Antistatic acrylic yarn and manufacturing process

By setting a conductive rod and lifting component inside the acrylic yarn, and using colloid and gas to make the yarn wind around the conductive rod, the problem of static electricity accumulation in acrylic fibers is solved, and static electricity elimination and stable winding effect are achieved.

CN118441385BActive Publication Date: 2026-01-02YANCHENG XINYE TEXTILE CO LTD
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Patent Information

Application Number
CN202410589735.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-13
Publication Date
2026-01-02
Estimated Expiration
2044-05-13

AI Technical Summary

Technical Problem

Acrylic fibers are prone to accumulating static electricity in dry environments, leading to static electricity phenomena and affecting their application.

Method used

A conductive rod is installed inside the acrylic yarn. Grooves and annular grooves are opened on the surface of the conductive rod. Through the cooperation of the lifting component and the clamping plate, the yarn is wound around the conductive rod by the use of colloid and gas. The deformation of the conductive rod and the limiting strip keep the yarn fixed and prevent slippage.

Benefits of technology

It effectively eliminates static electricity on the yarn surface, prevents the yarn from slipping on the conductive rod, maintains a stable winding state, and improves the performance of acrylic yarn.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of yarns, in particular to an antistatic acrylic yarn and a manufacturing process, which comprises a wire body, the inside of the wire body is provided with a conductive rod, the surface of the conductive rod is provided with a groove and a ring groove, the inside of the conductive rod is provided with a through hole, the through hole is provided with an extension block, and the surface of the extension block is provided with a limiting strip. When the application is actually used, the inside of the wire body is provided with the conductive rod, the wire body is wound on the surface of the conductive rod, the static electricity on the surface of the wire body can be removed through the conductive rod, the surface of the conductive rod is provided with the groove and the ring groove, the conductive rod moves at the bottom of the cross rod, the glue in the glue dripping pipe flows out, the glue flows into the groove, the gas in the air outlet pipe blows out, the gas blows on the surface of the glue, the glue flows in the groove and the ring groove, the wire body is wound on the surface of the conductive rod, the glue adheres the wire body to the surface of the conductive rod, and the inside of the conductive rod is provided with the through hole.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of yarn, in particular to an antistatic acrylic yarn and a manufacturing process. BACKGROUND

[0002] Acrylic fiber is very similar to wool in performance, and has good elasticity, known as artificial wool. It has the advantages of softness, bulkiness, easy dyeing, bright color, light resistance, antibacterial property, and resistance to insect damage, etc. It can be spun alone or blended with natural fibers according to different requirements, and its textiles are widely used in clothing, decoration, industry, etc. It can be blended with wool to make yarn, or woven into blankets, carpets, etc. It can also be blended with cotton, artificial fibers, and other synthetic fibers to weave various clothing and indoor products.

[0003] Acrylic is also a good insulator, and the charge is not easy to transfer and is easy to accumulate, especially in a dry environment, which is prone to static electricity. SUMMARY

[0004] The purpose of the present application is to provide an antistatic acrylic yarn and a manufacturing process to solve the problems raised in the background.

[0005] To achieve the above purpose, the present application provides the following technical solution: an antistatic acrylic yarn, comprising:

[0006] The line body is provided with a conductive rod inside, the surface of the conductive rod is provided with a groove and a ring groove, the inside of the conductive rod is provided with a through hole, the through hole is provided with an extension block, and the surface of the extension block is provided with a limiting strip. Preferably, the top of the line body is provided with a horizontal rod, the top of the horizontal rod is provided with a second lifting rod, the second lifting rod is connected with a lifting assembly, the lifting assembly drives the horizontal rod to lift, the surface of the second lifting rod is provided with a sleeving ring, the sleeving ring is sleeved on the surface of the second lifting rod, and the sleeving ring can lift on the surface of the second lifting rod.

[0007] Preferably, the top of the sleeving ring is fixed with a first lifting rod, the first lifting rod lifts with the sleeving ring, the end of the first lifting rod is connected with the lifting assembly, the lifting assembly drives the first lifting rod and the sleeving ring to lift, the surface of the sleeving ring is fixed with an arc-shaped rod, the arc-shaped rod is provided with two groups, the two groups of arc-shaped rods are fixed on the surface of the sleeving ring, and the arc-shaped rod lifts with the sleeving ring.

