High-precision cloth weaving machine

By coordinating the vibration block, dust removal brush, deviation correction roller and infrared signal, the problem of fabric deviation during the coding process is solved, and a high-precision coding effect is achieved.

CN116730085BActive Publication Date: 2025-10-24CHANGXING SANJIN SPECIAL TEXTILE
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Patent Information

Application Number
CN202310791653.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-30
Publication Date
2025-10-24
Estimated Expiration
2043-06-30

AI Technical Summary

Technical Problem

During the cloth-stacking process, the cloth is prone to deviation, which can cause the cloth to be skewed and wrinkled after being stacked, thus reducing the quality of the cloth.

Method used

Vibrating blocks and dust removal brushes are used to remove dust and debris from the fabric. Automatic deviation correction is achieved by the horizontal movement of the correction roller and the infrared transmitter and receiver. The telescopic rod clamping piece ensures that the fabric does not move during winding.

Benefits of technology

It improves the cleanliness and stacking accuracy of the fabric, ensures that the fabric does not deviate when winding, and improves the quality and efficiency of stacking.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116730085B_ABST
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Abstract

The application discloses a high-precision cloth counting machine, and aims to provide a high-precision cloth counting machine which can realize automatic deviation correction, guarantee cloth counting precision and ensure cloth quality. The high-precision cloth counting machine comprises cloth feeding machines, deviation correction machines and winding machines which are arranged in sequence. The cloth feeding machines are provided with rotatable vibration blocks arranged on the upper and lower sides of cloth. Dust removal brushes are arranged on the sides of the vibration blocks. The deviation correction machines are provided with horizontally movable deviation correction rollers. Infrared emitters are arranged on the deviation correction rollers. Infrared receivers are arranged on the winding machines. The infrared emitters correspond to the infrared receivers. The deviation correction rollers are externally provided with controllers. The infrared emitters and the infrared receivers are connected with the controllers. The infrared emitters and the infrared receivers arranged on the winding rollers cooperate, the positions of the deviation correction machines can be adjusted in time, automatic deviation correction operation is realized, and the precision of the wound cloth is guaranteed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cloth folding machine, in particular to a high-precision cloth folding machine. BACKGROUND

[0002] The cloth folding machine is used in finishing workshops of textile mills, printing and dyeing mills, embroidery mills and the like, mainly plays the roles of cloth folding, length counting and cloth checking, is a commonly used cloth processing device in textile post-processing equipment, and is widely applied. In the cloth folding process, deviation is prone to occur, so that the folded cloth is skewed and wrinkled, and the quality of the folded cloth is reduced.

[0003] Chinese patent publication No. CN209853439U, publication date: 2019.12.27, a cloth folding machine deviation correcting device is arranged on a rack, comprising a limiting column obliquely arranged on the rack, a guide rod in sliding connection with the limiting column, a lever arranged at one end of the guide rod and connected with the guide rod, a cylinder connected at the other end of the lever and a vertical column in rotary connection with the lever, the rack is in sliding connection with the limiting column, the rack is provided with a mounting seat in sliding connection with the rack, the limiting column is arranged on the mounting seat, and the rack is provided with a positioning assembly for fixing the mounting seat, and the lever is provided with an adjusting groove at one end close to the limiting column for inserting and sliding the end of the guide rod on the lever. SUMMARY

[0004] The present application is to overcome the defects of cloth deviation in the cloth folding process, cloth skew and wrinkle after folding, and reduced cloth quality in the prior art, and provides a high-precision cloth folding machine which can realize automatic deviation correction, ensure folding precision and ensure folding quality.

[0005] In order to achieve the above-mentioned purpose, the following technical scheme is adopted: a high-precision cloth folding machine, comprising a cloth feeding machine, a deviation correcting machine and a winding machine arranged in sequence, the cloth feeding machine is provided with rotatable vibration blocks arranged on both sides of the cloth, a dust removal brush is arranged on the side of the vibration block, the deviation correcting machine is provided with a horizontally movable deviation correcting roller, an infrared emitter is arranged on the deviation correcting roller, an infrared receiver is arranged on the winding machine, the infrared emitter corresponds to the infrared receiver, a controller is arranged outside the deviation correcting roller, and the infrared emitter and the infrared receiver are connected with the controller.

