Textile machine with a rectification function and rectification method thereof

By using a correction device and anti-static measures, the problem of fabric deviation during the winding process of textile machines was solved, achieving stable winding and static control, and improving the quality of fabric winding.

CN117468151BActive Publication Date: 2026-04-14SUZHOU XINDONGNAN TEXTILE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-03
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Modern textile machines are prone to unstable winding during fabric take-up due to fabric misalignment, resulting in spiral entanglement that occupies a lot of space and is easy to tip over.

Method used

A fabric positioning device is used to detect the fabric position. The stability of the fabric during the winding process is maintained by the coordinated movement of the push plate and the guide plate. An antistatic film is used to reduce static electricity, a scraper cleans impurities from the fabric surface, and a limiting device ensures tight winding.

Benefits of technology

It effectively reduces fabric winding deviation, maintains winding stability, reduces static interference, and improves the tightness of fabric winding and the surface contact area.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the technical field of textile machines, in particular to a textile machine with a deviation rectifying function and a deviation rectifying method thereof, comprising the following steps: S1, in the production process of modern textile cloth, the textile machines used are often different in type, and different colored textile threads are often sent into a yarn drawing device, and the textile threads are drawn by the yarn drawing device, wherein an air jet loom can compress air, release the compressed air through a small hole, guide the high-speed released airflow to drive the textile thread to pass through a shed and then carry out cloth weaving; through the detection effect of infrared rays on the positioning detection device, when the cloth deviates, the electric push rod between the push plate and the deviation rectifying plate is controlled to move correspondingly, so that the deviation rectifying plate and the guide plate contact the cloth side wall, the cloth is pushed, the cloth deviation angle is controlled to be corrected, and then in the subsequent winding process, the stability of the wound cloth on the winding roller is maintained, and the spiral winding caused by cloth deviation is reduced.
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Description

Technical Field

[0001] This invention belongs to the field of textile machinery technology, specifically a textile machine with a correction function and a correction method thereof. Background Technology

[0002] Textile machines are a common type of fabric processing machinery in modern society. They have a long history of use in my country. In ancient times, they were often driven by human power to process raw materials such as yarn, silk, and hemp, weave them into fabric, and then cut them to the appropriate size for subsequent processing into clothing, furniture, and other items.

[0003] Modern textile machines, after a long period of development, can automate weaving using mechanized power, and combine this with manual winding of the processed fabric in a streamlined operation. Compared to traditional manually operated textile machines, this reduces labor damage caused by human error, improves work efficiency and output, and the stability of the mechanized device allows for optimization of the weaving process, improving the quality of the woven fabric and the combination of patterns on it.

[0004] After the fabric is produced, modern textile machines need to use take-up rollers to take it up in a set. During the take-up process, due to the different quality of the fabric, there are different weights between the fabrics. When the fabric is tilted during take-up, it will cause the taken-up fabric to tilt, resulting in the subsequent take-up of the fabric in a spiral shape. This results in the fabric taking up a lot of space when laid flat after take-up, and the contact area with the plane is reduced when laid upright, making it easy to tip over.

[0005] Therefore, the present invention provides a textile machine with a correction function and a correction method thereof. Summary of the Invention

[0006] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.

[0007] The technical solution adopted by this invention to solve its technical problem is: a method for correcting the deviation of a textile machine with a correction function, comprising the following steps:

[0008] S1. In the production process of modern textile fabrics, the textile machines used are often of different types. Different colored textile threads are often fed into the drawing device, which then draws the textile threads. Among them, the air-jet loom can compress air and release the compressed air through small holes. The high-speed airflow is then used to guide the textile threads through the shed to weave the fabric.

[0009] S2. Subsequently, the woven fabric can be manually wound up after passing through the correction device. The correction device can detect the position of the fabric during its movement, keeping the fabric stable during the winding process and reducing the deviation of the fabric due to its own position shift, which can cause spirals.

[0010] S3. When dealing with fabrics of different materials, the thickness and width of the fabrics also vary. At this time, the correction device can make corresponding adjustments according to the different fabrics to adapt to different fabrics. After the roll is completed, the staff can take the fabric off and stack it for subsequent cutting.

