Yarn static electricity eliminating device

By designing a splicable static eliminator and a winding device, the problem that existing static eliminators cannot completely eliminate static electricity in wide-width yarns has been solved. This enables flexible splicing of static eliminators and cable management, ensuring the complete elimination of static electricity on the yarn surface.

CN224265166UActive Publication Date: 2026-05-19JIANGYIN ZHAOXIN YARN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGYIN ZHAOXIN YARN CO LTD
Filing Date
2025-04-29
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing static eliminators have a fixed length and cannot effectively remove static electricity from the surface of wide yarns.

Method used

A splicable static eliminator bar was designed. The splicing device and winding device enable the detachable connection of the static eliminator bar and cable management, ensuring the complete elimination of static electricity on the surface of wide yarn.

Benefits of technology

It enables flexible splicing and cable management of static elimination rods, ensuring the complete elimination of static electricity on the surface of wide yarns and avoiding static residue.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a yarn static electricity eliminating device, which relates to the technical field of yarn static electricity eliminating devices, and comprises a static electricity eliminating rod, the upper top of the static electricity eliminating rod is fixedly connected with a spray point, the side surface of the static electricity eliminating rod is fixedly connected with a connecting wire, and the side surface of the static electricity eliminating rod is fixedly connected with a splicing device. The splicing device comprises a rectangular groove formed in the side face of the static elimination rod, a rectangular block is fixedly connected to the side face of the static elimination rod, a clamping groove is formed in the surface of the rectangular block, a clamping ring is fixedly connected to the inner wall of the rectangular groove, a connecting column is fixedly connected to the inner wall of the rectangular groove, and a connecting groove is formed in the side face of the rectangular block. The side face of the static electricity eliminating rod is fixedly connected with a magnetic ring, the side face of the static electricity eliminating rod is provided with an annular groove, the inner wall of the annular groove is fixedly connected with an iron sheet, and the static electricity eliminating device solves the problem that due to the fact that the length of the static electricity eliminating rod is fixed, static electricity on the surface of wide yarn cannot be completely eliminated.
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Description

Technical Field

[0001] This utility model relates to the technical field of yarn static eliminator devices, and in particular to yarn static eliminator devices. Background Technology

[0002] An antistatic stick is a fixed, contact-based tool for removing static electricity, utilizing the principle of contact conductivity. It is simple to use, safe, and stable, making it an essential tool for home and travel. Antistatic sticks are commonly used to remove static electricity from yarn.

[0003] The inventors discovered during daily use of antistatic sticks that the length of a typical antistatic stick is fixed. If the yarn width is too wide, some yarns may not be able to eliminate static electricity, resulting in static electricity remaining on the yarn surface and causing problems. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a yarn static electricity elimination device.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a yarn static eliminator, comprising a static eliminator rod, a discharge needle fixedly connected to the top of the static eliminator rod, a connecting wire fixedly connected to the side of the static eliminator rod, and a splicing device fixedly connected to the side of the static eliminator rod. The splicing device includes a rectangular groove formed on the side of the static eliminator rod, a rectangular block fixedly connected to the side of the static eliminator rod, a slot formed on the surface of the rectangular block, and a retaining ring fixedly connected to the inner wall of the rectangular groove.

[0006] The effect achieved by the above components is that, under the action of the retaining ring and the retaining groove, the static eliminator rods are spliced ​​together, thereby achieving the splicing effect.

[0007] Preferably, a connecting column is fixedly connected to the inner wall of the rectangular groove, and a connecting groove is provided on the side of the rectangular block.

[0008] The effect achieved by the above components is that, under the action of the connecting column and the connecting groove, the assembled static eliminator rod can be energized, thereby achieving the function of connection.

[0009] Preferably, a magnetic ring is fixedly connected to the side of the static eliminator, and an annular groove is formed on the side of the static eliminator, with an iron sheet fixedly connected to the inner wall of the annular groove.

[0010] The effect achieved by the above components is that, under the action of the magnetic ring and the iron sheet inside the ring groove, the static eliminator rod can be fixed after being assembled.

[0011] Preferably, the inner wall of the rectangular groove is provided with a circular groove, the top of the rectangular block is provided with a recess, a spring is fixedly connected inside the recess, one end of the spring is fixedly connected with a circular block, and the circular block is inserted into the inside of the circular groove.

[0012] The effect achieved by the above components is that, under the action of the spring, the round block is inserted into the inside of the round groove, thereby achieving the function of fixing the rectangular block.

[0013] Preferably, the inner wall of the groove is provided with a through groove, and a pull rope is provided inside the through groove, with one end of the pull rope being fixedly connected to the bottom of the round block.