[0006] The cloth feeding machine, the deviation rectifying machine and the winding machine are sequentially installed on the frame of the cloth folding machine. The cloth feeding machine is provided with a vibrating block, which can rotate while vibrating. The vibrating block is in contact with the cloth, and the dust and sundries attached to the cloth can be removed by vibration. Meanwhile, a dust removal brush is arranged on the side of the vibrating block, which can clean the dust and sundries on the cloth after the cloth passes through the vibrating block, so as to ensure that the cloth surface is clean and avoid the cloth deviation caused by the sundries on the cloth when the cloth passes through the transmission. The deviation rectifying roller of the deviation rectifying machine can move horizontally, and the position of the cloth that has deviated can be adjusted by moving, so as to realize the deviation rectifying function. Meanwhile, the infrared emitter arranged on the deviation rectifying roller corresponds to the infrared receiver arranged on the winding machine, and the signal emitted by the infrared emitter can be received by the infrared receiver. The controller is connected to the deviation rectifying roller, and the infrared emitter and the infrared receiver are both connected to the controller. When the cloth deviates on the winding machine, the cloth will block the infrared signal, so that the infrared signal is interrupted. At this time, the controller receives the signal feedback and sends a control signal to the deviation rectifying roller to move horizontally, so that the cloth no longer blocks the infrared signal, realizing the deviation rectifying function and ensuring the cloth folding accuracy.

[0007] As a preferred, the vibrating block is provided with a mounting block, the mounting block is U-shaped, the side wall of the mounting block is provided with a vibrator, the end of the mounting block is connected with a vibrating ball in contact with the cloth, and the bottom surface of the mounting block is connected with a rotating motor one. The vibrating block is provided with a U-shaped mounting block, the two side walls of the U-shaped mounting block are connected with vibrators, the end of the vibrator is connected with a vibrating ball, the vibrating ball can shake off the dust and sundries on the cloth through the vibration of the vibrator, realizing the removal of dust and sundries. Meanwhile, the bottom of the mounting block is connected with a rotating motor one, and the rotation of the rotating motor one can drive the mounting block to rotate. Through rotation, the vibration range can be improved, the dust removal and sundries removal effect can be improved, the cloth surface entering the subsequent process can be ensured to be clean, and the cloth deviation caused by the sundries on the cloth when the cloth passes through the transmission can be avoided.

[0008] As a preferred, the two mounting blocks arranged on the upper and lower sides of the cloth are installed in a staggered manner. The mounting blocks arranged on the upper and lower sides of the cloth are not arranged on the same vertical plane, realizing the staggered arrangement, so that the two mounting blocks can improve the vibration dust removal range when rotating, improve the dust removal and sundries removal effect, ensure that the cloth surface entering the subsequent process is clean, and avoid the cloth deviation caused by the sundries on the cloth when the cloth passes through the transmission.

[0009] As preferred, the dust removal brush comprises a brush body and bristles, the bristles are connected with the brush body, the brush body is provided with a plurality of dust suction holes, and the dust suction holes are externally connected with a dust collector. The bristles provided can sweep the dust and sundries on the cloth passing through the dust removal brush, and the dust suction holes provided on the brush body are externally connected with the dust collector, so that the dust and sundries are sucked away when passing through the dust removal brush, the cloth surface is ensured to be clean in the subsequent process, and the cloth is prevented from being deviated due to the sundries on the cloth when passing through the transmission.

[0010] As preferred, the deviation correction roller is provided with an upper roller and a lower roller, both ends of the upper roller and the lower roller are respectively connected with mounting plates, one side of the mounting plate is connected with a telescopic cylinder, and the telescopic cylinder is connected with a controller. The upper roller and the lower roller are arranged side by side in the vertical direction, and the upper roller and the lower roller are mounted on the mounting plate. The telescopic cylinder can drive the mounting plate to move in the horizontal direction, so as to correct the deviation of the cloth and ensure the cloth laying accuracy.

