High-efficiency elasticizer for chemical fiber weaving
By designing a movable connection between the front winding roller and the rotating shaft structure and a laterally arranged moving roller in the texturing machine, the problem of the fiber not being fully tensioned before feeding is solved, achieving stable fiber tension and convenient replacement, and improving the fiber tension effect.
Patent Information
- Application Number
- CN202411989181.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2044-12-31
AI Technical Summary
The connection structure between the front winding roller and the driven pulley in the existing texturing machine is unclear, which makes it impossible to fully tension the fiber before feeding, thus affecting the tension of the fiber filament.
A movable connection between the front winding roller and the shaft structure is designed. Stable installation is achieved through the cooperation of the insert and the solenoid. The fiber tension is adjusted by the horizontally set moving roller and fixed roller, and the fiber tension is adjusted by gear meshing and thread drive.
It enables convenient replacement of the front winding roller and stable fiber tension, improves fiber tension effect, and enhances fiber compression ability.
Smart Images

Figure CN119736741B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of textile machinery technology, specifically to a high-efficiency texturing machine for chemical fiber weaving. Background Technology
[0002] A texturing machine is a textile machine that can process untwisted yarns such as polyester and polypropylene into elastic yarns with medium to low elasticity through false twisting. A texturing machine for chemical fiber weaving disclosed in patent publication number CN220364658U discloses a first tension roller and a second tension roller diagonally positioned on a fixed plate, with limiting grooves located near the upper and lower ends of the first and second tension rollers respectively, providing tension before the material is fed into the texturing machine. Furthermore, in the aforementioned patent, the front winding roller is mounted on a third vertical plate via a rotating shaft and connected to a second motor. The drive pulley rotates, which in turn drives the driven pulley via a transmission belt, thus rotating the front winding roller. However, the front winding roller has fibers wound on it, and the connection structure between it and the driven pulley is not disclosed, making it unclear how to replace the front winding roller. Furthermore, both the first and second tension rollers are vertically placed and fixed to a fixed plate, preventing the fibers from being fully tensioned before feeding, resulting in poor fiber tension. Summary of the Invention
[0003] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by providing a high-efficiency texturing machine for chemical fiber weaving that is simple in structure, rationally designed, and easy to use. The connection between the front winding roller and the rotating shaft is movable, allowing the front winding roller to be replaced and the tension roller to be placed laterally. By adjusting the tension roller, the tension on the fiber can be increased, thereby improving the fiber tension.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: it includes a base, a transmission structure, a front winding roller, and a twisting roller; two transmission structures, one upper and one lower, are arranged on the left side of the base; a vertical plate is also arranged on the upper side of the base, and the front winding roller is arranged after the rotating shaft of the transmission structure passes through the vertical plate; a twisting roller is arranged on the right side of the base; and it further includes:
[0005] The connecting components are two in number, respectively disposed between the front winding roller and the rotating shaft;
[0006] A fixing block is fixedly mounted on the base and positioned between the vertical plate and the twisting roller.
[0007] There are two moving rollers, one above the other, positioned opposite each other on the front side of the fixed block. A support block is fixedly installed on the rear side of the moving roller, and a slider is installed on the rear side of the support block. The slider slides through the groove opened in the fixed block and is then positioned on the rear side of the fixed block.
[0008] The support frame consists of two supports, which are respectively fixedly arranged on the rear side of the fixed block, one above the other, and the support frame is arranged on the upper side of the first slider.
[0009] The first drive assembly consists of two components, each disposed within the support frame;
[0010] The second moving roller, which consists of two rollers, is respectively located to the right of the first moving roller; a second support block is fixedly installed on the rear side of the second moving roller, and a second slider is installed on the rear side of the second support block. The second slider slides through the second groove opened in the fixed block and is then located on the rear side of the fixed block.
[0011] The second drive assembly consists of two components, each located on the right side of the support frame.
[0012] There are two fixed rollers, which are respectively set on the right side of the second moving roller, and a third support block is set on the rear side of the fixed roller. The third support block is fixedly set on the front side of the fixed block.
