Anti-static treatment device for fabric

By designing antistatic treatment equipment for fabrics, the problems of static electricity and foreign matter contamination in the production of chemical fiber clothing fabrics are solved by using a cleaning and squeezing mechanism, achieving efficient cleaning and antistatic treatment and ensuring fabric quality.

CN224299605UActive Publication Date: 2026-05-29ZHEJIANG MEIYI GARMENT TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG MEIYI GARMENT TECH CO LTD
Filing Date
2025-05-09
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Chemical fiber clothing fabrics are prone to static electricity during the production process, which can lead to fuzzing, dust accumulation, and static adsorption. Existing methods of soaking in antistatic agents can cause foreign matter to contaminate the antistatic agent, affecting the quality of the fabric.

Method used

An antistatic fabric treatment device was designed, comprising a cleaning mechanism, a collection mechanism, and a squeezing mechanism. Guide rollers guide the fabric, and a separator separates the water tank and the liquid tank. Combined with a dryer and a squeezing mechanism, the device achieves the cleaning, drying, and squeezing of the fabric, preventing foreign matter from contaminating the antistatic agent.

Benefits of technology

It effectively removes dust and foreign objects from fabrics, reduces static electricity, ensures fabric quality, avoids contamination by antistatic agents, and improves the practicality and cleaning effect of the equipment.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224299605U_ABST
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Patent Text Reader

Abstract

The utility model relates to anti -static treatment equipment technical field, concretely relates to a kind of anti -static treatment equipment of fabric, it include: support frame, cleaning mechanism, collection mechanism and extrusion mechanism.In the utility model, by being provided with cleaning mechanism on support frame, and utilizing multiple guide rollers to be convenient for to fabric for guiding conveying, and utilizing partition plate to be convenient to the fixed shell internal component is divided into a water storage tank and a liquid storage tank, and utilizing liquid storage tank to be convenient to the storage of antistatic agent, and when fabric passes inside cleaning mechanism, and by starting water pump and motor one, to be convenient for to fabric cleaning, and water on fabric will flow to the inside of collection shell, reduce the possibility that foreign matter re-adhesion on the top of fabric, ensure the cleaning effect of cleaning mechanism to fabric, and utilizing dryer one and dryer two to be convenient for to fabric drying treatment, and by cleaning foreign matter on fabric, reduce the possibility that antistatic agent is contaminated.
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Description

Technical Field

[0001] This utility model relates to the technical field of antistatic treatment equipment, specifically an antistatic treatment device for fabrics. Background Technology

[0002] In dry environments, synthetic fiber clothing is prone to static electricity due to friction. This manifests as pilling, easy accumulation of dust and dirt, and static attraction and discharge when in contact with skin, affecting wearing comfort. Therefore, antistatic treatment is necessary during production. Currently, most small garment factories soak the fabric in an antistatic agent. However, during production, friction between the fabric and equipment generates static electricity, attracting dust, loose threads, and other foreign matter. When the fabric is soaked in the antistatic agent, this attracted matter can contaminate the agent and affect fabric quality. Utility Model Content

[0003] The purpose of this invention is to provide an antistatic treatment device for fabrics to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] An antistatic treatment device for fabrics, comprising:

[0006] A support frame, the top of which is fixedly connected to a fixed shell, and the fixed shell has two through holes. Multiple guide rollers are rotatably connected to the fixed shell. Two drain pipes are fixedly connected to the bottom of the fixed shell. A partition plate is fixedly connected inside the fixed shell, and the partition plate has connecting holes and rectangular grooves.

[0007] A cleaning mechanism is mounted on the support frame;

[0008] The collection mechanism is located inside the support frame;

[0009] The extrusion mechanism is located inside the support frame.

[0010] Furthermore, dryer one and dryer two are respectively fixedly connected to both ends of the top surface inside the fixed shell.

[0011] Furthermore, a compression plate is slidably connected inside the rectangular groove, and multiple compression springs are fixedly connected between the top of the compression plate and the top surface inside the rectangular groove.