[0011] As preferred, the upper roller side wall is provided with a plurality of deviation correction needles arranged uniformly around the upper roller side wall, the lower roller side wall is provided with a plurality of deviation correction holes arranged uniformly around the lower roller side wall, and the deviation correction needles are aligned with the deviation correction holes. The deviation correction needles arranged on the upper roller correspond to the deviation correction holes arranged on the lower roller. When the cloth passes between the upper roller and the lower roller, the deviation correction needles are inserted into the cloth and then enter the deviation correction holes. Under the action of the deviation correction needles, the cloth can pass stably when passing between the upper roller and the lower roller, and the cloth laying accuracy is ensured.

[0012] As preferred, the middle part of the upper roller side wall is provided with a plurality of pressing protrusions arranged uniformly around the upper roller side wall, the middle part of the lower roller side wall is provided with a plurality of pressing grooves arranged uniformly around the lower roller side wall, and the pressing protrusions are matched with the pressing grooves. The pressing protrusions arranged in the middle part of the upper roller are aligned with the pressing grooves arranged in the middle part of the lower roller. When the cloth passes between the upper roller and the lower roller, the pressing protrusions press the cloth, so that the cloth passes stably when passing between the upper roller and the lower roller, and the cloth laying accuracy is ensured.

[0013] As preferred, the middle part of the upper roller side wall is provided with a mounting hole, a buffer spring is connected in the mounting hole, and the pressing protrusion is connected with the buffer spring. The buffer spring is connected in the mounting hole arranged on the side wall of the upper roller. The buffer spring plays a buffering role, so that the pressing protrusion can press the cloth passing through the upper roller and the lower roller, the displacement of the cloth is prevented, the cloth passes stably, and the cloth laying accuracy is ensured.

[0014] As preferred, the mounting plate is provided with a mounting bracket, the infrared emitter is mounted on the mounting bracket, the winding machine is provided with a winding roller, the infrared receiver is annular, the infrared receiver is sleeved on both ends of the winding roller, and the infrared emitter is aligned with the infrared receiver. The mounting bracket is used for mounting the infrared emitter, the winding roller provided on the winding machine is connected with the annular infrared receiver at both ends, and the infrared emitter is aligned with the infrared receiver. Through the monitoring of the infrared rays, the cloth wound on the winding roller is kept in an aligned state, and the winding precision and the alignment effect of the cloth are ensured.

[0015] As preferred, the winding roller is provided with a clamping groove on the outer side wall, the clamping groove is provided with a connecting groove at both ends, a U-shaped clamping piece is arranged in the clamping groove, both ends of the clamping piece are arranged in the connecting groove, a telescopic rod is connected in the connecting groove, and the telescopic rod is connected with the clamping piece at the end. The clamping piece is arranged in the clamping groove provided on the winding roller, the connecting groove is arranged at both ends of the clamping groove, the telescopic rod arranged in the connecting groove is connected with the clamping piece, the telescopic rod is driven to clamp the cloth through the telescopic action, the cloth is clamped on the winding roller, the cloth is clamped conveniently, the clamping effect of the cloth is ensured, the cloth does not move during winding, and the winding effect of the cloth is ensured.

[0016] The cloth feeding machine is provided with the vibration block and the dust removal brush, dust and impurities on the cloth can be cleaned, the cleanliness of the cloth is ensured, the surface of the cloth in the subsequent process is kept clean, the cloth is prevented from deviating during transmission due to the impurities on the cloth, the deviation correcting machine is provided with the deviation correcting needle, the position of the cloth is ensured to be accurate when the cloth passes through the deviation correcting roller, the infrared emitter on the deviation correcting machine and the infrared receiver on the winding roller are matched, the position of the deviation correcting machine is adjusted in time, automatic deviation correction is realized, the winding precision of the cloth is ensured, the telescopic rod is driven to clamp the cloth through the telescopic action, the cloth is clamped conveniently when the cloth is clamped on the winding roller, the clamping effect of the cloth is ensured, the cloth does not move during winding, and the winding effect of the cloth is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structural schematic diagram of the present application;

[0018] Figure 2 is a sectional view of the vibration block in the present application;

[0019] Figure 3 is a sectional view of the dust removal brush in the present application;

[0020] Figure 4 is a sectional view of the deviation correcting machine in the present application;

[0021] Figure 5 isFigure 4 Enlarged view at A;

[0022] Figure 6 Figure 4 Enlarged view at B;

[0023] Figure 7 is the top view of the deviation rectifying machine and the winding machine in the present application;

[0024] Figure 8 is the sectional view of the winding machine in the present application.

