roller, and in actual use, the feeding roller wound with different types of cloth can be conveniently replaced, with a wider application range.
[0011] Preferably, an inclined LED light board is fixedly connected to the inner wall of the frame; connection blocks symmetrically distributed about the center of the LED light board are fixedly connected to the front end of the frame; a first connecting column is fixedly connected between the two connection blocks; two hinge seats are sleeved on the outer wall of the first connecting column; the other ends of the two hinge seats are jointly and rotatably installed through a second connecting column; rollers symmetrically distributed about the center of the second connecting column are rotatably installed at the left and right ends of the second connecting column; the outer wall of the roller is in contact with the upper end of the shuttle-woven fabric; through the setting of the LED light board, the brightness of the LED light board can be adjusted accordingly according to the thickness and light transmittance of the shuttle-woven fabric, which is convenient for the inspection and observation of the infrared detection device. Through the setting of the rollers, the rollers can press the shuttle-woven fabric on the LED light board to ensure the balance of the shuttle-woven fabric during the transmission and cloth inspection, and avoid misjudgment caused by wrinkles on the shuttle-woven fabric.
[0012] Preferably, a first feeding roller and a second feeding roller are rotatably installed between the two support rods; a third feeding roller, a fourth feeding roller, a fifth feeding roller and a winding roller are rotatably installed on the inner wall of the frame; a third motor is fixedly connected to the right end of the frame; the output shaft of the third motor passes through the right end of the frame and is fixedly connected to the left end of the winding roller; the outer wall of the shuttle-woven fabric is in contact with the outer walls of the first feeding roller, the second feeding roller, the third feeding roller, the fourth feeding roller and the fifth feeding roller; the other end of the shuttle-woven fabric is wound on the outer wall of the winding roller; through the setting of the winding roller and the third motor, as the main driving power source of the shuttle-woven fabric, it can realize the stable transmission of the shuttle-woven fabric to facilitate the accuracy of cloth inspection. Through the setting of multiple groups of auxiliary transmission rollers, uniform force can be applied to each part of the shuttle-woven fabric to ensure that the shuttle-woven fabric does not show uneven tightness or wrinkles during the transmission process, which helps to maintain the flatness of the surface of the shuttle-woven fabric.
[0013] Preferably, a push rod is fixedly connected to the upper side edge at the rear end of the frame; bottom wheels are fixedly connected to the four corner edges at the lower end of the frame; through the setting of the bottom wheels, it helps to conveniently transfer this equipment by pushing the push rod according to the actual production requirements.
[0014] The beneficial effects of the present utility model:
[0015] 1. Through the arrangement of the first cleaning brush roll and the second cleaning brush roll, when the shuttle-woven fabric passes through the gap between the first cleaning brush roll and the second cleaning brush roll, the first motor and the second motor will drive the first cleaning brush roll and the second cleaning brush roll to rotate in the opposite direction to the transmission direction of the shuttle-woven fabric, sweeping off the flying fluffs, dirt, etc. attached to the surface of the shuttle-woven fabric, ensuring that the shuttle-woven fabric remains clean when passing above the LED light board and being inspected by the infrared detection device, and solving the problem that the flying fluffs, dirt, etc. attached to the shuttle-woven fabric will interfere with the inspection and judgment of the cloth inspection equipment;
[0016] 2. Through the arrangement of the exhaust fan, the flying fluffs, dirt, etc. swept off from the shuttle-woven fabric by the cleaning component will be sucked in through the dust suction port, and at the same time will be intercepted and adsorbed on the surface of the intercepting net, preventing it from invading the inside of the exhaust fan and causing blockage. At the same time, the design of limiting and fixing the intercepting net on the inner wall of the dust suction port through the insertion block helps to quickly disassemble the intercepting net for cleaning or replacement;
[0017] 3. By rotatably installing the loading roller on the inner walls of the two bearing seats, then inserting the connecting rod into the slot opened on the support rod and locking and fixing it with bolts, it helps to realize the quick disassembly and assembly of the loading roller, and in actual use, the loading roller wound with different types of cloth can be conveniently replaced, with a wider application range. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 Shows a three-dimensional structural schematic diagram of a shuttle-woven fabric inspection device of the present utility model;
[0019] Figure 2 Shows a three-dimensional structural schematic diagram of the anti-flying fluff component of a shuttle-woven fabric inspection device of the present utility model;
[0020] Figure 3 Shows a Figure 2 partial enlarged three-dimensional structural schematic diagram of part A of the anti-flying fluff component in a shuttle-woven fabric inspection device of the present utility model;
[0021] Figure 4 Shows a first three-dimensional disassembled structural schematic diagram of a shuttle-woven fabric inspection device of the present utility model;
[0022] Figure 5 Shows a Figure 4 partial enlarged three-dimensional structural schematic diagram of part B in a shuttle-woven fabric inspection device of the present utility model;
[0023] Figure 6 Shows a Figure 4 partial enlarged three-dimensional structural schematic diagram of part C in a shuttle-woven fabric inspection device of the present utility model;
[0024] Figure 7 Shown is a second three-dimensional split structural schematic diagram of a shuttle fabric inspection device of the present utility model.
