Guiding device for textile yarns in the textile category
By designing a textile wire guide device including an external frame and a through structure, the guidance requirements of multiple textile equipment in the prior art and the problems of yarn sticking and tearing are solved, and efficient and stable textile wire guide and simultaneous processing of multiple lines are achieved.
Patent Information
- Application Number
- CN202411572505.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2044-11-06
AI Technical Summary
The existing textile wire guide devices cannot meet the needs of multiple textile equipment, and the yarn sticking and tear breaking is likely to occur when the guide is stopped.
A guide device including an external frame body and a through structure is designed. The through structure is composed of a rectangular frame-shaped frame, with a through opening and opening part on the frame, equipped with a clamping structure and a wire structure, and the height adjustment of the textile wire and the simultaneous guidance of multiple textile wires are realized through electric slide rails and displacement sensors.
The efficient transportation of textile threads to textile equipment at different locations is achieved, which avoids yarn adhesion and tear, improves the guidance efficiency, and can handle multiple textile threads at the same time.
Smart Images

Figure CN119059361B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of textile thread guiding, and specifically discloses a guiding device for textile threads in the textile category. Background Art
[0002] During the production of textile products, a guiding device is required to guide and convey the textile threads. The traditional guiding devices on the market are usually composed of a thread roller and a thread roller frame. The function of the thread roller is to support the textile thread, and the thread roller frame can fix the thread roller in a suitable position. When such a guiding device is in use, it can indeed achieve a good guiding and transporting effect on the textile thread. However, the guiding device usually does not have a good displacement adjustment structure. The guiding device can usually only convey the textile thread to a single textile device in a fixed direction. If multiple textile devices are operating in the same textile workshop, the staff needs to configure multiple textile thread guiding devices, which results in higher costs during the production of textile products. Since the guiding device can only convey the textile thread to a single textile device, when one of the textile devices finishes processing the textile product, it is necessary to stop the guiding device from conveying the textile thread to the textile device, which leads to a low efficiency of the guiding device in conveying the textile thread to the textile device. When the existing textile thread guiding device stops transporting the textile thread, it usually uses two relatively distributed transmission rollers to abut against the outer wall of the textile thread. Since static electricity is likely to occur when the textile thread is being conveyed, the textile thread will adhere to the aerosol. When the two relatively distributed transmission rollers abut against the textile thread, it is easy for the yarn to adhere to the outer wall of the transmission roller, resulting in the yarn being broken. At the same time, it will also cause the outer wall of the transmission roller to adhere to the fluff, affecting the subsequent yarn conveying by the transmission roller.
[0003] Therefore, the existing textile thread guiding device cannot meet the requirements in actual use, so there is an urgent need for improved technology to solve the above problems. Summary of the Invention
[0004] In view of this, the purpose of the present invention is to provide a guiding device for textile threads in the textile category to solve the above-mentioned problems.
[0005] To achieve the above objectives, the present invention provides a guiding device for textile threads in the textile category, including an external frame and a through structure. The through structure includes a frame in the shape of a rectangular frame, with a through opening and a notch portion formed on the frame. A clamping structure is distributed inside the frame at the notch portion, and a wire guiding structure is connected to the inner cavity of the through opening.
[0006] Preferably, the frame is in a rectangular shape. The through opening and the notch portion are part of the frame. The setting of the through opening can facilitate the connection between the rotating disk and the frame, realizing the adjustment of the use height of the textile thread driven by the frame through the rotating disk. At the same time, the setting of the notch portion can facilitate the connection between the through pipe and the frame, realizing the clamping of the textile thread by the through pipe driving the abutting end.
[0007] The clamping structure includes a partition plate distributed on one side of the frame. The partition plate is penetrated by through pipes at equal intervals. The through pipes penetrate through the frame. One end of the through pipe penetrating through the frame is fixedly connected with an abutting end head. The other end of the through pipe is connected with an infusion structure. A driving structure is connected to the partition plate;
[0008] Preferably, the through pipe can drive the abutting end head to abut against the textile thread. At this time, the textile thread can be clamped between the abutting end head and the abutting pipe. While realizing the height movement of the frame during use, the rotating disk drives the textile thread to move.