[0013] Through the above technical solution design, the base fiber and elastic fiber are wound on the corresponding front winding rollers respectively. After the base fiber and elastic fiber pass through the corresponding first moving roller, second moving roller and fixed roller respectively, they are wound on the twisting roller.
[0014] As a further improvement of the present invention, the connection component includes:
[0015] A connecting block is fixedly installed at the front end of the rotating shaft. A connecting shaft is provided on the front side of the connecting block, and a front winding roller is sleeved on the connecting shaft. Insert pins are provided on the outer sides of the discs on both the front and rear sides of the front winding roller, with the upper and lower sides facing each other. The insert pin on the rear side of the front winding roller passes through the connecting block.
[0016] Two connecting bosses are fixedly installed on the upper and lower sides of the rear side of the connecting block, respectively.
[0017] Two rotating shafts are provided, each screwed into a corresponding connecting boss by bearings. The outer end of the rotating shaft is provided with a frustum, and a pin passes through the frustum and is inserted into the connecting boss.
[0018] Two screws are fixedly installed on the inner end of the rotating shaft. A screw tube is threadedly fitted onto the screw. The screw tube is slidably installed on the rear side of the connecting block through a sliding pair, and the inner end of the screw tube passes through the insert.
[0019] With the above technical solution design, when the front winding roller is sleeved on the connecting shaft, the insert is inserted into the connecting block, and the truncated cone is manually rotated to drive the screw to the screw tube until the screw tube is inserted into the insert. Finally, the pin is inserted into the truncated cone and the connecting boss, and the front winding roller can be installed.
[0020] As a further improvement of the present invention, the first drive component includes:
[0021] The driving block is fixedly disposed on the rear side of the first slider, and teeth are provided on both the left and right sides of the driving block.
[0022] The No. 1 drive motor is fixedly installed on the rear side of the vertical end of the support frame. The output shaft of the No. 1 drive motor passes through the vertical end of the support frame and is equipped with a rotating gear.
[0023] Driven gear, the driven gear is meshed on one side of the rotating gear, and a support shaft is inserted and fixed inside the driven gear. The rear end of the support shaft is screwed into the vertical end of the support frame through a bearing.
[0024] The transmission gears are two in number, which are respectively sleeved and fixed on the output shaft and support shaft of the first drive motor. The transmission gears are located on the front side of the rotating gear, and the transmission gears are respectively meshed with the corresponding teeth of the drive block.
[0025] Through the above technical solution design, the rotating gear meshes and drives the driven gear to rotate, so that the two transmission gears rotate synchronously relative to each other, driving the drive block to move the first slider, and thus adjusting the first moving roller.
[0026] As a further improvement of the present invention, the second drive component includes:
[0027] A support block, wherein the support block is fixedly disposed on the rear side of the fixed block;
[0028] A support shaft is screwed into the support block via a bearing, and a threaded rod is provided at the bottom of the support shaft.
[0029] A support boss is fixedly installed on the rear side of the second slider, and the threaded rod is threadedly inserted into the support boss.
[0030] A support gear, wherein the support gear is sleeved and fixed to the upper end of the support shaft;
[0031] The second drive motor is fixedly installed at the bottom of the support block, and the output shaft of the second drive motor passes through the support block and is provided with a drive gear, which meshes with the support gear.
[0032] Through the above technical solution design, the drive gear meshes and drives the support gear to rotate, so that the threaded rod drives the support boss, and the second slider drives the second moving roller for adjustment.
[0033] As a further improvement of the present invention, a support plate is fixedly provided on the upper right side of the front side of the fixed block, and an upper guide frame is provided at the bottom of the support plate, with fibers wound on the upper guide frame.
[0034] The above technical solution is used to guide the fibers on the upper side.
[0035] As a further improvement of the present invention, a fixing plate is provided on the lower side of the support plate, and a lower guide is provided on the fixing plate. After the fiber passes through the fixing plate, it is wound around the lower guide.
[0036] The above technical solution is used to guide the fibers on the lower side.
[0037] As a further improvement of the present invention, a guide frame is provided on the right side of the support plate. The guide frame is located above the twisting roller. Two splitting holes are provided in the vertical end of the guide frame, and a twisting hole is provided in the lower horizontal end of the guide frame.
