Cotton and viscose staple fiber blending device
By introducing adjustable positioning components and a bonding disc structure into the cotton and viscose staple fiber blending device, the problem of spinning friction caused by the inability to adjust the gap between the drive wheels was solved, thereby improving the blending efficiency and quality.
Patent Information
- Application Number
- CN202520600682.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-31
AI Technical Summary
In existing cotton and viscose staple fiber blending devices, the gap between the drive wheels cannot be adjusted, causing the spinning yarn to move left and right during high-speed operation, resulting in friction between the spinning yarn and the drive wheels and reducing the blending quality.
A cotton and viscose staple fiber blending device was designed, which adopts an adjustable positioning component and a plate structure. Through the cooperation of a threaded rod and a movable cylinder, the cotton and viscose fibers are concentrated and drawn together, reducing friction and improving transmission smoothness and storage quality.
It effectively reduces the friction between cotton viscose and the bonding disc, improves blending efficiency and blending quality, and enhances the applicability of the equipment.
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Figure CN223921672U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a yarn blending device technical field, specifically is a cotton and viscose staple blending device. BACKGROUND
[0002] Cotton yarn blending refers to the chemical fiber and other cotton, silk, hemp and other natural fiber blended textile products. Cotton blending not only highlights the style of polyester, but also has the advantages of cotton fabric. In dry and wet conditions, it has good elasticity and wear resistance, size stability and small shrinkage. Cotton and viscose staple blending is one of them, and the yarn after cotton and viscose staple blending is called cotton viscose staple.
[0003] The prior art with publication number CN221094388U provides a spinning frame for a blending device, relating to spinning equipment technical field, including bottom plate and guide wire assembly, the bottom plate top left side fixed installation has guide wire assembly, the guide wire assembly includes support, through slot, step groove, guide wire block, receiving protrusion, through hole and rubber pad, the support root is welded with bottom plate fixed, and the support end plane is through opening through slot, the through slot both sides are provided with step groove. The application provides a spinning frame for a blending device, which is designed as a multi-section assembled winding drum structure by setting up an assembled component. By increasing or decreasing the number of drum sections, the spinning frame can adapt to the winding and collection of multi-ring spinning. Furthermore, the quick disassembly and assembly of the drum sections are realized by the clamping of the lock block and the L-shaped lock groove between adjacent drum sections, the initial end drum section and the motor output shaft, and the end drum section and the end sleeve, which has higher applicability.
[0004] In the above patent, the transmission wheel is set to be assembled, so that the transmission wheel can adapt to the winding and collection of multi-ring spinning. However, this assembled transmission wheel method cannot adjust the gap between each section of the transmission wheel, which may cause the spinning on the transmission wheel to move left and right due to high-speed movement, and the left and right moving spinning may cause large friction with the transmission wheel, resulting in a certain amount of scratching of the spinning and greatly reducing the blending quality of the blending device. Utility model content
[0005] The utility model aims at overcoming the shortcomings of prior art, provides a cotton and viscose staple blending device, solves the above technical problems.
[0006] In order to achieve the above object, the utility model is through the following technical scheme to realize: a cotton and viscose staple fiber blending device, including the table body, the table body is fixedly installed with the mixing assembly for cotton and viscose staple fiber mixing, the table body is also fixedly installed with the weaving assembly for cotton viscose fiber transmission weaving and storage, the weaving assembly includes the support block fixed on the table body, the support block is fixedly installed with the transmission assembly, the transmission assembly is used for the centralized positioning and transmission of the cotton viscose fiber mixed by the mixing assembly, the transmission assembly is rotatably installed with the drawing frame wheel for the drawing frame of cotton viscose fiber, the support block is fixedly installed with the take-up assembly for the storage of the cotton viscose fiber of weaving completion, and the drawing frame wheel is located between the transmission assembly and the take-up assembly. The drawing frame wheel is located between the transmission assembly and the take-up assembly, so that the cotton viscose fiber driven from the transmission assembly can be directly drawn by the drawing frame wheel, and finally enters the take-up assembly for corresponding storage, which greatly improves the efficiency of the cotton and viscose staple fiber blending device for cotton viscose fiber blending.
[0007] Further, the transmission assembly includes a support plate fixed on the support block, a threaded rod is fixedly installed at the center position of the support plate, a plurality of positioning assemblies are movably installed on the threaded rod, and the positioning assemblies are used for centralized transmission of the cotton viscose fiber.
[0008] Further, the positioning assembly includes a movable cylinder that rotates and moves on the threaded rod, a fixed disc is fixedly installed on the side close to the support plate of the movable cylinder, a plurality of sliding rails are formed in the outer circle of the movable cylinder, and a threaded groove for cooperating with the threaded rod is formed in the inner circle of the movable cylinder. The threaded groove is formed in the inner circle of the movable cylinder for cooperating with the threaded rod, so that the movable cylinder can be positionally adjusted on the threaded rod according to specific use conditions, and the adjustability of the internal structure of the cotton and viscose staple fiber blending device is greatly improved.
