Textile winding device

By designing a textile winding device including load-bearing members, winding components and inspection components, the problem of deformation and tension increase in textile during winding is solved, and efficient and stable textile winding is achieved, ensuring product quality and efficiency.

CN222947812UActive Publication Date: 2025-06-06SHANGHAI JIEYINGTU NEW MATERIAL TECH
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Patent Information

Application Number
CN202421883319.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-06-06
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

During the winding process of textiles, the prior art causes textile deformation and quality to decline, and the winding speed does not match the conveying speed, resulting in an increase in the surface tension of the textile, affecting the shape and quality.

Method used

A textile winding device is designed, including a load-bearing member, a winding assembly and a checking assembly. The winding assembly realizes the winding of textiles through rotatable winding parts and drive parts. The inspection component detects the surface tension of the textile through the tension detector and controller, and controls the winding speed to ensure that the textile does not undergo permanent deformation during the winding process.

Benefits of technology

Through this device, it is possible to effectively avoid deformation and tension increase in textiles during the winding process, ensure that the shape and quality of the textiles are not damaged, and at the same time, the winding speed and the conveying speed are matched, improving the winding efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a textile winding device used for winding textiles, the textile winding device comprises a bearing component, a winding assembly and a detection and control assembly, the winding assembly comprises a winding piece and a winding driving piece, the winding piece is rotatably installed on the bearing component, the winding driving piece is rotatably installed on the bearing component, and the detection and control assembly is installed on the winding piece. The winding part is rotatably connected to the winding driving part in a drivable mode, the textile is rotatably wound by the winding part in the mode that the surface of the textile is attached to the surface of the winding part, and the detection and control assembly is installed on the bearing component. The detection and control assembly can detect the surface tension of the textile wound by the winding piece and control the speed of the winding piece driven by the winding driving piece, and the situation that the surface tension of the textile is too large or too small due to the fact that the difference between the winding speed of the winding piece and the conveying speed of the textile is too large is avoided. Therefore, deformation caused by uneven surface tension of the textile is avoided, and it is guaranteed that the length and the shape of the wound textile are consistent.
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Description

Technical Field

[0001] The utility model relates to the field of textile production, in particular to a textile winding device. Background Art

[0002] Textiles are products that have been processed through textiles, such as sound-absorbing cotton. As a man-made inorganic fiber, sound-absorbing cotton is mainly made by blowing and melting raw materials such as quartz sand into flocculent fine fibers, and then making the fibers entangle with each other.

[0003] In the process of making textiles, the initially made textiles need to be rolled up for the next step. In the prior art, the operator will attach the surface of the textile to the surface of a rotatable barrel, and drive the barrel to rotate by rubbing and squeezing the textile on the surface of the barrel with a movable driving roller, so that the textile is rolled up by the rotating barrel, and the winding is stopped after the predetermined length of the textile is rolled up to cut off and retain this part of the textile. However, the initially made textiles are more deformable. After being squeezed and rubbed by the driving roller, the textiles are prone to permanent deformation, resulting in a change in the shape of the textiles and low quality.

[0004] On the other hand, in the prior art, after the machine starts the winding operation, the rotation speed of the drum and the speed at which the textile is conveyed remain basically unchanged, but the cross-sectional radius of the textile rolled on the drum is increasing, that is, the longer the length of the textile rolled up by one rotation of the drum is, the conveying speed of the textile will be lower than the winding speed of the drum, so that the unwound textile is stretched, which in turn causes the surface tension of the textile to become roughly deformed, so that the shape of the rolled textile is different from that in normal conditions.

[0005] In addition, since the length of the rolled-up textile is related to the cross-sectional radius of the roll formed after the textile is rolled up, the specific rolling length is usually determined based on the cross-sectional radius of the roll formed after the textile is rolled up during the rolling process. This means that when the textile is permanently deformed, the length of the rolled-up textile is inconsistent with the length of the rolled-up textile under normal tension and shape, affecting subsequent operations. Utility Model Content

[0006] In order to achieve at least one of the above advantages of the utility model, the utility model provides a textile winding device for winding up textiles, the textile winding device comprising:

[0007] load-bearing members;

[0008] A winding assembly, the winding assembly comprising a winding member and a winding drive member, wherein the winding member is rotatably mounted on the bearing member, the winding member is drivably connected to the winding drive member, the winding member is used to roll up the textile, and the textile is rotatably rolled up by the winding member in a manner that the textile surface is attached to the surface of the winding member;

[0009] The inspection and control component is installed around the winding member, and the inspection and control component can detect the surface tension of the textile rolled up by the winding member and control the speed at which the winding drive member drives the winding member.