[0038] The above technical solution is used to guide and merge the basic fibers and elastic fibers.
[0039] As a further improvement of the present invention, the first moving roller, the second moving roller and the fixed roller are all provided with rings on both the front and rear sides.
[0040] The fiber is positioned using the above technical solution.
[0041] The working principle of this invention: The base fiber and elastic fiber are wound onto their respective front winding rollers. The front winding rollers are fitted onto the connecting shaft. A pin is inserted into the connecting block, and the truncated cone is manually rotated to drive the screw threaded onto the tube until the tube is inserted into the pin. Finally, a pin is inserted into the truncated cone and the connecting boss to install the front winding roller. The base fiber and elastic fiber, after passing over their respective first moving roller, second moving roller, and fixed roller, pass sequentially through their respective splitting holes and then through the twisting holes before being wound onto the twisting roller. Through a... The first drive assembly adjusts the first moving roller, and the second drive assembly adjusts the second moving roller to keep the fiber in a tensioned state. First, the first drive motor is started, and the rotating gear meshes with the driven gear to rotate, so that the two transmission gears rotate synchronously relative to each other, driving the drive block to move the first slider, thus adjusting the first moving roller downward. Second, the second drive motor is started, and the driving gear meshes with the support gear to rotate, so that the threaded rod drives the support boss threadedly, causing the second slider to move the second moving roller downward.
[0042] Compared with the prior art, the beneficial effects of the present invention are:
[0043] 1. The front winding roller and the rotating shaft are detachable and the installation is secure through the insertion of the insert and the solenoid, which facilitates replacement.
[0044] 2. The No. 1 moving roller, the No. 2 moving roller, and the fixed roller are all arranged horizontally, which can better compress the fibers;
[0045] 3. The rotating gear meshes with the driven gear to rotate in the opposite direction, so that the two transmission gears rotate in opposite directions, thereby driving the teeth on both sides of the drive block to mesh and drive the first moving roller to move downward, increasing the pressure on the fiber.
[0046] 4. The threaded drive method moves the second moving roller upward, increasing the fiber tension. Attached Figure Description
[0047] Figure 1 This is a schematic diagram of the structure of the present invention.
[0048] Figure 2 yes Figure 1 A schematic diagram of the isometric structure in the northwest region.
[0049] Figure 3 yes Figure 2 Enlarged view of part A.
[0050] Figure 4 yes Figure 1 A schematic diagram of the southeast isometric structure.
[0051] Figure 5 yes Figure 1 A schematic diagram of the front structure.
[0052] Figure 6 This is a schematic diagram of the connection between the front winding roller and the rotating shaft of the present invention.
[0053] Figure 7 yes Figure 6 Enlarged view of part B.
[0054] Figure 8 yes Figure 6 Enlarged view of part C.
[0055] Figure 9 This is a schematic diagram of the connection between the No. 1 moving roller and the No. 1 driving component in this invention.
[0056] Explanation of reference numerals in the attached figures:
[0057] 1. Base, 1-1. Transmission structure, 1-2. Front winding roller, 1-3. Twisting roller, 2. Vertical plate, 3. Connecting assembly, 3-1. Connecting block, 3-2. Insert post, 3-3. Connecting boss, 3-4. Rotating shaft, 3-5. Frustum, 3-6. Screw, 3-7. Fixed block, 4. First moving roller, 5. First slider, 6. Support frame, 7. First drive assembly, 8. Drive block, 8-1. First drive motor, 8-2. Rotating gear, 8-3. Driven gear, 8-4. Transmission gear, 8-5. Second moving roller, 9. Second slider, 10. Second drive assembly, 11. Support block, 11-1. Support shaft, 11-2. Threaded rod, 11-3. Support boss, 11-4. Support gear, 11-5. Second drive motor, 11-6. Drive gear, 11-7. Fixed roller, 12. Support plate, 13. Upper guide frame, 14. Fixed plate, 15. Lower guide frame, 16. Guide frame, 17. Ring, 18. Detailed Implementation
[0058] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0059] Example 1:
[0060] Please see Figures 1-9 In this embodiment, it includes a base 1, a transmission structure 1-1, a front winding roller 1-2, and a twisting roller 1-3. The left side of the base 1 is provided with two transmission structures 1-1, one above the other. The upper side of the base 1 is also provided with a vertical plate 2. The shaft of the transmission structure 1-1 passes through the vertical plate 2 and is provided with the front winding roller 1-2. The right side of the base 1 is provided with the twisting roller 1-3.