[0008] Preferably, the end of the arc-shaped rod is fixed with a top holding bead, the top holding bead lifts with the arc-shaped rod, the surface of the second lifting rod is hinged with a clamping plate through a rotating shaft, the clamping plate is provided with two groups, the two groups of clamping plates are respectively located on the two sides of the second lifting rod, the clamping plate can swing through the rotating shaft, and the top holding bead is held on the surface of the clamping plate after lifting.

[0009] Preferably, the surface of the crossbar is fixed with a first connecting pipe and a second connecting pipe, the first connecting pipe and the second connecting pipe inject air and colloid into the inside of the crossbar, the inside of the crossbar is provided with two groups of grooves, the surface of the crossbar is fixed with a glue dropping pipe and an air outlet pipe, the colloid flows out of the glue dropping pipe, and the air blows out of the air outlet pipe.

[0010] Preferably, after the clamping plate clamps the conductive rod, the conductive rod is deformed, and the extension blocks contact each other,

[0011] The limiting strips on the surfaces of the extension blocks contact each other and are held together through friction.

[0012] Preferably, the glue dropping pipe is located at the top of the groove, the colloid flowing out of the glue dropping pipe drops on the surface of the groove, the colloid flows in the groove, and the colloid in the groove flows to the surface of the ring groove.

[0013] Preferably, the colloid is located between the conductive rod and the wire body, the wire body is adhered to the surface of the conductive rod, and the extension blocks are provided in multiple groups and uniformly distributed in the through holes.

[0014] An anti-static acrylic yarn manufacturing process comprises the following steps:

[0015] Step one: adhesion, the inside of the wire body is provided with a conductive rod, the wire body is wound around the surface of the conductive rod, static electricity on the surface of the wire body can be removed through the conductive rod, the surface of the conductive rod is provided with a groove and a ring groove, the conductive rod moves at the bottom of the crossbar, the colloid flows out of the glue dropping pipe, the gas blows out of the air outlet pipe, the gas blows on the surface of the colloid, so that the colloid flows in the groove and the ring groove, the wire body is wound around the surface of the conductive rod, and the colloid adheres the wire body to the surface of the conductive rod;

[0016] Step two: limiting, the inside of the conductive rod is provided with a through hole, when the second lifting rod is driven to descend by the sleeve ring, the first lifting rod drives the sleeve ring to move, the sleeve ring drives the arc-shaped rod to move, the top holding beads at the end of the arc-shaped rod are held on the surface of the clamping plate, so that the clamping plate swings along the rotating shaft, the clamping plate is clamped on the surface of the conductive rod, the conductive rod is deformed, the wire body is wound around the surface of the conductive rod, after the wire body is tightened, the wire body is prevented from sliding on the surface of the conductive rod due to the deformation of the conductive rod, and the inside of the through hole is provided with extension blocks, after the conductive rod is deformed, the extension blocks contact each other, the limiting strips on the surfaces of the extension blocks limit each other, so that the conductive rod is prevented from recovering and the state of the deformed conductive rod is maintained.

[0017] Compared with the prior art, the present application has the following advantages:

[0018] The utility model practical use, the inside of line body is provided with the electrically conductive rod, the line body is wound in the surface of electrically conductive rod, and static electricity can be conducted and removed through electrically conductive rod on the surface of line body, the surface of electrically conductive rod is provided with recess and ring groove, and electrically conductive rod moves at the bottom of cross bar, and the glue in drop glue pipe flows, and the glue flows into recess, and the gas in gas outlet pipe blows, and the gas blows on the surface of glue, makes the glue flow in recess and ring groove, and the line body is wound in the surface of electrically conductive rod, and the glue is adhered to the surface of electrically conductive rod, and the inside of electrically conductive rod is provided with through hole, and when the sleeve ring drives second lifting rod to drop, first lifting rod drives sleeve ring to move, and sleeve ring drives arc-shaped rod to move, and the top holding bead on the end of arc-shaped rod is held on the surface of clamping plate, makes clamping plate swing along pivot, makes clamping plate clamp on the surface of electrically conductive rod, makes electrically conductive rod deform, and the line body is wound in the surface of electrically conductive rod, and after the line body is tightened, due to the deformation of electrically conductive rod, prevent the line body from sliding on the surface of electrically conductive rod, and the inside of through hole is provided with extension block, after the deformation of electrically conductive rod, each group of extension blocks contact, and the limit strip on the surface of extension block is limited each other, prevent electrically conductive rod from recovering, keep the state of the deformed electrically conductive rod. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;

