Disclosure of Invention
In order to overcome the deficiencies of the prior art, at least one technical problem presented in the background art is solved.
The technical scheme adopted by the invention for solving the technical problems is that the deviation rectifying method of the textile machine with the deviation rectifying function comprises the following steps:
S1, in the production process of modern textile fabrics, the types of textile machines are different, and textile threads with different colors are fed into a spinning device, and are drawn through the spinning device, wherein an air jet loom can compress air, the compressed air is released through small holes, and air flow released at high speed is guided to drive the textile threads to pass through a shed for fabric spinning;
s2, the cloth after spinning can be rolled by the aid of a deviation correcting device, the deviation correcting device can detect the position of the cloth in the moving process of the cloth, the stable state of the cloth in the rolling process is kept, deviation of the cloth due to deviation of the position of the cloth is reduced, and spiral is generated;
S3, when the cloth is made of different materials, the thickness and the width of the cloth are different, at the moment, the deviation correcting device can correspondingly adjust according to the difference of the cloth, so that the cloth is suitable for the cloth made of different materials, and after winding is finished, the cloth can be taken down by a worker to stack, and the cloth is waited for subsequent cutting.
The textile machine with the deviation correcting function is suitable for the deviation correcting method of the textile machine with the deviation correcting function, wherein the deviation correcting device in the step S2 comprises a placing table, a textile machine is arranged on one side of the placing table, a pay-off machine is arranged on one side of the textile machine, a winding roller is arranged on one side, far away from the textile machine, of the top of the placing table, a deviation correcting plate is rotatably connected to one side, far away from the winding roller, of the top of the placing table, positioning detection devices are driven by motors on two sides of the placing table, pushing plates are slidably connected to two sides of the middle of the deviation correcting plate, guide plates are arranged on the side walls, close to the textile machine, of the pushing plates, electric pushing rods are respectively arranged between the deviation correcting plates and the pushing plates, and the electric pushing rods drive the corresponding pushing plates to slide along the lateral directions of the deviation correcting plates.
The guide plates are arranged in a sectional mode, positioning blocks are fixedly connected to the side walls of a pair of guide plates on the same side in a staggered mode, a first rotating shaft is rotatably connected to the end portion of the pushing plate on the same side and the end portion of one guide plate, a first rotating shaft is rotatably connected to the top of the deviation correcting plate on the other end portion of the guide plate on the same side, a plurality of groups of guide rods are fixedly connected to the side walls of the guide plates on the same side in a staggered mode at positions corresponding to the positioning blocks, the positioning blocks slide on the side walls of the guide rods, storage barrels are fixedly connected to the side walls of the two ends of the deviation correcting plate, and antistatic films are wound inside the storage barrels through torsion springs.
Preferably, the contact surfaces of the pair of guide plates on the same side are provided with a first chute; the connecting plate is fixedly connected inside the first sliding groove, a plurality of groups of supporting plates are arranged on the side wall of the connecting plate, the plurality of groups of supporting plates are connected with the connecting plate through a pair of rubber plates, the contact surfaces of the two sides of the supporting plates and the pair of guide plates are inclined surfaces, and the inclined surfaces have the same angle.
The end part of the deviation correcting plate, which is close to the wind-up roll, is rotatably connected with a scraping plate, two sides of the scraping plate are inclined planes, a cover plate is fixedly connected to the top of the scraping plate, a gap is formed between the cover plate and the scraping plate, a rubber film is fixedly connected to the bottom of the scraping plate, a plurality of groups of spring rods are fixedly connected to the bottom of the scraping plate, an extrusion plate is fixedly connected to the end part of each spring rod, and the bottom of the extrusion plate is contacted with the top of the rubber film.