[0061] Also includes:
[0062] Connecting component 3, there are two connecting components 3, which are respectively disposed between the front winding roller 1-2 and the rotating shaft;
[0063] Fixed block 4 is fixedly installed on base 1 and is located between vertical plate 2 and twisting roller 1-3;
[0064] There are two moving rollers 5, which are respectively arranged opposite each other on the front side of the fixed block 4; a support block is fixedly arranged on the rear side of the moving roller 5, and a slider 6 is arranged on the rear side of the support block. The slider 6 slides through the first groove opened in the fixed block 4 and is then arranged on the rear side of the fixed block 4.
[0065] Support frame 7, there are two support frames 7, which are respectively fixedly arranged on the rear side of the fixing block 4, and the support frame 7 is arranged on the upper side of the first slider 6.
[0066] The first drive component 8 consists of two components, each disposed within the support frame 7.
[0067] There are two moving rollers 9, which are respectively set on the right side of the moving roller 5. A second support block is fixedly set on the rear side of the moving roller 9, and a second slider 10 is set on the rear side of the support block. The second slider 10 slides through the second groove opened in the fixed block 4 and is set on the rear side of the fixed block 4.
[0068] The second drive assembly 11, there are two of them, which are respectively arranged on the right side of the support frame 7;
[0069] Fixed roller 12, there are two fixed rollers 12, which are respectively set on the right side of the second moving roller 9, and a third support block is set on the rear side of the fixed roller 12. The third support block is fixedly set on the front side of the fixed block 4; the first moving roller 5, the second moving roller 9 and the fixed roller 12 are all provided with rings 18 on the front and rear sides.
[0070] A support plate 13 is fixedly installed on the upper right side of the front side of the fixed block 4. An upper guide frame 14 is installed at the bottom of the support plate 13, and the fiber is wound on the upper guide frame 14. A fixed plate 15 is installed on the lower side of the support plate 13, and a lower guide frame 16 is installed on the fixed plate 15. After the fiber passes through the fixed plate 15, it is wound on the lower guide frame 16. A guide frame 17 is installed on the right side of the support plate 13. The guide frame 17 is located above the twisting roller 1-3. Two splitting holes are provided in the vertical end of the guide frame 17, and a twisting hole is provided in the lower horizontal end of the guide frame 17.
[0071] Through the above technical solution design, the base fiber and elastic fiber are wound on the corresponding front winding rollers 1-2 respectively. After the base fiber and elastic fiber pass over the corresponding first moving roller 5, second moving roller 9 and fixed roller 12 respectively, they are wound on the twisting rollers 1-3.
[0072] Example 2:
[0073] Please see Figures 1-9 Based on Embodiment 1, the connection component 3 is further improved and includes:
[0074] Connecting block 3-1 is fixedly installed at the front end of the rotating shaft. A connecting shaft is provided on the front side of connecting block 3-1, and the front winding roller 1-2 is sleeved on the connecting shaft. Insert pins 3-2 are provided vertically oppositely on the outer sides of the discs on both the front and rear sides of the front winding roller 1-2. The insert pins 3-2 on the rear side of the front winding roller 1-2 are inserted into the connecting block 3-1.
[0075] Connecting boss 3-3, there are two connecting bosses 3-3, which are respectively fixedly installed on the upper and lower sides of the rear side of connecting block 3-1;
[0076] Rotating shaft 3-4, there are two rotating shafts 3-4, which are respectively screwed into the corresponding connecting boss 3-3 by bearings, and the outer end of the rotating shaft 3-4 is provided with a frustum 3-5. After the pin passes through the frustum 3-5, it is inserted into the connecting boss 3-3.