[0009] Further, a sliding block is movably installed on the plurality of sliding rails, a connecting shaft is fixedly installed at the end away from the fixed disc of the sliding block, a pressing disc for pushing the cotton viscose fiber is fixedly connected to the end away from the sliding block of the connecting shaft, and a spring for pushing the pressing disc is arranged in the fixed disc.
[0010] Further, a top block is fixedly installed at the end away from the spring of the pressing disc, and the top block is used for reducing the friction between the surface of the cotton viscose fiber and the pressing disc.
[0011] Furthermore, the mixing assembly includes a housing fixed to the table. Cotton feed inlets and viscose staple fiber feed inlets are respectively installed on the top two sides of the housing. An airflow agitator for mixing the cotton and viscose staple fiber is fixedly installed in the middle of the housing. An opening roller for further mixing the cotton and viscose staple fiber is fixedly installed on one side of the housing. A knotter for forming cotton-viscose fiber is fixedly installed at the end of the housing away from the airflow agitator. An outlet for discharging cotton-viscose fiber is fixedly installed on the side of the knotter away from the housing. The knotter's ability to quickly mix cotton and viscose staple fiber to form cotton-viscose fiber improves the efficiency of cotton-viscose fiber forming.
[0012] Furthermore, the take-up assembly includes a support frame fixed on a support block, a motor fixedly mounted on one side of the support frame, a rotating shaft fixedly connected to the output end of the motor, and a take-up wheel for collecting cotton and viscose fibers fixedly mounted on the rotating shaft. Beneficial effects
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] This invention, by setting the bonding discs to be movable on the movable cylinder, allows two oppositely mounted positioning components to be brought closer together by springs. This confines the cotton-viscose fiber that needs to be transmitted within the two bonding discs, effectively reducing the friction between the cotton-viscose fiber and the bonding discs, and greatly improving the practicality of the cotton-viscose staple fiber blending device. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of a cotton and viscose staple fiber blending device according to the present invention;
[0016] Figure 2 This is a three-dimensional structural diagram of the hybrid component of this utility model;
[0017] Figure 3 This is a three-dimensional structural diagram of the textile component of this utility model;
[0018] Figure 4 This is a partially enlarged three-dimensional structural diagram of A of this utility model;
[0019] Figure 5 This is a partially enlarged three-dimensional structural diagram of utility model B.
[0020] Figure 6 This is a three-dimensional structural diagram of the positioning component of this utility model.
[0021] In the diagram: 1. Mixing component; 2. Table body; 3. Textile component; 11. Outer shell; 12. Outlet; 13. Thread knotter; 14. Opening roller; 15. Cotton feeder; 16. Airflow agitator; 17. Viscose staple fiber feeder; 31. Take-up component; 32. Transfer component; 33. Drawing wheel; 34. Support block; 311. Take-up wheel; 312. Motor; 313. Support frame; 314. Rotating shaft; 321. Positioning component; 322. Support plate; 323. Threaded rod; 3211. Movable cylinder; 3212. Slide rail; 3213. Fixed plate; 3214. Threaded groove; 3215. Connecting shaft; 3216. Slider; 3217. Plate; 3218. Top block; 3219. Spring. Detailed Implementation
[0022] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the protection scope of this utility model.
