Gum dipping device suitable for cotton yarn processing

Through the design of the driving and controlling components and the horizontal thread shifting components, the cotton yarn is made to oscillate and bounce in the glue, which solves the problem of the glue only adhering to the surface of the yarn, achieves a firm bond between the glue and the internal fibers of the yarn, and improves the durability and functionality of the product.

CN120625282APending Publication Date: 2025-09-12JIANGSU TAIDA TEXTILE
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202510979898.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-16
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

In existing cotton yarn dipping devices, the glue only adheres to the yarn surface and fails to form a strong chemical or physical bond with the internal fibers, resulting in weak bonding and insufficient product durability and functionality.

Method used

By cooperating the driving and regulating components with the horizontal thread shifting components, the glue is made to penetrate into the fiber gaps inside the yarn through the oscillation and bouncing motion of the cotton yarn. The circulation of the glue avoids precipitation and stratification, ensuring the uniformity and permeability of the glue.

Benefits of technology

It improves the bonding force between yarn and glue, enhances the tensile strength, wear resistance and durability of the product, avoids glue precipitation and bubble residue, and ensures stable dipping quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120625282A_ABST
    Figure CN120625282A_ABST
Patent Text Reader

Abstract

The invention provides a gum dipping device suitable for cotton yarn processing, and relates to the field of cotton yarn processing. The device comprises a glue solution storage assembly, the glue solution storage assembly comprises a glue solution storage box, the interior and the exterior of the glue solution storage box are jointly provided with a glue solution flowing assembly, and a mounting dispersion pipe is provided with an upper wire shifting assembly and a lower wire shifting assembly; the up-down wire shifting assembly comprises an assembly frame fixedly installed on the outer wall of the installation dispersing pipe, a wire shifting shaft is rotationally installed at the bottom end of the assembly frame, driving shifting pieces are fixedly installed on the outer wall of the wire shifting shaft at equal angles, and the outer wall of the installation dispersing pipe fixedly communicates with spray pipes corresponding to the driving shifting pieces. Cotton yarn can oscillate and bounce left and right in a through hole through cooperation of the driving regulation and control assembly and the transverse yarn shifting assembly, the cotton yarn can fully move in glue liquid through cooperation of the yarn shifting effect of the upper and lower yarn shifting assemblies, the glue liquid is forced to penetrate into fiber gaps in the yarn through inertia and gravity, and the yarn shifting effect is improved. And the defect that the glue solution is only attached to the surface during static soaking is avoided.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the field of cotton yarn processing, in particular to a dipping device suitable for cotton yarn processing. Background Art

[0002] Cotton yarn dipping involves immersing the yarn in a specific adhesive solution to improve its physical properties and functionality. Dipping involves immersing the yarn (e.g., cotton yarn) in an adhesive solution (e.g., resin, rubber solution), which is then dried or cured to form a uniform film. Its core purpose is to enhance the yarn's strength, abrasion resistance, and corrosion resistance, while also increasing stiffness, reducing thermal shrinkage, and improving adhesion to the rubber compound. Dipping is widely used in textiles, composite materials, rubber products, and other fields, including tire manufacturing, conveyor belts, and composite cord.

[0003] After searching, the application number is 202420927910.3, which is a continuous processing yarn dipping equipment. The guide frames and support rollers on both sides of the glue storage box provide support for the yarn, and the yarn drives the rotating frame, scraper ring, and jet ring to rotate on the movable bar. The jet end of the jet ring is facing the inclined end of the yarn to transmit the yarn. The yarn enters the glue storage box and is soaked in glue under the guidance of the guide part. At the same time, the air supply adjustment part supplies air to the jet ring through the injection pipe. The jet ring sprays gas to blow the yarn near the dipping end to promote the shedding of glue. When the yarn passes through the scraper ring, the inner wall of the scraper ring scrapes the yarn to promote the shedding of excess glue.

[0004] In the above technical solution, when the cotton yarn is dipped in glue, the yarn is simply guided into the glue storage box by the guide member to be immersed in the glue; however, this method can only make the glue cover various parts of the surface of the cotton yarn. The glue only adheres to the surface of the yarn and fails to form a strong chemical or physical bond with the internal fibers, resulting in a weak bonding force between the glue layer and the yarn. Under the action of friction, washing or mechanical stress, the glue may peel off or fall off, reducing the durability and functionality of the product. Summary of the Invention

[0005] The object of the present invention is to provide a dipping device suitable for cotton yarn processing, so as to solve the problems raised in the background technology in the above content and overcome the technical defects thereof.

