A sizing device for textile yarns

By designing textile yarn sizing equipment for rotating components and clamping components, the shortcomings of existing equipment in all-round sizing and disassembly are solved, uniform sizing and stability of the yarn is achieved, and the strength and wear resistance of the yarn are improved.

CN119711073BActive Publication Date: 2025-07-18NANTONG BAORUN ENTERPRISE MANAGEMENT CONSULTING CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510215478.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-07-18
Estimated Expiration
2045-02-26

AI Technical Summary

Technical Problem

The existing textile yarn sizing equipment has shortcomings in all-round sizing operations and drain disassembly, resulting in the yarn being prone to break during the weaving process.

Method used

A textile yarn sizing device including a rotating assembly, a clamping assembly, a moving mechanism and a stabilizing mechanism is designed. The rotating shaft and disc are driven by the worm and worm gear transmission to achieve all-round immersion of the yarn into the slurry, and the yarn is stabilized through the clamping assembly and a moving mechanism to ensure uniform sizing and convenient disassembly.

Benefits of technology

The yarn surface is fully uniformly sizing, reducing the risk of breakage of the yarn during the weaving process, and improving the tensile strength and wear resistance of the yarn.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure FT_1
    Figure FT_1
  • Figure FT_2
    Figure FT_2
  • Figure FT_3
    Figure FT_3
Patent Text Reader

Abstract

The present invention relates to the technical field of yarn sizing, and discloses a textile yarn sizing device, including a workbench, a sizing mechanism is arranged on the top of the sizing liquid box, moving mechanisms are arranged on both the left and right sides of the workbench, and a stabilizing mechanism is arranged on the moving mechanisms; the sizing mechanism includes a rotating component and a clamping component, the rotating component includes connecting plates, the number of connecting plates is two, both of the two connecting plates are arranged on the left and right sides inside the sizing liquid box, a first motor is fixedly connected to the top of the limiting block, a worm is fixedly connected to the bottom of the first motor, worm wheels are meshed and connected to the front and back surfaces of the worm, and a rotating shaft is fixedly connected to the center of the worm wheel. For this textile yarn sizing device, by setting the rotating component, when the worm wheel rotates, the rotating shaft can also rotate in the connecting plate, and the rotation of the rotating shaft can also drive the disc to rotate. At this time, it can make the multiple clamped textile yarns rotate around the rotating shaft, so that the surface of the textile yarn can be immersed in the sizing liquid in all directions, and the sizing of the textile yarn is uniform.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of yarn sizing, and specifically relates to a textile yarn sizing device. Background Art

[0002] The original meaning of textile is taken from the general term of spinning and weaving. In the process of textile, it can be roughly divided into two major processes: spinning and weaving. During the process of weaving, textile yarns need to bear the combined action of multiple forces, making the textile yarns extremely easy to break during the weaving process. Therefore, before the textile yarns are woven, they usually need to be sized, so that the sizing agent penetrates into the interior of the textile yarns, improving their tensile strength and wear resistance.

[0003] For example, a textile yarn sizing device with the patent number CN106381618B includes a box body. Two parallel support plates are provided on the left side of the box body. A conveying roller is provided between the two support plates. Both ends of the conveying roller are installed on the support plates through bearings, and one end of the conveying roller penetrates the support plate and is connected to a motor through a belt.

[0004] Regarding the above description, the applicant believes that there are the following problems:

[0005] During use, this technical solution mainly focuses on heating the sizing agent when sizing the yarn, but a comprehensive sizing operation is required when sizing the yarn, and the yarn also needs to be drained and disassembled after sizing. Summary of the Invention

[0006] The purpose of the present invention is to provide a textile yarn sizing device to solve the problems raised in the above background art.

[0007] To solve the above technical problems, the present invention provides the following technical solution: A textile yarn sizing device includes a workbench. Support columns are fixedly connected to the four peripheries of the top of the workbench. A sizing agent box is fixedly connected to the center of the top of the workbench. A sizing mechanism is arranged on the top of the sizing agent box. Moving mechanisms are arranged on the left and right sides of the workbench, and a stabilizing mechanism is arranged on the moving mechanisms;

[0008] The sizing mechanism includes a rotating component and a clamping component, and the clamping component is arranged on the rotating component;