[0012] Furthermore, the cleaning mechanism includes:

[0013] A water pump is fixedly connected to the fixed housing. The pumping end of the water pump is connected to and fixedly connected to a connecting pipe one, and the bottom of the connecting pipe one is connected to and fixedly connected to the fixed housing. The pump outlet end is connected to and fixedly connected to a connecting pipe two.

[0014] A U-shaped tube is fixedly connected to the fixed shell. Both ends of the U-shaped tube pass through the side wall of the fixed shell and extend into the interior of the fixed shell. Multiple nozzles are fixedly connected to both ends of the U-shaped tube. A brushing assembly is provided on the outside of the U-shaped tube.

[0015] Furthermore, the scrubbing assembly includes:

[0016] A rectangular shell, fixed to the fixed shell;

[0017] Motor 1 is fixed inside the rectangular shell, and gear 1 is fixedly connected to the output end of motor 1;

[0018] Two soft-bristle rollers are fixedly connected to the fixed shell. One end of each soft-bristle roller passes through the side wall of the fixed shell and is fitted with a gear two. Gear one meshes with two gear twos.

[0019] Furthermore, the collection mechanism includes:

[0020] Cylinder 1 is fixedly connected to the fixed housing;

[0021] The movable frame is fixedly connected to one output end of the cylinder;

[0022] The collection shell is fixedly connected to the movable frame, and two drainage holes are provided on the collection shell.

[0023] Preferably, a sliding shell is slidably connected to one end of the fixed shell, and a filter cloth is fixedly connected inside the sliding shell.

[0024] Furthermore, the extrusion mechanism includes:

[0025] The limiting roller is rotatably connected to one end of the fixed shell;

[0026] Cylinder 2 is fixedly connected to the fixed housing, and the output end of cylinder 2 passes through the side wall of the fixed housing and extends into the interior of the fixed housing.

[0027] The movable housing is fixedly connected to the output end of the second cylinder;

[0028] A movable plate is slidably connected to the inside of the movable shell, and multiple compression springs are fixedly connected between the movable plate and the top surface of the inner part of the movable shell.

[0029] The extrusion roller is rotatably connected to the bottom of the moving plate.

[0030] Compared with the prior art, the beneficial effects of this utility model are:

[0031] 1. A cleaning mechanism is installed on the support frame, and multiple guide rollers are used to facilitate the guiding and conveying of the fabric. A partition plate is used to divide the inside of the fixed shell into a water storage tank and a liquid storage tank. The liquid storage tank is used to store the antistatic agent. When the fabric passes through the cleaning mechanism, the water pump and motor one are started to clean the fabric. The water on the fabric flows into the collection shell, reducing the possibility of foreign objects re-adhering to the top of the fabric and ensuring the cleaning effect of the cleaning mechanism. Dryer one and dryer two are used to dry the fabric. By cleaning foreign objects on the fabric, the possibility of antistatic agent contamination is reduced, and the quality of the fabric during production is ensured. The water after cleaning is filtered with a filter cloth to prevent foreign objects from entering the water pump and clogging the nozzle, which would affect the cleaning effect of the cleaning mechanism.

[0032] 2. An extrusion plate is slidably connected inside the rectangular groove, and multiple compression springs are used to push the extrusion plate to move, so that the extrusion plate squeezes the fabric, thereby making the fabric flat.

[0033] 3. By setting up a squeezing mechanism inside the support frame and using multiple compression springs to make the squeezing roller and the limiting roller work together to squeeze the antistatic agent, excess antistatic agent on the fabric is squeezed out, avoiding waste of antistatic agent. The cylinder makes it easy to adjust the position of the moving shell, moving plate and squeezing roller, so as to control the squeezing force on the fabric. This makes the squeezing mechanism applicable to different fabrics, thereby improving the practicality of the antistatic treatment equipment for the fabric. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0035] Figure 2 This is a schematic diagram showing the positional relationship between the fixed shell and the partition plate in this utility model;

[0036] Figure 3 yes Figure 2 Enlarged view of a portion of point A in the middle;

[0037] Figure 4 This is a schematic diagram of the cleaning mechanism structure in this utility model;

[0038] Figure 5 yes Figure 4 Enlarged view of a section at point B in the middle;

[0039] Figure 6 This is a schematic diagram of the collecting mechanism structure in this utility model;

[0040] Figure 7This is a schematic diagram showing the positional relationship between the sliding shell and the filter cloth in this utility model;

[0041] Figure 8 This is a schematic diagram of the extrusion mechanism in this utility model.

