Automatic winding machine for high-elasticity narrow-edge wide cloth strip
By designing an automated winding machine for high-elasticity, narrow-edge, wide fabrics, and employing material guiding, static electricity removal, tension adjustment, and guiding mechanisms, the problems of fabric folding, entanglement, and deformation during the winding process are solved, achieving accurate measurement of fabric length and uniform winding.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-03-10
AI Technical Summary
High-elasticity, narrow-edge, wide fabrics are prone to folding, tangling, and deformation due to static electricity during the winding process, affecting measurement accuracy and the consistency of the length of each roll.
An automated winding machine was designed, comprising a material guiding mechanism, an anti-static mechanism, a tension adjustment mechanism, and a guiding mechanism. The machine achieves uniform winding by using a reverse rotating roller for material guiding, anti-static treatment, tension adjustment, and guiding groove, combined with the axial movement of the winding roller. It is equipped with a weighing mechanism for length measurement.
It effectively avoids fabric flipping and tangling, reduces deformation, ensures the accuracy and consistency of winding length, and achieves accurate measurement of fabric length.
Smart Images

Figure CN223983243U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of winding machine technology, specifically an automated winding machine for high-elasticity narrow-edge wide strips of fabric. Background Technology
[0002] A winding machine is a mechanical device whose main function is to wind various materials, such as threads, ropes, strips, and fabrics, into rolls using specific techniques. This device is widely used in industrial production to simplify the storage, transportation, and use of materials. However, due to the different properties of fabrics, such as highly elastic fabrics with narrow edges, folding and excessive stretching can easily occur during the winding process, leading to deformation. This not only affects the fabric quality but also results in inconsistent lengths for each roll due to the inability to accurately measure the fabric. Utility Model Content
[0003] In view of this, the purpose of this utility model is to provide an automated winding machine for high-elasticity narrow-edge wide fabric strips, which can solve the above-mentioned technical problems.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0005] An automated winding machine for high-elasticity narrow-edge wide strips of fabric includes a frame and a material guiding mechanism, an anti-static mechanism, a tension adjusting mechanism, a guiding mechanism, and a winding mechanism arranged sequentially from one end of the frame to the other.
[0006] The material guiding mechanism includes a rotating roller, which is arranged parallel to the winding mechanism and rotates in opposite directions.
[0007] The static elimination mechanism includes a transmission roller arranged parallel to the rotating roller and a static elimination device located on one side of the transmission roller; when the high-elasticity narrow-side wide fabric strip passes through the transmission roller, the static elimination device performs static elimination treatment on the high-elasticity narrow-side wide fabric strip.
[0008] The tension adjustment mechanism includes an inclined tension adjustment rod, the upper end of which is hinged to the frame and is in a freely rotatable state, and the lower end of which is used to abut against a high-elasticity narrow-edge wide strip of fabric.
[0009] The guiding mechanism includes a mounting rod mounted on the frame and a guide groove fixed to the mounting rod. The width of the guide groove is adapted to the width of the high-elasticity narrow-side wide fabric strip.
[0010] The winding mechanism includes a winding roller mounted on a frame. The winding roller is rotatable and can reciprocate along the axial direction. During the reciprocating movement along the axial direction, the winding roller winds a high-elasticity narrow-side wide strip of fabric onto the winding roller.
[0011] Preferably, the rotating roller has a square cross-sectional shape.
[0012] Preferably, the horizontal height of the rotating roller is higher than the horizontal height of the static elimination mechanism.
[0013] Preferably, the distance between the discharge electrode and the transmission roller of the static electricity removal device is adapted to the thickness of the high-elasticity narrow-side wide cloth strip.
[0014] Preferably, an encoder is provided at the hinge point between the upper end of the tension adjusting rod and the frame.
[0015] Preferably, a machine platform is provided between the tension adjustment mechanism and the guide mechanism, and the machine platform is provided with a limiting mechanism for restricting the position of the high-elasticity narrow-edge wide fabric strip.
[0016] Preferably, the limiting mechanism consists of two vertically arranged limiting rods, and the distance between the two limiting rods is adapted to the width of the high-elasticity narrow-side wide fabric strip.
[0017] Preferably, the distance between the two limiting bars is adjustable.
[0018] Preferably, the guide groove has a guide portion at one end near the tension adjustment mechanism, and the guide portion is flared.
[0019] Preferably, the mounting rod is arranged parallel to the winding roller, and the mounting rod is movable axially.