[0014] The aforementioned components achieve the following effects: Under the action of the pull rope, the round block can be pulled into the groove, allowing the rectangular block to be pulled out of the rectangular groove. When it is necessary to assemble the static eliminator rods, the rectangular block is inserted into the rectangular groove, and the pull rope is pulled, causing the round block to retract into the groove. Under the action of the retaining ring and the retaining groove, the static eliminator rods are assembled together. After the retaining ring and the retaining groove are engaged, the force of pulling the pull rope is released, allowing the round block to be inserted into the round groove under the action of the spring for fixation. Under the action of the connecting column and the connecting groove, the assembled static eliminator rods can be energized, thus achieving the connection function. Under the action of the magnetic ring and the iron plate inside the ring groove, the assembled static eliminator rods can be fixed, thus achieving the assembly function.

[0015] Preferably, the side of the static eliminator is provided with a winding device, the winding device including an L-shaped rod fixedly connected to the side of the static eliminator, a clamping plate fixedly connected to the side of the L-shaped rod, and the connecting wire being wound around the surface of the L-shaped rod.

[0016] The effect achieved by the above components is that, under the action of the L-shaped rod, the connecting wire can be wound around the surface of the L-shaped rod, and under the action of the clamping plate, the connecting wire can be evenly arranged on the surface of the L-shaped rod.

[0017] Preferably, the surface of the card plate is fixedly connected with round bars, which are evenly arranged on the side of the card plate.

[0018] The effect achieved by the above components is that, under the action of the round bar, the connecting wire will not slip off the surface of the L-shaped rod, thus avoiding the phenomenon of slippage.

[0019] Preferably, the side of the static eliminator is fixedly connected with a strap, which is disposed between the L-shaped rods.

[0020] The aforementioned components achieve the following effects: the straps allow the connecting wire to be bound to the surface of the L-shaped rod; when the connecting wire needs to be wound up, it is wrapped around the surface of the L-shaped rod; the clamping plate ensures the connecting wire is evenly arranged on the surface of the L-shaped rod; the round bar prevents the connecting wire from slipping off the surface of the L-shaped rod, thus avoiding slippage; once the connecting wire is completely wrapped around the surface of the L-shaped rod, the straps bind and restrict the connecting wire to the surface of the L-shaped rod, thereby achieving the winding effect.

[0021] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0022] In this invention, by setting up a splicing device, when it is necessary to splice the static eliminator rods, a rectangular block is inserted into the rectangular groove, and the pull rope is pulled, causing the round block to retract into the groove. Under the action of the retaining ring and the groove, the static eliminator rods are spliced ​​together. After the retaining ring and the groove are engaged, the force of pulling the pull rope is released, and the round block is inserted into the round groove under the action of the spring for fixation. Under the action of the connecting column and the connecting groove, the spliced ​​static eliminator rod can be energized, thus achieving the function of connection. Under the action of the magnetic ring and the iron piece inside the ring groove, the spliced ​​static eliminator rod can be fixed, thus achieving the splicing function. This solves the problem that the static eliminator rod, due to its fixed length, cannot completely remove static electricity from the surface of wide yarns. Attached Figure Description

[0023] Figure 1 This invention provides a three-dimensional structural schematic diagram of a yarn static electricity elimination device.

[0024] Figure 2 This utility model provides a schematic diagram of the splicing device for eliminating static electricity in yarn.

[0025] Figure 3 A partial schematic diagram of the splicing device for the yarn static elimination device proposed in this utility model;

[0026] Figure 4 This is a schematic diagram of the winding device for the yarn static elimination device proposed in this utility model.

[0027] Legend: 1. Static eliminator; 2. Splicing device; 21. Rectangular block; 22. Rectangular groove; 23. Slot; 24. Snap ring; 25. Connecting groove; 26. Connecting post; 27. Circular groove; 28. Circular block; 29. ​​Spring; 210. Pull rope; 211. Magnetic ring; 212. Ring groove; 3. Winding device; 31. L-shaped rod; 32. Clamping plate; 33. Circular bar; 34. Binding strap; 4. Connecting wire; 5. Discharge needle. Detailed Implementation

[0028] Example 1, as Figure 1-4 As shown, the yarn static eliminator includes a static eliminator rod 1. A discharge needle 5 is fixedly connected to the top side of the static eliminator rod 1. A connecting wire 4 is fixedly connected to the side of the static eliminator rod 1, and a splicing device 2 is fixedly connected to the side of the static eliminator rod 1. When static elimination of yarn is required, the static eliminator rod 1 is connected to a high-voltage generator via the connecting wire 4, thereby providing electrical energy to the static eliminator rod 1 and maintaining the continuous operation of the discharge needle 5. The static eliminator rod 1 generates positive and negative ions to neutralize the static charge on the object's surface, thus achieving static elimination. The high-voltage generator inside the static eliminator rod 1 generates a large number of positive and negative ions, which are released into the air through the discharge needle 5. When a statically charged object approaches:

[0029] If an object is positively charged, negative ions will neutralize its charge;

[0030] If an object carries a negative charge, positive ions will neutralize its charge.