[0042] In the diagram: 100, support frame; 110, fixed shell; 111, connecting hole; 120, guide roller; 130, dryer one; 140, dryer two; 150, drain pipe; 160, partition plate; 161, connecting hole; 162, rectangular groove; 170, extrusion plate; 171, compression spring one; 200, cleaning mechanism; 210, water pump; 211, connecting pipe one; 212, connecting pipe two; 220, U-shaped pipe; 221, nozzle; 23 0. Rectangular shell; 240. Motor 1; 241. Gear 1; 250. Soft brush roller; 251. Gear 2; 300. Collection mechanism; 310. Cylinder 1; 320. Moving frame; 330. Collection shell; 331. Drain hole; 400. Sliding shell; 410. Filter cloth; 500. Extrusion mechanism; 510. Limiting roller; 520. Cylinder 2; 530. Moving shell; 540. Moving plate; 541. Compression spring 2; 550. Extrusion roller. Detailed Implementation

[0043] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0044] Please see Figure 1-8 In this embodiment of the present invention, an antistatic treatment device for fabric includes: a support frame 100, a washing mechanism 200, a collecting mechanism 300, and a squeezing mechanism 500. A fixed shell 110 is fixedly connected to the top of the support frame 100, and two connecting holes 111 are opened on the fixed shell 110. Multiple guide rollers 120 are rotatably connected to the fixed shell 110. Two drain pipes 150 are connected and fixedly connected to the bottom of the fixed shell 110. A partition plate 160 is fixedly connected inside the fixed shell 110, and a connecting hole 161 and a rectangular groove 162 are opened on the partition plate 160. The washing mechanism 200 is disposed on the support frame 100, the collecting mechanism 300 is disposed inside the support frame 100, and the squeezing mechanism 500 is disposed inside the support frame 100.

[0045] Specifically, multiple guide rollers 120 facilitate the guiding and conveying of the fabric, and a partition plate 160 divides the interior of the fixed shell 110 into a water storage tank and a liquid storage tank. The liquid storage tank is used to store the antistatic agent, and two drain pipes 150 facilitate the discharge of water and antistatic agent from the water and liquid storage tanks. A washing mechanism 200 is used to wash and clean dust from the fabric, and a collection mechanism 300 is used to store and transport water from the top of the cleaned fabric. A squeezing mechanism 500 is used to squeeze out excess antistatic agent from the fabric, avoiding waste of antistatic agent and making it more convenient to use.

[0046] Example 1

[0047] like Figure 1-7 As shown, in this embodiment, dryer 130 and dryer 240 are fixedly connected to both ends of the inner top surface of the fixed shell 110, respectively. The cleaning mechanism 200 includes a water pump 210 and a U-shaped tube 220. The water pump 210 is fixedly connected to the fixed shell 110. The water pump 210's pumping end is connected to a connecting pipe 211, and the bottom of the connecting pipe 211 is connected to and fixedly connected to the fixed shell 110. The water pump 210's outlet end is connected to a connecting pipe 212. The U-shaped tube 220 is fixedly connected to the fixed shell 110. Both ends of the U-shaped tube 220 pass through the side wall of the fixed shell 110 and extend into the interior of the fixed shell 110. Both ends of the U-shaped tube 220 are connected to and fixedly connected to multiple nozzles 221. A brushing assembly is provided on the outside of the U-shaped tube 220. The brushing assembly includes a rectangular shell 230, a motor 240, and two soft brush rollers 250. The rectangular shell 230 is fixed to the fixed shell 110. The motor 240 is fixed inside the rectangular shell 230. The output end of the motor 240 is fixedly connected to the gear 241. Both soft rollers 250 are fixedly connected to the fixed shell 110. One end of the soft roller 250 passes through the side wall of the fixed shell 110 and is sleeved and fixedly connected to the gear 251. The gear 241 meshes with the two gears 251. The collection mechanism 300 includes: cylinder 310, moving frame 320 and collection shell 330. Cylinder 310 is fixedly connected to the fixed shell 110. Moving frame 320 is fixedly connected to the output end of cylinder 310. Collection shell 330 is fixedly connected to moving frame 320. Two drainage holes 331 are opened on the collection shell 330. One end of the fixed shell 110 is slidably connected to the sliding shell 400. The inside of the sliding shell 400 is fixedly connected to the filter cloth 410.