[0010] According to one embodiment of the utility model, the supporting component includes a pair of supporting members and a plurality of movable members, the two ends of the winding member are rotatably mounted on the pair of supporting members respectively, and the part of the winding member used for winding is suspended, the movable member is rotatably mounted on the bottom of the supporting member, and the supporting member can be moved by the rotating movable member.

[0011] According to an embodiment of the utility model, the winding member is detachably mounted on the carrier, and the textile winding device is provided with a plurality of the winding members as spares, and the plurality of the winding members can be detachably mounted on the carrier in rotation.

[0012] According to one embodiment of the utility model, the detection and control component includes a controller and at least one tension detection member, wherein the tension detection member is communicatively connected to the controller, the tension detection member is installed on the side of the winding member that winds up the textile, and the tension detection member is located around the unwound textile, the tension detection member can detect the tension on the surface of the textile, and can send information to the controller when the surface tension of the textile reaches a predetermined force, and the winding drive member is controllably connected to the controller.

[0013] According to one embodiment of the utility model, the inspection and control component includes at least one speed measuring component, wherein the speed measuring component is communicatively connected to the controller, the speed measuring component is installed on the side of the winding member that rolls up the textile and is at a predetermined distance from the winding member, the speed measuring component can detect the winding speed of the winding member when the winding speed of the winding member reaches a predetermined speed.

[0014] According to one embodiment of the utility model, the inspection and control component includes at least one distance measuring device, wherein the distance measuring device is communicatively connected to the controller, the distance measuring device is installed on the supporting member, and the vertical distance between the distance measuring device and the rotating axis of the winding member is set to a predetermined value, and the distance measuring device can send information to the controller when the thickness of the textile rolled on the winding member reaches the predetermined value.

[0015] According to one embodiment of the utility model, the inspection and control component also includes at least one weighing piece, which is installed on the winding piece and is communicatively connected to the controller. The weighing piece can measure the weight of the winding piece and the wound textile, and send information to the controller when the weight reaches a predetermined weight.

[0016] According to one embodiment of the utility model, the textile winding device also includes a cutting component, the cutting component includes a cutting member, a cutting drive member and a cutting seat, wherein the cutting seat is arranged around the transmission path of the unwound textile, and the cutting seat forms a cutting channel for the unwound textile to pass through, the cutting drive member is controllably connected to the controller, and the cutting drive member and the controller are both installed on the cutting seat, the cutting line of the cutting member is arranged in the cutting channel of the cutting seat parallel to the rotating axis of the winding member, the cutting member is drivably connected to the cutting drive member, and the cutting member is a predetermined distance away from the winding member when winding.

[0017] According to an embodiment of the utility model, the wall of the truncation seat forming the truncation channel forms at least one sliding groove along the moving direction of the truncation member, and the side portion of the truncation member is slidably installed in the sliding groove.

[0018] According to one embodiment of the utility model, the cutting drive member includes a driving member, a slider and a screw, wherein the driving member is installed on the cutting seat, the screw is parallel to the moving direction of the cutting member, and the screw is drivably installed on the driving member, the slider is installed on the cutting member, and the slider is spirally passed through by the screw and is threadedly connected to the screw. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 The schematic structural diagram of the textile winding device of the utility model is shown.

[0020] Figure 2 for Figure 1 A partial enlarged view of point A in the middle.

[0021] Figure 3 A cross-sectional schematic diagram of the textile winding device of the utility model is shown. DETAILED DESCRIPTION

[0022] The following description is used to disclose the utility model so that those skilled in the art can implement the utility model. The preferred embodiments described below are only examples, and those skilled in the art can think of other obvious variations. The basic principles of the utility model defined in the following description can be applied to other embodiments, variations, improvements, equivalents, and other technical solutions that do not deviate from the spirit and scope of the utility model.

[0023] Those skilled in the art should understand that, in the disclosure of the present invention, the terms "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicating the orientation or position relationship are based on the orientation or position relationship shown in the drawings, which are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms should not be understood as limiting the present invention.