[0025] The labels in the accompanying drawings are: 1, frame; 2, infrared detection device; 3, support rod; 401, first motor; 402, first cleaning brush roll; 403, second motor; 404, second cleaning brush roll; 5, connecting rod; 6, bearing seat; 7, loading roller; 8, shuttle fabric; 901, support block; 902, exhaust fan; 903, dust suction port; 904, intercepting net; 905, first positioning hole; 906, second positioning hole; 907, insertion block; 10, slot; 11, first screw groove; 12, second screw groove; 13, bolt; 14, LED light board; 15, connecting block; 16, first connecting column; 17, hinge seat; 18, second connecting column; 19, roller; 20, ion wind bar; 21, first feeding roller; 22, second feeding roller; 23, third feeding roller; 24, fourth feeding roller; 25, fifth feeding roller; 26, winding roller; 27, third motor; 28, push rod; 29, bottom wheel. Detailed implementation manners
[0026] The present utility model will be further described below with reference to the accompanying drawings and embodiments.
[0027] Embodiment 1
[0028] Please refer to Figure 1-7 , a shuttle fabric inspection device, including a frame 1, an infrared detection device 2, a support rod 3, a cleaning assembly and an anti-flying floc assembly; an infrared detection device 2 for automatically inspecting the quality of the fabric is fixedly connected inside the frame 1; two support rods 3 symmetrically distributed about the center of the frame 1 are fixedly connected to the upper end of the frame 1; the support rod 3 is of an L-shaped structure; a cleaning assembly for cleaning the fabric is fixedly connected between the two support rods 3; an anti-flying floc assembly for adsorbing flying flocs is fixedly connected to the upper ends of the two support rods 3 together; an ion wind bar 20 for eliminating static electricity is fixedly connected to the front end of the frame 1; the air outlet of the ion wind bar 20 is located below.
[0029] Please refer to Figure 1 , in this embodiment, the cleaning assembly includes a first motor 401, a first cleaning brush roll 402, a second motor 403 and a second cleaning brush roll 404; a first cleaning brush roll 402 and a second cleaning brush roll 404 are rotatably installed between the two support rods 3 in a vertical distribution; a first motor 401 and a second motor 403 in a vertical distribution are fixedly connected to the right end of the support rod 3 on the right side; the output shaft of the first motor 401 passes through the support rod 3 on the right side and is fixedly connected to the first cleaning brush roll 402; the output shaft of the second motor 403 passes through the support rod 3 on the right side and is fixedly connected to the second cleaning brush roll 404.
[0030] Please refer to Figure 4 ,Figure 5 and Figure 6 In this embodiment, a slot 10 is formed on the front end face inside the support rod 3; a connecting rod 5 is slidably arranged on the inner wall of the slot 10; a bearing seat 6 is fixedly connected to the front end of the connecting rod 5; a feeding roller 7 is rotatably installed on the inner walls of the two bearing seats 6; a shuttle fabric 8 is wound around the outer wall of the feeding roller 7; second screw grooves 12 are formed through the left and right ends of the support rod 3; first screw grooves 11 are formed through the left and right ends of the connecting rod 5; the first screw grooves 11 and the second screw grooves 12 are of the same structure in one-to-one correspondence; bolts 13 are threadedly installed on the inner walls of the first screw grooves 11 and the second screw grooves 12; an inclined LED light plate 14 is fixedly connected to the inner wall of the frame 1; connection blocks 15 symmetrically distributed about the center of the LED light plate 14 are fixedly connected to the front end of the frame 1; a first connecting column 16 is fixedly connected between the two connection blocks 15; two hinge seats 17 are sleeved on the outer wall of the first connecting column 16; the other ends of the two hinge seats 17 are rotatably installed through a second connecting column 18; rollers 19 symmetrically distributed about the center of the second connecting column 18 are rotatably installed at the left and right ends of the second connecting column 18; the outer wall of the roller 19 is in contact with the upper end of the shuttle fabric 8.