[0011] A textile machine with a correction function is provided, which is applicable to the correction method of the textile machine with a correction function mentioned above: wherein the correction device in S2 includes a placement platform; a textile machine is provided on one side of the placement platform; a pay-off machine is provided on one side of the textile machine; a take-up roller is provided on the top side of the placement platform away from the textile machine; a correction plate is rotatably connected to the top side of the placement platform away from the take-up roller; positioning detection devices are driven by motors on both sides of the placement platform; push plates are slidably connected to both sides of the middle of the correction plate; a guide plate is provided on the side wall of the push plate near the textile machine; electric push rods are respectively provided between the correction plate and the respective push plates, and the electric push rods drive the corresponding push plates to slide laterally along the correction plate.

[0012] Preferably, the guide plate is segmented, and positioning blocks are staggered and fixed to the sidewalls of a pair of guide plates on the same side; a first rotating shaft is rotatably connected to the end of the push plate and one of the guide plates on the same side; a first rotating shaft is rotatably connected to the other end of the other guide plate on the same side; multiple sets of guide rods are staggered and fixed to the sidewalls of a pair of guide plates on the same side at positions corresponding to the positioning blocks; the positioning blocks slide on the sidewalls of the guide rods; storage cylinders are fixed to the sidewalls at both ends of the correction plate; and an antistatic film is wound inside the pair of storage cylinders by torsion springs.

[0013] Preferably, a first groove is formed on the contact surface of a pair of guide plates on the same side; a connecting plate is fixedly connected inside the first groove; multiple sets of support plates are provided on the side wall of the connecting plate; the multiple sets of support plates and the connecting plate are connected by a pair of rubber plates; the contact surfaces of the support plates on both sides and the pair of guide plates are all inclined, and the inclination angles are the same.

[0014] Preferably, the end of the correction plate near the take-up roller is rotatably connected to a scraper, and the scraper has inclined sides; a cover plate is fixed to the top of the scraper; there is a gap between the cover plate and the scraper; a rubber membrane is fixed to the bottom of the scraper; multiple sets of spring rods are fixed to the bottom of the scraper; an extrusion plate is fixed to the end of the spring rod; the bottom of the extrusion plate is in contact with the top of the rubber membrane.

[0015] Preferably, a pair of support rods are fixedly connected to the top of the placement platform below both sides of the take-up roller; a transmission column is rotatably connected to the side wall of one support rod, and a positioning ring is fixedly connected to the side wall of the other support rod; the take-up roller is sleeved on the side wall of the transmission column, and the positioning ring is rotatably connected to the transmission column; multiple sets of positioning plates are fixedly connected to the side wall of the positioning ring; a limiting post is slidably connected inside the positioning plate; the positioning plate and the limiting post are connected by a spring.

[0016] Preferably, a second positioning ring is slidably connected to the side of the transmission column away from the first positioning ring; multiple identical positioning plates are fixed to the side wall of the second positioning ring, and a second limiting post is slidably connected inside the positioning plate; a bolt is rotatably connected to the end of the second limiting post; the bolt and the rubber diaphragm are connected by threads.

[0017] Preferably, a pair of slide rails are fixedly connected to the top of the placement platform below the correction plate; a slider is slidably connected inside the slide rails; the slider is driven by a motor; and a connecting rod is hinged between the top of the slider and the bottom of the correction plate.

[0018] Preferably, each of the multiple sets of No. 1 limiting posts is provided with a collision ball; both the collision ball and the winding roller are provided with magnets that attract each other; the collision ball and the No. 1 limiting post are connected by multiple sets of elastic bands.

[0019] Preferably, a first guide block is fixedly connected to both side walls of the scraper; a second guide block is fixedly connected to both sides of the cover plate at an alternating position with the first guide block.

[0020] The beneficial effects of this invention are as follows:

[0021] 1. The present invention discloses a textile machine with a correction function and a correction method thereof. By using the detection effect of infrared rays on the positioning detection device, when the fabric deviates, the electric push rod between the push plate and the correction plate can be moved accordingly, so that the correction plate and the guide plate contact the side wall of the fabric, push the fabric, control the fabric deviation angle to return to the correct position, and thus maintain the stability of the fabric wound on the winding roller during the subsequent winding process, reduce the spiral formation during winding caused by fabric deviation, and thus affect the subsequent stacking.

