Fuzzing mechanism
Through the combination of dual guide rods and electronic control systems, the precise control and flexible conversion of yarn on the lint roller are achieved, which solves the problems of bulky and inflexible operation of existing lint equipment, meets the production needs of high-end customized textiles, and improves production efficiency and product quality.
Patent Information
- Application Number
- CN202421723548.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-21
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-07-21
AI Technical Summary
The existing lint equipment is bulky and inflexible, making it difficult to achieve personalized and complex pattern processing of yarns, and traditional lint technology is difficult to meet the needs of high-end customization.
It adopts a dual guide rod design and a rotatable third guide rod, combined with an electronic control system, realizes accurate control and flexible conversion of yarn on the lint roller, supports flexible conversion of lint and non-lint sections, and integrates intelligent sensing technology for dynamic adjustment.
It improves the adaptability and processing flexibility of the equipment, meets the market's demand for personalized textiles, and improves production efficiency and product quality.
Smart Images

Figure CN223134798U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of textile raising, and particularly relates to a raising mechanism. Background Art
[0002] As an important link in textile processing, raising plays a crucial role in improving the hand feeling, appearance and functionality of fabrics. The raising process mostly relies on mechanical structures to directly act on the fabric surface to achieve the effect of raising fibers to form a plush surface. However, with the rapid development of the textile industry and the increasingly diverse market demands, the limitations of existing raising technologies are gradually emerging, mainly reflected in the following aspects:
[0003] 1. In the past, raising equipment was often bulky due to its complex design, which not only increased the manufacturing cost and maintenance difficulty of the equipment, but also was not flexible enough to adjust in actual operation and was difficult to quickly adapt to different production requirements. The complex structure may also lead to a high failure rate, affecting production efficiency and product quality.
[0004] 2. Most traditional raising technologies can only achieve a uniform raising effect, that is, a comprehensive raising treatment is carried out on the entire yarn, but it is difficult to meet the modern market's pursuit of personalized, complex patterns and special textures of textiles. Especially for the high-end customization requirements that need to achieve an alternating distribution of raised and non-raised areas on the same fabric surface, the existing technical solutions are stretched. Summary of the Utility Model
[0005] In order to solve the above technical problems, the utility model is solved by the following technical solutions.
[0006] A raising mechanism includes a frame, on which a yarn outlet cylinder, a yarn guiding assembly, a raising roller and a yarn winding cylinder are assembled. The yarn guiding assembly includes a yarn guiding seat, on which a first guide rod and a second guide rod are assembled. The raising roller is located on one side of the line connecting the first guide rod and the second guide rod. The yarn is sent out from the yarn outlet cylinder and then passes through the first guide rod and the second guide rod in sequence, and finally is wound by the yarn winding cylinder. A third connecting plate is assembled on the first guide rod, and a third guide rod is assembled on the third connecting plate. The third guide rod can rotate around the first guide rod. By rotating the third guide rod, the yarn can be pressed on the raising roller for raising processing or the yarn can be separated from the raising roller.
[0007] The utility model adopts a double-guide rod design (the first guide rod and the second guide rod), which effectively guides the yarn to move forward smoothly, reduces the winding and damage of the yarn during the transmission process, and improves the smoothness of yarn processing. Particularly innovative is the introduction of a rotatable third guide rod design. The third guide rod can rotate around the first guide rod, achieving precise control of applying pressure to the raising roller on the yarn. When raising processing is not required, the yarn can be easily separated from the raising roller, realizing complex customized raising effects such as the interval distribution of raising sections and non-raising sections, increasing the diversity and efficiency of operations.
[0008] Preferably, a first connecting plate is arranged on the first guide rod, and the first connecting plate is fixedly assembled with the yarn guide base through fasteners. This design not only strengthens the overall structure of the yarn guiding mechanism, but more importantly, it facilitates the operator to flexibly replace guide rods of different specifications or functions according to actual production requirements, and even make fine adjustments to the position and acting force of the guide rod. This flexible design significantly improves the adaptability of the equipment and the flexibility of processing.
[0009] Preferably, a second connecting plate is arranged on the second guide rod, and the second connecting plate is fixedly assembled with the yarn guide base through fasteners. This design facilitates the operator to flexibly replace guide rods of different specifications or functions according to actual production requirements, and even make fine adjustments to the position and acting force of the guide rod. This flexible design significantly improves the adaptability of the equipment and the flexibility of processing.