[0024] It is to be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the element may be multiple, and the term "one" should not be understood as a limitation on the quantity.

[0025] refer to Figures 1 to 3 A textile winding device according to a preferred embodiment of the present invention will be described in detail below. The textile winding device is used to wind up a textile 90 . The textile winding device includes a winding component 10 , a bearing member 20 and a control component 30 .

[0026] The winding assembly 10 includes a winding member 11 and a winding driving member 12, wherein the winding member 11 is rotatably mounted on the bearing member 20. The winding member 11 is rotatably connected to the winding driving member 12, and the winding member 11 is used to roll up the textile 90, and the textile 90 is rotatably rolled up by the winding member 11 in a manner that the surface of the textile 90 is attached to the surface of the winding member 11.

[0027] The detection and control component 30 is installed around the winding member 11 , and the detection and control component 30 can detect the surface tension of the textile 90 and control the speed at which the winding driving member 12 drives the winding member 11 .

[0028] As an example, the winding member 11 is implemented as a material barrel. The winding drive member 12 is implemented as a drive motor.

[0029] It is understandable that the winding member 11 is driven by the winding drive member 12 to rotate, so that there is no need to drive the roller to squeeze the textile 90 attached to the surface of the winding member 11. In this way, the textile 90 will not be squeezed and permanently deformed during the winding process. At the same time, the inspection and control component 30 will detect the tension of the textile 90. When the tension on the surface of the textile 90 increases, the inspection and control component 30 controls the winding drive member 12 to drive the winding member 11 and reduce the winding speed to avoid winding too fast and tightening and deforming the textile 90. In this way, the textile 90 will not be deformed, and the thickness of the textile 90 will not change. The length of a roll of the textile 90 with the same cross-sectional radius rolled by the winding member 11 will be stable, avoiding inaccurate values ​​that affect product quality and subsequent operations.

[0030] It is worth mentioning that the textile 90 is conveyed from other equipment toward the winding assembly 10. Due to the diversity of conveying methods, the source of the textile 90 shown in the figure is only used as a reference to indicate the conveying direction of the textile 90. Those skilled in the art should know that this is not a limitation of the present invention.

[0031] Preferably, the bearing member 20 includes a pair of bearing members 21 and a plurality of moving members 22. The two ends of the winding member 11 are rotatably mounted on the pair of bearing members 21, respectively, and the portion of the winding member 11 used for winding is suspended in the air, so that when the textile 90 is wound, the textile 90 does not come into contact with the ground or other parts, thereby preventing the textile 90 from being crushed and deformed. The moving member 22 is rotatably mounted on the bottom of the bearing member 21, and the bearing member 21 can be moved by the rotating moving member 22, so that after the operation of winding and cutting the textile 90 is completed, the bearing member 20 can drive the winding assembly 10 away from the unwound textile 90, so as to facilitate other textile winding devices to wind up the unwound textile 90.

[0032] As an example, the support member 21 is implemented as an A-frame. The moving member 22 is implemented as a wheel.

[0033] Preferably, the winding member 11 is detachably mounted on the carrier 21, and the textile winding device is provided with a plurality of the winding members 11 for standby, and the plurality of the winding members 11 can be rotated and disassembled from the carrier 21 so as to perform the winding operation in turn. When the unwound textile 90 is cut off, the user can remove the winding member 11 together with the rolled textile 90, and replace it with a new winding member 11 to perform the next part of the winding operation. It is understandable that if the winding member 11 cannot be removed from the carrier 21, the unwound textile 90 needs to wait until the rolled textile 90 on the winding member 11 is processed and then be rolled, or a new winding assembly 10 and the carrier 20 are used for winding.

[0034] Preferably, the inspection and control component 30 includes a controller 31 and at least one tension detection member 32, wherein the tension detection member 32 is communicatively connected to the controller 31. The tension detection member 32 is installed on the side of the winding member 11 that winds up the textile 90, and the tension detection member 32 is located around the unwound textile 90. The tension detection member 32 can detect the surface tension of the textile 90, and can send information to the controller 31 when the surface tension of the textile 90 reaches a predetermined force. The winding drive member 12 is controllably connected to the controller 31. After the speed measuring member 33 sends information, the controller 31 controls the winding drive member 12 to reduce the winding speed of the winding member 11, so that the winding speed of the winding member 11 matches the transmission speed of the textile 90, thereby preventing the textile 90 from being tightened and causing the surface tension of the textile 90 to become substantially deformed.