[0023] Example
[0024] The following is in conjunction with the appendix Figure 1 - Appendix Figure 6This application provides a further detailed description. A cotton and viscose staple fiber blending device includes a table 2. A mixing component 1 for mixing cotton and viscose staple fiber is fixedly installed on the table 2. A textile component 3 for transmitting, spinning, and storing the cotton and viscose staple fiber is also fixedly installed on the table 2. The textile component 3 includes a support block 34 fixed to the table 2. A transmission component 32 is fixedly installed on the support block 34. The transmission component 32 is used to centrally position and transmit the cotton and viscose staple fiber mixed by the mixing component 1. A drawing wheel 33 for drawing the cotton and viscose staple fiber is rotatably installed on the transmission component 32. A take-up component 31 for storing the spun cotton and viscose staple fiber is fixedly installed on the support block 34. The drawing wheel 33 is located between the transmission component 32 and the take-up component. Between 31, the transmission component 32 includes a support plate 322 fixed on the support block 34. A threaded rod 323 is fixedly installed at the center of the support plate 322. Multiple positioning components 321 are movably installed on the threaded rod 323. The positioning components 321 are used to centrally transmit the cotton viscose fibers. The positioning components 321 include a movable cylinder 3211 that rotates on the threaded rod 323. A fixed plate 3213 is fixedly installed on the side of the movable cylinder 3211 near the support plate 322. Multiple slide rails 3212 are provided on the outer ring of the movable cylinder 3211. A threaded groove 3214 for cooperating with the threaded rod 323 is provided on the inner ring of the movable cylinder 3211. Slider blocks are movably installed on the multiple slide rails 3212. 3216, a connecting shaft 3215 is fixedly installed at the end of the slider 3216 away from the fixed plate 3213. Multiple connecting shafts 3215 are fixedly connected to a feeding plate 3217 for pushing cotton viscose fibers at the end away from the slider 3216. A spring 3219 for pushing the feeding plate 3217 is placed inside the feeding plate 3217 and the fixed plate 3213. A top block 3218 is fixedly installed at the end of the feeding plate 3217 away from the spring 3219. The top block 3218 is used to reduce friction between the surface of the cotton viscose fibers and the feeding plate 3217. The mixing assembly 1 includes a housing 11 fixed to the table body 2. Cotton feeding inlets 15 and viscose staple fiber feeding inlets 17 are respectively installed on both sides of the top of the housing 11. An airflow agitator 16 for mixing cotton and viscose staple fiber is fixedly installed in the middle of the outer casing 11. An opening roller 14 for further mixing cotton and viscose staple fiber is fixedly installed on one side of the outer casing 11. A knotter 13 for forming cotton viscose fiber is fixedly installed at the end of the outer casing 11 away from the airflow agitator 16. An outlet 12 for feeding cotton viscose fiber is fixedly installed on the side of the knotter 13 away from the outer casing 11. The take-up assembly 31 includes a support frame 313 fixed on the support block 34. A motor 312 is fixedly installed on one side of the support frame 313. A rotating shaft 314 is fixedly connected to the output end of the motor 312. A take-up wheel 311 for collecting cotton viscose fiber is fixedly installed on the rotating shaft 314.
[0025] In this process, the user places the cotton and viscose staple fiber to be mixed into the outer casing 11 through the cotton feed port 15 and the viscose staple fiber feed port 17, respectively. Then, the user activates the airflow agitator 16 and the loosening roller 14 to fully mix the cotton and viscose staple fiber. Afterward, the user uses the controller on the knotter 13 to weave the mixed cotton and viscose staple fiber into a yarn, which is then formed into cotton-viscose fiber. The cotton-viscose fiber extends outward through the yarn outlet 12. Since the knotter 13 for weaving the mixed cotton and viscose staple fiber into cotton-viscose fiber is a mature existing technology, it is not described in detail in this utility model.
[0026] The take-up assembly 31, the transmission assembly 32, and the drawing wheel 33 are all on the same straight line, so that the cotton viscose fiber will not undergo large deformation when passing through the take-up assembly 31, the transmission assembly 32, and the drawing wheel 33, thereby improving the quality of cotton viscose fiber transmission and collection.
[0027] Since the threaded rod 323 has a thread on its shaft and the movable cylinder 3211 has a threaded groove 3214 on its inner wall that matches the threaded rod 323, the user can rotate the movable cylinder 3211 according to the specific usage situation. The rotating movable cylinder 3211 can move on the threaded rod 323, thereby achieving the purpose of adjusting the position of the positioning component 321.
[0028] Since the two positioning components 321 on the threaded rod 323 are installed opposite each other, after the fixing plate 3213 of the two positioning components 321 is fixed, the two adhesive plates 3217 will move closer to each other through the spring 3219. At this time, the cotton adhesive fiber is located between the two adhesive plates 3217. The top block 3218 is used to isolate a small gap between the two adhesive plates 3217 for the cotton adhesive fiber to be driven, thereby greatly reducing the friction between the cotton adhesive fiber and the adhesive plate 3217.
[0029] The slider 3216 can slide on the slide rail 3212, and the spring 3219 is located between the fixed plate 3213 and the plate 3217. Therefore, when the fixed plate 3213 is fixed, the spring 3219 will move the plate 3217 outward, and the slider 3216 will slide on the slide rail 3212.