[0009] The rotating assembly includes a connecting plate. There are two connecting plates, and both of the two connecting plates are arranged on the left and right sides inside the slurry box. At the upper and lower ends on the right side of the left connecting plate, limiting blocks are fixedly connected. At the top of the limiting block, a first motor is fixedly connected. At the bottom of the first motor, a worm is fixedly connected. On the front and back surfaces of the worm, worm wheels are meshed and connected. At the center of the worm wheel, a rotating shaft is fixedly connected. The surface of the rotating shaft is rotationally connected to the inside of the connecting plate. On the left surface of the rotating shaft, a pulley is fixedly connected. The worm wheel is arranged between the connecting plate and the pulley. A belt is sleeved on the surfaces of the upper and lower pulleys. On the left and right surfaces of the rotating shaft, discs are fixedly connected. The worm is arranged between the worm wheel and the disc.

[0010] According to the above technical solution, there are two threads with the same specification on the upper and lower surfaces of the worm, and the thread directions on the upper and lower surfaces of the worm are opposite. The surface of the worm is rotationally connected to the inside of the limiting block. When the worm rotates, the four worm wheels can rotate in place, which is convenient for the subsequent rotation of the disc and makes the sizing of the textile yarn uniform.

[0011] According to the above technical solution, the clamping assembly includes a second annular chute, which is opened on the inner sides of the left and right discs. Inside the second annular chute, an annular sliding plate is densely slidably connected. On the inner side of the annular sliding plate, a support plate is fixedly connected. On the inner side of the support plate, a fixed ring is fixedly connected. On one side of the support plate, a mounting seat is fixedly connected. Around the surface of the disc, fixing plates are densely fixedly connected. On the inner side of the fixing plate, a clamping ring is fixedly connected. The mounting seat is arranged on the top of the fixing plate. On the side of the mounting seat close to the clamping ring, a connecting seat is fixedly connected. On the other side of the connecting seat, a connecting ring is fixedly connected. Inside the fixed ring, a first annular chute is opened. There are four fixing plates, and an annular sliding block is slidably connected inside the four fixing plates. On the inner side of the annular sliding block, a second connecting block is fixedly connected. On the outer sides of the four second connecting blocks, a mounting ring is fixedly connected. The fixed ring is arranged between the disc and the mounting ring. Around the inner side of the disc, U-shaped seats are fixedly connected, and the U-shaped seats are all arranged around the surface of the rotating shaft. On the inner side of the annular sliding block, a second connecting block is fixedly connected. On the side of the second connecting block close to the rotating shaft, a first inclined plate is fixedly connected. On the other side of the first inclined plate, a first connecting block is fixedly connected. On the side of the first connecting block close to the U-shaped seat, a first inserting block is fixedly connected.

[0012] According to the above technical solution, the inside of the first inserting block is inserted into the U-shaped seat, and the first inserting block and the U-shaped seat are fixedly connected by a first bolt.

[0013] According to the above technical solution, the moving mechanism includes a long board, which is fixedly connected to the left and right sides of the workbench. A first T-shaped groove is formed inside the side of the long board away from the workbench. Both the front and rear sides inside the first T-shaped groove are slidably connected with first T-shaped blocks. A mounting plate is fixedly connected to the side of the first T-shaped block away from the workbench. A second motor is fixedly connected to the upper end of the side of the mounting plate away from the workbench. A rotating rod is fixedly connected to the side of the second motor close to the workbench. A tooth row is fixedly connected to the top of the long board. A gear is fixedly connected to the surface of the rotating rod. The rotating rod is rotatably connected to a second fixing block on the side considering the workbench. Second T-shaped grooves are formed inside the inner sides of the front and rear two support columns. Second T-shaped blocks are slidably connected inside the second T-shaped grooves. A long block is fixedly connected to the side of the second T-shaped block away from the support column. A long seat is fixedly connected to the other side of the long block. A third fixing block is fixedly connected to the bottom of the long seat. Square grooves are formed inside both the second fixing block and the third fixing block, and the front and rear sides of the square grooves are open. Rotating rods are fixedly connected to the left and right sides of the inner walls of both the second fixing block and the third fixing block. A rotating plate is rotatably connected to the surfaces of the two rotating rods. The number of the long seats is four and they are grouped in pairs. The bottom of the long seat is fixedly connected to the top of the connecting plate.

[0014] According to the above technical solution, the surface of the gear is meshed with the top of the tooth row. The gear is arranged between the second fixing block and the mounting plate. When the gear is meshed with the tooth row, it can finally make the connecting plate rise or fall steadily.