[0022] 2. The textile machine with correction function and its correction method described in this invention, through the rotation effect of the first rotating shaft, can keep the end point of the guide plate in a fixed state during the movement of the push plate, keeping the end of the guide plate in contact with both sides of the correction plate, reducing the gap between the guide plate and the correction plate caused by the push plate moving together with the guide plate, so that the subsequent fabrics of different widths come into contact with the gap between the push plate and the guide plate, resulting in accumulation. At the same time, as the push plate and the guide plate move, the antistatic film will be stretched inside the storage cylinder to cover the surface of the push plate and the guide plate, reducing the static electricity generated by the fabric. Attached Figure Description

[0023] The invention will now be further described with reference to the accompanying drawings.

[0024] Figure 1 This is a flowchart of the method in this invention;

[0025] Figure 2 This is a three-dimensional flowchart of the present invention;

[0026] Figure 3 This is a perspective view of the placement platform in this invention;

[0027] Figure 4 This is a schematic diagram of the guide plate in this invention;

[0028] Figure 5 This is a schematic diagram of the support plate in this invention;

[0029] Figure 6 This is a schematic diagram of the scraper structure in this invention;

[0030] Figure 7 This is a schematic diagram of the structure of the take-up roller in this invention;

[0031] Figure 8 This is a schematic diagram of the structure of the second positioning ring in this invention;

[0032] Figure 9 This is a schematic diagram of the slide rail in this invention.

[0033] In the diagram: 1. Pay-off machine; 11. Textile machine; 12. Placement table; 13. Take-up roller; 14. Correction plate; 15. Positioning detection device; 16. Push plate; 17. Guide plate; 2. No. 1 rotating shaft; 21. Positioning block; 22. Guide rod; 23. Storage cylinder; 24. Antistatic film; 3. No. 1 chute; 31. Connecting plate; 32. Support plate; 33. Rubber plate; 4. Scraper; 41. Cover plate; 42. Rubber film; 43. Spring rod; 44. Extrusion plate; 5. Support rod; 51. Transmission column; 52. No. 1 positioning ring; 53. Positioning plate; 54. No. 1 limiting post; 6. No. 2 positioning ring; 61. No. 2 limiting post; 62. Bolt; 7. Slide rail; 71. Slider; 72. Connecting rod; 8. Collision ball; 81. Elastic band; 9. No. 1 guide block; 91. No. 2 guide block. Detailed Implementation

[0034] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0035] like Figure 1 As shown in the embodiment of the present invention, a method for correcting the deviation of a textile machine with a correction function includes the following steps:

[0036] S1. In the production process of modern textile fabrics, the textile machines used are often of different types. Different colored textile threads are often fed into the drawing device, which then draws the textile threads. Among them, the air-jet loom can compress air and release the compressed air through small holes. The high-speed airflow is then used to guide the textile threads through the shed to weave the fabric.

[0037] S2. Subsequently, the woven fabric can be manually wound up after passing through the correction device. The correction device can detect the position of the fabric during its movement, keeping the fabric stable during the winding process and reducing the deviation of the fabric due to its own position shift, which can cause spirals.

[0038] S3. When dealing with fabrics of different materials, the thickness and width of the fabrics also vary. At this time, the correction device can make corresponding adjustments according to the different fabrics to adapt to different fabrics. After the roll is completed, the staff can take the fabric off and stack it for subsequent cutting.