[0006] To solve the above technical problems, the technical solution adopted by the present invention is: a glue dipping device suitable for cotton yarn processing, comprising a glue storage assembly, the glue storage assembly comprising a glue storage box, a glue flow assembly being provided both inside and outside the glue storage box, the glue flow assembly comprising an installation dispersion pipe fixedly installed inside the glue storage box, and an upper and lower thread diverting assembly being provided on the installation dispersion pipe; The upper and lower wire-digging components include an assembly frame fixedly mounted on the outer wall of the installation dispersion tube, a wire-digging shaft is rotatably mounted on the bottom end of the assembly frame, a driving paddle is fixedly mounted at an equal angle on the outer wall of the wire-digging shaft, a nozzle corresponding to the driving paddle is fixedly connected to the outer wall of the installation dispersion tube, and cotton yarn is attached to one side wall of the driving paddle.

[0007] As a further solution of the present invention: a low-level storage tank is provided at the front end of the glue storage box, a high-level storage tank is provided at the rear end of the glue storage box, and a partition assembly is provided between the low-level storage tank and the high-level storage tank.

[0008] As a further solution of the present invention: the glue flow component includes a pump body fixedly installed on the side wall of the glue storage box, the input end of the pump body is fixedly connected to a liquid suction pipe, and the end of the liquid suction pipe passes through the side wall of the glue storage box and extends to the interior of the low-level storage tank.

[0009] As a further solution of the present invention: the output end of the pump body is fixedly connected to a delivery pipe, the output end of the delivery pipe passes through the side wall of the glue storage box and is connected to the installation dispersion pipe, and the installation dispersion pipe and the nozzle are located above the high-level storage tank.

[0010] As a further solution of the present invention: a second tension transmission roller is rotatably mounted on the front upper end surface of the glue storage box, and a first tension transmission roller is rotatably mounted on the rear upper end surface of the glue storage box.

[0011] As a further solution of the present invention: the partition assembly component includes a partition main board fixedly installed on the side wall of the glue storage box, and partition auxiliary boards are fixedly installed between adjacent partition main boards. A movement channel is opened inside the partition auxiliary board, and a glue flow channel is opened inside the partition main board.

[0012] As a further solution of the present invention: a driving and regulating component is provided inside the glue flow channel, and the driving and regulating component includes a driving shaft rotatably mounted on the partition main board, and blades are fixedly mounted at equal angles on the outer wall of the driving shaft.

[0013] As a further solution of the present invention: a driving rod is fixedly mounted on the outer wall of one end of the driving shaft close to the auxiliary partition plate, and a collision ball is fixedly mounted on the top end of the driving rod.

[0014] As a further solution of the present invention: a horizontal line shifting assembly is provided on the side wall of the partition main board close to the driving and regulating assembly, and the horizontal line shifting assembly includes a fixed limiting sleeve fixedly installed on the side wall of the partition main board, a spring is fixedly installed inside the fixed limiting sleeve, and a line shifting drive rod slidably connected to the fixed limiting sleeve is fixedly installed on the top of the spring.

[0015] As a further solution of the present invention: a through hole is opened inside the wire driving rod, a flexible contact sleeve is fixedly installed on the inner wall of the through hole, and a collision head is fixedly installed on the top of the wire driving rod.

[0016] Compared with the prior art, the present invention has the following beneficial effects: The cooperation between the driving and regulating component and the horizontal wire shifting component provided in the present invention can make the cotton yarn oscillate and bounce left and right in the through hole, and cooperate with the wire shifting action of the upper and lower wire shifting components to make the cotton yarn move fully in the glue, and use the effects of inertia and gravity to force the glue to penetrate into the fiber gaps inside the yarn, avoiding the defect that the glue only adheres to the surface during static immersion. After the glue penetrates into the interior of the yarn, a stronger bond is formed between the fibers, thereby improving the tensile strength, wear resistance and durability of the product.