[0015] According to the above technical solution, the stabilizing mechanism includes a first fixing block, which is fixedly connected to the inner sides of the front and rear two long seats. A fourth fixing block is fixedly connected to the inner sides of the left and right two long blocks. A rectangular groove is formed at the top of both the fourth fixing block and the second insert block. A second insert block is inserted into the rectangular groove. A second inclined plate is fixedly connected between the front and rear two second insert blocks. Second bolts are threadedly connected inside both the first fixing block and the second insert block, and the fourth fixing block and the second insert block are fixedly connected through the second bolts.

[0016] According to the above technical solution, the number of both the first fixing blocks and the fourth fixing blocks is four, and the four first fixing blocks and the four fourth fixing blocks are grouped in pairs.

[0017] Compared with the prior art, the beneficial effects achieved by the present invention are:

[0018] The textile yarn sizing device is provided with a rotating component. When the rotating component is in operation, the first motor drives the worm to rotate, and the worm can drive the worm wheels on both sides to rotate in place. When the worm wheels rotate, they can also drive the rotating shaft to rotate in the connecting plate. The rotation of the rotating shaft can also drive the disc to rotate. At this time, multiple clamped textile yarns can be rotated around the rotating shaft, and the surface of the textile yarn can be immersed in the sizing liquid in all directions, so that the textile yarn is evenly sized.

[0019] The textile yarn sizing equipment is provided with a clamping assembly. When the clamping assembly is in operation, when the fixing ring is turned, the fixing ring drives the supporting plate to move, and when the supporting plate moves, it can drive the annular slide plate to slide in the second annular slide groove. At the same time, the supporting plate can also drive the mounting seat to move, and when the mounting seat moves, it can also drive the connecting seat to move. The connecting seat drives the connecting ring and the clamping ring to contact, and the connecting ring and the clamping ring can be formed into a circular ring, which can prevent one end of the textile yarn from moving out of the surface of the connecting ring.

[0020] The textile yarn sizing equipment drives the second connecting block to move by toggling the installing ring. When the second connecting block moves, it can drive the annular slider to slide in the first annular groove. At the same time, the movement of the second connecting block can also drive the first inclined plate to move. At this time, the first inclined plate can drive the first connecting block to move, and the first connecting block drives the first plug block to be inserted into the U-shaped seat. In the later stage, it is only necessary to thread the first plug block and the U-shaped seat with the first bolt. At this time, the position of the annular slide plate can be limited and fixed to prevent the annular slide plate from sliding too much in the second annular groove at will, thereby reducing the possibility of the textile yarn moving out of the clamping ring.

[0021] The textile yarn sizing device is provided with a moving mechanism. When the moving mechanism is in operation, the rotating rod can drive the gear to rotate when it rotates. Since the gear and the tooth row are meshed and connected, the front and rear gears can move to the opposite side on the tooth row. When the gear moves, the first T-block can slide in the first T-slot. At the same time, the rotating plate can also rotate on the surface of the rotating rod at both ends. At the same time, when the gear moves, the second T-block can also slide in the second T-slot. At this time, when the second T-block moves, the long block can be driven to move, and the long block drives the long seat to move. When the long seat moves, the connecting plate can be driven to enter the slurry box, so that the clamped textile yarn can be immersed in the slurry in the slurry box.

[0022] The textile yarn sizing device can finally make the connection plate rise or fall stably by starting the two front and rear second motors, one of the two front and rear second motors drives the rotating rod to rotate, and the other second motor drives the rotating rod to reverse.

[0023] For this textile yarn sizing device, by setting up a stabilizing mechanism, when both second insertion blocks are inserted into the rectangular slots and then the second bolts are used to threadedly fix the second insertion blocks, the fourth fixing block, the second insertion blocks, and the first fixing block respectively, the long block, the long seat, and the second inclined plate can form a triangular stability principle. At this time, when the long seat is driven to rise or fall, the long seat and the long block will not break randomly. At this time, the connecting plate can be stably driven to rise or fall, facilitating the sizing operation on the surface of the textile yarn. Description of the Drawings

[0024] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention. In the drawings:

[0025] Figure 1 is a three-dimensional structure diagram of the present invention;

[0026] Figure 2 is a schematic structural diagram of the rotating assembly;

[0027] Figure 3 is Figure 2 an enlarged structural diagram of part A in

[0028] Figure 4 is a schematic structural diagram of the clamping assembly;