[0020] Figure 2 It is another perspective three-dimensional structure schematic diagram of the utility model;

[0021] Figure 3 It is the cross bar structure schematic diagram of the utility model;

[0022] Figure 4 It is another perspective structure schematic diagram of the cross bar of the utility model;

[0023] Figure 5 It is the electrically conductive rod local amplification structure schematic diagram of the utility model.

[0024] In the drawing: line body 1, electrically conductive rod 2, first lifting rod 3, second lifting rod 4, sleeve ring 5, arc-shaped rod

[0025] 6, cross bar 7, first connecting pipe 8, second connecting pipe 9, drop glue pipe 10, gas outlet pipe 11, clamping plate 12, top holding bead 13, recess 14, through hole 15, limit strip 16, extension block 17, ring groove 18. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme of the present application, and the advantages are clearer, more clearly described, and more clearly understood, the following will be further described in detail with the help of the accompanying drawings. It should be understood that the specific embodiments described here are part of the embodiments of the present application, not all embodiments, only to explain the embodiments of the present application, and not to limit the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0027] Embodiment one

[0028] Please refer to Figures 1-5 The present application provides a technical scheme: antistatic acrylic yarn, comprising: line body 1, the inside of line body 1 is provided with conductive rod 2, the surface of conductive rod 2 is provided with groove 14 and ring groove 18, the inside of conductive rod 2 is provided with through hole 15, the through hole 15 is provided with extension block 17, the surface of extension block 17 is provided with limit strip 16.

[0029] Embodiment two

[0030] On the basis of embodiment one, the top of line body 1 is provided with horizontal rod 7, the top of horizontal rod 7 is provided with second lifting rod 4, second lifting rod 4 is connected with lifting assembly, lifting assembly drives horizontal rod 7 to lift, the surface of second lifting rod 4 is provided with sleeving ring 5, sleeving ring 5 is sleeved on the surface of second lifting rod 4, sleeving ring 5 can lift on the surface of second lifting rod 4, the top of sleeving ring 5 is fixed with first lifting rod 3, first lifting rod 3 lifts along with sleeving ring 5, the end of first lifting rod 3 is connected with lifting assembly, lifting assembly drives first lifting rod 3 and sleeving ring 5 to lift, the surface of sleeving ring 5 is fixed with arc-shaped rod 6, arc-shaped rod 6 is provided with two groups, two groups of arc-shaped rod 6 are fixed on the surface of sleeving ring 5, arc-shaped rod 6 lifts along with sleeving ring 5, the end of arc-shaped rod 6 is fixed with top holding bead 13, top holding bead 13 lifts along with arc-shaped rod 6, the surface of second lifting rod 4 is hinged with clamping plate 12 through pivot, clamping plate 12 is provided with two groups, two groups of clamping plate 12 are respectively located on the two sides of second lifting rod 4, clamping plate 12 can swing through pivot, top holding bead 13 is held on the surface of clamping plate 12 after lifting, the surface of horizontal rod 7 is fixed with first connecting pipe 8 and second connecting pipe 9, first connecting pipe 8 and second connecting pipe 9 inject air and colloid into the inside of horizontal rod 7, the inside of horizontal rod 7 is provided with two groups of grooves, the surface of horizontal rod 7 is fixed with glue dropping pipe 10 and air outlet pipe 11, colloid flows out from glue dropping pipe 10, air blows out from air outlet pipe 11.