Preferably, a pair of support rods are fixedly connected to the top of the placement table below two sides of the wind-up roll; the side wall of the support rod on one side is rotationally connected with a transmission column, the side wall of the support rod on the other side is fixedly connected with a first positioning ring, the winding roller is sleeved on the side wall of the transmission column, the first positioning ring is rotationally connected with the transmission column, a plurality of groups of positioning plates are fixedly connected with the side wall of the first positioning ring, a first limiting column is slidingly connected inside the positioning plates, and the positioning plates are connected with the first limiting column through springs.
The driving column is connected with a second positioning ring in a sliding manner on one side far away from the first positioning ring, a plurality of groups of same positioning plates are fixedly connected to the side wall of the second positioning ring, a second limiting column is connected inside the positioning plates in a sliding manner, a bolt is connected to the end part of the second limiting column in a rotating manner, and the bolt is in threaded connection with the rubber film.
The placing table is characterized in that a pair of sliding rails is fixedly connected below the deviation correcting plate at the top of the placing table, a sliding block is connected inside the sliding rails in a sliding mode and is driven by a motor, and two ends of a connecting rod are hinged between the top of the sliding block and the bottom of the deviation correcting plate respectively.
Preferably, the collision balls are arranged in the first limiting columns, magnets with magnetic attraction are arranged in the collision balls and the winding roller, and the collision balls are connected with the first limiting columns through a plurality of groups of elastic bands.
Preferably, the side walls of the two sides of the scraping plate are fixedly connected with a first guide block, and the two sides of the cover plate and the staggered positions of the first guide block are fixedly connected with a second guide block.
The beneficial effects of the invention are as follows:
1. According to the textile machine with the deviation correcting function and the deviation correcting method thereof, through the detection effect of the infrared rays on the positioning detection device, when the cloth is deviated, the electric push rod between the push plate and the deviation correcting plate is controlled to correspondingly move, so that the deviation correcting plate and the guide plate are contacted with the side wall of the cloth, the cloth is pushed, the deviation angle of the cloth is controlled to return, the stability of winding the cloth on the winding roller is maintained in the subsequent winding process, spiral winding caused by deviation of the cloth is reduced, and further the subsequent stacking is affected.
2. According to the textile machine with the deviation correcting function and the deviation correcting method thereof, through the rotating effect of the first rotating shaft, the end point position of the guide plate can be in a positioning state in the moving process of the push plate, the end part of the guide plate is kept in contact with the two sides of the deviation correcting plate, gaps between the guide plate and the deviation correcting plate caused by the fact that the guide plate is driven by the push plate to move together are reduced, cloth with different subsequent widths is contacted with the gaps between the push plate and the guide plate, the stacking condition is caused, meanwhile, along with the movement of the push plate and the guide plate, the antistatic film can be pulled in the storage barrel, the surfaces of the push plate and the guide plate are covered, and static electricity generated by the cloth is reduced.
Drawings
The invention is further described below with reference to the accompanying drawings.
FIG. 1 is a flow chart of a method of the present invention;
FIG. 2 is a flow chart of the present invention;
FIG. 3 is a perspective view of the placement stage of the present invention;
fig. 4 is a schematic structural view of a guide plate in the present invention;
fig. 5 is a schematic structural view of a support plate in the present invention;
FIG. 6 is a schematic view of the structure of the screed according to the present invention;
FIG. 7 is a schematic view of the wind-up roll configuration of the present invention;
FIG. 8 is a schematic view of a second retaining ring according to the present invention;
Fig. 9 is a schematic structural view of a sliding rail in the present invention.
The device comprises a drawing 1, a paying-off machine, a 11, a textile machine, a 12, a placing table, a 13, a winding roller, a 14, a deviation correcting plate, a 15, a positioning detection device, a 16, a pushing plate, a 17, a guide plate, a No. 2 rotating shaft, a 21, a positioning block, a 22, a guide rod, a 23, a storage cylinder, a 24, an antistatic film, a No. 3 sliding groove, a 31, a connecting plate, a 32, a supporting plate, a 33, a rubber plate, a 4, a scraping plate, a 41, a cover plate, a 42, a rubber film, a 43, a spring rod, a 44, a squeezing plate, a 5, a supporting rod, a 51, a transmission column, a 52, a No. one positioning ring, a 53, a positioning plate, a No. 54, a No. 6, a No. two positioning ring, a61, a No. two positioning column, a 62, a bolt, a 7, a sliding rail, a 71, a sliding block, a 72, a connecting rod, a 8, a collision ball, a 81, an elastic belt, a No. 9, a guide block, a No. 91 and a No. two guide block.