[0030] The working principle of this utility model is explained below: Unless otherwise specified, all internal mechanical structures of the cotton and viscose staple fiber blending device are fixed by threads. To allow for a more intuitive observation of the technical features, bolt connections are appropriately concealed in the figures. During use, the user places the cotton and viscose staple fiber to be blended into the outer casing 11 through the cotton feed inlet 15 and the viscose staple fiber feed inlet 17, respectively. Then, the operation of the mixing component 1 causes the cotton and viscose staple fiber to be blended into cotton-viscose fiber, which is then fed from the outlet 12 onto the transfer component 32. Before this, the user can adjust the position of the positioning component 321 on the threaded rod 323 according to the specific usage. The user only needs to rotate the movable cylinder 3211, which rotates on the threaded rod 323 through the threaded groove 3214 within the movable cylinder 3211. The position of the positioning component 321 on the threaded rod 323 can be adjusted. After the position of the movable cylinder 3211 is adjusted, the spring 3219 will push the bonding plate 3217 outward. The spring 3219 in the positioning component 321 on the opposite side will also push the bonding plate 3217 outward, so that the two bonding plates 3217 are close to each other and finally supported by the top block 3218. At this time, the cotton viscose fiber is transmitted between the two bonding plates 3217. Then the cotton viscose fiber is drawn together by the drawing wheel 33 and finally enters the take-up component 31 for storage. In this way, when the cotton viscose fiber formed in the cotton and viscose staple fiber blending device is transmitted, the friction between the cotton viscose fiber and the bonding plate 3217 is greatly reduced while ensuring smooth transmission of the cotton viscose fiber. It also allows the cotton viscose fiber to be limited in transmission, which greatly improves the practicality of the cotton and viscose staple fiber blending device.
[0031] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
Claims
1. A cotton and viscose staple fiber blending device, characterized in that, The device includes a table (2), on which a mixing component (1) for mixing cotton and viscose staple fiber is fixedly installed. A textile component (3) for transmitting and storing cotton viscose fiber is also fixedly installed on the table (2). The textile component (3) includes a support block (34) fixed on the table (2). A transmission component (32) is fixedly installed on the support block (34). The transmission component (32) is used to centrally position and transmit the cotton viscose fiber mixed by the mixing component (1). A drawing wheel (33) for drawing cotton viscose fiber is rotatably installed on the transmission component (32). A take-up component (31) for storing the woven cotton viscose fiber is fixedly installed on the support block (34). The drawing wheel (33) is located between the transmission component (32) and the take-up component (31).
2. The cotton and viscose staple fiber blending device according to claim 1, characterized in that: The transmission component (32) includes a support plate (322) fixed on the support block (34), a threaded rod (323) fixedly installed at the center of the support plate (322), and multiple positioning components (321) movably installed on the threaded rod (323). The positioning components (321) are used to centrally transmit cotton viscose fibers.
3. The cotton and viscose staple fiber blending device according to claim 2, characterized in that: The positioning assembly (321) includes a movable cylinder (3211) that rotates on the threaded rod (323). A fixed plate (3213) is fixedly installed on the side of the movable cylinder (3211) near the support plate (322). Multiple slide rails (3212) are provided on the outer ring of the movable cylinder (3211), and a threaded groove (3214) is provided on the inner ring of the movable cylinder (3211) for cooperating with the threaded rod (323).
4. The cotton and viscose staple fiber blending device according to claim 3, characterized in that: A slider (3216) is movably mounted on a plurality of slide rails (3212). A connecting shaft (3215) is fixedly mounted on the end of each slider (3216) away from the fixed plate (3213). A pad (3217) for pushing cotton adhesive fiber is fixedly connected to the end of each connecting shaft (3215) away from the slider (3216). A spring (3219) for pushing the pad (3217) is placed inside the pad (3217) and the fixed plate (3213).
5. The cotton and viscose staple fiber blending device according to claim 4, characterized in that: A top block (3218) is fixedly installed at the end of the adhesive tray (3217) away from the spring (3219). The top block (3218) is used to reduce the friction between the surface of the cotton viscose fiber and the adhesive tray (3217).
6. The cotton and viscose staple fiber blending device according to claim 1, characterized in that: The mixing assembly (1) includes a housing (11) fixed on a table (2). The top two sides of the housing (11) are respectively equipped with cotton feed inlets (15) and viscose staple fiber feed inlets (17) for feeding cotton and viscose staple fiber. An airflow agitator (16) for mixing cotton and viscose staple fiber is fixedly installed in the middle of the housing (11). An opening roller (14) for further mixing cotton and viscose staple fiber is fixedly installed on one side of the housing (11). A knotter (13) for forming cotton and viscose fiber is fixedly installed at the end of the housing (11) away from the airflow agitator (16). An outlet (12) for feeding cotton and viscose fiber is fixedly installed on the side of the knotter (13) away from the housing (11).
7. The cotton and viscose staple fiber blending device according to claim 1, characterized in that: The take-up assembly (31) includes a support frame (313) fixed on a support block (34). A motor (312) is fixedly installed on one side of the support frame (313). A rotating shaft (314) is fixedly connected to the output end of the motor (312). A take-up wheel (311) for collecting cotton viscose fibers is fixedly installed on the rotating shaft (314).
Citation Information
Patent Citations
Spinning machine frame for blending device
CN221094388U