[0039] like Figures 1 to 9As shown, a textile machine with a correction function is applicable to the correction method of the textile machine with a correction function mentioned above: wherein the correction device in S2 includes a placement table 12; a textile machine 11 is provided on one side of the placement table 12; a pay-off machine 1 is provided on one side of the textile machine 11; a take-up roller 13 is provided on the top side of the placement table 12 away from the textile machine 11; a correction plate 14 is rotatably connected to the top side of the placement table 12 away from the take-up roller 13; and positioning devices are driven by motors on both sides of the placement table 12. Detection device 15; push plates 16 are slidably connected to both sides of the middle part of the correction plate 14; guide plates 17 are provided on the side wall of the push plate 16 near the textile machine 11; electric push rods are respectively provided between the correction plate 14 and the respective push plates 16, and the electric push rods drive the corresponding push plates 16 to slide laterally along the correction plate 14; when weaving fabric, the worker can evenly place the textile thread on the pay-off machine 1, and different patterns of fabric can be woven by changing the color between multiple pay-off machines 1. The textile thread on the pay-off machine 1 is drawn... After being taken out, the fabric can be fed into the textile machine 11 for weaving. Subsequently, the woven fabric can enter the correction plate 14 above the placement table 12. A pair of infrared rays installed at the bottom of the positioning detection device 15 can be adjusted according to the preset fabric width. After the fabric passes the position detection, it can enter the take-up roller 13 for take-up. When the fabric deviates, the infrared rays emitted by the positioning detection device 15 will detect the deviation angle of the fabric. Then, through the pushing effect of the electric push rod on the push plate 16, the push plate 16 and the guide plate 17 are moved towards the fabric to push the fabric position and reset the fabric position. Through the detection effect of the infrared rays on the positioning detection device 15, when the fabric deviates, the push plate 16 can be controlled to move accordingly, so that the guide plate 17 contacts the side wall of the fabric and pushes the fabric, controlling the fabric deviation angle to return to the correct position. In the subsequent take-up process, the stability of the fabric wound on the take-up roller 13 is maintained, reducing the spiral caused by the fabric deviation during take-up, which would affect subsequent stacking.

[0040] like Figures 1 to 9As shown, the guide plate 17 is segmented, and positioning blocks 21 are interleaved and fixed to the side walls of a pair of guide plates 17 on the same side; a first rotating shaft 2 is rotatably connected to the end of the push plate 16 and one of the guide plates 17 on the same side; the other end of the other guide plate 17 on the same side is rotatably connected to the top of the correction plate 14 by a first rotating shaft 2; multiple sets of guide rods 22 are interleaved and fixed to the side walls of a pair of guide plates 17 on the same side at positions corresponding to the positioning blocks 21; the positioning blocks 21 slide on the guide rods 22. Side walls; both ends of the correction plate 14 are fixedly connected to storage cylinders 23; an antistatic film 24 is wound inside the pair of storage cylinders 23 by torsion springs; during the movement of the push plate 16 by the electric push rod, the first rotating shaft 2 installed between the push plate 16 and the guide plate 17 can change the angle between the push plate 16 and the guide plate 17 when the push plate 16 moves. At this time, one end of the guide plate 17 will be positioned at the top of the correction plate 14 and rotated through the first rotating shaft 2. At this time, the segmentation of the guide plate 17... This configuration increases the distance between the pair of guide plates 17, allowing the positioning block 21 to move on the guide rod 22. As the push plate 16 moves, the antistatic film 24 between the pair of storage cylinders 23 can cover the side walls of the guide plate 17 and the push plate 16, reducing static electricity generated between the fabric and the push plate 16 and guide plate 17. Through the rotation of the first rotating shaft 2, the end point of the guide plate 17 can be positioned during the movement of the push plate 16, keeping the end of the guide plate 17 in contact with both sides of the correction plate 14. This reduces gaps between the guide plate 17 and the correction plate 14 caused by the push plate 16 moving the guide plate 17 together, preventing subsequent fabrics of different widths from contacting the gaps between the push plate 16 and guide plate 17 and causing accumulation. At the same time, as the push plate 16 and guide plate 17 move, the antistatic film 24 will be stretched inside the storage cylinder 23, covering the surface of the push plate 16 and guide plate 17 and reducing static electricity generated by the fabric.

[0041] like Figures 1 to 9As shown, a first groove 3 is formed on the contact surface of a pair of guide plates 17 on the same side; a connecting plate 31 is fixedly connected inside the first groove 3; multiple sets of support plates 32 are provided on the side wall of the connecting plate 31; the multiple sets of support plates 32 and the connecting plate 31 are connected by a pair of rubber plates 33; the contact surfaces of the support plates 32 and the pair of guide plates 17 are all inclined, and the inclination angles are the same; during the movement of the push plate 16, the pair of guide plates 17 will gradually move away from each other. At this time, as the distance between the pair of guide plates 17 increases, the support plate 32 will move under the push of the rubber plate 33, so that its own side wall and the side wall of the guide plate 17 are on the same plane, thus supporting the antistatic film 24. During the subsequent reset of the push plate 16, as the gap between the pair of guide plates 17 shrinks, the sidewalls of the guide plates 17 gradually come into contact with the sidewalls of the support plate 32. At this time, the inclined arrangement of the sidewalls of both can provide a squeezing force to the support plate 32, causing the support plate 32 to shrink and re-enter the first slide groove 3. With the presence of the connecting plate 31, after the guide plates 17 extend, the support plate 32 can be pushed by the elastic effect of the rubber plate 33 itself, so that the planes of the support plate 32 and the guide plates 17 are at the same level, providing a support effect for the antistatic film 24 and reducing the partial displacement of the fabric and antistatic film 24 after contact due to the gap between the pair of guide plates 17.