[0010] Preferably, an assembly groove for assembling fasteners is arranged on the yarn guide base, and the assembly groove is a strip-shaped groove. This design enables technicians to conveniently adjust the extending lengths of the first guide rod and the second guide rod and their angles relative to the yarn guide base, expanding the processing range and adaptability of the equipment.
[0011] Preferably, yarn guide grooves are arranged on the first guide rod, the second guide rod and the third guide rod, and the yarn is wound in the yarn guide grooves. This design can ensure that the yarn can stably stay in these yarn guide grooves during the winding process, improve the smoothness and consistency of yarn guiding, reduce the friction and entanglement of the yarn during movement, thereby effectively avoiding the problems of yarn breakage or wear, and improving the quality and appearance integrity of the finished product.
[0012] Compared with the prior art, the utility model has the following beneficial effects: It can realize the flexible conversion between raising and non-raising sections, support complex and customized raising modes, greatly enrich the diversified production of products and improve the operation efficiency, meeting the market demand for personalized textiles. Description of the Drawings
[0013] Figure 1 It is a three-dimensional schematic diagram of the raising mechanism.
[0014] Figure 2It is a schematic structural diagram of the raising mechanism when the yarn and the raising roller are disengaged from contact.
[0015] Figure 3 It is a schematic structural diagram of the raising mechanism when the yarn and the raising roller are in contact.
[0016] The following is the description of the marks in the attached drawings of the specification:
[0017] 1. Frame; 2. Yarn outlet cylinder; 3. Raising roller; 4. Yarn take-up cylinder; 5. Yarn guide seat; 6. First guide rod; 7. First connecting plate; 8. Second guide rod; 9. Second connecting plate; 10. Third guide rod; 11. Third connecting plate; 12. Assembly groove; 13. Fastener; 14. Yarn guide groove. Specific embodiments
[0018] The present invention will be further described in detail below in conjunction with the attached drawings and specific embodiments.
[0019] In the following embodiments, the same or similar reference numerals throughout denote the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the attached drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation of the present invention.
[0020] In the description of the present invention, it should be understood that the terms: center, longitudinal, transverse, length, width, thickness, upper, lower, front, rear, left, right, vertical, horizontal, top, bottom, inner, outer, clockwise, counterclockwise, etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the attached drawings, and are only for the convenience of describing the present invention and simplifying the description, and thus should not be construed as a limitation of the present invention. In addition, the terms: first, second, etc. are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. In the description of the present invention, unless otherwise clearly specified and limited, the terms: installation, connection, connection, etc. should be understood in a broad sense, and those of ordinary skill in the art can understand the specific meanings of the above terms in the present utility according to specific circumstances.
[0021] Refer to Figures 1 to 3, a raising mechanism, comprising a frame 1, on which a yarn outlet cylinder 2, a yarn guiding assembly, a raising roller 3 and a yarn winding cylinder 4 are assembled. The yarn guiding assembly includes a yarn guiding seat 5, on which a first guide rod 6 and a second guide rod 8 are assembled. The raising roller 3 is located on one side of the line connecting the first guide rod 6 and the second guide rod 8. The yarn is sent out from the yarn outlet cylinder 2 and then passes through the first guide rod 6 and the second guide rod 8 in sequence, and finally is wound by the yarn winding cylinder 4. A third connecting plate 11 is assembled on the first guide rod 6, and a third guide rod 10 is assembled on the third connecting plate 11. The third guide rod 10 can rotate around the first guide rod 6. By rotating the third guide rod 10, the yarn can be pressed on the raising roller 3 for raising processing or the yarn can be separated from the raising roller 3.
[0022] The utility model adopts a double-guide rod design (the first guide rod 6 and the second guide rod 8), which effectively guides the yarn to move forward smoothly, reduces the winding and damage of the yarn during the transmission process, and improves the smoothness of yarn processing. Particularly innovative is the introduction of the design of the rotatable third guide rod 10. The third guide rod 10 can rotate around the first guide rod 6, realizing precise control of applying pressure to the raising roller 3 on the yarn. When raising processing is not required, the yarn can be easily separated from the raising roller 3, realizing complex customized raising effects such as the interval distribution of raising sections and non-raising sections, increasing the diversity and efficiency of operations.