[0009] An upper cross beam is distributed above the frame, and a lower cross beam is distributed below the frame. A vertical sliding rod and an electric sliding rail are connected between the upper cross beam and the lower cross beam. The output end of the electric sliding rail is fixed to the frame. The vertical sliding rod is slidably connected to the frame. An upper connecting block is fixedly connected to the upper cross beam, and a lower connecting block is fixedly connected to the lower cross beam. A displacement sensor is fixedly connected to the lower connecting block;
[0010] Preferably, the electric sliding rail can drive the frame to move on the vertical sliding rod. At this time, the frame can drive the use height of the textile thread to be adjusted through the rotating disk. At the same time, the displacement sensor can detect the moving height of the frame.
[0011] During use, the textile thread is lapped with the rotating disk on the frame. The electric sliding rail can drive the textile thread to move through the frame. Subsequently, the abutting end head cooperates with the abutting pipe to clamp the textile thread. When the abutting end head does not abut against the textile thread, the abutting end head can spray water on the textile thread.
[0012] In the above technical solution, both the upper connecting block and the lower connecting block are located between the vertical sliding rod and the electric sliding rail. The detection end of the displacement sensor faces the frame. The frame is always located between the upper connecting block and the lower connecting block. An auxiliary guide rod is detachably connected to the lower cross beam. The auxiliary guide rod penetrates through the lower part of the frame;
[0013] Preferably, the auxiliary guide rod can cooperate with the vertical sliding rod to stably move the frame, and can realize the frame driving the textile thread to move stably in the vertical direction.
[0014] In the above technical solution, the top wall of the inner cavity of the through opening is fixedly connected with an air outlet cavity. The lower part of the air outlet cavity is fixedly connected with air outlet pipes at equal intervals. The bottom wall of the inner cavity of the through opening is provided with an installation notch. The bottom wall of the inner cavity of the through opening is fixedly connected with flow guiding plates on both sides of the installation notch;
[0015] Preferably, when the air outlet cavity drives the external airflow to be transported to the inside of the through-port, the external airflow can be disturbed inside the through-port by the guide plate, thereby preventing the aerosols in the air from contacting the textile thread, while also achieving the drying of the textile thread and preventing the textile thread from being deformed when the abutment end cooperates with the abutment tube to clamp the textile thread.
[0016] In the above technical solution, the wire structure includes a mounting rod rotatably connected to the bottom surface of the air outlet cavity, the outer wall of the mounting rod is fixedly connected to an abutment tube, a rotating disk is fixedly connected to the abutment tube at equal intervals, the edge of the top surface of the rotating disk is provided with a guide fillet, the lower end of the mounting rod is rotatably connected to a bearing seat, and the bearing seat is fixedly connected to the frame through a mounting notch;
[0017] Preferably, when used under normal conditions, the textile thread cannot drive the rotating disk and the abutment tube to rotate. When the textile thread sticks to the rotating disk or the abutment tube, the textile thread can drive the mounting rod to rotate inside the through-hole, thereby avoiding the textile thread from being torn.
[0018] In the above technical solution, the driving structure includes a mounting block fixedly connected to the partition, a magnetic block is fixedly connected to a side of the mounting block close to the frame, an electromagnet is fixedly connected to a portion of the frame opposite to the magnetic block, and the magnetic block and the electromagnet attract each other;
[0019] Preferably, when the electromagnet is working, the magnetic block can be adsorbed on the electromagnet. At this time, the abutment end can cooperate with the abutment tube to clamp the textile line, which can facilitate the frame to drive the textile line to move through the rotating disk, so that the rotating disk drives the textile line to transport to textile equipment at different positions.