[0042] like Figures 1 to 9 As shown, a scraper 4 is rotatably connected to the end of the correction plate 14 near the take-up roller 13, and the scraper 4 has inclined surfaces on both sides; a cover plate 41 is fixed to the top of the scraper 4; there is a gap between the cover plate 41 and the scraper 4; a rubber membrane 42 is fixed to the bottom of the scraper 4; multiple sets of spring rods 43 are fixed to the bottom of the scraper 4; a pressing plate 44 is fixed to the end of the spring rod 43; the bottom of the pressing plate 44 is in contact with the top of the rubber membrane 42; during the process of the fabric being wound onto the take-up roller 13 by the correction plate 14, the scraper 4 can be positioned above the fabric, and by rotating the scraper 4, it adheres to the surface of the fabric. Utilizing the inclined surfaces on both sides, it can correct the fabric surface... Existing lines and lint are scraped off and stored through the gap between the cover plate 41 and the scraper 4. At the same time, depending on the fabric material, the spring rod 43 can drive the extrusion plate 44 and the rubber membrane 42 to fit together according to the curvature of the fabric. Through the contact effect of the scraper 4 with the fabric, the scraper 4 can clean the lines and lint on the surface of the fabric, reducing the presence of impurities that cause the fabric to bulge after winding, resulting in wrinkles. At the same time, the presence of the spring rod 43 can drive the rubber membrane 42 and the extrusion plate 44 to fit together with the fabric surface, reducing the gap between the fabric and the scraper 4, which would increase the friction between the edges of the scraper 4 and the fabric, and cause damage to the fabric.

[0043] like Figures 1 to 9As shown, a pair of support rods 5 are fixedly connected to the top of the placement platform 12 below both sides of the take-up roller 13; a transmission column 51 is rotatably connected to the side wall of one side of the support rod 5, and a positioning ring 52 is fixedly connected to the side wall of the other support rod 5; the take-up roller 13 is sleeved on the side wall of the transmission column 51, and the positioning ring 52 is rotatably connected to the transmission column 51; multiple sets of positioning plates 53 are fixedly connected to the side wall of the positioning ring 52; a limiting post 54 is slidably connected inside the positioning plate 53; the positioning plate 53 and the limiting post 54 are connected by a spring; during the process of the fabric smoothly contacting the take-up roller 13 for winding, the take-up roller 13 can sleeve the transmission column 51. The transmission column 51 is driven by a motor to rotate, which drives the take-up roller 13 to perform the take-up operation. At this time, as the fabric is gradually wrapped around the take-up roller 13, the thickness of the fabric on the take-up roller 13 will gradually increase. At this time, the first limit post 54 can contact the fabric under the pressure of the spring rod of the positioning plate 53, press the fabric, and make the fabric in a stable take-up operation. Through the presence of the first positioning ring 52, multiple sets of positioning plates 53 can be fixed, so that multiple sets of first limit posts 54 can move according to the thickness of the fabric winding, squeeze the fabric, maintain the stability of the fabric in the take-up process, and reduce the take-up deviation caused by loosening during the fabric winding process.