[0017] When the driving paddle of the present invention moves the cotton yarn to a certain height, the cotton yarn will slide down from the slope of the driving paddle, thereby enabling the cotton yarn to bounce up and down in the glue storage box. This ensures that the cotton yarn can bounce up and down during the dipping process. In this way, the vibration and bouncing can make the cotton yarn coming out of the glue shake off the excess glue, retaining an appropriate glue layer, avoiding slow drying, high cost or performance degradation caused by excessive glue. The bouncing of the yarn stirs the glue, preventing the glue from precipitating or stratifying its components, maintaining the uniformity of the glue, and ensuring stable dipping quality. At the same time, during the bouncing process, the relative movement of the yarn and the glue can effectively expel bubbles adsorbed by the fiber, preventing the residual bubbles from causing coating cavities or peeling. The dynamic movement allows the glue to more evenly wrap the yarn surface, reducing local glue accumulation or coating leakage.

[0018] The glue of the present invention is continuously mixed during the circulating flow, preventing solid particles, fillers or additives from settling or stratifying due to standing, ensuring uniform glue composition during dipping, and preventing local viscosity differences caused by sedimentation of the glue in the flowing state, thereby ensuring consistency of performance such as permeability and adhesion of the glue during the dipping process. In addition, the dynamic flow can carry away bubbles brought into the yarn, preventing the formation of pores or voids in the glue, improving the density of the coating and the surface quality of the product, and flowing to flush the yarn surface, reducing the probability of the glue encapsulating air during dipping, preventing cracks or falling off during subsequent drying or curing. The flowing glue continuously flushes the yarn, promoting the glue to penetrate into the gaps between fibers inside the yarn, enhancing the bonding force between fibers, and improving the tensile strength and wear resistance of the product. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The disclosure of the present invention is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of the present invention. In the accompanying drawings, the same reference numerals are used to refer to the same components. Among them: Figure 1 Schematically shows an overall structural diagram proposed according to one embodiment of the present invention; Figure 2 Schematically shows a schematic diagram of the structure inside the low-level storage tank proposed according to one embodiment of the present invention; Figure 3 Schematically shows a structural diagram of a glue flow component proposed according to one embodiment of the present invention; Figure 4 Schematically shows a method according to an embodiment of the present invention. Figure 2 A schematic diagram of the partially enlarged structure at point A in the middle; Figure 5 Schematically shows the internal structure of the glue storage box proposed according to one embodiment of the present invention; Figure 6 A schematic diagram of the structure of a partition assembly proposed according to one embodiment of the present invention is shown; Figure 7 A schematic diagram of the structure of the connection between the driving and regulating assembly and the partition auxiliary plate according to one embodiment of the present invention is shown; Figure 8 Schematically shows a structural diagram of a horizontal wire diverter assembly proposed according to one embodiment of the present invention; Numbers in the figure: 1. Glue storage assembly; 101. Low-level storage tank; 102. High-level storage tank; 103. Glue storage tank; 2. Glue flow assembly; 201. Pump body; 202. Delivery pipe; 203. Install dispersion pipe; 204. Nozzle; 205. Liquid extraction pipe; 3. Cotton yarn; 4. Partition assembly assembly; 401. Partition main board; 402. Partition auxiliary board; 403. Glue flow channel; 404. Movement channel; 5. First Tension transmission roller; 6. Second tension transmission roller; 7. Upper and lower wire-digging assemblies; 701. Assembly frame; 702. Wire-digging shaft; 703. Drive paddle; 8. Drive control assembly; 801. Drive shaft; 802. Blade; 803. Drive rod; 804. Collision ball; 9. Horizontal wire-digging assembly; 901. Fixed limit sleeve; 902. Wire-digging drive rod; 903. Collision head; 904. Through hole; 905. Flexible contact sleeve; 906. Spring. DETAILED DESCRIPTION

[0020] It is easy to understand that according to the technical solution of the present invention, without changing the essential spirit of the present invention, a person skilled in the art can propose a variety of interchangeable structural modes and implementation modes. Therefore, the following specific embodiments and drawings are only exemplary descriptions of the technical solution of the present invention and should not be regarded as the entire invention or as a limitation or restriction of the technical solution of the present invention.

[0021] An embodiment according to the present invention is shown in conjunction with the accompanying drawings.

