Antistatic agent spraying device special for reducing static electricity of fibers

By combining the design of the tank, propeller agitator, and atomizing nozzle, the problem of the antistatic agent's performance deteriorating after heating is solved, achieving uniform distribution of the antistatic agent on the fiber and reducing static electricity, thus simplifying the process.

CN223633530UActive Publication Date: 2025-12-05CHONGQING MEILIS NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422972312.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-12-05
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

In existing technologies, the antistatic properties of antistatic agents are greatly reduced after heating in an oven, making it impossible to effectively reduce static electricity problems in chemical fibers.

Method used

It adopts components such as a configuration tank, a propeller agitator, atomizing nozzle, and an upper antistatic seal. Through the design of the agitator and atomizing nozzle, it achieves uniform mixing and precise control of the antistatic agent. It utilizes gas and liquid dual-fluid atomization spraying to reduce filament friction and ensure uniform absorption of the antistatic agent.

Benefits of technology

This method achieves uniform distribution of antistatic agents, improves the moisture uniformity of fibers, effectively reduces static electricity problems in chemical fibers, and simplifies the process flow.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of fiber processing, and particularly relates to an antistatic agent spraying device special for reducing fiber static electricity, which comprises a configuration tank, an atomizing nozzle and an upper antistatic sealer, a stirring motor is fixedly mounted at the upper end of the configuration tank, and an output shaft of the stirring motor is rotatably connected with the configuration tank. According to the scheme, through the arrangement of the preparation tank and the propeller stirrer, the concentration of the prepared antistatic agent solution can be uniform; and the use amount of the antistatic agent can be accurately conveyed by using the stroke pump. The antistatic agent is atomized by adopting the atomizing nozzle, and the antistatic agent is uniformly applied to the fibers, so that the humidity uniformity of the fibers is improved. Under the action of the upper anti-static sealer and the reserved tow holes, the tow holes and the atomizing nozzles are staggered, so that an anti-static agent can be uniformly absorbed by tows, the phenomenon of non-uniform spraying of the anti-static agent is prevented, the purpose of accurate control is achieved, the process is simple and convenient, and the static problem of chemical fibers is effectively reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of fiber processing, and particularly relates to a spray antistatic agent device specially used for reducing fiber static electricity. BACKGROUND

[0002] Chemical fiber is a kind of fiber with textile performance, which is prepared from natural high molecular compound or artificial synthetic high molecular compound as raw material through processes such as preparation of spinning dope, spinning and post-treatment.

[0003] The characteristics of static electricity easily generated in the chemical fiber processing project seriously affect chemical fiber and textile processing.

[0004] In the patent with the patent authorization announcement number CN201193254Y, a tow antistatic agent spraying device is disclosed, which comprises a cylinder, an out-tow port and an in-tow port arranged at two ends of the cylinder, a plurality of agent nozzles arranged on the cylinder, agent nozzles connected to agent pipes, and an agent outlet arranged at the lower end of the cylinder.

[0005] Currently, a common practice is to add a certain amount of antistatic agent when oiling fibers during the production process. SUMMARY

[0006] The utility model discloses a spray antistatic agent device specially used for reducing fiber static electricity, which solves the problem that the antistatic performance of the antistatic agent is greatly reduced after being heated in an oven when a certain amount of antistatic agent is added during oiling of fibers.

[0007] In order to achieve the above object, the utility model provides a spray antistatic agent device specially reduces fiber static electricity, including configuration jar, atomizing spray head and upper antistatic seal ware, the upper end fixed mounting of configuration jar has stirring motor, the output shaft of stirring motor is rotatably connected with configuration jar, the outside of output shaft of stirring motor is provided with propeller stirrer, pipeline one of configuration jar left end downside is provided with stop valve, pipeline one of configuration jar left end downside and located the left side of stop valve is provided with stroke pump, the surface of upper antistatic seal ware is equipped with filament hole,

[0008] Atomizing spray head is located in the front side of upper antistatic seal ware, the both ends of atomizing spray head are provided with quick plug connector, pipeline three of right side quick plug connector is provided with liquid regulating valve, pipeline three of right side quick plug connector is connected with stroke pump, pipeline three of right side quick plug connector is connected with pipeline two of configuration jar left end upside, pipeline four of left side quick plug connector is provided with gas regulating valve, the end of pipeline four of left side quick plug connector is provided with air compressor, and the lower end of atomizing spray head is provided with cleaning needle.