[0020] In the above technical solution, the infusion structure includes a liquid supply pipe distributed on one side of the partition, the liquid supply pipe is fixedly connected to a liquid dispensing pipe on the side close to the partition, the liquid dispensing pipe is connected to a solenoid valve, the end of the solenoid valve away from the liquid dispensing pipe is connected to the through pipe, the part of the partition close to the solenoid valve is fixedly connected to a mounting plate, and the solenoid valve is detachably connected to the mounting plate;
[0021] Preferably, there are multiple through-tubes running through the frame, and each through-tube is connected to a solenoid valve. The staff can adjust the amount of water sprayed by the through-tube by controlling the solenoid valve, thereby achieving effective water spraying on the textile line at the abutment end to prevent the textile line from sticking to the rotating disk and the abutment tube.
[0022] In the above technical solution, a sleeve spring, a first ring and a second ring are sleeved on the through tube, one end of the sleeve spring is fixedly connected to the first ring, and the other end of the sleeve spring is fixedly connected to the second ring;
[0023] Preferably, when the abutting end cooperates with the abutting tube to clamp the textile thread, the socket spring can be compressed. When the electromagnet is not working, the repulsive force generated by the socket spring can drive the abutting end to separate from the textile thread.
[0024] In the above technical solution, the upper connecting block and the lower connecting block are fixedly connected to the external frame through bolts. The frames are evenly distributed on the external frame. A controller is detachably connected to the external frame. The controller is connected to the electromagnet, the displacement sensor, and the electric slide rail;
[0025] Preferably, the external frame is connected to an external device. Since multiple frames are simultaneously connected to the external frame, the external frame can guide and convey multiple textile threads simultaneously.
[0026] Compared with the prior art, the present invention has the following beneficial effects:
[0027] The electric slide rail in the textile thread guiding device for textiles can drive the rotating disk to adjust the use height through the frame. At this time, the rotating disk can adjust the use height of the textile thread, and the textile thread can be conveyed to textile equipment at different positions.
[0028] 2. When the electric slide rail in the textile thread guiding device for textiles adjusts the position of the textile thread, the through pipe can drive the abutting end to press against the textile thread, which can prevent the textile thread from separating from the rotating disk when the textile thread moves.
[0029] 3. When the abutting end in the textile thread guiding device for textiles separates from the textile thread, the abutting end can spray water on the textile thread, which can prevent the textile thread from adhering to the abutting end and the abutting tube, and can also prevent the deformed textile thread after pressing.
[0030] 4. The solenoid valve in the textile thread guiding device for textiles is connected to the through pipe, which can facilitate the staff to control the water spraying amount of the abutting end, and can accurately control the water spraying according to the thickness of the textile thread. At the same time, the flow guiding fillet can also guide the excess water liquid, which can prevent the excess water liquid from contacting the textile thread.
[0031] 5. The solenoid valve in the textile thread guiding device for textiles is connected to the through pipe, and the air outlet cavity can cooperate with the flow guiding plate to convey air to the inside of the through port, which can prevent the aerosol in the external air from contacting the textile thread, and can prevent the textile thread from adhering to the rotating disk and the abutting tube. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 is a schematic structural diagram of the present invention;
[0033] Figure 2 is a connection structure diagram of the frame and the electric slide rail in the present invention;
[0034] Figure 3 Connection structure diagram of the through tube and the frame in the present invention;
[0035] Figure 4 Connection structure diagram of the rotating disk and the frame in the present invention;
[0036] Figure 5 Distribution structure diagram of the upper connection block and the lower connection block in the present invention;
[0037] Figure 6 Contact structure diagram of the contact end and the contact tube in the present invention;
[0038] Figure 7 Connection structure diagram of the socket spring and the through tube in the present invention;
[0039] Figure 8 Connection structure diagram of the solenoid valve and the through tube in the present invention.