[0022] See also Figures 1 to 4 , a dipping device suitable for cotton yarn processing, comprising a glue storage component 1, the glue storage component 1 includes a glue storage box 103, the inside and outside of the glue storage box 103 are jointly provided with a glue flow component 2, the glue flow component 2 includes a mounting dispersion pipe 203 fixedly installed inside the glue storage box 103, and the mounting dispersion pipe 203 is provided with an upper and lower wire drawing component 7; the upper and lower wire drawing component 7 includes an assembly frame 701 fixedly installed on the outer wall of the mounting dispersion pipe 203, a wire drawing shaft 702 is rotatably installed at the bottom end of the assembly frame 701, and a driving paddle 703 is fixedly installed on the outer wall of the wire drawing shaft 702 at an equal angle, and a nozzle 204 corresponding to the driving paddle 703 is fixedly connected to the outer wall of the mounting dispersion pipe 203, and a cotton yarn 3 is attached to one side wall of the driving paddle 703.

[0023] A low-level storage tank 101 is provided at the front end of the interior of the glue storage tank 103, and a high-level storage tank 102 is provided at the rear end of the interior of the glue storage tank 103. A partition assembly component 4 is provided between the low-level storage tank 101 and the high-level storage tank 102. The glue flow component 2 includes a pump body 201 fixedly installed on the side wall of the glue storage tank 103. The input end of the pump body 201 is fixedly connected to a liquid extraction pipe 205. The end of the liquid extraction pipe 205 passes through the side wall of the glue storage tank 103 and extends to the interior of the low-level storage tank 101. The output end of the pump body 201 is fixedly connected to a conveying pipe 202. The output end of the conveying pipe 202 passes through the side wall of the glue storage tank 103 and is connected to the installation dispersion pipe 203. The installation dispersion pipe 203 and the nozzle 204 are located above the high-level storage tank 102. The second tension transmission roller 6 is rotatably installed on the upper end face of the front end of the glue storage tank 103, and the first tension transmission roller 5 is rotatably installed on the upper end face of the rear end of the glue storage tank 103.

[0024] By adopting the above technical solution, when in use, the pump body 201 is started, and the pump body 201 works to extract the glue in the low-level storage tank 101 through the liquid extraction pipe 205, and transport the glue to the delivery pipe 202 through the pump body 201, and transport the glue to the installation dispersion pipe 203 through the delivery of the delivery pipe 202. The glue can be sprayed into the high-level storage tank 102 by a plurality of nozzles 204 connected on the side wall of the installation dispersion pipe 203. When the nozzle 204 sprays the glue, the sprayed glue can be sprayed onto the driving paddle 703 at the corresponding position. By driving the driving paddle 703, the wire drawing shaft 702 can be driven to rotate on the assembly frame 701, which can drive the driving paddle 703 located on the other wire drawing shaft 702 to rotate. When it is close to the cotton yarn When the driving paddle 703 on one side of 3 rotates, the driving paddle 703 can move the cotton yarn 3, and the surface structure of the driving paddle 703 in contact with the cotton yarn 3 is an arc slope structure. It should be noted that when the driving paddle 703 moves the cotton yarn 3 to a certain height, the cotton yarn 3 will slide down from the slope of the driving paddle 703, thereby enabling the cotton yarn 3 to bounce up and down in the glue storage box 103, so that the cotton yarn 3 can bounce up and down during the dipping process. In this way, the cotton yarn 3 coming out of the glue can be shaken off excess glue through vibration and bouncing, and an appropriate glue layer can be retained to avoid slow drying, high cost or performance degradation caused by excessive glue. The bouncing of the yarn stirs the glue to prevent the glue from precipitating or stratifying, maintain the uniformity of the glue, and ensure the stability of the dipping quality. At the same time, during the bouncing process, the relative movement of the yarn and the glue can effectively expel the bubbles adsorbed by the fiber, preventing the residual bubbles from causing coating voids or peeling. The dynamic movement makes the glue wrap the yarn surface more evenly, reducing local glue accumulation or coating leakage.