[0029] Figure 5 is Figure 4 a schematic structural diagram of the intercepted part in

[0030] Figure 6 is a schematic structural diagram of the moving mechanism;

[0031] Figure 7 is Figure 6 a schematic structural diagram of the intercepted part in

[0032] Figure 8 is a schematic structural diagram of the stabilizing mechanism;

[0033] Figure 9 is Figure 8 an enlarged structural diagram of part B in

[0034] In the figure: 1, support column; 2, workbench; 3, slurry box; 4, sizing mechanism; 41, rotating assembly; 411, connecting plate; 412, worm gear; 413, limit block; 414, first motor; 415, pulley; 416, rotating shaft; 417, disc; 418, belt; 419, worm; 42, clamping assembly; 421, U-shaped seat; 422, first plug; 423, first connecting block; 424, first bolt; 425, second connecting block; 426, annular slider; 427, clamping ring; 428, connecting ring; 429, connecting seat; 4201, mounting seat; 4202, fixing plate; 4203, support plate; 4204, first annular chute; 4205, annular slide plate; 4206, mounting ring; 4207, first inclined plate; 4208, fixing ring; 4209, second annular chute; 5, stabilizing mechanism; 51, first fixing block; 52, second plug; 53, second inclined plate; 54, rectangular groove; 55, second bolt; 56, fourth fixing block; 6, moving mechanism; 61, long plate; 62, mounting plate; 63, first T-shaped block; 64, first T-shaped groove; 65, tooth row; 66, second fixing block; 67, rotating rod; 68, rotating plate; 69, third fixing block; 601, long seat; 602, long block; 603, second T-shaped groove; 604, second T-shaped block; 605, gear; 606, rotating rod; 607, second motor. Detailed implementation mode

[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0036] The present invention provides the following technical solutions: Embodiment 1

[0037] Combined with Figures 1 to 5 , a textile yarn sizing device, including a workbench 2, support columns 1 are fixedly connected to the four peripheries of the top of the workbench 2, a slurry box 3 is fixedly connected to the center of the top of the workbench 2, a sizing mechanism 4 is arranged on the top of the slurry box 3, moving mechanisms 6 are arranged on the left and right sides of the workbench 2, and a stabilizing mechanism 5 is arranged on the moving mechanism 6;

[0038] The sizing mechanism 4 includes a rotating assembly 41 and a clamping assembly 42. The clamping assembly 42 is arranged on the rotating assembly 41. The rotating assembly 41 includes a connecting plate 411. The number of the connecting plates 411 is two. Both of the two connecting plates 411 are arranged on the left and right sides inside the slurry box 3. At the upper and lower ends of the right side of the left connecting plate 411, limiting blocks 413 are fixedly connected. At the top of the limiting block 413, a first motor 414 is fixedly connected. At the bottom of the first motor 414, a worm 419 is fixedly connected. Worms 419 are meshed and connected to worm wheels 412 on the front and back surfaces of the worm 419. At the center of the worm wheel 412, a rotating shaft 416 is fixedly connected. The surface of the rotating shaft 416 is rotationally connected to the inside of the connecting plate 411. On the left surface of the rotating shaft 416, a pulley 415 is fixedly connected. The worm wheel 412 is arranged between the connecting plate 411 and the pulley 415. A belt 418 is sleeved on the surfaces of the upper and lower two pulleys 415. On the left and right surfaces of the rotating shaft 416, discs 417 are fixedly connected. The worm 419 is arranged between the worm wheel 412 and the disc 417. On the upper and lower surfaces of the worm 419, there are two threads with the same specifications. The thread directions on the upper and lower surfaces of the worm 419 are opposite. The surface of the worm 419 is rotationally connected to the inside of the limiting block 413. The clamping assembly 42 includes a second annular chute 4209. The second annular chute 4209 is opened on the inner sides of the left and right two discs 417. An annular sliding plate 4205 is densely slidably connected inside the second annular chute 4209. On the inner side of the annular sliding plate 4205, a support plate 4203 is fixedly connected. On the inner side of the support plate 4203, a fixing ring 4208 is fixedly connected. On one side of the support plate 4203, a mounting seat 4201 is fixedly connected. Around the surface of the disc 417, fixing plates 4202 are densely fixedly connected. On the inner side of the fixing plate 4202, a clamping ring 427 is fixedly connected. The mounting seat 4201 is arranged on the top of the fixing plate 4202. On the side of the mounting seat 4201 close to the clamping ring 427, a connecting seat 429 is fixedly connected. On the other side of the connecting seat 429, a connecting ring 428 is fixedly connected. A first annular chute 4204 is opened on the inner side of the fixing ring 4208. The number of the fixing plates 4202 is four. An annular sliding block 426 is slidably connected inside the four fixing plates 4202. On the inner side of the annular sliding block 426, a second connecting block 425 is fixedly connected. On the outer sides of the four second connecting blocks 425, a mounting ring 4206 is fixedly connected. The fixing ring 4208 is arranged between the disc 417 and the mounting ring 4206. Around the inner sides of the disc 417, U-shaped seats 421 are fixedly connected. The U-shaped seats 421 are all arranged around the surface of the rotating shaft 416. On the inner side of the annular sliding block 426, a second connecting block 425 is fixedly connected. On the side of the second connecting block 425 close to the rotating shaft 416, a first inclined plate 4207 is fixedly connected. On the other side of the first inclined plate 4207, a first connecting block 423 is fixedly connected. On the side of the first connecting block 423 close to the U-shaped seat 421, a first insertion block 422 is fixedly connected. The surface of the first insertion block 422 is inserted into the inside of the U-shaped seat 421. The first insertion block 422 and the U-shaped seat 421 are fixedly connected by a first bolt 424.