[0009] The utility model discloses a principle lies in: through the setting of configuration jar, propeller stirrer, can carry out stirring treatment to the antistatic agent in the inside of configuration jar, to make the concentration of the antistatic agent solution of configuration be even, under the action of stroke pump, the use amount of antistatic agent can be accurately controlled, adopts the atomizing spray head of gas and liquid double fluid, can make the antistatic agent form atomization, and the evenness of the fiber humidity is increased to the fiber even antistatic agent of being applied,

[0010] The upper antistatic seal ware adopts stainless steel as the material, and the filament hole is reserved. The filament hole adopts a round corner and a folding edge process to reduce the friction of the filament. The filament hole and the atomizing spray head adopt a staggered mode, so that the antistatic agent is completely atomized and then floats to the filament position to be uniformly absorbed by the filament. This prevents the atomizing spray head from directly spraying the antistatic agent onto the filament, which causes unevenness. The purpose of accurate control is achieved, and the process is simple and convenient. The electrostatic problem of chemical fibers is effectively reduced.

[0011] When the stirring motor drives the output shaft to rotate, the rotating rod is driven to rotate. When the rotating rod extrudes the driven plate, the driven plate is moved, and the spring is deformed. When the rotating rod is separated from the driven plate, the spring restores the deformation to reset the driven plate. Through the deformation of the spring and the extrusion of the rotating rod, the driven plate is shaken in the configuration jar to assist the stirring of the antistatic agent. When the stirring motor drives the output shaft to rotate, the rotating disc is driven to rotate, and the rotating disc slides along the inner wall of the limiting block to ensure the stable rotation of the rotating disc, thereby improving the rotation stability of the output shaft of the stirring motor.

[0012] The utility model discloses an advantageous effect lies in: the scheme through using 304 stainless steel preparation's configuration jar, propeller mixer etc. can make the concentration of the anti-static agent solution that configures even, use stroke pump can accurate delivery the use amount of anti-static agent. Adopt the atomizing nozzle of gaseous and liquid double fluid to make anti-static agent form atomization and be even to the fiber on anti-static agent, increase the fiber humidity uniformity. The upper anti-static sealing device adopts 304 stainless steel as the material, reserves the filament hole, and the filament hole adopts the round angle and the flanging process, reduces the filament friction. The filament hole and atomizing nozzle adopt the dislocation mode, make anti-static agent float to the filament position after complete atomization and be evenly absorbed by the filament. Prevent the uneven phenomenon that atomizing nozzle is directly to the filament and sprays anti-static agent, to realize the purpose of accurate control, and the process is simple, and the electrostatic problem of chemical fiber is effectively reduced;

[0013] Through the setting of the stirring motor and the propeller mixer, the anti-static agent in the configuration jar can be stirred, and under the extrusion of the rotating rod, the driven sheet can be extruded, and in cooperation with the deformation of the spring, the driven sheet can be shaken back and forth, the anti-static agent is assisted to be stirred, and the stirring effect of the anti-static agent is improved.

[0014] Further, the upper end of the atomizing nozzle is provided with an air nozzle, and the upper end of the atomizing nozzle is provided with a liquid nozzle in the middle, so that the atomizing nozzle has good atomizing and spraying effect of gaseous and liquid double fluid.

[0015] Further, the configuration jar and the output shaft of the stirring motor are provided with an auxiliary stirring mechanism, the auxiliary stirring mechanism comprises a rotating rod, the output shaft of the stirring motor is fixedly sleeved on the rotating rod, the inner side wall of the configuration jar is welded with a spring, the end face of the spring close to the output shaft of the stirring motor is welded with a driven sheet, the driven sheet is in contact with the rotating rod, the outer side of the spring is provided with a protective sleeve, the output shaft of the stirring motor is fixedly connected with a rotating disc, the rotating disc is rotatably connected with the inner bottom of the configuration jar, the inner bottom of the configuration jar is fixedly connected with a limiting block, the limiting block is slidably connected with the rotating disc, through the setting of the stirring motor and the rotating rod, the driven sheet can be extruded, and in cooperation with the deformation of the spring, the driven sheet can be shaken, the stirring and uniformity of the anti-static agent are improved.

[0016] Further, the spring is provided with two, and the two springs are symmetrically distributed on the configuration jar, through the setting of the spring, the driven sheet can be connected and used.