[0025] 1. cloth feeding machine, 2. deviation rectifying machine, 3. winding machine, 4. vibration block, 5. dust removing brush, 20. deviation rectifying roller, 21. infrared emitter, 22. upper roller, 23. lower roller, 24. mounting plate, 25. telescopic air cylinder, 26. deviation rectifying needle, 27. deviation rectifying hole, 28. pressing convex block, 29. pressing concave groove, 30. infrared receiver, 31. winding roller, 32. clamping groove, 33. connecting groove, 34. clamping piece, 35. telescopic rod, 40. mounting block, 41. vibrator, 42. vibrator, 43. rotating motor one, 50. brush body, 51. brush hair, 52. dust suction hole, 220. mounting hole, 221. buffer spring, 240. mounting bracket. DETAILED DESCRIPTION

[0026] The application will be further described below in conjunction with the drawings and specific embodiments. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments. The following description of at least one exemplary embodiment is actually only illustrative, but not as any limitation on the present application and its application or use. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative efforts fall within the scope of protection of the present application.

[0027] It should be noted that the terms used herein are only for the purpose of describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise, and it should be understood that when the terms "comprise" and / or "include" are used in the specification, there is a feature, step, operation, device, component and / or combination thereof.

[0028] ​Unless otherwise specifically stated, the relative arrangement of the parts, numerical expressions and numerical values ​​set forth in these embodiments do not limit the scope of the present application. At the same time, it should be understood that, for ease of description, the sizes of the various parts shown in the drawings are not drawn according to actual proportional relationships. The techniques, methods and equipment known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the techniques, methods and equipment should be considered as part of the authorization specification. In all examples shown and discussed here, any specific values ​​should be interpreted as being merely exemplary and not as limitations. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following figures, and therefore, once an item is defined in one figure, it does not need to be further discussed in subsequent figures.

[0029] In addition, it should be noted that the use of terms such as "first" and "second" to limit components is only for the convenience of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.

[0030] Example 1, as Figures 1-8 As shown, a high-precision cloth-coding machine comprises a cloth loader 1, a deflection correcting machine 2 and a winder 3 arranged in sequence, the cloth loader 1 is provided with a rotatable vibration block 4 placed on the upper and lower sides of the cloth, a dust removal brush 5 is provided on the side of the vibration block 4, the deflection correcting machine 2 is provided with a horizontally movable deflection correcting roller 20, the deflection correcting roller 20 is provided with an infrared transmitter 21, the winder 3 is provided with an infrared receiver 30, the infrared transmitter 21 corresponds to the infrared receiver 30, the deflection correcting roller 20 is externally connected to a controller, and the infrared transmitter 21 and the infrared receiver 30 are both connected to the controller.

[0031] The vibration block 4 is provided with a mounting block 40, which is U-shaped. A vibrator 41 is provided on the side wall of the mounting block 40. A vibration ball 42 in contact with the cloth is connected to the end of the mounting block 40, and a rotating motor 43 is connected to the outer bottom surface of the mounting block 40.

[0032] The two mounting blocks 40 on the upper and lower sides of the cloth are staggered.

[0033] The dust removal brush 5 includes a brush body 50 and bristles 51 . The bristles 51 are connected to the brush body 50 . The brush body 50 is provided with a plurality of dust suction holes 52 . The dust suction holes 52 are externally connected to a vacuum cleaner.

[0034] The deviation-correcting roller 20 includes an upper roller 22 and a lower roller 23 . Both ends of the upper roller 22 and the lower roller 23 are respectively connected to a mounting plate 24 . One side of the mounting plate 24 is connected to a telescopic cylinder 25 . The telescopic cylinder 25 is connected to a controller.