Detailed Description
The invention is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
As shown in fig. 1, the deviation rectifying method of the textile machine with the deviation rectifying function according to the embodiment of the invention comprises the following steps:
S1, in the production process of modern textile fabrics, the types of textile machines are different, and textile threads with different colors are fed into a spinning device, and are drawn through the spinning device, wherein an air jet loom can compress air, the compressed air is released through small holes, and air flow released at high speed is guided to drive the textile threads to pass through a shed for fabric spinning;
s2, the cloth after spinning can be rolled by the aid of a deviation correcting device, the deviation correcting device can detect the position of the cloth in the moving process of the cloth, the stable state of the cloth in the rolling process is kept, deviation of the cloth due to deviation of the position of the cloth is reduced, and spiral is generated;
S3, when the cloth is made of different materials, the thickness and the width of the cloth are different, at the moment, the deviation correcting device can correspondingly adjust according to the difference of the cloth, so that the cloth is suitable for the cloth made of different materials, and after winding is finished, the cloth can be taken down by a worker to stack, and the cloth is waited for subsequent cutting.
As shown in fig. 1 to 9, a textile machine with deviation correcting function is suitable for the above-mentioned deviation correcting method of the textile machine with deviation correcting function, wherein the deviation correcting device in S2 comprises a placing table 12; a textile machine 11 is arranged on one side of the placement table 12; the textile machine 11 is provided with a paying-off machine 1 on one side, a winding roller 13 is arranged on one side, far away from the textile machine 11, of the top of the placing table 12, a deviation correcting plate 14 is rotatably connected to one side, far away from the winding roller 13, of the top of the placing table 12, positioning detection devices 15 are driven by motors on two sides of the placing table 12, push plates 16 are slidably connected to two sides of the middle of the deviation correcting plate 14, guide plates 17 are arranged on the side walls, close to the textile machine 11, of the push plates 16, electric push rods are respectively arranged between the deviation correcting plates 14 and the respective push plates 16, the corresponding push plates 16 are driven to slide laterally along the deviation correcting plates 14, when the textile operation of cloth is performed, workers can uniformly place textile threads on the paying-off machine 1, different patterns of cloth can be woven through color changes among a plurality of groups of paying-off machines 1, after the textile threads on the paying-off machine 1 are extracted, the textile threads can be sent into the textile machine 11, then the textile fabrics can enter the inside the deviation correcting plates 14 above the placing table 12, a pair of infrared rays installed at the bottom of the positioning detection devices 15 can be correspondingly adjusted according to preset cloth widths, the positions of the cloth can be detected, the positions can be shifted to the push plates 16 can be shifted to the guide plates 16 when the cloth are shifted to the push plates 16, the corresponding push plates are shifted to the guide plates, the cloth can be shifted to the guide plates 16, and the positions can be shifted to the position by the detection plates 16, and can be shifted to the position by the corresponding push plates 16, and can be shifted to the position by the corresponding cloth, and can be shifted to the corresponding cloth by the detection device through the roller to the detection device through the corresponding angle, carry out the propelling movement to the cloth position for the cloth position resets, through the detection effect of infrared ray on the location detection device 15, can be when the skew appears in the cloth, control push plate 16 carries out corresponding removal, makes guide board 17 contact to the cloth lateral wall, carries out the propelling movement to the cloth, and control cloth skew angle returns to the right, and then in follow-up rolling process, keeps winding cloth's stability on the wind-up roll 13, reduces to appear the spiral because of the cloth skew leads to the rolling, and then influences follow-up stacking.