[0031] Embodiment three

[0032] On the basis of embodiment two, the cross rod 7 moves to the top of the conductive rod 2 after lifting, the clamping plate 12 is clamped on the surface of the conductive rod 2 after swinging, the wire body 1 is arranged on the surface of the conductive rod 2 in a winding manner, the conductive rod 2 deforms after the clamping plate 12 clamps the conductive rod 2, and the extension blocks 17 are in contact with each other, the limiting strips 16 on the surfaces of the extension blocks 17 are in contact with each other, the limiting strips 16 are held together through friction, the glue dropping pipe 10 is located at the top of the groove 14, the glue flowing out of the glue dropping pipe 10 drops on the surface of the groove 14, the glue flows in the groove 14, the glue in the groove 14 flows to the surface of the ring groove 18, the glue is located between the conductive rod 2 and the wire body 1, the wire body 1 is adhered to the surface of the conductive rod 2, and the extension blocks 17 are provided in multiple groups and uniformly distributed in the through holes 15.

[0033] In actual use, the inside of the wire body 1 is provided with the conductive rod 2, the wire body 1 is wound on the surface of the conductive rod 2, static electricity on the surface of the wire body 1 can be conducted and removed through the conductive rod 2, the surface of the conductive rod 2 is provided with the groove 14 and the ring groove 18, the conductive rod 2 moves at the bottom of the cross rod 7, the glue flows out of the glue dropping pipe 10, the glue flows into the groove 14, the gas blows out of the air pipe 11, the gas blows on the surface of the glue, so that the glue flows in the groove 14 and the ring groove 18, the wire body 1 is wound on the surface of the conductive rod 2, the glue adheres the wire body 1 to the surface of the conductive rod 2, the inside of the conductive rod 2 is provided with the through hole 15, when the second lifting rod 4 is driven to descend by the sleeve ring 5, the first lifting rod 3 drives the sleeve ring 5 to move, the sleeve ring 5 drives the arc-shaped rod 6 to move, the top holding bead 13 at the end of the arc-shaped rod 6 holds on the surface of the clamping plate 12, so that the clamping plate 12 swings along the rotating shaft, so that the clamping plate 12 is clamped on the surface of the conductive rod 2, so that the conductive rod 2 deforms, the wire body 1 is wound on the surface of the conductive rod 2, after the wire body 1 is tightened, due to the deformation of the conductive rod 2, the wire body 1 is prevented from sliding on the surface of the conductive rod 2, and the inside of the through hole 15 is provided with the extension block 17, after the conductive rod 2 deforms, the extension blocks 17 in each group are in contact, the limiting strips 16 on the surfaces of the extension blocks 17 are limited with each other, so as to prevent the conductive rod 2 from recovering and keep the state of the deformed conductive rod 2.

[0034] Although the embodiments of the present application have been shown and described, it should be understood by those ordinary skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An antistatic acrylic yarn, characterized by: Include: The line body (1) is internally provided with a conductive rod (2), the surface of the conductive rod (2) is provided with a groove (14) and a ring groove (18), the inside of the conductive rod (2) is provided with a through hole (15), the through hole (15) is provided with an extension block (17), the surface of the extension block (17) is provided with a limiting strip (16), the top of the line body (1) is provided with a cross bar (7), the top of the cross bar (7) is provided with a second lifting rod (4), the second lifting rod (4) is connected with the lifting assembly, the lifting assembly drives the cross bar (7) to lift, the surface of the second lifting rod (4) is provided with a sleeve ring (5), the sleeve ring (5) is sleeved on the surface of the second lifting rod (4), the sleeve ring (5) can lift on the surface of the second lifting rod (4), the surface of the cross bar (7) is fixed with a first connecting pipe (8) and a second connecting pipe (9), the first connecting pipe (8) and the second connecting pipe (9) inject air and colloid into the inside of the cross bar (7), the inside of the cross bar (7) is provided with two groups of grooves, the surface of the cross bar (7) is fixed with a glue dropping pipe (10) and an air outlet pipe (11), the colloid flows out of the glue dropping pipe (10), the air blows out of the air outlet pipe (11), the glue dropping pipe (10) is located at the top of the groove (14), the colloid flowing out of the glue dropping pipe (10) drops on the surface of the groove (14), the colloid flows in the groove (14), the colloid in the groove (14) flows to the surface of the ring groove (18), the colloid is located between the conductive rod (2) and the line body (1), the line body (1) is adhered to the surface of the conductive rod (2), the extension block (17) is provided with a plurality of groups, the plurality of groups of extension blocks (17) are uniformly distributed in the inside of the through hole (15).