[0040] 1. External frame; 2. Upper cross beam; 3. Through structure; 4. Wire structure; 5. Upper connection block; 6. Electric slide rail; 7. Vertical slide bar; 8. Frame; 9. Air outlet cavity; 10. Contact tube; 11. Rotating disk; 12. Auxiliary guide rod; 13. Bearing seat; 14. Lower connection block; 15. Lower cross beam; 16. Partition board; 17. Magnet; 18. Mounting block; 19. Electromagnet; 20. Displacement sensor; 21. Through tube; 22. First ring; 23. Contact end; 24. Solenoid valve; 25. Socket spring; 26. Liquid distribution pipe; 27. Liquid supply pipe; 28. Flow guide fillet; 29. Mounting rod; 30. Air outlet pipe; 31. Mounting notch; 32. Notch part; 33. Through hole; 34. Second ring; 35. Flow guide plate; 36. Mounting plate; 37. Controller. Detailed implementation manners
[0041] In order to more clearly understand the above objects, features and advantages of the present invention, the present invention will be further described in detail below with reference to the drawings and specific implementation manners.
[0042] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited by the limitations of the specific embodiments disclosed below.
[0043] Please refer to Figure 1-8 As shown, the present invention is a guiding device for textile threads in the textile category, including an external frame 1 and a through structure 3. The through structure 3 includes a frame 8 in the shape of a rectangular frame. A through hole 33 and a notch part 32 are formed on the frame 8. A clamping structure is distributed inside the frame 8 at the notch part 32. The inner cavity of the through hole 33 is connected with a wire structure 4;
[0044] The external frame 1 can be connected to an external device. At this time, the external device can drive the guiding device to be fixed at an appropriate position, and then the staff can thread the textile thread through the through-hole 33. At the same time, the wire guiding structure 4 can guide and convey the textile thread, and the clamping structure can cooperate with the wire guiding structure 4 to clamp the textile thread.
[0045] The clamping structure includes a partition plate 16 distributed on one side of the frame 8. The partition plate 16 is penetrated by through pipes 21 at equal intervals. The through pipes 21 penetrate through the frame 8. One end of the through pipe 21 penetrating through the frame 8 is fixedly connected with an abutting end 23. The other end of the through pipe 21 is connected with an infusion structure. A driving structure is connected to the partition plate 16. The driving structure includes a mounting block 18 fixedly connected to the partition plate 16. A magnetic block 17 is fixedly connected to one side of the mounting block 18 close to the frame 8. An electromagnet 19 is fixedly connected to the position of the frame 8 opposite to the magnetic block 17. The magnetic block 17 and the electromagnet 19 attract each other;
[0046] An upper cross beam 2 is distributed above the frame 8, and a lower cross beam 15 is distributed below the frame 8. A vertical sliding rod 7 and an electric slide rail 6 are connected between the upper cross beam 2 and the lower cross beam 15. The output end of the electric slide rail 6 is fixed to the frame 8. The vertical sliding rod 7 is slidably connected to the frame 8. An upper connecting block 5 is fixedly connected to the upper cross beam 2, and a lower connecting block 14 is fixedly connected to the lower cross beam 15. A displacement sensor 20 is fixedly connected to the lower connecting block 14;
[0047] Both the upper connecting block 5 and the lower connecting block 14 are located between the vertical sliding rod 7 and the electric slide rail 6. The detection end of the displacement sensor 20 faces the frame 8. The frame 8 is always located between the upper connecting block 5 and the lower connecting block 14. An auxiliary guide rod 12 is detachably connected to the lower cross beam 15. The auxiliary guide rod 12 penetrates through the lower part of the frame 8;
[0048] When the electric slide rail 6 drives the frame 8 to move on the vertical sliding rod 7, the auxiliary guide rod 12 can cooperate with the vertical sliding rod 7 to limit the position of the frame 8. At this time, the frame 8 can stably move the textile thread through the rotating disc 11.