[0044] like Figures 1 to 9 As shown, a second positioning ring 6 is slidably connected to the side of the transmission column 51 away from the first positioning ring 52; multiple identical positioning plates 53 are fixedly connected to the side wall of the second positioning ring 6, and a second limiting post 61 is slidably connected inside the positioning plate 53; a bolt 62 is rotatably connected to the end of the second limiting post 61; the bolt 62 and the rubber diaphragm 42 are threadedly connected; after the operator places the winding roller 13, the second positioning ring 6 can be fitted onto the side wall of the transmission column 51, and by determining the position between a pair of transmission columns 51, the positions of the second limiting post 61 and the first limiting post 54 are made to be on the same horizontal plane. At this point, the rotation of bolt 62 can connect bolt 62 and the first limiting post 54, making the second limiting post 61 and the first limiting post 54 a whole. This causes the first limiting post 54 to come into contact with the surface of the take-up roller 13. Through the second positioning ring 6 installed on the side wall of the transmission post 51, the end of the first limiting post 54 away from the first positioning ring 52 can be supported by the second limiting post 61, maintaining the stability of the first limiting post 54 during the take-up process of the take-up roller 13, increasing the overall pressing force of the first limiting post 54 on the fabric, and increasing the tightness of the fabric winding.

[0045] like Figures 1 to 9As shown, a pair of slide rails 7 are fixedly connected to the top of the placement platform 12 below the correction plate 14; a slider 71 is slidably connected inside the slide rails 7; the slider 71 is driven by a motor; the top of the slider 71 and the bottom of the correction plate 14 are respectively hinged to the two ends of the connecting rod 72; during the process of the fabric passing through the correction plate 14, the weight of the fabric varies with the material. At this time, the correction plate 14 can be rotated by the movement of the slider 71, producing a certain angle of tilt, so that the heavier fabric reduces the downward distance. Through the support effect of the slider 71 and the connecting rod 72, the tilt angle of the correction plate 14 can be changed according to the different materials of the fabric when the correction plate 14 faces different fabrics, increasing the adaptability of the equipment and reducing the sagging of the heavier fabric between the correction plate 14 and the take-up roller 13, which would cause the fabric tension to drop and affect the fabric take-up.

[0046] like Figures 1 to 9 As shown, each of the multiple sets of No. 1 limiting posts 54 is equipped with a collision ball 8; both the collision ball 8 and the take-up roller 13 are equipped with magnets that attract each other; the collision ball 8 and the No. 1 limiting post 54 are connected by multiple sets of elastic bands 81; during the process of the take-up roller 13 winding the fabric, as the take-up roller 13 rotates, the magnets installed inside the take-up roller 13 will gradually approach the multiple sets of No. 1 limiting posts 54. At this time, the magnetic attraction between the collision ball 8 and the magnet inside the No. 1 limiting post 54 can drive the collision ball 8 to move and collide with the side wall of the No. 1 limiting post 54. By utilizing the rotation and winding effect of the take-up roller 13, under the influence of the magnetic attraction effect, multiple collision balls 8 can continuously move and collide with the inside of the No. 1 limiting post 54, causing the No. 1 limiting post 54 to vibrate when it comes into contact with the fabric, tightening the loose fabric during the rotation process, and improving the tightness of the fabric winding.

[0047] like Figures 1 to 9 As shown, a first guide block 9 is fixedly connected to both side walls of the scraper 4; a second guide block 91 is fixedly connected to both sides of the cover plate 41 at an alternating position with the first guide block 9; after the scraper 4 scrapes away the lines and impurities on the fabric, the impurities that gradually move between the scraper 4 and the cover plate 41 will cross the range of the first guide block 9 and the second guide block 91. At this time, the position of the impurities is restricted by the vertical setting of the side walls of the first guide block 9 and the second guide block 91. The first guide block 9 and the second guide block 91 installed on the side walls of the scraper 4 and the cover plate 41 at an alternating position can block the impurities that enter, reducing the leakage of impurities between the scraper 4 and the cover plate 41.