[0025] Specifically, such as Figures 5 to 8As shown, the partition assembly component 4 includes a partition main board 401 fixedly mounted on the side wall of the glue storage box 103, a partition auxiliary plate 402 is fixedly mounted between adjacent partition main boards 401, a movement channel 404 is opened inside the partition auxiliary plate 402, a glue flow channel 403 is opened inside the partition main board 401, and a drive control component 8 is provided inside the glue flow channel 403. The drive control component 8 includes a drive shaft 801 rotatably mounted on the partition main board 401, blades 802 are fixedly mounted at equal angles on the outer wall of the drive shaft 801, and a drive rod 803 is fixedly mounted on the outer wall of one end of the drive shaft 801 close to the partition auxiliary plate 402. A collision ball 804 is fixedly installed on the top of the driving rod 803, and a horizontal line dialing component 9 is provided on the side wall of the partition main board 401 close to the driving control component 8. The horizontal line dialing component 9 includes a fixed limiting sleeve 901 fixedly installed on the side wall of the partition main board 401, and a spring 906 is fixedly installed inside the fixed limiting sleeve 901. The top of the spring 906 is fixedly installed with a line dialing driving rod 902 which is slidably connected to the fixed limiting sleeve 901. A through hole 904 is opened inside the line dialing driving rod 902, and a flexible contact sleeve 905 is fixedly installed on the inner wall of the through hole 904. The top of the line dialing driving rod 902 is fixedly installed with a collision head 903.

[0026] By adopting the above technical solution, when in use, the glue in the low-level storage tank 101 can be transported to the high-level storage tank 102 through the extraction of the glue flow component 2. It should be noted that the glue flow component 2 transports the glue to the high-level storage tank 102 with a certain displacement, thereby ensuring that the high-level storage tank 102 has a stable glue liquid level, so that the high-level liquid level in the high-level storage tank 102 can always submerge the cotton yarn 3, ensuring that the cotton yarn 3 can fully contact with the glue. At the same time, the glue in the high-level storage tank 102 can flow to the low-level storage tank 101 through the glue flow channel 403 and the movement channel 404, thereby realizing the flow of glue during the dipping process, ensuring the glue storage tank 103 The glue has high fluidity. It should be noted that the amount of glue discharged from the glue flow component 2 to the high-level storage tank 102 is the same as the amount of glue flowing from the high-level storage tank 102 to the low-level storage tank 101, so that the two are in a dynamic equilibrium state. In this way, the glue is continuously mixed during the circulation flow, avoiding the sedimentation or stratification of solid particles, fillers or additives due to standing, ensuring the uniform composition of the glue during dipping, and the flow state prevents the glue from causing local viscosity differences due to precipitation, ensuring the consistency of the glue's permeability, adhesion and other properties during the dipping process, and the flow can accelerate the heat exchange between the glue and the outside world or temperature control equipment, avoiding the temperature gradient caused by static storage between the high-level tank and the low-level tank, and ensuring the stability of the glue viscosity. Moreover, dynamic flow can carry away bubbles brought in by the yarn, avoid the formation of pores or voids in the glue, improve the density of the coating and the surface quality of the product, flow to flush the yarn surface, reduce the probability of the glue encapsulating air during dipping, and prevent cracks or falling off during subsequent drying or curing. The flowing glue continuously flushes the yarn, promotes the glue to penetrate into the fiber gaps inside the yarn, enhances the bonding force between fibers, and improves the tensile strength and wear resistance of the product. At the same time, the flow from the high-level tank to the low-level tank relies on gravity rather than additional power equipment, saving energy and reducing system complexity.

[0027] In the process of the glue in the high-level storage tank 102 flowing to the low-level storage tank 101 through the glue flow channel 403, the glue can push the blade 802 to move, and the blade 802 can push the driving shaft 801 to rotate, so that the rotating driving shaft 801 can drive the driving rod 803 to move, and the driving rod 803 drives the collision ball 804 to move in the motion channel 404. The structure of the motion channel 404 matches the structural dimensions of the driving rod 803 and the collision ball 804. In this way, the collision ball 804 that moves to the highest point can collide with the collision head 903 of the hemispherical structure. In this way, when the collision head 903 is squeezed, the wire driving rod 902 can squeeze the spring 906 toward the inside of the fixed limit sleeve 901. Contraction. When there is no squeezing force, the spring 906 can make the wire driving rod 902 slide and pop out from the fixed limit sleeve 901, so that the cotton yarn 3 can bounce in the through hole 904. The setting of the flexible contact sleeve 905 can reduce the friction of the cotton yarn 3 during the bouncing process. The cotton yarn 3 oscillates and bounces left and right in the through hole 904, and cooperates with the wire-pulling action of the upper and lower wire-pulling components 7, so that the cotton yarn 3 can fully move in the glue. The inertia and gravity are used to force the glue to penetrate into the fiber gaps inside the yarn, avoiding the defect that the glue only adheres to the surface during static immersion. After the glue penetrates into the inside of the yarn, a stronger bond is formed between the fibers, thereby improving the tensile strength, wear resistance and durability of the product.