[0049] The top wall of the inner cavity of the through-hole 33 is fixedly connected with an air outlet cavity 9. The lower part of the air outlet cavity 9 is fixedly connected with air outlet pipes 30 at equal intervals. The bottom wall of the inner cavity of the through-hole 33 is provided with a mounting notch 31. Guide plates 35 are fixedly connected to both sides of the bottom wall of the inner cavity of the through-hole 33 where the mounting notch 31 is located;
[0050] The air outlet cavity 9 can convey external air to the inside of the through-hole 33. When the air conveyed by the air outlet cavity 9 contacts the guide plates 35, the guide plates 35 can disturb the air conveyed by the air outlet cavity 9, which can prevent the aerosol in the external air from contacting the textile thread. At the same time, it can also quickly dry the textile thread and prevent the textile thread in contact with the liquid from breaking.
[0051] The conductor structure 4 includes a mounting rod 29 rotatably connected to the bottom surface of the air outlet cavity 9, the outer wall of the mounting rod 29 is fixedly connected to the abutment tube 10, the abutment tube 10 is fixedly connected to the rotating disk 11 at equal intervals, the edge of the top surface of the rotating disk 11 is provided with a guide fillet 28, the lower end of the mounting rod 29 is rotatably connected to the bearing seat 13, and the bearing seat 13 is fixedly connected to the frame 8 through the mounting notch 31;
[0052] When the textile thread passes through the frame 8 through the through-hole 33, the textile thread is overlapped on the rotating disk 11. There are multiple rotating disks 11, so that multiple textile threads can be guided and transported through the rotating disk 11. When a large amount of water is sprayed from the abutment end 23, excess water on the rotating disk 11 can fall through the guide fillet 28.
[0053] When the textile thread is overlapped on the rotating disk 11, the staff turns on the electromagnet 19. At this time, the magnetic block 17 can drive the abutment end 23 through the partition 16 to cooperate with the abutment tube 10 to clamp the textile thread, so that the frame 8 can cooperate with the rotating disk 11 to drive the textile thread to move.
[0054] When the electric slide rail 6 drives the textile thread on the rotating disk 11 to move through the frame 8, the displacement sensor 20 can detect the moving position of the frame 8 in real time, so as to infer the transportation of the textile thread to the textile equipment at different positions.
[0055] The infusion structure includes a liquid supply pipe 27 distributed on one side of the partition 16, a liquid dispensing pipe 26 is fixedly connected to the side of the liquid supply pipe 27 close to the partition 16, a solenoid valve 24 is connected to the liquid dispensing pipe 26, an end of the solenoid valve 24 away from the liquid dispensing pipe 26 is connected to the through pipe 21, a mounting plate 36 is fixedly connected to the portion of the partition 16 close to the solenoid valve 24, and the solenoid valve 24 is detachably connected to the mounting plate 36;
[0056] The upper end of the liquid supply pipe 27 is connected to an external water supply device, which can transport water to the through-tube 21 through the liquid distribution pipe 26. At the same time, the solenoid valve 24 can control whether the liquid supply pipe 27 is connected to the through-tube 21, thereby accurately controlling the amount of water sprayed from the abutment end 23. When the water contacts the textile thread, the textile thread will expand. At the same time, it can also prevent the aerosol from driving the textile thread to adhere to the abutment tube 10 and the rotating disk 11.
[0057] When in use, the textile line overlaps with the rotating disk 11 on the frame 8, and the electric slide rail 6 can drive the textile line to move through the frame 8. Then the abutment end 23 cooperates with the abutment tube 10 to clamp the textile line. When the abutment end 23 does not abut against the textile line, the abutment end 23 can spray water on the textile line.
[0058] A socket spring 25, a first ring 22, and a second ring 34 are sleeved on the through pipe 21. One end of the socket spring 25 is fixedly connected to the first ring 22, and the other end of the socket spring 25 is fixedly connected to the second ring 34;
[0059] When the abutting end 23 cooperates with the abutting pipe 10 to clamp the textile thread, the socket spring 25 can work with stored energy. When the abutting end 23 is separated from the textile thread, the repulsive force generated by the socket spring 25 can drive the abutting end 23 to be separated from the textile thread.
