Mixing device for textile auxiliaries

By introducing a multi-stage purification system into the textile auxiliary agent mixing device and using absorption liquid and activated carbon plates, the problem of purifying harmful gases and odorous gases is solved, thus achieving protection for human health and the environment.

CN223299846UActive Publication Date: 2025-09-05JIAXING YUANZHEN NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202422019056.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-09-05
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

Existing textile auxiliary agent mixing devices cannot effectively purify volatile harmful gases and odorous gases during the mixing process, causing pollution to human health and the environment.

Method used

A mixing device consisting of a first purification box and a second purification box was designed. Using a suction fan, an air inlet pipe, a spray chamber, an adsorption plate, and an activated carbon plate, harmful gases and odorous gases were purified by adsorption and absorption. The device used an alternating arrangement of absorption liquid and activated carbon plates to enhance the purification effect, and a desiccant was used to treat gas moisture.

Benefits of technology

It effectively purifies harmful gases and odorous gases emitted during the mixing process, prevents them from escaping to the outside, protects human health and the environment, and improves the environmental performance of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a textile auxiliary material mixing device which comprises a material mixing tank used for mixing materials and a mounting frame used for mounting the material mixing tank, a first purification box is arranged on the material mixing tank, and a second purification box communicated with the first purification box and a suction fan communicated with the second purification box are mounted on the mounting frame. A liquid storage box is installed on the first purification box, a partition plate is installed in the first purification box and divides the inner space of the first purification box into an air inlet cavity and a spraying cavity, a pump communicated with the liquid storage box is installed on the liquid storage box, a liquid spraying pipe communicated with the spraying cavity is installed on the pump, and a spraying head arranged in the spraying cavity is installed on the liquid spraying pipe. The material mixing device disclosed by the utility model has the beneficial effects that harmful gas and peculiar smell gas volatilized in the material mixing process can be purified and treated, and the harmful gas and the peculiar smell gas are prevented from escaping into the external environment to harm human health and pollute the environment.
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Description

Technical Field

[0001] The utility model relates to the technical field of textile chemical raw material production equipment, and more specifically, to a mixing device for textile auxiliaries. Background Art

[0002] Textile auxiliaries are essential chemicals in the production and processing of textiles. They play an indispensable role in improving the product quality and added value of textiles. They can not only give textiles various special functions and styles, such as softness, wrinkle resistance, shrinkage resistance, waterproofness, antibacterial, antistatic, flame retardancy, etc., but also improve dyeing and finishing processes, save energy and reduce processing costs.

[0003] Some textile auxiliaries may contain harmful substances such as formaldehyde. Formaldehyde is a toxic compound that is harmful to human health and can cause symptoms such as damage to the central nervous system and irritation of the eyes and nasal mucosa. During the mixing process of textile auxiliaries, formaldehyde may evaporate and pose a threat to human health and affect the environmental performance of the product. Textile auxiliaries may also contain some odor-producing ingredients, such as aromatic hydrocarbon compounds, kerosene and other mineral oils. These ingredients may evaporate during the mixing process, causing the product to have an odor, affecting the product's user experience and quality.

[0004] The utility model patent with application number 202122343445.8 discloses a mixing tank for the production of textile industry auxiliaries, including a shell, a shell cover connected to the shell by threaded nails, a pulse pump fixedly installed on the shell cover, an air intake pipe provided on the pulse pump, the air intake pipe and the shell cover are slidably connected, the outer side of the air intake pipe is rotatably connected to a sleeve, a hollow tube is fixedly installed on the sleeve, a gear ring is fixedly connected to the outer side of the sleeve, a motor is fixedly installed on the shell cover, the rotating shaft of the motor is rotatably connected to the shell cover, and a gear is welded on the rotating shaft.

[0005] Through the above technical solution, although a pulse pump, an air intake pipe, a sleeve, a hollow tube, a gear ring, a motor, a gear and other structures can be set, the pulse pump is used to supply air to the air intake pipe, so that the hollow tube is intermittently aerated to turn the raw materials over, and the motor drives the gear to rotate, thereby rotating the sleeve, so that the hollow tube stirs the raw materials, making the mixing efficiency higher.

[0006] However, the harmful gases and odorous gases volatilized during the mixing process cannot be purified to prevent them from escaping into the external environment, endangering human health and polluting the environment. Utility Model Content

[0007] In view of the shortcomings of the prior art, the purpose of the present invention is to provide a mixing device for textile auxiliaries.