[0039] Furthermore, the first motor 414 drives the worm 419 to rotate, and the worm 419 can drive the worm wheels 412 on both sides to rotate in place. When the worm wheels 412 rotate, the rotating shaft 416 can also drive the rotating shaft 416 to rotate in the connecting plate 411. The rotation of the rotating shaft 416 can also drive the disc 417 to rotate. At this time, the clamped multiple textile yarns can be rotated around the rotating shaft 416, and the surface of the textile yarn can be immersed in the slurry in all directions, so that the textile yarn is sizing evenly. When the fixing ring 4208 is turned, the fixing ring 4208 is 08 drives the support plate 4203 to move, and when the support plate 4203 moves, it can drive the annular slide plate 4205 to slide in the second annular slide groove 4209, and at the same time, the support plate 4203 can also drive the mounting seat 4201 to move, and when the mounting seat 4201 moves, it can also drive the connecting seat 429 to move, and the connecting seat 429 drives the connecting ring 428 and the clamping ring 427 to contact, and the connecting ring 428 and the clamping ring 427 can be formed into a circular ring, which can prevent one end of the textile yarn from moving out of the surface of the connecting ring 428. Embodiment 2

[0040] See also Figures 1 - 7 , and on the basis of the first embodiment, the moving mechanism 6 further comprises a long plate 61, the long plate 61 is fixedly connected to the left and right sides of the workbench 2, a first T-shaped slot 64 is provided inside the long plate 61 on the side away from the workbench 2, first T-shaped blocks 63 are slidably connected to the front and rear sides of the first T-shaped slot 64, a mounting plate 62 is fixedly connected to the side of the first T-shaped block 63 away from the workbench 2, a second motor 607 is fixedly connected to the upper end of the mounting plate 62 away from the workbench 2, a rotating rod 606 is fixedly connected to the side of the second motor 607 close to the workbench 2, a gear row 65 is fixedly connected to the top of the long plate 61, a gear 605 is fixedly connected to the surface of the rotating rod 606, the rotating rod 606 is connected to the second fixed block 66 considering the rotation of the workbench 2, a second T-shaped slot 603 is provided on the inner sides of the front and rear two support columns 1, the first A second T-block 604 is slidably connected inside the second T-slot 603, a long block 602 is fixedly connected to the side of the second T-block 604 away from the support column 1, a long seat 601 is fixedly connected to the other side of the long block 602, a third fixed block 69 is fixedly connected to the bottom of the long seat 601, square grooves are provided inside the second fixed block 66 and the third fixed block 69, and the front and back sides of the square grooves are set as openings, the second fixed block 66 and the third fixed block 69 are fixedly connected to the left and right sides of the inner wall, and the surfaces of the two rotating rods 67 are rotatably connected to the rotating plates 68, there are four long seats 601 and they are grouped in pairs, the bottom of the long seat 601 is fixedly connected to the top of the connecting plate 411, the surface of the gear 605 is meshed with the top of the tooth row 65, and the gear 605 is arranged between the second fixed block 66 and the mounting plate 62.