[0060] The upper connecting block 5 and the lower connecting block 14 are fixedly connected to the external frame 1 by bolts. The frames 8 are evenly distributed on the external frame 1. A controller 37 is detachably connected to the external frame 1. The controller 37 is connected to the electromagnet 19, the displacement sensor 20, and the electric slide rail 6;
[0061] The external frame 1 can drive the frame 8 to be fixed to an external device. Since the frames 8 are evenly distributed on the external frame 1, the device can guide and convey multiple textile threads simultaneously. At the same time, the controller 37 is a PLC controller on the existing market. A computer control program can be placed inside the controller 37. When the controller 37 is connected to the electromagnet 19, the displacement sensor 20, and the electric slide rail 6, the computer control program can control the electromagnet 19, the displacement sensor 20, and the electric slide rail 6 to work automatically;
[0062] During actual use of the device, the staff first connect the external frame 1 to external equipment. Then, the take-up ends of the textile equipment are arranged on one side of the external frame 1 from top to bottom in sequence. The staff pass the textile thread conveyed by the textile thread conveying equipment through the through-port 33, and at the same time ensure that the textile thread overlaps on the rotating disk 11. Then, the staff place a computer control program inside the controller 37. When the take-up end of the textile equipment conveys the textile thread to the textile equipment, the textile thread can move on the rotating disk 11. At this time, the external air supply equipment is connected to the collection end of the air outlet cavity 9, and the air outlet cavity 9 can convey external air to the inside of the through-port 33. When the air conveyed by the air outlet cavity 9 contacts the deflector 35, the deflector 35 can disturb the air conveyed by the air outlet cavity 9, which can prevent the aerosol in the external air from contacting the textile thread. At the same time, it can also quickly dry the textile thread and prevent the textile thread in contact with the liquid from breaking. When one of the textile equipment finishes working, when the controller 37 controls the electric slide rail 6 to work, the controller 37 simultaneously controls the electromagnet 19 to work. At this time, the magnetic block 17 can attract the electromagnet 19, and the magnetic block 17 can drive the abutting end 23 through the partition plate 16 to cooperate with the abutting pipe 10 to clamp the textile thread, which can prevent the textile thread from separating from the rotating disk 11. The output end of the electric slide rail 6 can drive the frame 8 to slide on the vertical slide bar 7. At this time, the textile thread on the rotating disk 11 can also move. The displacement sensor 20 can detect the moving position of the frame 8 in real time, so as to infer that the guiding device conveys the textile thread to textile equipment at different positions. When the textile thread reaches the appropriate position, the displacement sensor 20 sends a signal to the controller 37. At this time, the controller 37 controls the solenoid valve 24 to work. The upper end of the liquid supply pipe 27 is connected to external water supply equipment, and the external water supply equipment can convey the liquid through the liquid distribution pipe 26 to the through pipe 21. At the same time, the solenoid valve 24 can control whether the liquid supply pipe 27 is communicated with the through pipe 21, so as to accurately control the water spraying amount of the abutting end 23. When the liquid contacts the textile thread, the textile thread will expand, and at the same time, it can also prevent the aerosol from driving the textile thread to adhere to the abutting pipe 10 and the rotating disk 11. Then, the controller 37 controls the electromagnet 19 not to work, and the repulsive force generated by the socket spring 25 can drive the abutting end 23 to separate from the textile thread, so as to realize that the guiding device conveys the textile thread to another textile equipment.
[0063] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed.