[0008] To achieve the above objectives, the present invention provides the following technical solutions:

[0009] A mixing device for textile auxiliaries, comprising a mixing tank for mixing, a mounting frame for mounting the mixing tank, an agitator for stirring the textile auxiliaries in the mixing tank, and a motor for driving the agitator to rotate, the mixing tank comprising a feeding port and a discharging port, both of which are equipped with plugs, a first purification box being provided on the mixing tank, a second purification box connected to the first purification box and a suction fan connected to the second purification box being installed on the mounting frame,

[0010] A liquid storage tank is installed on the first purification box, a partition is installed in the first purification box, the partition divides the internal space of the first purification box into an air intake chamber and a spray chamber, a pump connected to the liquid storage tank is installed on the liquid storage tank, a liquid spray pipe connected to the spray chamber is installed on the pump, a nozzle placed in the spray chamber is installed on the liquid spray pipe, and an air intake pipe connected to the mixing tank is installed in the air intake chamber.

[0011] Several adsorption plates are detachably connected in the second purification box, and the several adsorption plates are staggered. The second purification box is connected with an air guide hose corresponding to the adsorption plates, and the air guide hose is connected with the spray chamber.

[0012] It is further configured that a plurality of card plates corresponding to a plurality of activated carbon plates are installed in the second purification box, and the card plates are provided with card slots for connecting with the activated carbon plates. The second purification box includes a box door for facilitating replacement of the activated carbon plates in the second purification box.

[0013] It is further configured that the second purification box is provided with a transparent drying box, granular color-changing silica gel is provided in the drying box, the drying box is connected to the air guide hose, the drying box is connected to a sealing tube connected to the second purification box, a filter is installed in the sealing tube to prevent the color-changing silica gel from falling into the second purification box, the drying box is provided with a material change port for facilitating the replacement of the color-changing silica gel, and a sealing plate is detachably connected in the material change port.

[0014] It is further configured that the first purification box is connected to a drain pipe for discharging waste liquid in the spray chamber, and a valve for controlling the opening and closing of the drain pipe is installed on the drain pipe.

[0015] By adopting the above technical solution, the beneficial effects of the utility model are: it can purify the harmful gases and odorous gases volatilized during the mixing process, and prevent the harmful gases and odorous gases from escaping into the external environment to endanger human health and pollute the environment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural schematic diagram of an embodiment of the present utility model.

[0017] Figure 2 It is a structural diagram of the cooperation between the second purification box and the second purification box.

[0018] Figure 3 It is a structural diagram of the drying box and the sealing plate.

[0019] Figure 4 This is a schematic diagram of the enlarged structure at point A.

[0020] In the figure: mixing tank 01, mounting frame 02, agitator 03, motor 04, feeding port 05, discharging port 06, plug 07, first purification box 1, second purification box 2, suction fan 3, liquid storage box 4, partition 5, air inlet chamber 101, spray chamber 102, pump 6, liquid spray pipe 7, nozzle 8, air inlet pipe 9, adsorption plate 10, air guide hose 11, card plate 12, card slot 13, box door 14, drying box 15, color-changing silica gel 16, sealing tube 17, filter 18, material change port 19, sealing plate 20, drain pipe 21, valve 22. DETAILED DESCRIPTION

[0021] Reference Figures 1 to 4 The embodiments of the present invention are further described.

[0022] A mixing device for textile auxiliaries, comprising a mixing tank 01 for mixing, a mounting frame 02 for mounting the mixing tank 01, an agitator 03 for stirring the textile auxiliaries in the mixing tank 01, and a motor 04 for driving the agitator 03 to rotate. The mixing tank 01 comprises a feeding port 05 and a discharging port 06, each of which is equipped with a plug 07. The mixing tank 01 is provided with a first purification box 1, and the mounting frame 02 is equipped with a second purification box 2 connected to the first purification box 1 and a suction fan 3 connected to the second purification box 2.