As shown in fig. 1 to 9, the guide plates 17 are arranged in a sectional manner, and the side walls of a pair of guide plates 17 on the same side are fixedly connected with positioning blocks 21 in a staggered manner; the end part of a push plate 16 on the same side and the end part of one guide plate 17 are both rotationally connected with a first rotating shaft 2, the first rotating shaft 2 on the other end part of the guide plate 17 on the same side is rotationally connected with the top part of a deviation correcting plate 14, a plurality of groups of guide rods 22 are fixedly connected to the side walls of the guide plates 17 on the same side in a staggered manner at positions corresponding to the positioning blocks 21, the positioning blocks 21 slide on the side walls of the guide rods 22, storage drums 23 are fixedly connected to the side walls of the two ends of the deviation correcting plate 14, a pair of anti-static films 24 are wound inside the storage drums 23 through torsion springs, in the process of moving the push plate 16 through an electric push rod, the first rotating shaft 2 arranged 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 the moment, one end of the guide plate 17 can be positioned to the top part of the deviation correcting plate 14 through the first rotating shaft 2, at the moment, the sectional arrangement of the guide plate 17 can enable the distance between the guide plates 17 to be increased, the positioning blocks 21 to move on the guide rods 22, and along with the movement of the push plate 16, the anti-static films 24 existing between the storage drums 23 can cover the guide plates 17 and the guide plates 16, the guide plates 16 and the guide plates 16 to be reduced, the positions of the guide plates 16 and the end plates 16 are kept in contact with the position of the guide plates 16 and the guide plates to be in the two sides of the position of the guide plates 16, and the position between the guide plates 16 and the end plate 16 and move through the first rotating plate 16, and the first rotating plate 16 and move between the guide plate and the end plate 16 and the first rotating plate and the guide plate 16 and rotates, make the different cloth of follow-up width and push plate 16, guide board 17 between the space contact, lead to appearing piling up the condition, simultaneously, along with the removal of push plate 16 and guide board 17, antistatic backing 24 can pull at the inside of taking in a section of thick bamboo 23, covers push plate 16 and guide board 17 surface, reduces the static that produces because of the cloth.
As shown in fig. 1to 9, the contact surfaces of the guide plates 17 on the same side are respectively provided with a first chute 3, the inside of the first chute 3 is fixedly connected with a connecting plate 31, the side walls of the connecting plate 31 are provided with a plurality of groups of support plates 32, the support plates 32 and the connecting plate 31 are connected through a pair of rubber plates 33, the contact surfaces of the two sides of the support plates 32 and the pair of guide plates 17 are respectively in inclined surfaces and have the same inclined surface angle, in the moving process of the pushing plate 16, the pair of guide plates 17 are gradually far away, at the moment, along with the increase of the distance between the pair of guide plates 17, the support plates 32 move under the pushing of the rubber plates 33, so that the side walls of the support plates 32 and the side walls of the guide plates 17 are positioned on the same plane, the antistatic film 24 is supported, in the resetting process of the subsequent pushing plate 16, along with the shrinkage of the distance between the pair of guide plates 17, the side walls of the guide plates 17 and the side walls of the support plates are gradually contacted with the side walls of the support plates 32, the inclined surfaces of the support plates 32 are respectively provided with an extrusion force by the inclined arrangement of the side walls of the support plates 32, the support plates 32 are contracted into the inside of the first chute 3 again, and the support plates 31 exist, after the guide plates 17 extend through the guide plates 17, the elastic force of the support plates 17, the support plates 17 extend along the side walls of the support plates 33, and the support plates 17 are positioned on the same plane, and the antistatic film 24 is horizontally, and the antistatic film is supported by the side and the side of the support film 24.