[0028] Working principle: When in use, start the pump body 201, the pump body 201 works, and can extract the glue liquid in the low-level storage tank 101 through the liquid extraction pipe 205, and transport the glue liquid to the delivery pipe 202 through the pump body 201, and then transport the glue liquid to the installation dispersion pipe 203 through the delivery pipe 202. The glue liquid can be sprayed into the high-level storage tank 102 through the multiple nozzles 204 connected on the side wall of the installation dispersion pipe 203. When the nozzle 204 sprays the glue liquid, the sprayed glue liquid can be sprayed onto the driving paddle 7 at the corresponding position. 03, by driving the driving paddle 703, the thread-pulling shaft 702 can be driven to rotate on the assembly frame 701, which can drive the driving paddles 703 on the other thread-pulling shafts 702 to rotate. When the driving paddle 703 close to the side of the cotton yarn 3 rotates, the driving paddle 703 can pry the cotton yarn 3, and the surface structure of the driving paddle 703 in contact with the cotton yarn 3 is an arc slope structure. It should be noted that when the driving paddle 703 pries the cotton yarn 3 to a certain height, the cotton yarn 3 will move from the slope surface of the driving paddle 703. The glue liquid in the low-level storage tank 101 can be transported to the high-level storage tank 102 by the extraction of the glue liquid flow component 2. It should be noted that the glue liquid flow component 2 transports the glue liquid to the high-level storage tank 102 with a certain displacement, thereby ensuring that the high-level storage tank 102 has a stable glue liquid level, so that the high-level liquid level in the high-level storage tank 102 can always submerge the cotton yarn 3, ensuring that the cotton yarn 3 can fully contact with the glue liquid. At the same time, the glue in the high-level storage tank 102 can flow into the low-level storage tank 101 through the glue flow channel 403 and the movement channel 404, so that the glue can flow during the dipping process, ensuring that the glue in the glue storage tank 103 has high fluidity. It should be noted that the glue discharge volume discharged from the glue flow component 2 to the high-level storage tank 102 is the same as the glue discharge volume flowing from the high-level storage tank 102 to the low-level storage tank 101, so that the two are in a dynamic equilibrium state, so that the glue is continuously mixed during the circulating flow.

[0029] In the process of the glue in the high-level storage tank 102 flowing to the low-level storage tank 101 through the glue flow channel 403, the glue can push the blade 802 to move, and the blade 802 can push the driving shaft 801 to rotate, so that the rotating driving shaft 801 can drive the driving rod 803 to move, and the driving rod 803 drives the collision ball 804 to move in the motion channel 404. The structure of the motion channel 404 matches the structural dimensions of the driving rod 803 and the collision ball 804. In this way, the collision ball 804 that moves to the highest point can collide with the collision head 903 of the hemispherical structure, so that it can collide with the collision ball 804. When the head 903 is squeezed, the wire driving rod 902 squeezes the spring 906 to contract into the fixed limit sleeve 901. When there is no squeezing force, the wire driving rod 902 can slide out of the fixed limit sleeve 901 under the action of the spring 906, so that the cotton yarn 3 can bounce in the through hole 904. The setting of the flexible contact sleeve 905 can reduce the friction of the cotton yarn 3 during the bouncing process. The cotton yarn 3 oscillates and bounces left and right in the through hole 904, and cooperates with the wire-moving action of the upper and lower wire-moving components 7, so that the cotton yarn 3 can fully move in the glue liquid, ensuring the glue-impregnation effect of the cotton yarn 3.

[0030] The technical scope of the present invention is not limited to the contents of the above description. Those skilled in the art can make various deformations and modifications to the above embodiments without departing from the technical idea of ​​the present invention, and these deformations and modifications should all fall within the protection scope of the present invention.