[0023] A liquid storage tank 4 is installed on the first purification box 1, and an absorption liquid for absorbing harmful components in the gas is added into the liquid storage tank 4 through the opening of the liquid storage tank 4. A partition 5 is installed in the first purification box 1, and the partition 5 divides the internal space of the first purification box 1 into an air intake chamber 101 and a spray chamber 102. A pump 6 connected to the liquid storage tank 4 is installed on the liquid storage tank 4, and a spray pipe 7 connected to the spray chamber 102 is installed on the pump 6. A nozzle 8 placed in the spray chamber 102 is installed on the spray pipe 7, and an air intake pipe 9 connected to the mixing tank 01 is installed in the air intake chamber 101. Several adsorption plates 10 are detachably connected in the second purification box 2, and the several adsorption plates 10 are staggered. An air guide hose 11 corresponding to the adsorption plate 10 is connected to the second purification box 2, and the air guide hose 11 is connected to the spray chamber 102.

[0024] Working principle: open the plug 07 of the feeding port 05, put the textile auxiliaries into the mixing tank 01 from the feeding port 05, and then install the plug 07 back to the feeding port 05 to prevent volatile gases from escaping from the feeding port 05 to the mixing tank 01 and pollute the environment during the mixing process. The motor 04 drives the stirrer 03 to rotate and mix the textile auxiliaries in the mixing tank 01. After the mixing is completed, open the plug 07 of the discharge port 06 to facilitate the removal of the textile auxiliaries in the mixing tank 01.

[0025] During the mixing process, the suction fan 3 generates suction to make the harmful gases and odorous gases volatilized in the mixing tank 01 enter the first purification box 1 through the air inlet pipe 9 for purification treatment, and then enter the second purification box 2 through the air guide hose 11 for further purification treatment. Finally, the purified harmless gases are discharged into the external environment through the air outlet of the suction fan 3. Specifically, under the action of the suction force generated by the suction fan 3, the harmful gases and odorous gases volatilized in the mixing tank 01 enter the air inlet chamber 101 in the first purification box 1 through the air inlet pipe 9, and then enter the spray chamber 102 through the gap between the partition 5 and the top of the first purification box 1. At this time, the pump 6 works to pump the absorption liquid that can absorb formaldehyde in the liquid storage chamber into the spray pipe 7 and spray it on the spray chamber 102 through the nozzle 8, so as to absorb and purify the formaldehyde in the gas entering the spray chamber 102. For the absorption of formaldehyde in the gas, optional Water is selected as the absorption liquid, and the partition 5 prevents the nozzle 8 from spraying the absorption liquid and entering the mixing tank 01 through the air inlet pipe 9 to affect the mixing of textile auxiliaries. The suction fan 3 continues to work to suck the gas in the spray chamber 102 into the second purification box 2 through the air guide hose 11, and adsorbs the odor and harmful components in the gas through a number of adsorption plates 10. The adsorption plates 10 are staggered to facilitate the gas entering the second purification box 2 to fully contact with the adsorption plates 10 and increase the contact time between the gas and the adsorption plates 10, which is conducive to better adsorption of odor and harmful components in the gas on the adsorption plates 10. The adsorption plates 10 are selected to be composed of coconut fiber carbon material to enhance the adsorption capacity of the adsorption plates 10 and improve the purification effect of the second purification box 2, so as to achieve the purification of harmful gases and odorous gases volatilized during the mixing process, and prevent harmful gases and odorous gases from escaping into the external environment, endangering human health and polluting the environment.

[0026] The second purification box 2 is equipped with a number of card plates corresponding to a number of activated carbon plates, and the card plates are provided with card slots for connecting with the activated carbon plates. The second purification box 2 includes a box door for facilitating the replacement of the activated carbon plates in the second purification box 2, and the box door seals the second purification box 2. After the adsorption plate 10 is saturated with odors and harmful components in the adsorption gas, the box door is opened to pull the adsorption plate 10 out of the card slot and replace it with a new adsorption plate 10 to ensure the continuous purification capability of the second purification box 2.

[0027] The second purification box 2 is provided with a transparent drying box, which contains granular color-changing silica gel. The drying box is connected to the air guide hose 11. The drying box is connected to a sealing tube 17 connected to the second purification box 2. A filter 18 is installed in the sealing tube 17 to prevent the color-changing silica gel from falling into the second purification box 2. The drying box is provided with a material exchange port 19 for facilitating the replacement of the color-changing silica gel. A sealing plate 20 is detachably connected to the material exchange port 19.