[0035] The upper roller 22 is provided with a plurality of correction needles 26 arranged uniformly around the side wall of the upper roller 22 at both ends, and the lower roller 23 is provided with a plurality of correction holes 27 arranged uniformly around the side wall of the lower roller 23 at both ends, and the correction needles 26 are aligned with the correction holes 27.

[0036] The middle part of the side wall of the upper roller 22 is provided with a plurality of pressing protrusions 28 arranged uniformly around the side wall of the upper roller 22, and the middle part of the side wall of the lower roller 23 is provided with a plurality of pressing grooves 29 arranged uniformly around the side wall of the lower roller 23, and the pressing protrusions 28 are matched with the pressing grooves 29.

[0037] The middle part of the side wall of the upper roller 22 is provided with a mounting hole 220, and the mounting hole 220 is connected with a buffer spring 221, and the pressing protrusions 28 are connected with the buffer spring 221.

[0038] The mounting plate 24 is provided with a mounting bracket 240, and the infrared emitter 21 is mounted on the mounting bracket 240, and the winding machine 3 is provided with a winding roller 31, and the infrared receiver 30 is annular, and the infrared receiver 30 is sleeved at both ends of the winding roller 31, and the infrared emitter 21 is aligned with the infrared receiver 30.

[0039] The outer side wall of the winding roller 31 is provided with a clamping groove 32, and the both ends of the clamping groove 32 are provided with a connecting groove 33, and the clamping groove 32 is provided with a U-shaped clamping piece 34, and the both ends of the clamping piece 34 are placed in the connecting groove 33, and the connecting groove 33 is internally connected with a telescopic rod 35, and the end of the telescopic rod 35 is connected with the clamping piece 34.

[0040] The working principle of the present application is that the device is provided with a rack, and a cloth feeding machine 1, a deviation rectifying machine 2 and a winding machine 3 are sequentially installed on the rack. The cloth feeding machine 1 is composed of a vibrating block 4 and a dust removal brush 5. The vibrating block 4 is provided with a mounting block 40 which is U-shaped. A rotating motor 43 is connected to the outer bottom surface of the mounting block 40. The rotating motor 43 is installed on the rack. The rotating motor 43 can drive the mounting block 40 to rotate. A vibrator 41 is arranged on the side wall of the mounting block 40. A vibrating ball 42 is arranged at the end of the mounting block 40. The vibrating ball 42 is in contact with the cloth. When the vibrator 41 vibrates, it can drive the mounting block 40 to vibrate. The vibrating ball 42 vibrates with the mounting block 40. The vibrating ball 42 drives the cloth to vibrate. The dust and impurities on the cloth are shaken off, achieving the removal of dust and impurities. At the same time, the rotating motor 43 connected to the bottom of the mounting block 40 drives the mounting block 40 to rotate. Through rotation, the range of vibration is improved, the dust removal and impurity removal effect is improved, the surface of the cloth entering the subsequent process is ensured to be clean, and the cloth is prevented from deviating when passing through the transmission due to impurities on the cloth. At the same time, the mounting blocks 40 on the upper and lower sides of the cloth are not arranged on the same vertical plane, achieving staggered arrangement. When the two mounting blocks 40 rotate and vibrate, the range of vibration dust removal is improved, the dust removal and impurity removal effect is improved, the surface of the cloth entering the subsequent process is ensured to be clean, and the cloth is prevented from deviating when passing through the transmission due to impurities on the cloth.

[0041] The dust removal brush 5 is arranged on one side of the vibrating block 4, and the side is the moving direction side of the cloth. After completing vibration and impurity removal, the dust removal brush 5 is used for dust removal. The dust removal brush 5 is composed of a brush body 50 and bristles 51. The brush body 50 is installed and connected with the rack. The bristles 51 are installed at the end of the brush body 50. A dust suction hole 52 is arranged at the end of the brush body 50. The dust suction hole 52 is connected with a dust collector. When the cloth passes through the dust removal brush 5, the dust removal brush 5 can sweep the impurities on the cloth. At the same time, the dust collector works to perform dust suction operation on the cloth passing through the dust removal brush 5, ensuring that the surface of the cloth after passing through the dust removal brush 5 is clean, avoiding the cloth from deviating when passing through the transmission due to impurities on the cloth, and improving the precision and winding effect of the winding cloth.