[0041] Further, when the rotating rod 606 rotates, it can drive the gear 605 to rotate. Since the gear 605 is meshed with the tooth row 65, at this time, the front and rear gears 605 can move towards the opposite side on the tooth row 65. When the gear 605 moves, the first T-shaped block 63 can also slide in the first T-shaped groove 64. At the same time, the rotating plate 68 can also rotate on the surface of the rotating rods 67 at both ends. At the same time, when the gear 605 moves, the second T-shaped block 604 can also slide in the second T-shaped groove 603. At this time, when the second T-shaped block 604 moves, it can drive the long block 602 to move, and the long block 602 drives the long seat 601 to move. When the long seat 601 moves, it can drive the connecting plate 411 into the slurry box 3, so that the clamped textile yarn can be immersed in the slurry in the slurry box 3. Embodiment III

[0042] Refer to Figures 1 - 9 and on the basis of Embodiment I, further obtain that the stabilizing mechanism 5 includes a first fixing block 51. The first fixing block 51 is fixedly connected to the inner sides of the front and rear long seats 601. The inner sides of the left and right long blocks 602 are fixedly connected with a fourth fixing block 56. The fourth fixing block 56 and the top of the second plug block 52 are provided with a rectangular groove 54. The second plug block 52 is inserted into the rectangular groove 54. A second inclined plate 53 is fixedly connected between the front and rear second plug blocks 52. The first fixing block 51 and the second plug block 52 are both internally threaded with a second bolt 55 and the fourth fixing block 56 and the second plug block 52 are fixedly connected through the second bolt 55. The number of the first fixing blocks 51 and the fourth fixing blocks 56 is four each, and the four first fixing blocks 51 and the fourth fixing blocks 56 are grouped in pairs.

[0043] Further, after the two second plug blocks 52 are both inserted into the rectangular groove 54, the second plug blocks 52, the fourth fixing block 56 and the second plug blocks 52, the first fixing block 51 are respectively thread-fixed through the second bolts 55 again, so that the long block 602, the long seat 601 and the second inclined plate 53 present a triangular stabilizing principle. At this time, when the long seat 601 is driven to rise or fall, the long seat 601 and the long block 602 will not break randomly. At this time, the connecting plate 411 can be stably driven to rise or fall, which is convenient for sizing the surface of the textile yarn.

[0044] In actual operation, when this device is used, when sizing the textile yarn, the two ends of the textile yarn can be tied to the clamping ring 427, and when the fixing ring 4208 is turned, the fixing ring 4208 drives the support plate 4203 to move, and when the support plate 4203 moves, it can drive the annular slide plate 4205 to slide in the second annular slide groove 4209, and the support plate 4203 can also drive the mounting seat 4201 to move, and when the mounting seat 4201 moves, it can also drive the connecting seat 429 to move, and the connecting seat 429 drives the connecting ring 428 to contact the clamping ring 427, and the connecting ring 428 and the clamping ring 427 can be formed into a circular ring, which can prevent one end of the textile yarn from moving out of the surface of the connecting ring 428, and at the same time, when the mounting ring 420 is turned, 6, so that the mounting ring 4206 drives the second connecting block 425 to move, and when the second connecting block 425 moves, the annular slider 426 can be driven to slide in the first annular slot 4204, and at the same time, the movement of the second connecting block 425 can also drive the first inclined plate 4207 to move, and at this time, the first inclined plate 4207 can drive the first connecting block 423 to move, and the first connecting block 423 drives the first plug-in block 422 to be plugged into the U-shaped seat 421. In the later stage, it is only necessary to thread the first plug-in block 422 and the U-shaped seat 421 with the first bolt 424, and at this time, the position of the annular slide plate 4205 can be limited and fixed, so as to prevent the annular slide plate 4205 from sliding too much in the second annular slot 4209 at will, and reduce the possibility of the textile yarn moving out of the clamping ring 427;

[0045] When the front and rear second motors 607 are started, one of the front and rear second motors 607 drives the rotating rod 606 to rotate, and the other second motor 607 drives the rotating rod 606 to reverse. When the rotating rod 606 rotates, the gear 605 can be driven to rotate. Since the gear 605 and the tooth row 65 are meshed and connected, the front and rear gears 605 can move to the opposite side on the tooth row 65. When the gear 605 moves, the first T-block 63 can also slide in the first T-slot 64. At the same time, the rotating plate 68 can also rotate on the surface of the rotating rod 67 at both ends. At the same time, when the gear 605 moves, the second T-block 604 can also slide in the second T-slot 603. At this time, when the second T-block 604 moves, the long block 602 can be driven to move, and the long block 602 drives the long seat 601 to move. When the long seat 601 moves, it can drive the connecting plate 411 to enter the slurry box 3, so that the clamped textile yarn can be immersed in the slurry in the slurry box 3.