Claims

1. A dipping device suitable for cotton yarn processing, characterized in that: The invention comprises a glue storage assembly (1), wherein the glue storage assembly (1) comprises a glue storage box (103), wherein a glue flow assembly (2) is provided on the inside and outside of the glue storage box (103), wherein the glue flow assembly (2) comprises a mounting dispersion pipe (203) fixedly mounted inside the glue storage box (103), and wherein upper and lower wire drawing assemblies (7) are provided on the mounting dispersion pipe (203); The upper and lower wire-diverting components (7) include an assembly frame (701) fixedly mounted on the outer wall of the installation dispersion tube (203); a wire-diverting shaft (702) is rotatably mounted on the bottom end of the assembly frame (701); a driving paddle (703) is fixedly mounted at an equal angle on the outer wall of the wire-diverting shaft (702); a nozzle (204) corresponding to the driving paddle (703) is fixedly connected to the outer wall of the installation dispersion tube (203); and a cotton yarn (3) is attached to one side wall of the driving paddle (703).

2. A dipping device suitable for cotton yarn processing according to claim 1, characterized in that: A low-position storage tank (101) is provided at the front end of the interior of the glue storage box (103), a high-position storage tank (102) is provided at the rear end of the interior of the glue storage box (103), and a partition assembly component (4) is provided between the low-position storage tank (101) and the high-position storage tank (102).

3. A dipping device suitable for cotton yarn processing according to claim 1, characterized in that: The glue liquid flow component (2) comprises a pump body (201) fixedly mounted on the side wall of the glue liquid storage tank (103); the input end of the pump body (201) is fixedly connected to a liquid extraction pipe (205); the end of the liquid extraction pipe (205) penetrates the side wall of the glue liquid storage tank (103) and extends to the interior of the low-level storage tank (101).

4. A dipping device suitable for cotton yarn processing according to claim 3, characterized in that: The output end of the pump body (201) is fixedly connected to a delivery pipe (202), and the output end of the delivery pipe (202) penetrates the side wall of the glue storage tank (103) and is connected to the installation dispersion pipe (203). The installation dispersion pipe (203) and the nozzle (204) are located above the high-level storage tank (102).

5. The dipping device for cotton yarn processing according to claim 1, characterized in that: A second tension transmission roller (6) is rotatably mounted on the front upper end surface of the glue liquid storage box (103), and a first tension transmission roller (5) is rotatably mounted on the rear upper end surface of the glue liquid storage box (103).

6. A dipping device suitable for cotton yarn processing according to claim 2, characterized in that: The partition assembly component (4) comprises a partition main plate (401) fixedly mounted on the side wall of the glue storage box (103), a partition auxiliary plate (402) fixedly mounted between adjacent partition main plates (401), a movement channel (404) being provided inside the partition auxiliary plate (402), and a glue flow channel (403) being provided inside the partition main plate (401).

7. A dipping device suitable for cotton yarn processing according to claim 6, characterized in that: A driving and regulating assembly (8) is provided inside the glue flow channel (403), and the driving and regulating assembly (8) comprises a driving shaft (801) rotatably mounted on the partition main board (401), and blades (802) are fixedly mounted at equal angles on the outer wall of the driving shaft (801).

8. The dipping device for cotton yarn processing according to claim 7, characterized in that: A driving rod (803) is fixedly mounted on the outer wall of one end of the driving shaft (801) close to the partition auxiliary plate (402), and a collision ball (804) is fixedly mounted on the top end of the driving rod (803).

9. A dipping device suitable for cotton yarn processing according to claim 8, characterized in that: A horizontal line shifting assembly (9) is provided on a side wall of the partition main board (401) close to the driving and regulating assembly (8), and the horizontal line shifting assembly (9) includes a fixed limiting sleeve (901) fixedly mounted on the side wall of the partition main board (401), a spring (906) is fixedly mounted inside the fixed limiting sleeve (901), and a shifting driving rod (902) is fixedly mounted on the top end of the spring (906) and is slidably connected to the fixed limiting sleeve (901).

10. The dipping device for cotton yarn processing according to claim 9, characterized in that: A through hole (904) is provided inside the wire driving rod (902), a flexible contact sleeve (905) is fixedly mounted on the inner wall of the through hole (904), and a collision head (903) is fixedly mounted on the top end of the wire driving rod (902).

Citation Information

Patent Citations

  • Yarn impregnation equipment for continuous processing

    CN222390052U