[0031] Please refer to Figure 7 In this embodiment, a first feeding roller 21 and a second feeding roller 22 are rotatably installed between the two support rods 3; a third feeding roller 23, a fourth feeding roller 24, a fifth feeding roller 25 and a winding roller 26 are rotatably installed on the inner wall of the frame 1; a third motor 27 is fixedly connected to the right end of the frame 1; the output shaft of the third motor 27 passes through the right end of the frame 1 and is fixedly connected to the left end of the winding roller 26; the outer wall of the shuttle fabric 8 is in contact with the outer walls of the first feeding roller 21, the second feeding roller 22, the third feeding roller 23, the fourth feeding roller 24 and the fifth feeding roller 25; the other end of the shuttle fabric 8 is wound around the outer wall of the winding roller 26; a push rod 28 is fixedly connected to the upper side edge of the rear end of the frame 1; bottom wheels 29 are fixedly connected to the four corner edges of the lower end of the frame 1.
[0032] When this fabric inspection device works, first, by pushing the bottom wheels 29, the device is transported to a relatively clean and quiet inspection environment for fabric inspection work. The feeding roller 7 wound with the shuttle fabric 8 is rotatably installed on the inner wall of the bearing seat 6, and then the bearing seat 6 is inserted into the slot 10 formed on the support rod 3. By threadedly installing the bolts 13 on the inner walls of the first screw grooves 11 and the second screw grooves 12, the installation of the to-be-detected shuttle fabric 8 is realized.
[0033] Next, the other end of the shuttle fabric 8 is passed through the gap between the first cleaning brush roller 402 and the second cleaning brush roller 404, and is successively attached to the outer walls of the first feeding roller 21, the second feeding roller 22, the third feeding roller 23, the fourth feeding roller 24 and the fifth feeding roller 25, and is wound and installed on the outer wall of the receiving roller 26. At the same time, the shuttle fabric 8 is pressed against the upper end of the LED light board 14 through the roller 19, completing the connection between the shuttle fabric 8 to be detected and the transmission structure;
[0034] Next, start the third motor 27 to start the transmission of the shuttle fabric 8. When the shuttle fabric 8 passes through the gap between the first cleaning brush roller 402 and the second cleaning brush roller 404, the first motor 401 and the second motor 403 will drive the first cleaning brush roller 402 and the second cleaning brush roller 404 to rotate in the opposite direction to the transmission direction of the shuttle fabric 8, sweeping off the flying flocs, dirt, etc. attached to the surface of the shuttle fabric 8, ensuring that the shuttle fabric 8 remains clean when passing above the LED light board 14 and being inspected by the infrared detection device 2. The ion air bar 20 will evenly blow ionized air onto the surface of the fabric to reduce the static electricity level and prevent the generation of flying filaments. The cleaned shuttle fabric 8 will pass above the LED light board 14 at a constant speed, and the infrared detection device 2 will record and process the color difference, surface defects, etc. existing on the surface of the shuttle fabric 8, completing the inspection work of the shuttle fabric 8.
[0035] Embodiment 2
[0036] Please refer to Figure 2 and Figure 3 , on the basis of Embodiment 1, the present application provides a technical solution: The anti-flying floc component includes a support block 901, a suction fan 902, a dust suction port 903, an intercepting net 904, a first positioning hole 905, a second positioning hole 906 and an insertion block 907; The upper end of the support rod 3 is fixedly connected with a support block 901; The upper ends of the two support blocks 901 are jointly fixedly connected with a suction fan 902; The lower end of the suction fan 902 is fixedly connected in a penetrating manner with a dust suction port 903; An intercepting net 904 is movably arranged on the inner wall of the dust suction port 903; First positioning holes 905 are penetrated and opened at the left and right ends of the dust suction port 903; Second positioning holes 906 are penetrated and opened at the left and right ends of the intercepting net 904; The first positioning hole 905 and the second positioning hole 906 are of the same structure in one-to-one correspondence; An insertion block 907 is slidably arranged on the inner walls of the first positioning hole 905 and the second positioning hole 906.