[0046] When the first motor 414 is started, the first motor 414 can drive the worm 419 to rotate. When the worm 419 rotates, it can drive the worm wheels 412 on both sides to rotate in place. When the worm wheels 412 rotate, they can also drive the rotating shaft 416 to rotate within the connecting plate 411. When the rotating shaft 416 rotates, it can also drive the pulley 415 to rotate. At the same time, the upper and lower pulleys 415 can be driven to rotate through the belt 418. On the other hand, the rotation of the rotating shaft 416 can also drive the disc 417 to rotate. At this time, it can make the multiple textile yarns held rotate around the rotating shaft 416, so that the surface of the textile yarns can be immersed in the sizing agent in all directions, making the sizing of the textile yarns uniform.

[0047] After both second insertion blocks 52 are inserted into the rectangular groove 54, the second insertion blocks 52, the fourth fixing block 56 and the second insertion blocks 52, the first fixing block 51 are respectively fixed by screws with the second bolts 55. In this way, the principle of triangular stability can be presented among the long block 602, the long seat 601 and the second inclined plate 53. At this time, when the long seat 601 is driven to rise or fall, the long seat 601 and the long block 602 will not break randomly. At this time, the connecting plate 411 can be stably driven to rise or fall, facilitating the sizing operation on the surface of the textile yarns.