[0042] After the cloth passes through the cloth feeding machine 1, the cloth passes through the deviation rectifying machine 2. The deviation rectifying roller 20 includes the upper roller 22 and the lower roller 23, and the upper roller 22 and the lower roller 23 are arranged side by side. The installation plate 24 is connected to both ends of the upper roller 22 and the lower roller 23, the telescopic cylinder 25 is connected to the installation plate 24 on one side, and the telescopic cylinder 25 can drive the installation plate 24 to move. The telescopic cylinder 25 is connected to the controller, and the controller can control the movement position of the installation plate 24. At the same time, the mounting bracket 240 is arranged on the installation plate 24, the infrared emitter 21 is mounted on the mounting bracket 240, the winding roller 31 is arranged on the winding machine 3, the infrared receiver 30 in a ring shape is connected to both ends of the winding roller 31, and the infrared emitter 21 and the infrared receiver 30 are in an alignment state. The matching of the infrared emitter 21 and the infrared receiver 30 ensures the winding accuracy of the cloth, ensures that the cloth wound on the winding roller 31 is in an alignment state, and ensures the winding accuracy and alignment effect of the cloth.

[0043] Further, the deviation rectifying needle 26 is arranged on the side wall of the upper roller 22, and the deviation rectifying hole 27 is arranged on the side wall of the lower roller 23, and the deviation rectifying needle 26 is aligned with the deviation rectifying hole 27. When the cloth passes between the upper roller 22 and the lower roller 23, the deviation rectifying needle 26 is inserted into the cloth and enters the deviation rectifying hole 27, and under the action of the deviation rectifying needle 26, the cloth can be stably passed when passing between the upper roller 22 and the lower roller 23, and the winding accuracy of the cloth is ensured. At the same time, the pressing convex block 28 arranged in the middle of the upper roller 22 is aligned with the pressing concave groove 29 arranged in the middle of the lower roller 23, and the pressing convex block 28 presses the cloth when the cloth passes between the upper roller 22 and the lower roller 23, so that the cloth can be stably passed when passing between the upper roller 22 and the lower roller 23, and the winding accuracy of the cloth is ensured. Further, the mounting hole 220 arranged on the side wall of the upper roller 22 is connected with the buffer spring 221, the buffer spring 221 plays a buffering role, the pressing convex block 28 can press the cloth passing through the upper roller 22 and the lower roller 23, the displacement of the cloth is prevented, the cloth can be stably passed, and the winding accuracy of the cloth is ensured.

[0044] Further, the outer side wall of the winding roller 31 is provided with a clamping groove 32, the two ends of the clamping groove 32 are respectively provided with a connecting groove 33, and the inside of the connecting groove 33 is provided with a telescopic rod 35. Meanwhile, the clamping groove 32 is provided with a U-shaped clamping piece 34, and the two ends of the clamping piece 34 are connected with the telescopic rod 35. The telescopic action of the telescopic rod 35 can drive the clamping piece 34 to move, and meanwhile, the inner side wall of the clamping piece 34 is provided with a plurality of clamping protrusions. When the clamping piece 34 clamps the cloth, the clamping protrusions can ensure the clamping of the cloth and ensure the clamping effect of the cloth, and the cloth will not move during winding, ensuring the effect of winding the cloth. Meanwhile, the telescopic rod 35 is used for clamping operation, which can ensure convenient operation when clamping the cloth and improve production efficiency.