[0037] During use, after the lint, dirt, etc. attached to the surface of the shuttle fabric 8 are swept off by the cleaning components, the exhaust fan 902 is started. The exhaust fan 902 will generate a strong suction force, suck the lint, etc. through the dust suction port 903, and this part of the lint will be intercepted at the lower end of the interception net 904 to prevent it from invading the inside of the exhaust fan 902 and causing blockage. When it is necessary to clean or replace the interception net 904, only the insertion block 907 needs to be pulled out from the first positioning hole 905 and the second positioning hole 906 to release the lock between the dust suction port 903 and the interception net 904, and then the interception net 904 can be quickly disassembled for cleaning or replacement.
[0038] Working principle:
[0039] First, by pushing the bottom wheel 29, the equipment is transported to a relatively clean and quiet inspection environment for cloth inspection work. The loading roller 7 wound with the shuttle fabric 8 is rotatably installed on the inner wall of the bearing seat 6, and then the bearing seat 6 is inserted into the slot 10 opened on the support rod 3. By threadedly installing the bolt 13 on the inner walls of the first thread groove 11 and the second thread groove 12, the installation of the shuttle fabric 8 to be detected is realized.
[0040] Then, the other end of the shuttle fabric 8 is passed through the gap between the first cleaning brush roller 402 and the second cleaning brush roller 404, and successively fits with the outer walls of the first feeding roller 21, the second feeding roller 22, the third feeding roller 23, the fourth feeding roller 24 and the fifth feeding roller 25, and is wound and installed on the outer wall of the receiving roller 26. At the same time, the shuttle fabric 8 is pressed on the upper end of the LED light plate 14 through the roller 19 to complete the connection between the shuttle fabric 8 to be detected and the transmission structure.
[0041] Then, the third motor 27 is started to start the transmission of the shuttle fabric 8. When the shuttle fabric 8 passes through the gap between the first cleaning brush roller 402 and the second cleaning brush roller 404, the first motor 401 and the second motor 403 will drive the first cleaning brush roller 402 and the second cleaning brush roller 404 to rotate in the reverse direction of the transmission direction of the shuttle fabric 8, and sweep off the lint, dirt, etc. attached to the surface of the shuttle fabric 8 to ensure that the shuttle fabric 8 remains clean when passing above the LED light plate 14 and being inspected by the infrared detection device 2. At the same time, the exhaust fan 902 is started. The exhaust fan 902 will generate a strong suction force, suck the lint, etc. through the dust suction port 903, and this part of the lint will be intercepted at the lower end of the interception net 904 to prevent it from invading the inside of the exhaust fan 902 and causing blockage. The ion wind bar 20 will evenly blow the ionized air to the surface of the cloth to reduce the static electricity level and prevent the generation of flying filaments. The cleaned shuttle fabric 8 will pass above the LED light plate 14 at a constant speed, and the infrared detection device 2 will record and process the color difference, surface defects, etc. existing on the surface of the shuttle fabric 8 to complete the inspection work of the shuttle fabric 8.
[0042] When it is necessary to clean or replace the interception net 904, only the insertion block 907 needs to be pulled out from the first positioning hole 905 and the second positioning hole 906 to release the locking between the dust suction port 903 and the interception net 904, and then the interception net 904 can be quickly disassembled for cleaning or replacement.
[0043] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments, and various changes can be made without departing from the gist of the present utility model within the scope of knowledge possessed by those skilled in the art.
Claims
1. A shuttle-woven fabric inspection device, comprising a frame (1); characterized in that: It further includes an infrared detection device (2), a support rod (3), a cleaning component, and an anti-flying floc component; an infrared detection device (2) for automatically inspecting the quality of the cloth is fixedly connected inside the frame (1); two support rods (3) symmetrically distributed about the center of the frame (1) are fixedly connected to the upper end of the frame (1); the support rod (3) is of an L-shaped structure; a cleaning component for cleaning the cloth is fixedly connected between the two support rods (3); an anti-flying floc component for adsorbing flying flocs is fixedly connected to the upper ends of the two support rods (3); an ion wind bar (20) for eliminating static electricity is fixedly connected to the front end of the frame (1); the air outlet of the ion wind bar (20) is located below.