[0035] As an example, the tension detection member 32 is implemented as a travel switch. It is understandable that the tension detection member 32 has a triggering portion, and the triggering portion of the tension detection member 32 is located above the surface of the unwound textile 90. When the surface tension of the textile 90 reaches the predetermined force, the textile 90 is tightened and moves upward, so that the triggering portion of the tension detection member 32 is touched by the textile 90, and then the tension detection member 32 sends information to the controller 31, and the controller 31 controls to reduce the winding speed of the winding member 11, and finally avoids the deformation of the textile 90.

[0036] Preferably, the number of the tension detection members 32 is two, wherein the triggering portion of one of the tension detection members 32 is located above the surface of the textile 90, and the triggering portion of the other tension detection member 32 is located below the surface of the textile 90. When the tension of the textile 90 is too large or too small, information is sent to the controller 31, so that the controller 31 controls to reduce or increase the winding speed of the winding member 11, thereby preventing the textile 90 from being deformed when the tension of the textile 90 is too large, and preventing the textile 90 from bending and falling to the ground when the tension of the textile 90 is too small, thereby improving the winding efficiency.

[0037] Preferably, the inspection and control component 30 includes at least one speed measuring component 33, wherein the speed measuring component 33 is communicatively connected to the controller 31. The speed measuring component 33 is installed on the side of the winding member 11 that rolls up the textile 90 and is at a predetermined distance from the winding member 11. The speed measuring component 33 can detect the winding speed of the winding member 11 that rolls up the textile 90, and can send information to the controller 31 when the winding speed of the winding member 11 reaches a predetermined speed. After the speed measuring component 33 sends the information, the controller 31 controls the winding drive member 12 to reduce the winding speed of the winding member 11, thereby preventing the textile 90 from being stretched and deformed.

[0038] As an example, the speed measuring component 33 is implemented as a speed sensor.

[0039] It is worth mentioning that the number of the speed measuring components 33 can be implemented as two, one of which is configured to be communicatively connected to the device for conveying the textile 90, so as to send information to the device for conveying the textile 90 when the winding speed of the winding component 11 reaches the predetermined speed. In this way, the device for conveying the textile 90 can change the speed of conveying the textile 90 according to the information to match the winding speed of the winding component 11.

[0040] Preferably, the inspection and control component 30 includes at least one distance measuring member 34, and the distance measuring member 34 is communicatively connected to the controller 31. The distance measuring member 34 is mounted on the carrier 21, and the vertical distance between the distance measuring member 34 and the rotation axis of the winding member 11 is set to a predetermined value. The distance measuring member 34 can send information to the controller 31 when the thickness of the textile 90 rolled on the winding member 11 reaches the predetermined value. After the distance measuring member 34 sends the information, the controller 31 controls the winding drive member 12 to stop driving the winding member 11, and then stops winding, so that the operator can intercept the rolled textile 90.

[0041] By way of example, the distance measuring element 34 is implemented as a distance sensor.

[0042] It is worth mentioning that the textile 90 itself is soft and easy to bend and deform. Therefore, during the rolling process, the textile 90 may be partially offset and bent along the extension direction of the rotating axis of the rolling member 11, so that the textile 90 located on the rolling member 11 has a partial cross-sectional radius greater than or smaller than the normal cross-sectional radius.

[0043] Preferably, the number of the distance measuring members 34 is two. The two distance measuring members 34 are respectively arranged on a pair of the supporting members 21 to detect the cross-sectional radius of the textile 90 rolled up on the rolling member 11 from both sides of the rolling member 11 at the same time, so as to avoid the textile 90 bending and deforming when one of the distance measuring members 34 is used, thereby preventing errors in the measurement results.

[0044] It is also preferred that the distance between the two supporting members 21 is equal to the width of the textile 90, so that during the rolling process, the two ends of the textile 90 are restricted by the two opposite supporting members 21 and are neatly rolled up by the rolling member 11, thereby avoiding deviation and bending of the textile 90 when being rolled up, thereby ensuring the accuracy of the distance measured by the distance measuring member 34.

[0045] Preferably, the inspection and control component 30 further includes at least one weight measuring element 35, which is installed on the winding element 11 and is communicatively connected to the controller 31. The weight measuring element 35 can measure the weight of the winding element 11 and the wound textile 90, and send information to the controller 31 when the weight reaches a predetermined weight, so that the controller 31 controls the winding drive element 12 to suspend winding.