Claims
1. A textile thread guide device, comprising an external frame (1) and a through structure (3), characterized in that: The penetration structure (3) comprises a rectangular frame (8), the frame (8) being provided with a penetration opening (33) and a notch portion (32), a clamping structure being arranged inside the notch portion (32) on the frame (8), and the inner cavity of the penetration opening (33) being connected to a wire structure (4); The clamping structure comprises a partition (16) distributed on one side of the frame (8), the partition (16) is penetrated by penetration tubes (21) at equal intervals, the penetration tubes (21) penetrate the frame (8), one end of the penetration tube (21) penetrating the frame (8) is fixedly connected to an abutment end (23), the other end of the penetration tube (21) is connected to an infusion structure, and the partition (16) is connected to a driving structure; An upper crossbeam (2) is distributed above the frame (8), and a lower crossbeam (15) is distributed below the frame (8); a vertical slide bar (7) and an electric slide rail (6) are connected between the upper crossbeam (2) and the lower crossbeam (15); an output end of the electric slide rail (6) is fixed to the frame (8); the vertical slide bar (7) is slidably connected to the frame (8); an upper connecting block (5) is fixedly connected to the upper crossbeam (2); a lower connecting block (14) is fixedly connected to the lower crossbeam (15); and a displacement sensor (20) is fixedly connected to the lower connecting block (14); When in use, the textile line is overlapped with the rotating disk (11) on the frame (8), the electric slide rail (6) can drive the textile line to move through the frame (8), and then the abutment end head (23) cooperates with the abutment tube (10) to clamp the textile line. When the abutment end head (23) is not in abutment with the textile line, the abutment end head (23) can spray water on the textile line; The driving structure comprises a mounting block (18) fixedly connected to the partition (16); a magnetic block (17) is fixedly connected to a side of the mounting block (18) close to the frame (8); an electromagnet (19) is fixedly connected to a portion of the frame (8) opposite to the magnetic block (17); the magnetic block (17) and the electromagnet (19) attract each other; The infusion structure comprises a liquid supply tube (27) distributed on one side of the partition (16); a liquid dispensing tube (26) is fixedly connected to the side of the liquid supply tube (27) close to the partition (16); a solenoid valve (24) is connected to the liquid dispensing tube (26); an end of the solenoid valve (24) facing away from the liquid dispensing tube (26) is connected to a through-tube (21); a mounting plate (36) is fixedly connected to a portion of the partition (16) close to the solenoid valve (24); the solenoid valve (24) is detachably connected to the mounting plate (36); a sleeve spring (25), a first circular ring (22) and a second circular ring (34) are sleeved on the through-tube (21); one end of the sleeve spring (25) is fixedly connected to the first circular ring (22); and the other end of the sleeve spring (25) is fixedly connected to the second circular ring (34).
2. The textile thread guide device according to claim 1, characterized in that: The upper connecting block (5) and the lower connecting block (14) are both located between the vertical slide bar (7) and the electric slide rail (6); the detection end of the displacement sensor (20) is opposite to the frame (8); the frame (8) is always located between the upper connecting block (5) and the lower connecting block (14); an auxiliary guide rod (12) is detachably connected to the lower cross beam (15); and the auxiliary guide rod (12) penetrates the lower part of the frame (8).
3. The textile thread guide device according to claim 1, characterized in that: The top wall of the inner cavity of the through-hole (33) is fixedly connected to an air outlet cavity (9), the lower part of the air outlet cavity (9) is fixedly connected to air outlet pipes (30) at equal intervals, the bottom wall of the inner cavity of the through-hole (33) is provided with a mounting notch (31), and the bottom wall of the inner cavity of the through-hole (33) is fixedly connected to guide plates (35) on both sides of the mounting notch (31).
4. The textile thread guide device according to claim 1, characterized in that: The conductor structure (4) comprises a mounting rod (29) rotatably connected to the bottom surface of the air outlet cavity (9); an abutment tube (10) is fixedly connected to the outer wall of the mounting rod (29); a rotating disk (11) is fixedly connected to the abutment tube (10) at equal intervals; a flow guide fillet (28) is provided on the edge of the top surface of the rotating disk (11); a bearing seat (13) is rotatably connected to the lower end of the mounting rod (29); and the bearing seat (13) is fixedly connected to the frame (8) via a mounting notch (31).
5. The guide device for textile yarn according to claim 1, characterized in that: The upper connecting block (5) and the lower connecting block (14) are fixedly connected to the external frame (1) by means of bolts; the frames (8) are evenly spaced on the external frame (1); a controller (37) is detachably connected to the external frame (1); and the controller (37) is connected to the electromagnet (19), the displacement sensor (20) and the electric slide rail (6).
Citation Information
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