2. The shuttle-woven fabric inspection device according to claim 1, wherein: The cleaning component includes a first motor (401), a first cleaning brush roll (402), a second motor (403), and a second cleaning brush roll (404); a first cleaning brush roll (402) and a second cleaning brush roll (404) are rotatably installed between the two support rods (3) in an up-and-down distribution; a first motor (401) and a second motor (403) are fixedly connected to the right end of the support rod (3) located on the right side in an up-and-down distribution; the output shaft of the first motor (401) passes through the support rod (3) located on the right side and is fixedly connected to the first cleaning brush roll (402); the output shaft of the second motor (403) passes through the support rod (3) located on the right side and is fixedly connected to the second cleaning brush roll (404).
3. The shuttle-woven fabric inspection device according to claim 1, characterized in that: The anti-flying floc component includes a support block (901), a suction fan (902), a dust suction port (903), an interception net (904), a first positioning hole (905), a second positioning hole (906), and an insertion block (907); a support block (901) is fixedly connected to the upper end of the support rod (3); a suction fan (902) is fixedly connected to the upper ends of the two support blocks (901); the lower end of the suction fan (902) is fixedly connected in a penetrating manner with a dust suction port (903); an interception net (904) is movably arranged on the inner wall of the dust suction port (903); first positioning holes (905) are penetrated and opened at the left and right ends of the dust suction port (903); second positioning holes (906) are penetrated and opened at the left and right ends of the interception net (904); the first positioning hole (905) and the second positioning hole (906) are of the same structure in one-to-one correspondence; an insertion block (907) is slidably arranged on the inner walls of the first positioning hole (905) and the second positioning hole (906).
4. A shuttle-woven fabric inspection device according to claim 1, characterized in that: A slot (10) is opened on the front end face inside the support rod (3); a connecting rod (5) is slidably arranged on the inner wall of the slot (10); a bearing seat (6) is fixedly connected to the front end of the connecting rod (5); a feeding roller (7) is rotatably installed on the inner walls of the two bearing seats (6); a shuttle cloth (8) is wound and installed on the outer wall of the feeding roller (7); second screw grooves (12) are penetrated and opened at the left and right ends of the support rod (3); first screw grooves (11) are penetrated and opened at the left and right ends of the connecting rod (5); the first screw groove (11) and the second screw groove (12) are of the same structure in one-to-one correspondence; bolts (13) are threadedly installed on the inner walls of the first screw groove (11) and the second screw groove (12).
5. The warp knitted fabric inspection device according to claim 1, characterized in that: The inner wall of the frame (1) is fixedly connected with an inclined LED light board (14); the front end of the frame (1) is fixedly connected with connecting blocks (15) symmetrically distributed about the center of the LED light board (14); a first connecting column (16) is fixedly connected between the two connecting blocks (15); two hinge seats (17) are sleeved on the outer wall of the first connecting column (16); the other ends of the two hinge seats (17) are jointly and rotatably installed with a second connecting column (18) in a penetrating manner; the left and right ends of the second connecting column (18) are rotatably installed with rollers (19) symmetrically distributed about the center of the second connecting column (18); The outer wall of the roller (19) is in contact with the upper end of the shuttle-woven fabric (8).
6. The warp knitted fabric inspection device according to claim 1, wherein; A first feeding roller (21) and a second feeding roller (22) are rotatably installed between the two support rods (3); a third feeding roller (23), a fourth feeding roller (24), a fifth feeding roller (25) and a winding roller (26) are rotatably installed on the inner wall of the frame (1); a third motor (27) is fixedly connected to the right end of the frame (1); the output shaft of the third motor (27) passes through the right end of the frame (1) and is fixedly connected to the left end of the winding roller (26); the outer wall of the shuttle-woven fabric (8) is in contact with the outer walls of the first feeding roller (21), the second feeding roller (22), the third feeding roller (23), the fourth feeding roller (24) and the fifth feeding roller (25); the other end of the shuttle-woven fabric (8) is wound and installed on the outer wall of the winding roller (26).
7. A shuttle-woven fabric inspection device according to claim 1, characterized in that: A push rod (28) is fixedly connected to the upper side edge of the rear end of the frame (1); bottom wheels (29) are fixedly connected to the four corner edges of the lower end of the frame (1).