[0077] Screw 3-6, there are two screws 3-6, which are respectively fixedly installed on the inner end of the rotating shaft 3-4. A screw tube 3-7 is screwed onto the screw 3-6 by means of a thread. The screw tube 3-7 is slidably installed on the rear side of the connecting block 3-1 through a sliding pair, and the inner end of the screw tube 3-7 passes through the insert post 3-2.
[0078] With the above technical solution design, when the front winding roller 1-2 is sleeved on the connecting shaft, the insert 3-2 passes through the connecting block 3-1, and the frustum 3-5 is manually rotated so that the screw 3-6 drives the screw tube 3-7 threadedly until the screw tube 3-7 is inserted into the insert 3-2. Finally, the pin is inserted into the frustum 3-5 and the connecting boss 3-3, and the front winding roller 1-2 can be installed.
[0079] Example 3:
[0080] Please see Figures 1-9 Based on Embodiment 1, a further improvement is made, wherein the first drive component 8 includes:
[0081] The driving block 8-1 is fixedly disposed on the rear side of the first slider 6, and teeth are provided on both the left and right sides of the driving block 8-1.
[0082] The first drive motor 8-2 is fixedly installed on the rear side of the vertical end of the support frame 7. The specific model of the first drive motor 8-2 is purchased and installed directly from the market according to the actual use requirements. After the output shaft of the first drive motor 8-2 passes through the vertical end of the support frame 7, a rotating gear 8-3 is provided.
[0083] Driven gear 8-4 is meshed on one side of rotating gear 8-3, and a support shaft is inserted and fixed inside the driven gear 8-4. The rear end of the support shaft is screwed into the vertical end of the support frame 7 via a bearing.
[0084] There are two transmission gears 8-5, which are respectively sleeved and fixed on the output shaft and support shaft of the first drive motor 8-2. The transmission gears 8-5 are located on the front side of the rotating gear 8-3. The transmission gears 8-5 are respectively meshed with the corresponding teeth of the drive block 8-1.
[0085] Through the above technical solution design, the rotating gear 8-3 meshes with and drives the driven gear 8-4 to rotate, so that the two transmission gears 8-5 rotate synchronously relative to each other, driving the drive block 8-1 to move the first slider 6, and thus adjusting the first moving roller 5.
[0086] Example 4:
[0087] Please see Figures 1-9 Based on Embodiment 1, the second drive component 11 is further improved and includes:
[0088] Support block 11-1, which is fixedly disposed on the rear side of fixing block 4;
[0089] The support shaft 11-2 is screwed into the support block 11-1 via a bearing, and a threaded rod 11-3 is provided at the bottom of the support shaft 11-2.
[0090] Support boss 11-4 is fixedly installed on the rear side of the second slider 10, and threaded rod 11-3 is threadedly inserted into the support boss 11-4.
[0091] Support gear 11-5, wherein the support gear 11-5 is sleeved and fixed to the upper end of the support shaft 11-2;
[0092] The second drive motor 11-6 is fixedly installed at the bottom of the support block 11-1. The specific model of the second drive motor 11-6 is purchased and installed directly from the market according to the actual use requirements. After the output shaft of the second drive motor 11-6 passes through the support block 11-1, a drive gear 11-7 is provided, which meshes with the support gear 11-5.
[0093] Through the above technical solution design, the drive gear 11-7 meshes and drives the support gear 11-5 to rotate, so that the threaded rod 11-3 drives the support boss 11-4 by thread, and so that the second slider 10 drives the second moving roller 9 for adjustment.