As shown in FIGS. 1 to 9, the end of the deviation correcting plate 14, which is close to the wind-up roll 13, is rotatably connected with a scraping plate 4, the two sides of the scraping plate 4 are inclined, a cover plate 41 is fixedly connected to the top of the scraping plate 4, a gap exists between the cover plate 41 and the scraping plate 4, a rubber film 42 is fixedly connected to the bottom of the scraping plate 4, a plurality of groups of spring rods 43 are fixedly connected to the bottom of the scraping plate 4, the end of each spring rod 43 is fixedly connected with a squeezing plate 44, the bottom of each squeezing plate 44 is in contact with the top of the rubber film 42, the scraping plate 4 can be positioned above cloth in the process of winding the cloth on the wind-up roll 13 through the deviation correcting plate 14, the scraping plate 4 is attached to the surface of the cloth through rotation of the scraping plate 4, line segments and burrs existing on the cloth can be scraped by the inclined surfaces on the two sides of the scraping plate 4, the gap existing between the scraping plate 41 and the scraping plate 4 is stored through the gap existing between the scraping plate 41 and the scraping plate 4, meanwhile, the squeezing plates 44 and the rubber film 42 can be driven to attach according to different cloth materials, the rolling edges and corners existing on the cloth surfaces of the cloth can be cleaned by the cloth 4, friction loss existing between the friction edges and the cloth edges can be reduced, and the friction loss can be reduced.
As shown in FIGS. 1 to 9, a pair of support rods 5 are fixedly connected to the top of the placement table 12 below two sides of the winding roller 13, a first positioning ring 52 is fixedly connected to the side wall of one side of the support rod 5, a first positioning ring 52 is sleeved on the side wall of the transmission column 51, the first positioning ring 52 is rotatably connected with the transmission column 51, a plurality of groups of positioning plates 53 are fixedly connected to the side wall of the first positioning ring 52, a first limiting column 54 is slidably connected to the inside of the positioning plates 53, the positioning plates 53 and the first limiting column 54 are connected through springs, the winding roller 13 can be sleeved on the transmission column 51 in the winding process of the cloth by smoothly contacting the winding roller 13, the winding roller 13 is driven to perform winding operation by a motor, at this time, the thickness of the cloth on the winding roller 13 is gradually increased along with the gradual winding of the cloth, at this time, the first limiting column 54 can contact the cloth under the pressure of the spring rods of the positioning plates 53, the cloth is pressed, the cloth is stably pressed, the cloth is enabled to move along with the positioning plates 53, the cloth is enabled to move along with the winding thickness of the positioning plates 53, the cloth is enabled to be stable, the cloth is enabled to move along the winding process, and the cloth is enabled to be kept stable, and the cloth is wound due to the positioning plates and the positioning plates are positioned and the positioning plates and the cloth are moved.
The two-step cloth winding device is characterized in that a second positioning ring 6 is slidably connected to one side, far from a first positioning ring 52, of a transmission column 51, a plurality of groups of identical positioning plates 53 are fixedly connected to the side wall of the second positioning ring 6, a second positioning column 61 is slidably connected to the inside of the positioning plates 53, a bolt 62 is rotatably connected to the end of the second positioning column 61, the bolt 62 and a rubber film 42 are in threaded connection, after a winding roller 13 is placed by a worker, the second positioning ring 6 can be sleeved on the side wall of the transmission column 51, the positions of the second positioning column 61 and the first positioning column 54 are located on the same horizontal plane through the determination of the positions between the pair of transmission columns 51, at this time, the bolt 62 and the first positioning column 54 can be connected through the rotation effect of the bolt 62, the second positioning column 61 and the first positioning column 54 are located on the same, the first positioning column 54 is driven to contact the surface of the winding roller 13, the second positioning ring 6 mounted on the side wall of the transmission column 51 can be used for tightly pressing the second positioning column 54, the winding roller 13 is kept on the support column through the second positioning ring 61, and the winding force is increased, and the cloth winding force is increased in the winding process.