[0048] In this embodiment, when the fabric passes through the washing mechanism 200, the water pump 210 is activated. The water pump 210, connecting pipe 211, and connecting pipe 212 facilitate the transfer of water from the water storage tank to the U-shaped pipe 220. Multiple nozzles 221 spray the water, effectively washing away dust and other foreign matter from the fabric. Then, the motor 240 is activated, driving gear 241 to rotate. Gear 241 meshes with two gears 251, causing the two soft brush rollers 250 to rotate. These rotating rollers brush the fabric, and the water flows into the collection shell 330, reducing the likelihood of foreign matter re-adhering to the fabric and ensuring the washing mechanism 200 remains operational. The cleaning effect on the fabric is enhanced, and the two drain holes 331 facilitate the drainage of the washed water, ensuring that the water falls into the sliding shell 400 and is filtered by the filter cloth 410. This prevents foreign objects from entering the water pump 210 and clogging the nozzle 221, thus affecting the cleaning effect of the cleaning mechanism 200. When the washed fabric passes through the dryer 130, it is dried. After drying, the fabric is guided by the corresponding guide roller 120 and immersed in an antistatic agent, achieving antistatic treatment. The dryer 240 then dries the fabric again after it has been immersed in the antistatic agent, facilitating subsequent processing and making the product more convenient to use.

[0049] like Figure 3 As shown, in this embodiment, a compression plate 170 is slidably connected inside the rectangular groove 162, and a plurality of compression springs 171 are fixedly connected between the top of the compression plate 170 and the inner top surface of the rectangular groove 162.

[0050] In practice, multiple compression springs 171 are used to push the extrusion plate 170 to move, so that the extrusion plate 170 squeezes the fabric, thereby making it easier to flatten the fabric.

[0051] Example 2

[0052] Based on Example 1, in order to squeeze out excess antistatic agent from the fabric and avoid wasting antistatic agent.

[0053] like Figure 8As shown, in this embodiment, the extrusion mechanism 500 includes: a limiting roller 510, a second cylinder 520, a movable shell 530, a movable plate 540, and an extrusion roller 550. The limiting roller 510 is rotatably connected to one end of the fixed shell 110. The second cylinder 520 is fixedly connected to the fixed shell 110. The output end of the second cylinder 520 passes through the side wall of the fixed shell 110 and extends into the interior of the fixed shell 110. The movable shell 530 is fixedly connected to the output end of the second cylinder 520. The movable plate 540 is slidably connected to the interior of the movable shell 530. A plurality of compression springs 541 are fixedly connected between the movable plate 540 and the inner top surface of the movable shell 530. The extrusion roller 550 is rotatably connected to the bottom of the movable plate 540.

[0054] In practice, when the fabric passes between the limiting roller 510 and the squeezing roller 550, multiple compression springs 541 are used to make the squeezing roller 550 work in conjunction with the limiting roller 510 to squeeze the antistatic agent, thereby squeezing out excess antistatic agent from the fabric and avoiding waste of antistatic agent. The cylinder 520 is used to easily adjust the position of the moving shell 530, the moving plate 540 and the squeezing roller 550, thereby making it easy to control the squeezing force on the fabric. This allows the squeezing mechanism 500 to be applicable to different fabrics, thereby improving the practicality of the antistatic treatment equipment for the fabric.