[0020] The beneficial effects of this utility model are:
[0021] This utility model provides an automated winding machine for high-elasticity narrow-edge wide fabric strips, mainly for winding high-elasticity narrow-edge wide fabric strips. Its structure includes a frame and a material guiding mechanism, an anti-static mechanism, a tension adjusting mechanism, a guiding mechanism, and a winding mechanism arranged sequentially from one end of the frame to the other. The material guiding mechanism includes a rotating roller, which is parallel to the winding mechanism and rotates in the opposite direction. The anti-static mechanism includes a transmission roller parallel to the rotating roller and an anti-static device located on one side of the transmission roller. When the high-elasticity narrow-edge wide fabric strip passes through the transmission roller, the anti-static device performs anti-static treatment on the high-elasticity narrow-edge wide fabric strip. Since the narrow-edge wide fabric strip to be wound is prone to tumbling and tangling, the material guiding mechanism can effectively organize the narrow-edge wide fabric strip to be wound, avoiding tumbling and tangling. At the same time, the narrow-edge wide fabric strip is greatly affected by static electricity and is prone to folding; the anti-static device can effectively improve this phenomenon. The tension adjustment mechanism includes an inclined tension adjustment rod. The upper end of the tension adjustment rod is hinged to the frame and is in a freely rotatable state. The lower end of the tension adjustment rod is used to abut against the high-elasticity narrow-side wide fabric strip, which can effectively reduce the deformation of the high-elasticity fabric strip and facilitate the measurement accuracy of the winding length. The guiding mechanism includes a mounting rod mounted on the frame and a guide groove fixed on the mounting rod. The width of the guide groove is adapted to the width of the high-elasticity narrow-side wide fabric strip. The winding mechanism includes a winding roller mounted on the frame. The winding roller is rotatable and can reciprocate axially. During the axial reciprocating movement, the high-elasticity narrow-side wide fabric strip is wound onto the winding roller, which can achieve uniform winding of the high-elasticity narrow-side wide fabric strip on the winding roller and make the length of each roll of fabric as close to a certain range as possible to avoid large errors. Attached Figure Description
[0022] Figure 1 This is a three-dimensional structural diagram of an automated winding machine for high-elasticity narrow-edge wide strips of fabric, based on the present invention.
[0023] Figure 2 This is a three-dimensional structural diagram of an automated winding machine for high-elasticity narrow-edge wide strips of fabric, based on the present invention, from another angle.
[0024] Figure 3 yes Figure 2 A magnified view of a section at point A in the middle;
[0025] Figure 4 yes Figure 2 Top view;
[0026] Figure 5 yes Figure 2 The main view;
[0027] Explanation of icon numbers:
[0028] 1. Material guiding mechanism; 11. Rotating roller; 2. Static elimination mechanism; 21. Transmission roller; 22. Static elimination equipment; 3. Tension adjustment mechanism; 31. Tension adjustment rod; 32. Encoder; 4. Guiding mechanism; 41. Mounting rod; 42. Guide groove; 5. Winding mechanism; 51. Winding roller; 6. Machine base; 61. Limiting mechanism. Detailed Implementation
[0029] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0030] like Figures 1-5 As shown, the present invention provides an automated winding machine for high-elasticity narrow-edge wide strips of fabric, including a frame and a material guiding mechanism 1, an anti-static mechanism 2, a tension adjusting mechanism 3, a guiding mechanism 4, and a winding mechanism 5 arranged sequentially along one end of the frame to the other.
[0031] The material guiding mechanism 1 includes a rotating roller 11, which is arranged parallel to the winding mechanism 5 and rotates in opposite directions. Preferably, the rotating roller 11 has a square cross-sectional shape. The larger contact area can increase the friction coefficient between the fabric strip and the roller surface, prevent slippage during high-speed transmission, and also has the function of fabric strip correction and preventing overturning.
[0032] The static eliminator 2 includes a transmission roller 21 parallel to the rotating roller 11 and a static eliminator 22 located on one side of the transmission roller 21. When the high-elasticity narrow-side wide fabric strip passes through the transmission roller, the static eliminator performs static elimination treatment on the strip. The horizontal height of the rotating roller is higher than that of the static eliminator, creating a height difference that facilitates control of the fabric strip tension. Furthermore, the distance between the discharge electrode of the static eliminator and the transmission roller is adapted to the thickness of the high-elasticity narrow-side wide fabric strip, achieving static elimination without affecting the fabric strip's transmission.
[0033] Since narrow-sided wide strips of fabric to be wound are prone to flipping and tangling, a material guiding mechanism can be set up to effectively organize the narrow-sided wide strips of fabric to be wound, avoiding flipping and tangling. At the same time, narrow-sided wide strips of fabric are greatly affected by static electricity and are prone to folding. Setting up an anti-static device can effectively improve this phenomenon.
[0034] The tension adjustment mechanism 3 includes an inclined tension adjustment rod 31. The upper end of the tension adjustment rod 31 is hinged to the frame and is in a freely rotatable state. The lower end of the tension adjustment rod 31 is used to abut against a high-elasticity narrow-sided wide fabric strip. An encoder 32 is provided at the hinge point between the upper end of the tension adjustment rod 31 and the frame. The encoder can determine the current tension value of the fabric strip, facilitating the control of the fabric tension. The tension adjustment mechanism effectively reduces the deformation of the high-elasticity fabric strip, ensuring the accuracy of the winding length measurement.