[0028] When the gas in the spray chamber 102 enters the second purification box 2 through the air guide hose 11, it will pass through the drying box and then enter the second purification box 2 through the sealing tube 17. The color-changing silica gel in the drying box acts as a desiccant to dry the gas entering the drying box, preventing the gas treated by the absorption liquid in the spray chamber 102 from carrying moisture into the second purification box 2 to reduce the adsorption capacity of the adsorption plate 10. The setting of the filter 18 in the sealing tube 17 prevents the color-changing silica gel from falling into the second purification box 2 and will not affect the gas entering the second purification box 2. When the color-changing silica gel in the transparent drying box is observed to change from blue to pink, it indicates that the color-changing silica gel has reached saturation in water absorption. Open the sealing plate 20 and take out the pink color-changing silica gel from the material change port 19 and replace it with a new color-changing silica gel for continued use. The replaced pink color-changing silica gel is dried to turn it blue for subsequent recycling.

[0029] The first purification box 1 is connected to a drain pipe 21 for discharging waste liquid in the spray chamber 102. A valve 22 for controlling the opening and closing of the drain pipe 21 is installed on the drain pipe 21. The nozzle 8 in the spray chamber 102 sprays the absorption liquid to absorb formaldehyde in the gas and then turns it into waste liquid and accumulates in the spray chamber 102. The valve 22 on the drain pipe 21 can be opened to discharge the waste liquid in the spray chamber 102 to facilitate the continued use of the first purification box 1. The discharged waste liquid is collected for waste liquid treatment to prevent secondary pollution of the environment.

[0030] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any common changes and substitutions made by those skilled in the art within the scope of the technical solution of the present invention should be included in the protection scope of the present invention.

Claims

1. A mixing device for textile auxiliaries, comprising a mixing tank (01) for mixing, a mounting frame (02) for mounting the mixing tank (01), an agitator (03) for agitating the textile auxiliaries in the mixing tank (01), and a motor (04) for driving the agitator (03) to rotate, the mixing tank (01) comprising a feeding port (05) and a discharging port (06), both of which are provided with plugs (07), characterized in that: The mixing tank (01) is provided with a first purification box (1), and the mounting frame (02) is provided with a second purification box (2) connected to the first purification box (1) and a suction fan (3) connected to the second purification box (2). A liquid storage tank (4) is installed on the first purification box (1), a partition (5) is installed in the first purification box (1), and the partition (5) divides the internal space of the first purification box (1) into an air intake chamber (101) and a spray chamber (102). A pump (6) connected to the liquid storage tank (4) is installed on the liquid storage tank (4), a liquid spray pipe (7) connected to the spray chamber (102) is installed on the pump (6), and a nozzle (8) placed in the spray chamber (102) is installed on the liquid spray pipe (7). An air intake pipe (9) connected to the mixing tank (01) is installed in the air intake chamber (101). A plurality of adsorption plates (10) are detachably connected in the second purification box (2), and the plurality of adsorption plates (10) are arranged in a staggered manner. An air guide hose (11) corresponding to the adsorption plates (10) is connected to the second purification box (2), and the air guide hose (11) is connected to the spray chamber (102).

2. A mixing device for textile auxiliaries according to claim 1, characterized in that: A plurality of card plates corresponding to the plurality of activated carbon plates are installed in the second purification box (2), and card slots for engaging with the activated carbon plates are provided on the card plates. The second purification box (2) includes a box door for facilitating replacement of the activated carbon plates in the second purification box (2).

3. A mixing device for textile auxiliaries according to claim 2, characterized in that: The second purification box (2) is provided with a transparent drying box, in which granular color-changing silica gel is provided. The drying box is connected to the air guide hose (11). The drying box is connected to a sealing tube (17) connected to the second purification box (2). A filter (18) is installed in the sealing tube (17) to prevent the color-changing silica gel from falling into the second purification box (2). The drying box is provided with a material exchange port (19) for facilitating the replacement of the color-changing silica gel. A sealing plate (20) is detachably connected to the material exchange port (19).

4. A mixing device for textile auxiliaries according to claim 3, characterized in that: The first purification box (1) is connected to a drain pipe (21) for discharging waste liquid in the spray chamber (102), and a valve (22) for controlling the opening and closing of the drain pipe (21) is installed on the drain pipe (21).

Citation Information

Patent Citations

  • Mixing tank for auxiliary production in textile industry

    CN216604866U