[0017] Further, the driven sheet is in the shape of a rectangle, and the driven sheet is made of hard PVC material, through the setting of the driven sheet, the anti-static agent can be assisted to be stirred, and the hard PVC material has good light weight and durability.

[0018] Further, one end of the protective sleeve is bonded with the driven sheet, and the other end of the protective sleeve is bonded with the configuration tank. Through the setting of the protective sleeve, the spring can be protected.

[0019] Further, the limiting block is provided with two, and the two limiting blocks are symmetrically distributed on the configuration tank. Through the setting of the limiting block, the rotating disc can be rotationally limited, so as to ensure the rotation stability of the long output shaft of the stirring motor. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The figure is a schematic diagram of the anti-static agent spraying device specially used for reducing fiber static electricity of the embodiment of the application;

[0021] Figure 2 The figure is a schematic diagram of the anti-static agent spraying device specially used for reducing fiber static electricity of the embodiment of the application; Figure 1 The figure is an enlarged view of the atomizing nozzle;

[0022] Figure 3 The figure is an enlarged view of the driven sheet of the anti-static agent spraying device specially used for reducing fiber static electricity of the embodiment of the application; Figure 1 The figure is an enlarged view of the driven sheet of the anti-static agent spraying device specially used for reducing fiber static electricity of the embodiment of the application;

[0023] Figure 4 The figure is an enlarged view of the anti-static agent spraying device specially used for reducing fiber static electricity of the embodiment of the application; Figure 1 The figure is an enlarged view of the anti-static agent spraying device specially used for reducing fiber static electricity of the embodiment of the application;

[0024] The following is further described in detail through specific embodiments:

[0025] The reference signs in the drawings of the specification include: a stirring motor 1, a configuration tank 2, a propeller stirrer 3, a stop valve 4, a stroke pump 5, an atomizing nozzle 6, an air compressor 7, a filament hole 8, an upper anti-static sealing device 9, a liquid nozzle 10, an air nozzle 11, a liquid adjusting valve 12, a cleaning needle 13, a quick plug 14, a gas adjusting valve 15, an auxiliary stirring mechanism 20, a rotating rod 201, a spring 202, a driven sheet 203, a protective sleeve 204, a rotating disc 205, and a limiting block 206. DETAILED DESCRIPTION

[0026] The embodiment is basically as Figure 1 , Figure 2 , Figure 3 , Figure 4As shown, the embodiment provides a special anti-static agent spraying device for reducing fiber static electricity, which comprises a configuration tank 2, an atomizing nozzle 6 and an upper anti-static sealing device 9, the upper end of the configuration tank 2 is fixedly installed with a stirring motor 1, the output shaft of the stirring motor 1 is rotationally connected with the configuration tank 2, the outer side of the output shaft of the stirring motor 1 is provided with a propeller stirrer 3, the pipeline one on the lower side of the left end of the configuration tank 2 is provided with a stop valve 4, the pipeline one on the lower side of the left end of the configuration tank 2 and located at the left side of the stop valve 4 is provided with a stroke pump 5, and the surface of the upper anti-static sealing device 9 is provided with a filament hole 8.

[0027] The atomizing nozzle 6 is located at the front side of the upper anti-static sealing device 9, the upper end of the atomizing nozzle 6 is provided with an air nozzle 11, the upper end of the atomizing nozzle 6 is provided with a liquid nozzle 10 in the middle, the atomizing nozzle 6 has good atomizing spraying effect of gas and liquid double fluid through the setting of the air nozzle 11 and the liquid nozzle 10, the left and right ends of the atomizing nozzle 6 are provided with quick plug connectors 14, the pipeline three of the right side quick plug connector 14 is provided with a liquid adjusting valve 12, the pipeline three of the right side quick plug connector 14 is connected with the stroke pump 5, the pipeline three of the right side quick plug connector 14 is connected with the pipeline two on the upper side of the left end of the configuration tank 2, the pipeline four of the left side quick plug connector 14 is provided with a gas adjusting valve 15, the pipeline four of the left side quick plug connector 14 is provided with an air compressor 7 at the end, and the lower end of the atomizing nozzle 6 is provided with a cleaning needle 13.