[0035] A machine base 6 is positioned between the tension adjustment mechanism 3 and the guide mechanism 4. The machine base 6 is equipped with a limiting mechanism 61 for restricting the position of the high-elasticity narrow-edge wide fabric strip. The limiting mechanism 61 consists of two vertically arranged limiting rods, and the distance between the two limiting rods is adapted to the width of the high-elasticity narrow-edge wide fabric strip. This structure allows for the limiting of the passing fabric strip, ensuring the accuracy of subsequent winding. Preferably, the distance between the two limiting rods is adjustable to accommodate fabric strips of different widths.
[0036] The guiding mechanism 4 includes a mounting rod 41 mounted on the frame and a guide groove 42 fixed to the mounting rod. The guide groove 42 can also be detachably connected, allowing for flexible adjustment of its position on the mounting rod. The width of the guide groove 42 is adapted to the width of the high-elasticity narrow-side wide fabric strip. The end of the guide groove 42 near the tension adjustment mechanism has a guide portion, which is flared in shape. The mounting rod 41 is parallel to the winding roller 51 and is axially movable.
[0037] The winding mechanism 5 includes a winding roller 51 mounted on a frame. The winding roller 51 is rotatable and can reciprocate axially. During the axial reciprocating movement, the winding roller winds a high-elasticity narrow-side wide fabric strip onto itself, achieving uniform winding of the high-elasticity narrow-side wide fabric strip and ensuring that the length of each roll of fabric is controlled within a certain range to avoid large errors. The winding roller 51 has a cylindrical middle section and frustum-shaped ends, with its diameter gradually decreasing from the end face to the middle.
[0038] The frame is also equipped with a weighing mechanism (not shown in the figure) for weighing the winding rollers. With the fabric deformation remaining constant, the weight of the wound fabric is obtained through weighing, and the fabric length can be deduced from the weight, thus achieving fabric length measurement. This deduction method utilizes extensive experimental data to establish the correspondence between fabric weight and fabric length, which is then used for the aforementioned fabric length measurement.
[0039] This utility model has been described with reference to the above-described embodiments and accompanying drawings. However, the above embodiments are merely examples for implementing this utility model. It must be noted that the disclosed embodiments do not limit the scope of this utility model. On the contrary, modifications and equivalent provisions included in the spirit and scope of the claims are all included within the scope of this utility model.
Claims
1. An automated winder for high-elasticity narrow selvage wide fabric strips, characterized by: The machine frame, the material guiding mechanism, the static electricity removing mechanism, the tension adjusting mechanism, the guiding mechanism and the winding mechanism are arranged in sequence along the direction from one end of the machine frame to the other end. The material guiding mechanism comprises a rotating roller, which is arranged in parallel with the winding mechanism and has a reverse rotating direction. The static electricity removing mechanism comprises a transmission roller arranged in parallel with the rotating roller and a static electricity removing device arranged on one side of the transmission roller. The tension adjusting mechanism comprises an inclined tension adjusting rod, the upper end of which is hingedly connected to the machine frame and can rotate freely, and the lower end of which is used for abutting against the high-elasticity narrow-wide cloth. The guiding mechanism comprises a mounting rod mounted on the machine frame and a guiding groove fixed on the mounting rod, and the groove width of the guiding groove is matched with the width of the high-elasticity narrow-wide cloth. The winding mechanism comprises a winding roller mounted on the machine frame, which is rotatably arranged and can move along the axial direction.
2. An automatic winding machine for high-elasticity narrow-edge wide fabric strips according to claim 1, characterized in that: The cross section of the rotating roller is square.
3. An automatic winder for high-elasticity narrow-edge wide fabric strips according to claim 2, characterized in that: The horizontal height of the rotating roller is higher than that of the static electricity removing mechanism.
4. The automatic winder for high-elasticity narrow-edge wide fabric strips according to claim 1, characterized in that: The distance between the discharge electrode of the static electricity removing device and the transmission roller is matched with the thickness of the high-elasticity narrow-wide cloth.
5. The automatic winder for high-elasticity narrow-edge wide fabric strips according to claim 1, characterized in that: An encoder is arranged at the hinge between the upper end of the tension adjusting rod and the machine frame.
6. An automatic winder for high stretch narrow width fabric strips as claimed in claim 1, wherein: A machine table is arranged between the tension adjusting mechanism and the guiding mechanism, and a limiting mechanism for limiting the position of the high-elasticity narrow-wide cloth is arranged on the machine table.
7. An automatic winder for high-elasticity narrow-edge wide fabric strips according to claim 6, characterized in that: The limiting mechanism comprises two vertically arranged limiting rods, and the distance between the two limiting rods is matched with the width of the high-elasticity narrow-wide cloth.
8. An automatic winder for high-elasticity narrow-edge wide fabric strips according to claim 7, characterized in that: The distance between the two limiting rods is adjustable.
9. An automatic winder for high-elasticity narrow-edge wide fabric strips according to claim 1, characterized in that: The end of the guiding groove close to the tension adjusting mechanism has a guiding part in the shape of a bell mouth.
10. The automatic winder for high-elasticity narrow-edge wide fabric strips according to claim 1, characterized in that: The mounting rod is arranged in parallel with the winding roller and can move along the axial direction.