[0031] Under high voltage, the tip of the discharge needle 5 induces corona discharge, ionizing the surrounding air and generating a large number of positive and negative ions. These ions diffuse with the airflow to the surface of the object, quickly neutralizing static electricity.

[0032] Reference Figure 2-3The splicing device 2 includes a rectangular groove 22 formed on the side of the static eliminator 1. A rectangular block 21 is fixedly connected to the side of the static eliminator 1. A slot 23 is formed on the surface of the rectangular block 21. A retaining ring 24 is fixedly connected to the inner wall of the rectangular groove 22. Under the action of the retaining ring 24 and the slot 23, the static eliminator 1 is spliced ​​together, thereby achieving the splicing function. A connecting post 26 is fixedly connected to the inner wall of the rectangular groove 22. A connecting groove 25 is formed on the side of the rectangular block 21. Under the action of the connecting post 26 and the connecting groove 25, the spliced ​​static eliminator 1 can be inserted into the... When energized, the static eliminator 1 is connected to a magnetic ring 211. A groove 212 is formed on the side of the static eliminator 1, and an iron sheet is fixedly connected to the inner wall of the groove 212. Under the action of the magnetic ring 211 and the iron sheet inside the groove 212, the static eliminator 1 can be fixed after assembly. A circular groove 27 is formed on the inner wall of the rectangular groove 22, and a recess is formed at the top of the rectangular block 21. A spring 29 is fixedly connected inside the recess, and a circular block 28 is fixedly connected to one end of the spring 29. The circular block 28 is inserted into the circular groove 27. Under the action of spring 29, the round block 28 is inserted into the interior of the round groove 27, thereby fixing the rectangular block 21. The inner wall of the groove has a through groove, and a pull rope 210 is installed inside the through groove. One end of the pull rope 210 is fixedly connected to the bottom of the round block 28. Under the action of the pull rope 210, the round block 28 can be pulled into the interior of the groove, thereby pulling the rectangular block 21 out from the interior of the rectangular groove 22. When it is necessary to assemble the static elimination rod 1, the rectangular block 21 is inserted into the interior of the rectangular groove 22, and the pull rope 210 is pulled, causing the round block 28 to retract into the groove. Inside, under the action of the retaining ring 24 and the retaining groove 23, the static eliminator rod 1 is spliced ​​together. After the retaining ring 24 and the retaining groove 23 are engaged, the force of pulling the pull rope 210 is released, so that the round block 28 is inserted into the inside of the round groove 27 under the action of the spring 29 and fixed. Under the action of the connecting post 26 and the connecting groove 25, the spliced ​​static eliminator rod 1 can be energized, thereby achieving the function of connection. Under the action of the magnetic ring 211 and the iron sheet inside the ring groove 212, the static eliminator rod 1 can be fixed after being spliced, thereby achieving the function of splicing.

[0033] Reference Figure 4The static eliminator 1 has a winding device 3 on its side. The winding device 3 includes an L-shaped rod 31 fixedly connected to the side of the static eliminator 1. A clamping plate 32 is fixedly connected to the side of the L-shaped rod 31. A connecting wire 4 is wound around the surface of the L-shaped rod 31. Under the action of the L-shaped rod 31, the connecting wire 4 can be wound around the surface of the L-shaped rod 31. Under the action of the clamping plate 32, the connecting wire 4 can be evenly arranged on the surface of the L-shaped rod 31. A round strip 33 is fixedly connected to the surface of the clamping plate 32. The round strip 33 is evenly arranged on the side of the clamping plate 32. Under the action of the round strip 33, the connecting wire 4 will not slip off the surface of the L-shaped rod 31, thus avoiding slippage. The side of the eliminating rod 1 is fixedly connected with a strap 34, which is set between the L-shaped rods 31. Under the action of the strap 34, the connecting line 4 can be tied to the surface of the L-shaped rod 31. When it is necessary to wind up the connecting line 4, the connecting line 4 is wound around the surface of the L-shaped rod 31. Under the action of the clamping plate 32, the connecting line 4 can be evenly arranged on the surface of the L-shaped rod 31. Under the action of the round bar 33, the connecting line 4 will not slip off the surface of the L-shaped rod 31, thus avoiding the slippage phenomenon. After the connecting line 4 is completely wound around the surface of the L-shaped rod 31, the strap 34 is used to tie and restrict the connecting line 4 to the surface of the L-shaped rod 31, thereby achieving the winding function.