[0055] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0056] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An antistatic treatment device for fabrics, characterized in that, include: A support frame (100) is fixedly connected to a fixed shell (110) at its top, and the fixed shell (110) has two connecting holes (111). Multiple guide rollers (120) are rotatably connected to the fixed shell (110). Two drain pipes (150) are connected and fixedly connected to the bottom of the fixed shell (110). A partition plate (160) is fixedly connected inside the fixed shell (110), and the partition plate (160) has a connecting hole (161) and a rectangular groove (162). A cleaning mechanism (200) is mounted on the support frame (100); A collection mechanism (300) is disposed inside the support frame (100); The extrusion mechanism (500) is located inside the support frame (100).

2. The antistatic treatment equipment for fabrics according to claim 1, characterized in that, Dryer 1 (130) and dryer 2 (140) are respectively fixed to the two ends of the inner top surface of the fixed shell (110).

3. The antistatic treatment equipment for fabrics according to claim 1, characterized in that, An extrusion plate (170) is slidably connected inside the rectangular groove (162), and multiple compression springs (171) are fixedly connected between the top of the extrusion plate (170) and the inner top surface of the rectangular groove (162).

4. The antistatic treatment equipment for fabrics according to any one of claims 1-3, characterized in that, The cleaning mechanism (200) includes: A water pump (210) is fixedly connected to the fixed housing (110). The pumping end of the water pump (210) is connected to a connecting pipe (211), and the bottom of the connecting pipe (211) is connected to the fixed housing (110). The outlet end of the water pump (210) is connected to a connecting pipe (212). The U-shaped tube (220) is fixedly connected to the fixed shell (110). Both ends of the U-shaped tube (220) pass through the side wall of the fixed shell (110) and extend into the interior of the fixed shell (110). Both ends of the U-shaped tube (220) are connected and fixed with multiple nozzles (221). A brushing assembly is provided on the outside of the U-shaped tube (220).

5. The antistatic treatment equipment for fabrics according to claim 4, characterized in that, The scrubbing assembly includes: A rectangular shell (230) is fixed to the fixed shell (110); Motor 1 (240) is fixed inside the rectangular shell (230), and gear 1 (241) is fixedly connected to the output end of motor 1 (240). Two soft-bristle rollers (250) are fixedly connected to the fixed shell (110). One end of the soft-bristle roller (250) passes through the side wall of the fixed shell (110) and is fitted with a gear two (251). Gear one (241) meshes with the two gear two (251).

6. The antistatic treatment equipment for fabrics according to claim 1, characterized in that, The collection mechanism (300) includes: Cylinder 1 (310) is fixedly connected to the fixed shell (110); The movable frame (320) is fixedly connected to the output end of the cylinder (310); The collection shell (330) is fixedly connected to the movable frame (320), and two drainage holes (331) are provided on the collection shell (330).

7. The antistatic treatment equipment for fabrics according to claim 1, characterized in that, One end of the fixed shell (110) is slidably connected to a sliding shell (400), and a filter cloth (410) is fixedly connected inside the sliding shell (400).

8. The antistatic treatment equipment for fabrics according to claim 1, characterized in that, The extrusion mechanism (500) includes: The limiting roller (510) is rotatably connected to one end of the fixed shell (110); Cylinder 2 (520) is fixedly connected to the fixed housing (110), and the output end of cylinder 2 (520) passes through the side wall of the fixed housing (110) and extends into the interior of the fixed housing (110); The movable housing (530) is fixedly connected to the output end of the second cylinder (520); The movable plate (540) is slidably connected to the inside of the movable shell (530), and a plurality of compression springs (541) are fixedly connected between the movable plate (540) and the inner top surface of the movable shell (530). The extrusion roller (550) is rotatably connected to the bottom of the movable plate (540).