2. The antistatic acrylic yarn according to claim 1, characterized in that: The top of the sleeve ring (5) is fixed with a first lifting rod (3), the first lifting rod (3) lifts with the sleeve ring (5), the end of the first lifting rod (3) is connected with the lifting assembly, the lifting assembly drives the first lifting rod (3) and the sleeve ring (5) to lift, the surface of the sleeve ring (5) is fixed with an arc-shaped rod (6), the arc-shaped rod (6) is provided with two groups, the two groups of arc-shaped rods (6) are fixed on the surface of the sleeve ring (5), the arc-shaped rod (6) lifts with the sleeve ring (5).

3. The antistatic acrylic yarn according to claim 2, characterized in that: The end of the arc-shaped rod (6) is fixed with a top holding bead (13), the top holding bead (13) lifts with the arc-shaped rod (6), the surface of the second lifting rod (4) is hinged with a clamping plate (12) through a rotating shaft, the clamping plate (12) is provided with two groups, the two groups of clamping plates (12) are respectively located on the two sides of the second lifting rod (4), the clamping plate (12) can swing through the rotating shaft, the top holding bead (13) is lifted and held on the surface of the clamping plate (12).

4. The antistatic acrylic yarn according to claim 3, characterized in that: The cross bar (7) moves to the top of the conductive rod (2) after lifting, the clamping plate (12) clamps on the surface of the conductive rod (2) after swinging, the line body (1) is arranged on the surface of the conductive rod (2) in a winding manner.

5. The antistatic acrylic yarn according to claim 4, characterized in that: After the clamping plate (12) clamps the conductive rod (2), the conductive rod (2) is deformed, and the extension blocks (17) contact each other, the limiting strips (16) on the surfaces of the extension blocks (17) contact each other, and the limiting strips (16) hold together through friction.

6. A process for the production of antistatic acrylic yarn as claimed in claim 5 wherein: Include the following steps: Step one: adhesion, the inside of the line body (1) is provided with a conductive rod (2), the line body (1) is wound on the surface of the conductive rod (2), the static electricity on the surface of the line body (1) can be removed through the conductive rod (2), the surface of the conductive rod (2) is provided with a groove (14) and a ring groove (18), the conductive rod (2) moves at the bottom of the cross bar (7), the glue flows out of the glue pipe (10), the glue flows into the groove (14), the gas blows out of the air pipe (11), the gas blows on the surface of the glue, so that the glue flows in the groove (14) and the ring groove (18), the line body (1) is wound on the surface of the conductive rod (2), the glue adheres the line body (1) to the surface of the conductive rod (2); Step two: limit, the inside of the conductive rod (2) is provided with a through hole (15), when the second lifting rod (4) is driven to descend, the first lifting rod (3) drives the sleeve ring (5) to move, the sleeve ring (5) drives the arc-shaped rod (6) to move, the top holding bead (13) at the end of the arc-shaped rod (6) is held on the surface of the clamping plate (12), so that the clamping plate (12) swings along the rotating shaft, so that the clamping plate (12) clamps on the surface of the conductive rod (2), so that the conductive rod (2) is deformed, the line body (1) is wound on the surface of the conductive rod (2), after the line body (1) is tightened, due to the deformation of the conductive rod (2), the line body (1) is prevented from sliding on the surface of the conductive rod (2), and the inside of the through hole (15) is provided with an extension block (17), after the deformation of the conductive rod (2), each group of extension blocks (17) are contacted, the limiting strips (16) on the surface of the extension blocks (17) are limited to each other, which prevents the conductive rod (2) from recovering and maintains the state of the deformed conductive rod (2).

Citation Information

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