[0048] During the fabric weaving process, the worker can evenly place the weaving thread on the pay-off machine 1. By changing the color between multiple pay-off machines 1, different patterns of fabric can be woven. After the weaving thread is drawn from the pay-off machine 1, it can be fed into the weaving machine 11 for weaving. Subsequently, the woven fabric can enter the correction plate 14 above the placement table 12. A pair of infrared rays installed at the bottom of the positioning detection device 15 can be adjusted accordingly according to the preset fabric width. After the fabric passes the position detection, it can enter the winding stage. During the winding operation on roller 13, when the fabric shifts, the infrared rays emitted by the positioning detection device 15 detect the angle of the shift. Subsequently, the pusher plate 16 and guide plate 17 are moved towards the fabric by the pusher rod on the pusher plate 16, pushing the fabric to its original position and resetting it. During the movement of the pusher plate 16 by the pusher rod, the first rotating shaft 2 installed between the pusher plate 16 and guide plate 17 can change the angle between the pusher plate 16 and guide plate 17 as the pusher plate 16 moves. At this time, one end of the guide plate 17 will be positioned at the top of the correction plate 14 via the first rotating shaft 2 and rotate. The segmented arrangement of the guide plate 17 increases the distance between the pair of guide plates 17, allowing the positioning block 21 to move on the guide rod 22. As the push plate 16 moves, the antistatic film 24 between the pair of storage cylinders 23 can cover the side walls of the guide plate 17 and the push plate 16, reducing the static electricity generated between the fabric and the push plate 16 and guide plate 17. During the movement of the push plate 16, the pair of guide plates 17 will gradually move away from each other. At this time, as the distance between the pair of guide plates 17 increases, the support plate 32 will move under the push of the rubber plate 33, so that its side wall and the side wall of the guide plate 17 are on the same plane, supporting the antistatic film 24. During the subsequent reset process of the push plate 16, as the distance between the pair of guide plates 17 shrinks, the side wall of the guide plate 17 gradually comes into contact with the side wall of the support plate 32. At this time, by using the inclined setting of the side walls of the two, a squeezing force can be provided to the support plate 32, causing the support plate 32 to shrink and be re-stored into the first slide groove 3.

[0049] During the process of the fabric being wound up by the guide plate 14 to the take-up roller 13, the scraper 4 can be positioned above the fabric. By rotating the scraper 4, it adheres to the surface of the fabric. Utilizing the inclined surfaces on both sides, it can scrape off any lines or lint on the fabric and store them through the gap between the cover plate 41 and the scraper 4. At the same time, depending on the fabric material, the spring rod 43 can drive the extrusion plate 44 and the rubber membrane 42 to adhere to the curvature of the fabric.

[0050] During the process of the fabric smoothly contacting and winding the take-up roller 13, the take-up roller 13 can be fitted onto the transmission column 51. The transmission column 51 is driven by the motor to rotate, driving the take-up roller 13 to perform the winding operation. At this time, as the fabric gradually wraps around the take-up roller 13, the thickness of the fabric on the take-up roller 13 will gradually increase. At this time, the first limit post 54 can contact the fabric under the pressure of the spring rod of the positioning plate 53, pressing the fabric and making the fabric in a stable winding operation. After the operator places the take-up roller 13, the second positioning ring 6 can be fitted onto the side wall of the transmission column 51. By determining the position between the pair of transmission columns 51, the second limit post 61 and the first limit post 54 are positioned on the same horizontal plane. At this time, the bolt 62 can be connected to the first limit post 54 by the rotation effect, making the second limit post 61 and the first limit post 54 a whole, driving the first limit post 54 to contact the surface of the take-up roller 13.

[0051] As the fabric passes through the correction plate 14, the weight of the fabric varies depending on its material. The correction plate 14 can be rotated by moving the slider 71, creating a slight tilt that reduces the downward droop of heavier fabric. During the winding process of the take-up roller 13, the magnets installed inside the take-up roller 13 gradually approach multiple sets of first-position limit posts 54. The magnetic attraction between the collision ball 8 and the magnets inside the first-position limit post 54 causes the collision ball 8 to move and collide with the side wall of the first-position limit post 54. After the scraper 4 removes the lines and impurities on the fabric, the impurities gradually moving between the scraper 4 and the cover plate 41 will cross the range of the first guide block 9 and the second guide block 91. The vertical setting of the side walls of the first guide block 9 and the second guide block 91 restricts the position of the impurities.