As shown in FIGS. 1 to 9, a pair of sliding rails 7 are fixedly connected to the top of the placement table 12 below the deviation correcting plate 14, sliding blocks 71 are slidably connected to the inside of the sliding rails 7, the sliding blocks 71 are driven by motors, two ends of a connecting rod 72 are hinged between the top of each sliding block 71 and the bottom of each deviation correcting plate 14 respectively, in the process of passing cloth on the deviation correcting plate 14, the weight of the cloth is different along with different materials of the cloth, at the moment, the deviation correcting plate 14 can be rotated through movement of the sliding blocks 71 to generate a certain angle inclination, so that the distance of sagging of the cloth with heavy weight is reduced, and through the supporting effect of the sliding blocks 71 and the connecting rod 72, the inclination angle of the deviation correcting plate 14 is changed according to different materials of the cloth when the deviation correcting plate 14 faces different cloth, the adaptability of equipment is improved, the sagging condition of the position of the heavier cloth between the deviation correcting plate 14 and the winding roller 13 is reduced, the tension of the cloth is reduced, and the winding of the cloth is affected.
As shown in fig. 1 to 9, the first limit posts 54 are provided with the impact balls 8, the impact balls 8 and the wind-up roller 13 are provided with magnets with magnetic attraction, the impact balls 8 and the first limit posts 54 are connected through a plurality of groups of elastic bands 81, in the process of winding cloth by the wind-up roller 13, the magnets mounted in the wind-up roller 13 are gradually close to the first limit posts 54 along with the rotation of the wind-up roller 13, at the moment, the magnetic attraction effect of the magnets in the impact balls 8 and the first limit posts 54 can drive the impact balls 8 to move, the side walls of the first limit posts 54 collide, the impact balls 8 can continuously move under the influence of the magnetic attraction effect by utilizing the rotation winding effect of the wind-up roller 13, the first limit posts 54 collide, vibration is generated when the first limit posts 54 are contacted with the cloth, the loose cloth is tightened in the rotation process, and the compaction degree of the cloth winding is improved.
As shown in fig. 1 to 9, the side walls of the two sides of the scraping plate 4 are fixedly connected with the first guide blocks 9, the two sides of the cover plate 41 and the staggered positions of the first guide blocks 9 are fixedly connected with the second guide blocks 91, after the scraping plate 4 scrapes the line segments and impurities existing on the cloth, the impurities gradually moving between the scraping plate 4 and the cover plate 41 can cross the range of the first guide blocks 9 and the second guide blocks 91, at the moment, the positions of the impurities are limited by the vertical arrangement of the side walls of the first guide blocks 9 and the second guide blocks 91, and the impurities entering the scraping plate 4 and the cover plate 41 can be blocked by the staggered first guide blocks 9 and the second guide blocks 91 arranged on the side walls of the scraping plate 4 and the cover plate 41, so that the outward leakage of the impurities between the scraping plate 4 and the cover plate 41 is reduced.