[0094] In using this invention, the base fiber and elastic fiber are wound around the corresponding front winding roller 1-2, the front winding roller 1-2 is sleeved on the connecting shaft, the insert 3-2 passes through the connecting block 3-1, and the frustum 3-5 is manually rotated to drive the screw 3-6 to the screw tube 3-7 until the screw tube 3-7 is inserted into the insert 3-2. Finally, the pin is inserted into the frustum 3-5 and the connecting boss 3-3 to install the front winding roller 1-2. The base fiber and elastic fiber pass around the corresponding first moving roller 5, second moving roller 9 and fixed roller 12, respectively, and then pass through the corresponding splitting hole and the twisting hole before being wound around the twisting roller 1-3. The drive assembly 8 adjusts the first moving roller 5, and the second drive assembly 11 adjusts the second moving roller 9 to keep the fiber in a taut state. First, the first drive motor 8-2 is started, and the rotating gear 8-3 meshes with and drives the driven gear 8-4 to rotate, so that the two transmission gears 8-5 rotate synchronously relative to each other, driving the drive block 8-1 to move the first slider 6, so that the first moving roller 5 is adjusted downward. Second, the second drive motor 11-6 is started, and the drive gear 11-7 meshes with and drives the support gear 11-5 to rotate, so that the threaded rod 11-3 drives the support boss 11-4 threadedly, so that the second slider 10 drives the second moving roller 9 to adjust downward.
[0095] Compared with the prior art, the beneficial effects of the present invention are:
[0096] 1. The front winding roller 1-2 is detachable from the rotating shaft, and the installation is stable by inserting the insert post 3-2 and the solenoid 3-7, which facilitates replacement.
[0097] 2. The first moving roller 5, the second moving roller 9, and the fixed roller 12 are all arranged horizontally, which can better compress the fibers;
[0098] 3. Rotate gear 8-3 to mesh with driven gear 8-4 in the opposite direction, so that the two transmission gears 8-5 rotate in opposite directions, thereby driving the teeth on both sides of the drive block 8-1 to move the first moving roller 5 downward and increase the pressure on the fiber.
[0099] 4. The threaded drive method moves the second moving roller 9 upward, increasing the fiber tension. Those skilled in the art can modify the technical solutions described in the foregoing embodiments and make equivalent substitutions for some technical features. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this invention should be included within the protection scope of this invention.
Claims
1. A high-efficiency texturing machine for chemical fiber weaving, comprising a base (1), a transmission structure (1-1), a front winding roller (1-2), and a twisting roller (1-3). The left side of the base (1) is provided with two transmission structures (1-1), and the upper side of the base (1) is also provided with a vertical plate (2). The shaft of the transmission structure (1-1) passes through the vertical plate (2) and is provided with the front winding roller (1-2). The right side of the base (1) is provided with the twisting roller (1-3). Its features are, It also includes: Connecting components (3), there are two connecting components (3), which are respectively disposed between the front winding roller (1-2) and the rotating shaft; the connecting components (3) include: A connecting block (3-1) is fixedly installed at the front end of the rotating shaft. A connecting shaft is provided on the front side of the connecting block (3-1), and a front winding roller (1-2) is sleeved on the connecting shaft. Insert pins (3-2) are provided on the outer sides of the discs on both the front and rear sides of the front winding roller (1-2) and are arranged vertically opposite each other. The insert pins (3-2) on the rear side of the front winding roller (1-2) are inserted into the connecting block (3-1). Connecting boss (3-3), there are two connecting bosses (3-3), which are respectively fixedly installed on the upper and lower sides of the rear side of the connecting block (3-1); Rotating shaft (3-4), there are two rotating shafts (3-4), which are respectively screwed into the corresponding connecting boss (3-3) by bearings, and the outer end of the rotating shaft (3-4) is provided with a frustum (3-5). After the pin passes through the frustum (3-5), it is inserted into the connecting boss (3-3); Two screws (3-6) are fixedly installed on the inner end of the rotating shaft (3-4). A screw tube (3-7) is threadedly fitted onto the screw (3-6). The screw tube (3-7) is slidably installed on the rear side of the connecting block (3-1) through a sliding pair, and the inner end of the screw tube (3-7) passes through the insert (3-2). The fixing block (4) is fixedly installed on the base (1) and is located between the vertical plate (2) and the twisting roller (1-3); There are two No. 1 moving rollers (5), which are respectively arranged opposite each other on the front side of the fixed block (4); a No. 1 support block is fixedly arranged on the rear side of the No. 1 moving roller (5), and a No. 1 slider (6) is arranged on the rear side of the No. 1 support block. The No. 1 slider (6) slides through the No. 1 sliding groove opened in the fixed block (4) and is then arranged on the rear side of the fixed block (4). Support frame (7), there are two support frames (7), which are respectively fixedly arranged on the rear side of the fixed block (4) with the upper and lower sides respectively, and the support frame (7) is arranged on the upper side of the first slider (6); The first drive assembly (8) consists of two components, which are respectively installed in the support frame (7); The second moving roller (9) consists of two rollers, which are respectively located on the right side of the first moving roller (5); a second support block is fixedly installed on the rear side of the second moving roller (9), and a second slider (10) is installed on the rear side of the second support block. The second slider (10) slides through the second groove opened in the fixed block (4) and is then located on the rear side of the fixed block (4). The second drive assembly (11) consists of two parts, which are respectively located on the right side of the support frame (7); There are two fixed rollers (12), which are respectively set on the right side of the second moving roller (9), and a third support block is set on the rear side of the fixed roller (12), which is fixedly set on the front side of the fixed block (4).