[0052] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A textile machine with a web-correcting function, characterized in that: The system includes a placement platform (12); a textile machine (11) is provided on one side of the placement platform (12); a pay-off machine (1) is provided on one side of the textile machine (11); a take-up roller (13) is provided on the top of the placement platform (12) away from the textile machine (11); a correction plate (14) is rotatably connected to the top of the placement platform (12) away from the take-up roller (13); positioning detection devices (15) are driven by motors on both sides of the placement platform (12); push plates (16) are slidably connected to both sides of the middle part of the correction plate (14); a guide plate (17) is provided on the side wall of the push plate (16) near the textile machine (11); electric push rods are respectively provided between the correction plate (14) and the respective push plates (16), and the electric push rods drive the corresponding push plates (16) to slide laterally along the correction plate (14); The guide plate (17) is segmented, and a positioning block (21) is fixedly connected to the side wall of a pair of guide plates (17) on the same side; a first rotating shaft (2) is rotatably connected to the end of the push plate (16) and the end of one of the guide plates (17) on the same side; a first rotating shaft (2) is rotatably connected to the top of the correction plate (14) at the other end of the other guide plate (17) on the same side; multiple sets of guide rods (22) are fixedly connected to the side wall of a pair of guide plates (17) on the same side at positions corresponding to the positioning block (21); the positioning block (21) slides on the side wall of the guide rod (22); a storage tube (23) is fixedly connected to the side wall of both ends of the correction plate (14); an antistatic film (24) is wound inside the pair of storage tubes (23) by a torsion spring. A first groove (3) is provided on the contact surface of a pair of guide plates (17) on the same side; a connecting plate (31) is fixedly connected inside the first groove (3); multiple sets of support plates (32) are provided on the side wall of the connecting plate (31); the multiple sets of support plates (32) and the connecting plate (31) are connected by a pair of rubber plates (33); the contact surfaces of the support plates (32) on both sides and the pair of guide plates (17) are all inclined, and the angle of the inclined surfaces is the same; The end of the correction plate (14) near the take-up roller (13) is rotatably connected to a scraper (4), and the two sides of the scraper (4) are set at an angle; a cover plate (41) is fixed to the top of the scraper (4); there is a gap between the cover plate (41) and the scraper (4); a rubber membrane (42) is fixed to the bottom of the scraper (4); multiple sets of spring rods (43) are fixed to the bottom of the scraper (4); an extrusion plate (44) is fixed to the end of the spring rod (43); the bottom of the extrusion plate (44) is in contact with the top of the rubber membrane (42).

2. A textile machine with a correction function according to claim 1, characterized in that: The top of the placement platform (12) is fixedly connected to a pair of support rods (5) on both sides below the take-up roller (13); a transmission column (51) is rotatably connected to the side wall of one support rod (5), and a positioning ring (52) is fixedly connected to the side wall of the other support rod (5); the take-up roller (13) is fitted onto the side wall of the transmission column (51), and the positioning ring (52) is rotatably connected to the transmission column (51); multiple positioning plates (53) are fixedly connected to the side wall of the positioning ring (52); a limiting post (54) is slidably connected inside the positioning plate (53); the positioning plate (53) and the limiting post (54) are connected by a spring.

3. A textile machine with a correction function according to claim 2, characterized in that: The transmission column (51) is slidably connected to the side away from the first positioning ring (52) by a second positioning ring (6); the second positioning ring (6) has multiple identical positioning plates (53) fixed to its side wall, and the positioning plate (53) is slidably connected to a second limiting column (61); the end of the second limiting column (61) is rotatably connected to a bolt (62); the bolt (62) and the rubber diaphragm (42) are threaded together.

4. A textile machine with a correction function according to claim 3, characterized in that: The top of the placement platform (12) is fixedly connected to a pair of slide rails (7) below the correction plate (14); a slider (71) is slidably connected inside the slide rails (7); the slider (71) is driven by a motor; and the top of the slider (71) and the bottom of the correction plate (14) are respectively hinged to the two ends of the connecting rod (72).

5. A textile machine with a correction function according to claim 4, characterized in that: Each of the multiple sets of No. 1 limiting posts (54) is provided with a collision ball (8); both the collision ball (8) and the take-up roller (13) are provided with magnets that attract each other; the collision ball (8) and the No. 1 limiting post (54) are connected by multiple sets of elastic bands (81).

6. A textile machine with a correction function according to claim 5, characterized in that: A guide block (9) is fixedly connected to both sides of the scraper (4); a guide block (91) is fixedly connected to both sides of the cover plate (41) at an alternating position with the guide block (9).

Citation Information

Patent Citations

  • Textile machine rack winding structure with deviation rectifying function

    CN213622519U