[0048] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0049] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A sizing device for textile yarns, comprising a workbench (2), characterized in that: Support columns (1) are fixedly connected to the periphery of the top of the workbench (2). A slurry box (3) is fixedly connected to the center of the top of the workbench (2). A sizing mechanism (4) is arranged on the top of the slurry box (3). Moving mechanisms (6) are arranged on both the left and right sides of the workbench (2). A stabilizing mechanism (5) is arranged on the moving mechanism (6). The sizing mechanism (4) includes a rotating assembly (41) and a clamping assembly (42). The clamping assembly (42) is arranged on the rotating assembly (41). The rotating assembly (41) includes connecting plates (411). The number of the connecting plates (411) is two. Both of the two connecting plates (411) are arranged on the left and right sides inside the slurry box (3). At the upper and lower ends of the right side of the left connecting plate (411), limit blocks (413) are fixedly connected. A first motor (414) is fixedly connected to the top of the limit block (413). A worm (419) is fixedly connected to the bottom of the first motor (414). Worms (419) are meshed with worm wheels (412) on the front and rear surfaces of the worm (419). A rotating shaft (416) is fixedly connected to the center of the worm wheel (412). The surface of the rotating shaft (416) is rotationally connected to the inside of the connecting plate (411). A pulley (415) is fixedly connected to the left side surface of the rotating shaft (416). The worm wheel (412) is arranged between the connecting plate (411) and the pulley (415). A belt (418) is sleeved on the surfaces of the upper and lower two pulleys (415). Discs (417) are fixedly connected to the left and right side surfaces of the rotating shaft (416). The worm (419) is arranged between the worm wheel (412) and the disc (417). There are two threads with the same specifications on the upper and lower surfaces of the worm (419). The thread directions on the upper and lower surfaces of the worm (419) are opposite. The surface of the worm (419) is rotationally connected to the inside of the limit block (413). The clamping assembly (42) includes a second annular chute (4209) which is formed on the inner sides of the left and right discs (417). The second annular chute (4209) is densely and slidably connected with an annular slide plate (4205) inside. A support plate (4203) is fixedly connected to the inner side of the annular slide plate (4205). A fixing ring (4208) is fixedly connected to the inner side of the support plate (4203). A mounting seat (4201) is fixedly connected to one side of the support plate (4203). Fixing plates (4202) are densely and fixedly connected to the periphery of the surface of the disc (417). A clamping ring (427) is fixedly connected to the inner side of the fixing plate (4202). The mounting seat (4201) is arranged on the top of the fixing plate (4202). A connecting seat (429) is fixedly connected to one side of the mounting seat (4201) close to the clamping ring (427). A connecting ring (428) is fixedly connected to the other side of the connecting seat (429). A first annular chute (4204) is formed on the inner side of the fixing ring (4208). The number of the fixing plates (4202) is four. An annular slider (426) is slidably connected inside the four fixing plates (4202). A second connecting block (425) is fixedly connected to the inner side of the annular slider (426). A mounting ring (4206) is fixedly connected to the outer sides of the four second connecting blocks (425). The fixing ring (4208) is arranged between the disc (417) and the mounting ring (4206). U-shaped seats (421) are fixedly connected to the periphery of the inner side of the disc (417). The U-shaped seats (421) are all arranged on the periphery of the surface of the rotating shaft (416). A second connecting block (425) is fixedly connected to the inner side of the annular slider (426). A first inclined plate (4207) is fixedly connected to one side of the second connecting block (425) close to the rotating shaft (416). A first connecting block (423) is fixedly connected to the other side of the first inclined plate (4207). A first inserting block (422) is fixedly connected to one side of the first connecting block (423) close to the U-shaped seat (421); The moving mechanism (6) includes a long board (61) fixedly connected to the left and right sides of the workbench (2). Inside one side of the long board (61) away from the workbench (2), a first T-shaped groove (64) is formed. Both the front and rear sides inside the first T-shaped groove (64) are slidably connected with first T-shaped blocks (63). One side of the first T-shaped block (63) away from the workbench (2) is fixedly connected with a mounting plate (62). One side of the mounting plate (62) away from the workbench (2) is fixedly connected with a second motor (607) at the upper end. One side of the second motor (607) close to the workbench (2) is fixedly connected with a rotating rod (606). A toothed row (65) is fixedly connected to the top of the long board (61). A gear (605) is fixedly connected to the surface of the rotating rod (606). The rotating rod (606) is rotatably connected to a second fixing block (66) on one side considering the workbench (2). Inside the inner sides of the front and rear two support columns (1), a second T-shaped groove (603) is formed. A second T-shaped block (604) is slidably connected inside the second T-shaped groove (603). One side of the second T-shaped block (604) away from the support column (1) is fixedly connected with a long block (602). The other side of the long block (602) is fixedly connected with a long seat (601). The bottom of the long seat (601) is fixedly connected with a third fixing block (69). Square grooves are formed inside both the second fixing block (66) and the third fixing block (69), and the front and rear sides of the square grooves are open. Rotating rods (67) are fixedly connected to the left and right sides of the inner walls of the second fixing block (66) and the third fixing block (69). A rotating plate (68) is rotatably connected to the surfaces of the two rotating rods (67). The number of the long seats (601) is four and they are grouped in pairs. The bottom of the long seat (601) is fixedly connected with the top of the connecting plate (411).

2. The sizing device for textile yarns according to claim 1, characterized in that: The inner surface of the first plug (422) is inserted into the U-shaped seat (421), and the first plug (422) and the U-shaped seat (421) are fixedly connected by a first bolt (424).

3. The sizing device for textile yarns according to claim 2, characterized in that: The surface of the gear (605) is meshed with the top of the toothed row (65), and the gear (605) is arranged between the second fixing block (66) and the mounting plate (62).

4. The sizing device for textile yarns according to claim 3, characterized in that: The stabilizing mechanism (5) includes a first fixing block (51) fixedly connected to the inner sides of the front and rear two long seats (601). A fourth fixing block (56) is fixedly connected to the inner sides of the left and right two long blocks (602). A rectangular groove (54) is formed at the top of the fourth fixing block (56) and the second plug (52). A second plug (52) is inserted into the rectangular groove (54). A second inclined plate (53) is fixedly connected between the front and rear two second plugs (52). Second bolts (55) are threadedly connected to both the first fixing block (51) and the second plug (52), and the fourth fixing block (56) and the second plug (52) are fixedly connected by the second bolts (55).

5. The sizing device for textile yarns according to claim 4, characterized in that: The number of the first fixing blocks (51) and the fourth fixing blocks (56) is four each, and the four first fixing blocks (51) and the fourth fixing blocks (56) are grouped in pairs of two.

Citation Information

Patent Citations

  • A kind of textile yarn sizing equipment

    CN106381618B

  • Yarn sizing device capable of smoothly paying off yarn

    CN114908492A