[0023] Specifically, a first connecting plate 7 is arranged on the first guide rod 6, and the first connecting plate 7 is fixedly assembled with the yarn guiding seat 5 through a fastener 13. A second connecting plate 9 is arranged on the second guide rod 8, and the second connecting plate 9 is fixedly assembled with the yarn guiding seat 5 through a fastener 13. This design not only strengthens the overall structure of the yarn guiding mechanism, but more importantly, it is convenient for operators to flexibly replace guide rods of different specifications or functions according to actual production needs, and even make fine adjustments to the position and acting force of the guide rods. This flexible design significantly improves the adaptability of the equipment and the flexibility of processing. An assembly groove 12 for assembling the fastener 13 is arranged on the yarn guiding seat 5, and the assembly groove 12 is a strip-shaped groove. This design enables technicians to conveniently adjust the extending lengths of the first guide rod 6 and the second guide rod 8 and their angles relative to the yarn guiding seat 5, expanding the processing range and adaptability of the equipment.
[0024] In addition, yarn guiding grooves 14 are arranged on the first guide rod 6, the second guide rod 8 and the third guide rod 10, and the yarn is located in the yarn guiding grooves 14 when being wound. This design can ensure that the yarn can stably stay in these yarn guiding grooves 14 during the winding process, improving the smoothness and consistency of yarn guiding, reducing the friction and entanglement of the yarn during movement, thus effectively avoiding the problems of yarn breakage or wear, and improving the quality and appearance integrity of the finished product.
[0025] Furthermore, the raising mechanism of the present utility model realizes refined control of the yarn processing process through an optimized structural layout. The rotation of the third guide rod 10 is driven by an electric control system, ensuring that when raising treatment is required, the yarn can be evenly and stably pressed against the surface of the raising roller 3, obtaining a consistent and high-quality raising effect. Moreover, the interval between the raising section and the non-raising section can be controlled through the electric control system, enabling the fabric made of this kind of yarn to achieve a specific texture layout, meeting the high requirements of the high-end textile market for complex pattern design and customized production.
[0026] To further improve work efficiency and yarn processing quality, the present utility model can also integrate intelligent sensing technology. By connecting sensors to the first guide rod 6, the second guide rod 8, and the third guide rod 10, parameters such as yarn tension, speed, and the pressure of the raising roller 3 can be monitored in real time. These data are fed back to the control system to dynamically adjust the position and pressure of the third guide rod 10, thereby achieving the optimal raising effect while maintaining the physical properties of the yarn. This intelligent control strategy can not only reduce the frequency of human intervention and the operation error rate but also ensure a high degree of stability and repeatability in the production process.
[0027] The protection scope of the present utility model includes but is not limited to the above embodiments. The protection scope of the present utility model is subject to the claims, and any substitutions, deformations, and improvements that are easily conceivable by those skilled in the art to this technology fall within the protection scope of the present utility model.
Claims
1. A raising mechanism, comprising a frame (1), wherein a yarn outlet cylinder (2), a yarn guiding assembly, a raising roller (3) and a yarn winding cylinder (4) are assembled on the frame (1), and is characterized in that, The yarn guiding assembly includes a yarn guiding base (5), on which a first guide rod (6) and a second guide rod (8) are assembled. The raising roller (3) is located on one side of the line connecting the first guide rod (6) and the second guide rod (8). After the yarn is sent out from the yarn outlet cylinder (2), it passes through the first guide rod (6) and the second guide rod (8) in sequence, and is finally wound by the yarn take-up cylinder (4). A third connecting plate (11) is assembled on the first guide rod (6), and a third guide rod (10) is assembled on the third connecting plate (11). The third guide rod (10) can rotate around the first guide rod (6). By rotating the third guide rod (10), the yarn can be pressed onto the raising roller (3) for raising processing or the yarn can be separated from the raising roller (3).
2. The raising mechanism according to claim 1, characterized in that, A first connecting plate (7) is arranged on the first guide rod (6), and the first connecting plate (7) is fixedly assembled with the yarn guiding base (5) through a fastener (13).
3. The raising mechanism according to claim 1, characterized in that, A second connecting plate (9) is arranged on the second guide rod (8), and the second connecting plate (9) is fixedly assembled with the yarn guiding base (5) through a fastener (13).
4. A raising mechanism according to claim 2 or 3, characterized in that, An assembly groove (12) for assembling the fastener (13) is arranged on the yarn guiding base (5), and the assembly groove (12) is a strip-shaped groove.
5. The raising mechanism according to claim 1, characterized in that, Yarn guiding grooves (14) are arranged on the first guide rod (6), the second guide rod (8) and the third guide rod (10), and the yarn is located in the yarn guiding grooves (14) when being wound.