During the working process, when the textile operation of cloth is carried out, the staff can evenly place the textile thread on the paying-off machine 1, the cloth with different patterns can be woven through the change of the color among a plurality of groups of paying-off machines 1, the textile thread on the paying-off machine 1 can be fed into the textile machine 11 for spinning after being extracted, then, the cloth after spinning can enter the deviation correcting plate 14 above the placing table 12, a pair of infrared rays installed at the bottom of the positioning detection device 15 can be correspondingly regulated according to the preset cloth width, after the cloth passes through the position detection, the winding operation can be carried out on the winding roller 13, when the cloth is offset, the infrared rays delivered by the positioning detection device 15 can detect the offset angle generated by the cloth, then, the pushing effect of an electric push rod on the pushing plate 16 is carried out, the pushing plate 16 and the guide plate 17 are driven to move to the cloth, the position of the cloth is pushed, the cloth is reset, when the pushing plate 16 moves through the electric push rod, a rotating shaft 2 installed between the pushing plate 16 and the guide plate 17 can move, the pushing plate 16 and the guide plate 17 can be correspondingly regulated according to the preset cloth width, the position detection device can be arranged on the winding roller 13, the side wall can be gradually moved to the side wall of the guide plate 16, the guide plate is gradually moves to the top of the guide plate 17, the guide plate is gradually moves to the top of the cloth through the guide plate 17, the guide plate is arranged between the guide plate 17, the rotating plate is gradually moves between the guide plate and the guide plate 17, the guide plate is far away from the push plate 16, the cloth is arranged on the side of the side wall, and the guide plate is far from the cloth, and the position of the cloth is far from the cloth, and the position is far from the cloth, and moves between the cloth, and the position is far from the cloth, and moves is pushed. At this time, along with the increase of the interval between a pair of guide plates 17, backup pad 32 can remove under the propelling movement of rubber slab 33 for self lateral wall and guide plate 17 lateral wall are in the coplanar, support antistatic membrane 24, at the in-process that follow-up propelling movement board 16 resets, along with the shrink of interval between a pair of guide plates 17, guide plate 17 lateral wall and gradually with the backup pad 32 lateral wall contact, utilize the slope setting of both lateral walls at this moment, can provide a extrusion force to backup pad 32, make backup pad 32 shrink, it is inside to accomodate the entering spout 3 again.
In the process that cloth is rolled up to the wind-up roll 13 through the deviation correcting plate 14, the scraping plate 4 can be located above the cloth, the scraping plate 4 is attached to the surface of the cloth through rotation of the scraping plate 4, line segments and fuzzes existing on the cloth can be scraped by utilizing inclined plane settings on two sides of the scraping plate, the line segments and fuzzes are stored through gaps existing between the cover plate 41 and the scraping plate 4, and meanwhile, the spring rods 43 can drive the extruding plate 44 and the rubber film 42 to attach according to radian of the cloth according to different materials of the cloth.
In the process that cloth is smoothly rolled up by being contacted with the rolling roller 13, the rolling roller 13 can be sleeved on the transmission column 51, the transmission column 51 is driven by a motor to rotate, the rolling roller 13 is driven to roll up, at this moment, the thickness of the cloth on the rolling roller 13 is gradually increased along with the gradual winding of the cloth on the rolling roller 13, at this moment, the first limit column 54 can be contacted with the cloth under the pressure of a spring rod of the positioning plate 53 to press the cloth, so that the cloth is in stable rolling operation, after a worker places the rolling roller 13, the second positioning ring 6 can be sleeved on the side wall of the transmission column 51, the positions of the second limit column 61 and the first limit column 54 are in the same horizontal plane through the determination of the positions between the pair of transmission columns 51, at this moment, the bolts 62 and the first limit column 54 can be connected through the rotating effect of the bolts 62, the second limit column 61 and the first limit column 54 are in a whole, and the first limit column 54 and the surface of the rolling roller 13 are driven to contact.
In the process of cloth passing on the deviation correcting plate 14, the weight of the cloth is different along with the difference of the material of the cloth, at this moment, the deviation correcting plate 14 can be rotated through the movement of the sliding block 71, a certain angle inclination is generated, the distance of downward sagging of the cloth with heavy weight is reduced, in the process of winding the cloth by the winding roller 13, along with the rotation of the winding roller 13, the magnet mounted inside the winding roller 13 gradually approaches to the multi-group first limit column 54, at this moment, the impact ball 8 can be driven to move by the magnetic force attraction effect of the magnet inside the impact ball 8 and the first limit column 54, the side wall of the first limit column 54 collides, after the scraping plate 4 scrapes the line segments and impurities existing on the cloth, the impurities moving between the scraping plate 4 and the cover plate 41 can be gradually overcome the range of the first guide block 9 and the second guide block 91, and at this moment, the side wall of the winding roller 13 is vertically arranged through the first guide block 9 and the second guide block 91, and the impurity position is limited.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined in the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.