[0046] By way of example, the weighing element 35 is implemented as a weighing sensor.

[0047] Preferably, the number of the weighing pieces 35 is two, the two weighing pieces 35 are relatively installed on the two supporting members 21, and each of the weighing pieces 35 is connected to one end of the winding member 11, so that the two weighing pieces 35 can simultaneously measure the weight of the winding member 11 and the wound textile 90 from both ends of the winding member 11, thereby avoiding errors in the measurement results.

[0048] Preferably, the moving member 22 is implemented as an electric wheel. The moving member 22 is controllably connected to the controller 31, so that the moving member 22 can be controlled by the controller 31 to rotate, thereby driving the carrier 21 and the winding assembly 10 mounted on the carrier 21 to move. In this way, after the winding member 11 stops winding and the textile 90 is cut off, the carrier 21 can be automatically driven by the rotating moving member 22 to move away from the unwound textile 90.

[0049] Preferably, the textile winding device also includes a cutting assembly 40, which includes a cutting member 41, a cutting drive member 42 and a cutting seat 43, wherein the cutting seat 43 is arranged around the transmission path of the unwound textile 90, and the cutting seat 43 forms a cutting channel 4301 for the unwound textile 90 to pass through.

[0050] The cutting drive 42 is controllably connected to the controller 31, and the cutting drive 42 and the controller 31 are both mounted on the cutting seat 43. The cutting line of the cutting member 41 is arranged in the cutting channel 4301 of the cutting seat 43 in parallel with the rotation axis of the winding member 11, and the cutting member 41 is drivably connected to the cutting drive 42, and the cutting member 41 is a predetermined distance away from the winding member 11 during winding, so that under the drive of the cutting drive 42, the cutting member 41 presses the textile 90 against the wall forming the cutting channel 4301 and cuts off the textile 90, and at the same time, ensures that the length of the textile 90 wound up after cutting is the length required by the operator. When the controller 31 receives information and controls the winding drive 12 to stop driving the winding member 11, the controller 31 controls the cutting drive 42 to drive the cutting member 41 to cut off the unwound textile 90, so that the supporting member 20 can drive the winding assembly 10 away from the unwound textile 90.

[0051] As an example, the cutting member 41 is implemented as a cutter. The cutting drive 42 is implemented as a cylinder.

[0052] Preferably, the wall of the truncation seat 43 forming the truncation channel 4301 forms at least one sliding groove 4302 along the moving direction of the truncation member 41, and the side of the truncation member 41 can be slidably installed in the sliding groove 4302 to prevent the truncation line from being skewed due to the deflection of the truncation member 41 during movement.

[0053] Preferably, the cutting driving member 42 comprises a driving member 421, a slider 422 and a screw 423, wherein the driving member 421 is mounted on the cutting seat 43. The screw 423 is parallel to the moving direction of the cutting member 41, and the screw 423 is rotatably mounted on the driving member 421. The slider 422 is mounted on the cutting member 41, and the slider 422 is screwed through by the screw 423 and is threadedly connected with the screw 423. When the driving member 421 drives the screw 423 to rotate, the slider 422 is mounted together with the cutting member 41 in the sliding groove 4302 and cannot rotate, so the slider 422 slides along the extending direction of the screw 423, and then the slider 422 drives the cutting member 41 to move and cut the textile 90.

[0054] As an example, the driving member 421 is implemented as a driving motor.

[0055] Preferably, the textile winding device further comprises two supporting members 50, the axes of the two supporting members 50 are mounted on the cut-off seat 43 in parallel with the rotation axis of the winding member 11, and the two supporting members 50 are respectively located outside the two inlets and outlets of the cut-off channel 4301. The upper end of the supporting member 50 is not lower than the bottom wall of the cut-off channel 4301 formed by the cut-off seat 43, and the supporting member 50 is used to support the textile 90 and keep the textile 90 in a straight state in the cut-off channel 4301, so as to avoid the cut-off line being skewed due to the bending of the textile 90 when the cut-off member 41 cuts the textile 90.

[0056] Preferably, the supporting member 50 is implemented as a roller, and the supporting member 50 is rotatably mounted on the truncation seat 43 with its own axis as the axis, so that when the supporting member 50 supports the textile 90, the supporting member 50 reduces the friction between itself and the textile 90 by rotating, thereby reducing the wear of the textile 90 during the transmission process.