[0028] As shown in Figure 1 , Figure 3 , Figure 4 , the configuration tank 2 and the output shaft of the stirring motor 1 are jointly provided with an auxiliary stirring mechanism 20, the outer side of the output shaft of the stirring motor 1 is fixedly sleeved on a rotating rod 201, the inner side wall of the configuration tank 2 is welded with a spring 202, the end face of the spring 202 close to the output shaft of the stirring motor 1 is welded with a driven plate 203, the driven plate 203 is in contact with the rotating rod 201, the outer side of the spring 202 is provided with a protective sleeve 204, the output shaft of the stirring motor 1 is fixedly connected with a rotating disc 205, the rotating disc 205 is rotationally connected with the inner side bottom of the configuration tank 2, the inner side bottom of the configuration tank 2 is fixedly connected with a limiting block 206, the limiting block 206 is slidingly connected with the rotating disc 205, the driven plate 203 can be extruded through the setting of the stirring motor 1 and the rotating rod 201, and the driven plate 203 can be excited through the deformation of the spring 202, so that the stirring and uniformity of the anti-static agent are improved.

[0029] As shown in Figure 1 , Figure 3 , Figure 4As shown, the spring 202 is provided with two, two springs 202 are symmetrically distributed on the configuration tank 2, through the setting of the spring 202, the driven piece 203 can be connected and used, the whole driven piece 203 is rectangular, the driven piece 203 is hard PVC material, through the setting of the driven piece 203, the auxiliary stirring of the antistatic agent can be used, and the hard PVC material has good lightweight and durable characteristics, one end of the protective sleeve 204 is bonded with the driven piece 203, the other end of the protective sleeve 204 is bonded with the configuration tank 2, through the setting of the protective sleeve 204, the spring 202 can be protected and used, the limiting block 206 is provided with two, two limiting blocks 206 are symmetrically distributed on the configuration tank 2, through the setting of the limiting block 206, the rotating disc 205 can be rotationally limited, so as to ensure the rotation stability of the long output shaft of the stirring motor 1.

[0030] The specific implementation process of the utility model is as follows: through the setting of the configuration tank 2 and the propeller stirrer 3, the antistatic agent in the configuration tank 2 can be stirred to make the concentration of the prepared antistatic agent solution uniform; under the action of the stroke pump 5, the use amount of the antistatic agent can be accurately controlled; the gas and liquid double-fluid atomizing nozzle 6 can make the antistatic agent form atomization, and the fibers are uniformly coated with the antistatic agent, and the uniformity of the fiber humidity is increased;

[0031] The anti-static sealing device 9 adopts 304 stainless steel as the material, and the filament hole 8 is reserved; the filament hole 8 adopts a round corner and a folding edge process to reduce the friction of the filaments; the filament hole 8 and the atomizing nozzle 6 adopt a staggered mode, so that the antistatic agent is completely atomized and then floats to the filament position and is uniformly absorbed by the filaments; the atomizing nozzle 6 directly sprays the antistatic agent to the filaments to prevent unevenness, so as to achieve the purpose of accurate control; and the process is simple, which effectively reduces the electrostatic problem of chemical fibers;

[0032] When the stirring motor 1 drives the output shaft to drive the propeller stirrer 3 to rotate, the rotating rod 201 can be driven to rotate; when the rotating rod 201 extrudes the driven piece 203, the driven piece 203 can be pushed to move, and the spring 202 deforms; when the rotating rod 201 is separated from the driven piece 203, the spring 202 restores the deformation to reset the driven piece 203; under the deformation of the spring 202 and the extrusion of the rotating rod 201, the driven piece 203 can be shaken in the configuration tank 2 to assist the stirring of the antistatic agent; when the stirring motor 1 drives the output shaft to rotate, the rotating disc 205 can be driven to rotate, so that the rotating disc 205 slides along the inner wall of the limiting block 206 to ensure the rotation stability of the rotating disc 205, thereby improving the rotation stability of the output shaft of the stirring motor 1.

[0033] The scheme can make the concentration of the prepared antistatic agent solution uniform by using the configuration tank 2 made of 304 stainless steel, the propeller stirrer 3, etc., and can accurately deliver the use amount of the antistatic agent by using the stroke pump 5. The gas and liquid double-fluid atomizing nozzle 6 makes the antistatic agent form atomization to uniformly apply the antistatic agent to the fibers and increase the uniformity of fiber humidity. The antistatic sealing device 9 adopts 304 stainless steel as the material, and the fiber bundle hole 8 is reserved, the fiber bundle hole 8 adopts a round corner and a folded edge process to reduce the friction of the fiber bundle. The fiber bundle hole 8 and the atomizing nozzle 6 adopt a staggered mode, so that the antistatic agent is completely atomized and floats to the fiber bundle position to be uniformly absorbed by the fiber bundle. The atomizing nozzle 6 is prevented from directly spraying the antistatic agent to the fiber bundle to cause unevenness, so as to achieve the purpose of accurate control, and the process is simple, which effectively reduces the electrostatic problem of chemical fibers.