[0034] Working principle: When a yarn static eliminator is needed, the static eliminator rod 1 is connected to a high-voltage generator via connecting wire 4. This provides electrical energy to the static eliminator rod 1, maintaining the continuous operation of the discharge needle 5. The static eliminator rod 1 generates positive and negative ions to neutralize the static charge on the object's surface, thus achieving static elimination. The high-voltage generator inside the static eliminator rod 1 produces a large number of positive and negative ions, which are released into the air through the discharge needle 5. When a statically charged object approaches:

[0035] If an object is positively charged, negative ions will neutralize its charge;

[0036] If an object carries a negative charge, positive ions will neutralize its charge.

[0037] The tip of the discharge needle 5 triggers corona discharge under high voltage, ionizing the surrounding air and generating a large number of positive and negative ions. These ions diffuse to the surface of the object with the airflow, quickly neutralizing static electricity. When it is necessary to assemble the static eliminator 1, the rectangular block 21 is inserted into the rectangular groove 22, and the pull rope 210 is pulled, causing the circular block 28 to retract into the groove. Under the action of the retaining ring 24 and the retaining groove 23, the static eliminator 1 is assembled together. After the retaining ring 24 and the retaining groove 23 are engaged, the force of pulling the pull rope 210 is released, allowing the circular block 28 to be inserted into the circular groove 27 under the action of the spring 29 for fixation. Under the action of the connecting post 26 and the connecting groove 25, the assembled static eliminator 1 can be energized, thus achieving the function of connection. Under the action of the iron sheet inside the magnetic ring 211 and the ring groove 212, the static elimination rod 1 can be fixed after being spliced, thus achieving the splicing effect. When it is necessary to wind up the connecting wire 4, the connecting wire 4 is wound around the surface of the L-shaped rod 31. Under the action of the clamping plate 32, the connecting wire 4 can be evenly arranged on the surface of the L-shaped rod 31. Under the action of the round bar 33, the connecting wire 4 will not slip off the surface of the L-shaped rod 31, thus avoiding the slippage phenomenon. After the connecting wire 4 is completely wound around the surface of the L-shaped rod 31, the connecting wire 4 is bound and restricted to the surface of the L-shaped rod 31 by the binding strap 34, thus achieving the winding effect.

Claims

1. A yarn static eliminator, comprising a static eliminator rod (1), wherein a discharge needle (5) is fixedly connected to the upper top of the static eliminator rod (1), characterized in that: The static eliminator (1) is fixedly connected to a connecting line (4) on its side. The static eliminator (1) is fixedly connected to a splicing device (2) on its side. The splicing device (2) includes a rectangular groove (22) opened on the side of the static eliminator (1). The static eliminator (1) is fixedly connected to a rectangular block (21). The surface of the rectangular block (21) is provided with a slot (23). The inner wall of the rectangular groove (22) is fixedly connected with a retaining ring (24).

2. The yarn static electricity elimination device according to claim 1, characterized in that: The inner wall of the rectangular groove (22) is fixedly connected to a connecting column (26), and the side of the rectangular block (21) is provided with a connecting groove (25).

3. The yarn static electricity elimination device according to claim 2, characterized in that: A magnetic ring (211) is fixedly connected to the side of the static eliminator (1), and an annular groove (212) is opened on the side of the static eliminator (1). An iron sheet is fixedly connected to the inner wall of the annular groove (212).

4. The yarn static electricity elimination device according to claim 3, characterized in that: The inner wall of the rectangular groove (22) is provided with a circular groove (27), and the top of the rectangular block (21) is provided with a groove. A spring (29) is fixedly connected inside the groove. One end of the spring (29) is fixedly connected with a circular block (28), and the circular block (28) is inserted into the inside of the circular groove (27).

5. The yarn static electricity elimination device according to claim 4, characterized in that: The inner wall of the groove is provided with a through groove, and a pull rope (210) is provided inside the through groove. One end of the pull rope (210) is fixedly connected to the bottom of the round block (28).

6. The yarn static electricity elimination device according to claim 5, characterized in that: The static eliminator (1) is provided with a winding device (3) on its side. The winding device (3) includes an L-shaped rod (31) fixedly connected to the side of the static eliminator (1). A clamping plate (32) is fixedly connected to the side of the L-shaped rod (31). The connecting wire (4) is wound around the surface of the L-shaped rod (31).

7. The yarn static eliminator according to claim 6, characterized in that: The surface of the card plate (32) is fixedly connected with round bars (33), which are evenly arranged on the side of the card plate (32).

8. The yarn static electricity elimination device according to claim 7, characterized in that: The side of the static eliminator (1) is fixedly connected with a strap (34), which is arranged between the L-shaped rods (31).