2. The high-efficiency texturing machine for chemical fiber weaving according to claim 1, characterized in that: The first drive component (8) includes: The driving block (8-1) is fixedly disposed on the rear side of the first slider (6), and teeth are provided on both the left and right sides of the driving block (8-1). The No. 1 drive motor (8-2) is fixedly installed on the rear side of the vertical end of the support frame (7). After the output shaft of the No. 1 drive motor (8-2) passes through the vertical end of the support frame (7), a rotating gear (8-3) is provided. Driven gear (8-4), the driven gear (8-4) is meshed on one side of the rotating gear (8-3), and a support shaft is inserted and fixed inside the driven gear (8-4), the rear end of the support shaft is screwed into the vertical end of the support frame (7) through a bearing; The transmission gear (8-5) consists of two gears, which are respectively sleeved and fixed on the output shaft and support shaft of the first drive motor (8-2). The transmission gear (8-5) is located on the front side of the rotating gear (8-3), and the transmission gear (8-5) is respectively meshed with the corresponding teeth of the drive block (8-1).
3. The high-efficiency texturing machine for chemical fiber weaving according to claim 1, characterized in that: The second drive component (11) includes: Support block (11-1), the support block (11-1) is fixedly disposed on the rear side of the fixed block (4); The support shaft (11-2) is screwed into the support block (11-1) via a bearing, and a threaded rod (11-3) is provided at the bottom of the support shaft (11-2). The support boss (11-4) is fixedly installed on the rear side of the second slider (10), and the threaded rod (11-3) is threadedly inserted into the support boss (11-4). A support gear (11-5) is sleeved and fixed to the upper end of the support shaft (11-2); The second drive motor (11-6) is fixedly installed at the bottom of the support block (11-1), and the output shaft of the second drive motor (11-6) passes through the support block (11-1) and is provided with a drive gear (11-7), which meshes with the support gear (11-5).
4. The high-efficiency texturing machine for chemical fiber weaving according to claim 1, characterized in that: A support plate (13) is fixedly installed on the upper right side of the front side of the fixed block (4), and an upper guide frame (14) is installed at the bottom of the support plate (13), with fibers wound on the upper guide frame (14).
5. The high-efficiency texturing machine for chemical fiber weaving according to claim 4, characterized in that: A fixing plate (15) is provided on the lower side of the support plate (13), and a lower guide frame (16) is provided on the fixing plate (15). After the fiber passes through the fixing plate (15), it is wound around the lower guide frame (16).
6. The high-efficiency texturing machine for chemical fiber weaving according to claim 4, characterized in that: The support plate (13) is provided with a guide frame (17) on the right side. The guide frame (17) is located above the twisting roller (1-3). The vertical end of the guide frame (17) is provided with two branching holes, and the lower horizontal end of the guide frame (17) is provided with a paralleling hole.
7. The high-efficiency texturing machine for chemical fiber weaving according to claim 1, characterized in that: The first moving roller (5), the second moving roller (9) and the fixed roller (12) are all provided with rings (18) on both the front and rear sides.
Citation Information
Patent Citations
Elasticizer for chemical fiber weaving
CN220364658U
Elasticized yarn production equipment
CN213925204U
Nylon-polyester-spandex warp knitting blending device with tension adjusting function
CN215050978U