[0057] It should be understood by those skilled in the art that the embodiments of the present invention described above and shown in the accompanying drawings are only examples and do not limit the present invention. The advantages of the present invention have been fully and effectively realized. The functions and structural principles of the present invention have been demonstrated and explained in the embodiments, and the embodiments of the present invention may be deformed or modified in any way without departing from the principles.

Claims

1. A textile winding device, used for winding textiles, characterized in that: The textile winding device comprises: load-bearing members; A winding assembly, the winding assembly comprising a winding member and a winding drive member, wherein the winding member is rotatably mounted on the bearing member, the winding member is drivably connected to the winding drive member, the winding member is used to roll up the textile, and the textile is rotatably rolled up by the winding member in a manner that the textile surface is attached to the surface of the winding member; The inspection and control component is installed around the winding member, and the inspection and control component can detect the surface tension of the textile rolled up by the winding member and control the speed at which the winding drive member drives the winding member.

2. The textile winding device according to claim 1, characterized in that: The bearing component includes a pair of bearing members and a plurality of movable members. The two ends of the winding member are rotatably mounted on the pair of bearing members respectively, and the portion of the winding member used for winding is suspended in the air. The movable member is rotatably mounted on the bottom of the bearing member, and the bearing member can be moved by the rotating movable member.

3. The textile winding device according to claim 2, characterized in that: The winding member is detachably mounted on the carrier, and the textile winding device is provided with a plurality of the winding members for standby, and the plurality of the winding members can be detachably mounted on the carrier in rotation.

4. The textile winding device according to claim 2 or 3, characterized in that: The detection and control component includes a controller and at least one tension detection component, wherein the tension detection component is communicatively connected to the controller, the tension detection component is installed on the side of the winding component that winds up the textile, and the tension detection component is located around the unwound textile, the tension detection component can detect the tension on the surface of the textile, and can send information to the controller when the surface tension of the textile reaches a predetermined force, and the winding drive component is controllably connected to the controller.

5. The textile winding device according to claim 4, characterized in that: The inspection and control component includes at least one speed measuring component, wherein the speed measuring component is communicatively connected to the controller, and the speed measuring component is installed on a side of the winding member that rolls up the textile and is a predetermined distance away from the winding member. The speed measuring component can detect the winding speed of the winding member when the winding speed of the winding member reaches a predetermined speed.

6. The textile winding device according to claim 4, characterized in that: The inspection and control component includes at least one distance measuring component, wherein the distance measuring component is communicatively connected to the controller, the distance measuring component is installed on the supporting component, and the vertical distance between the distance measuring component and the rotating axis of the winding component is set to a predetermined value, and the distance measuring component can send information to the controller when the thickness of the textile rolled on the winding component reaches the predetermined value.

7. The textile winding device according to claim 4, characterized in that: The inspection and control component also includes at least one weighing piece, which is installed on the winding piece and is communicatively connected to the controller. The weighing piece can measure the weight of the winding piece and the wound textile, and send information to the controller when the weight reaches a predetermined weight.

8. The textile winding device according to claim 4, characterized in that: The textile winding device also includes a cutting component, which includes a cutting member, a cutting drive and a cutting seat, wherein the cutting seat is arranged around the transmission path of the unwound textile, and the cutting seat forms a cutting channel for the unwound textile to pass through, the cutting drive is controllably connected to the controller, and the cutting drive and the controller are both installed on the cutting seat, the cutting line of the cutting member is arranged in the cutting channel of the cutting seat parallel to the rotating axis of the winding member, the cutting member is drivably connected to the cutting drive, and the cutting member is a predetermined distance away from the winding member when winding.

9. The textile winding device according to claim 8, characterized in that: The wall of the truncation seat forming the truncation channel forms at least one sliding groove along the moving direction of the truncation member, and the side portion of the truncation member is slidably installed in the sliding groove.

10. The textile winding device according to claim 9, characterized in that: The truncation drive member includes a drive member, a slider and a screw, wherein the drive member is installed on the truncation seat, the screw is parallel to the moving direction of the truncation member, and the screw is drivably installed on the drive member, the slider is installed on the truncation member, and the slider is spirally passed by the screw and is threadedly connected to the screw.