[0034] Through the setting of the stirring motor 1 and the propeller stirrer 3, the antistatic agent in the configuration tank 2 can be stirred, and under the extrusion of the rotating rod 201, the driven plate 203 can be extruded, and in cooperation with the deformation of the spring 202, the driven plate 203 can be shaken back and forth to assist the stirring of the antistatic agent and improve the stirring effect of the antistatic agent.

[0035] It should be pointed out that in the present application, unless otherwise specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0036] The above is only an embodiment of the present application, and the specific structure and characteristics of the scheme are not described in detail. It should be pointed out that for those skilled in the art, without departing from the structure of the present application, a number of modifications and improvements can be made, which should be regarded as the protection scope of the present application, and these will not affect the effect and practicality of the patent. The protection scope claimed in the present application should be subject to the content of its claims, and the specific implementation mode and the like in the description can be used to explain the content of the claims.

Claims

1. A device for spraying antistatic agent to reduce static electricity of fibers, comprising a configuration tank, an atomizing nozzle, and an upper antistatic seal, characterized in that: The upper end of the configuration tank is fixedly installed with a stirring motor, the output shaft of the stirring motor is rotationally connected with the configuration tank, the outer side of the output shaft of the stirring motor is provided with a propeller stirrer, a stop valve is arranged on the pipeline I on the lower side of the left end of the configuration tank, a stroke pump is arranged on the pipeline I on the lower side of the left end of the configuration tank and located on the left side of the stop valve, and a filament hole is arranged on the surface of the upper anti-static seal. The atomizing nozzle is located on the front side of the upper anti-static seal, quick plug connectors are arranged on the left and right ends of the atomizing nozzle, a liquid adjusting valve is arranged on the pipeline III of the right quick plug connector, the pipeline III of the right quick plug connector is connected with the stroke pump, the pipeline III of the right quick plug connector is connected with the pipeline II on the upper side of the left end of the configuration tank, a gas adjusting valve is arranged on the pipeline IV of the left quick plug connector, an air compressor is arranged at the end of the pipeline IV of the left quick plug connector, and a cleaning needle is arranged on the lower end of the atomizing nozzle.

2. The fiber-electrostatic-reducing antistatic agent spraying device according to claim 1, characterized by: The upper end of the atomizing nozzle is provided with an air nozzle, and the middle part of the upper end of the atomizing nozzle is provided with a liquid nozzle.

3. The fiber-electrostatic-reducing antistatic agent spraying device according to claim 1, characterized by: The output shaft of the configuration tank and the stirring motor is jointly provided with an auxiliary stirring mechanism, the auxiliary stirring mechanism comprises a rotating rod, the outer side of the output shaft of the stirring motor is fixedly sleeved on the rotating rod, the inner side wall of the configuration tank is welded with a spring, the end face of the spring close to the side of the output shaft of the stirring motor is welded with a driven plate, the driven plate is in contact with the rotating rod, the outer side of the spring is provided with a protective sleeve, the output shaft of the stirring motor is fixedly connected with a rotating disc, the rotating disc is rotationally connected with the inner bottom of the configuration tank, the inner bottom of the configuration tank is fixedly connected with a limiting block, and the limiting block is slidingly connected with the rotating disc.

4. The fiber-electrostatic-reducing antistatic agent spraying device according to claim 3, characterized by: The spring is provided with two, and the two springs are symmetrically distributed on the configuration tank.

5. The fiber-electrostatic-reducing antistatic agent spraying device according to claim 3, characterized by: The driven plate is in the shape of a rectangle, and the driven plate is made of hard PVC material.

6. The fiber-electrostatic-reducing antistatic agent spraying device according to claim 3, characterized by: One end of the protective sleeve is bonded with the driven plate, and the other end of the protective sleeve is bonded with the configuration tank.

7. The fiber-electrostatic-reducing antistatic agent spraying device according to claim 3, characterized by: The limiting block is provided with two, and the two limiting blocks are symmetrically distributed on the configuration tank.

Citation Information

Patent Citations

  • Spraying device for strand antistatic agent

    CN201193254Y