[0045] The above examples are only used to illustrate the technical solutions of the present application, but not to limit it; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that the technical solutions recorded in the foregoing examples can be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A high-precision cloth coding machine, characterized in that: The application relates to a cloth feeding machine (1), a deviation rectifying machine (2) and a winding machine (3) arranged in sequence, wherein the cloth feeding machine (1) is provided with rotatable vibration blocks (4) arranged on the upper and lower sides of the cloth; dust removing brushes (5) are arranged on the side of the vibration blocks (4); the deviation rectifying machine (2) is provided with horizontally movable deviation rectifying rollers (20); infrared emitters (21) are arranged on the deviation rectifying rollers (20); infrared receivers (30) are arranged on the winding machine (3); the infrared emitters (21) correspond to the infrared receivers (30); the deviation rectifying rollers (20) are provided with controllers; the infrared emitters (21) and the infrared receivers (30) are connected with the controllers; the vibration blocks (4) are provided with mounting blocks (40); the mounting blocks (40) are U-shaped; the side walls of the mounting blocks (40) are provided with vibrators (41); the end portions of the mounting blocks (40) are connected with vibration balls (42) in contact with the cloth; the outer bottom surfaces of the mounting blocks (40) are connected with rotating motors (43); and the two mounting blocks (40) arranged on the upper and lower sides of the cloth are installed in a staggered mode.

2. The high-precision cloth weaving machine according to claim 1, characterized in that, The dust removing brushes (5) comprise brush bodies (50) and brush hairs (51); the brush hairs (51) are connected with the brush bodies (50); the brush bodies (50) are provided with dust suction holes (52); and the dust suction holes (52) are connected with dust suction machines.

3. The high-precision cloth weaving machine according to claim 1, characterized in that, The deviation rectifying rollers (20) comprise upper rollers (22) and lower rollers (23); the two ends of the upper rollers (22) and the lower rollers (23) are respectively connected with mounting plates (24); one side of the mounting plates (24) is connected with telescopic air cylinders (25); and the telescopic air cylinders (25) are connected with the controllers.

4. The high-precision cloth weaving machine according to claim 3, characterized in that, The side walls of the upper rollers (22) are provided with a plurality of deviation rectifying needles (26) uniformly arranged around the side walls of the upper rollers (22); the side walls of the lower rollers (23) are provided with a plurality of deviation rectifying holes (27) uniformly arranged around the side walls of the lower rollers (23); and the deviation rectifying needles (26) are aligned with the deviation rectifying holes (27).

5. The high-precision cloth weaving machine according to claim 4, characterized in that, The middle portions of the side walls of the upper rollers (22) are provided with a plurality of pressing convex blocks (28) uniformly arranged around the side walls of the upper rollers (22); the middle portions of the side walls of the lower rollers (23) are provided with a plurality of pressing concave grooves (29) uniformly arranged around the side walls of the lower rollers (23); and the pressing convex blocks (28) are matched with the pressing concave grooves (29).

6. A high-precision cloth weaving machine according to claim 5, characterized in that, The middle portions of the side walls of the upper rollers (22) are provided with mounting holes (220); the mounting holes (220) are connected with buffer springs (221); and the pressing convex blocks (28) are connected with the buffer springs (221).

7. The high-precision fabric knitting machine according to claim 3, wherein The mounting plates (24) are provided with mounting supports (240); the infrared emitters (21) are mounted on the mounting supports (240); the winding machine (3) is provided with winding rollers (31); the infrared receivers (30) are annular; the infrared receivers (30) are sleeved on the two ends of the winding rollers (31); and the infrared emitters (21) are aligned with the infrared receivers (30).

8. The high-precision cloth weaving machine according to claim 7, characterized in that, The outer side wall of the winding roller (31) is provided with a clamping groove (32), both ends of the clamping groove (32) are provided with a connecting groove (33), a U-shaped clamping piece (34) is arranged in the clamping groove (32), both ends of the clamping piece (34) are arranged in the connecting groove (33), and a telescopic rod (35) is connected in the connecting groove (33), and the telescopic rod (35) is connected with the clamping piece (34) at the end.

Citation Information

Patent Citations

  • Deviation rectifying device of plaiting machine

    CN209853439U

  • Small self-winding cable reel for processing novel highly flexible towing chain cable

    CN111003605A

  • Dust removing device for spinning

    CN111112168A

  • Plaiting machine

    CN208326880U

  • Deviation rectifying mechanism for conveying amorphous strips

    CN218465134U