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Water-based metal detergent and preparation method thereof

A metal cleaning agent, water-based technology, applied in the field of cleaning agents, can solve the problems of cleaning ability, anti-rust cycle to be improved, complex process, metal surface damage, etc., achieve remarkable decontamination effect, simple preparation process, prevent parts rusty effect

Inactive Publication Date: 2015-10-21
BOHAI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, most of the metal cleaning agents on the market contain harmful chemical components such as strong acid, strong alkali, phosphate and aluminum salt. These chemical components will not only cause certain damage to the metal surface, but also cause certain harm to the environment. At the same time Due to the complex process and high cost, its cleaning ability and anti-rust cycle need to be improved

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021] S1. Weigh 2% of potassium stearate, 3% of plant fiber powder, 2% of coconut oil fatty acid diethanolamide, 0.5% of disodium edetate, 2% of AE09, 1% of polyepoxysuccinic acid, and 2% of propylene glycol %, cetyl alcohol polyoxyethylene ether 1.5%, methyl epichlorohydrin 2.5%, branched secondary alcohol polyoxyethylene ether 1.1%, urea peroxide 2.3%, dodecylbenzenesulfonic acid 2.1%, nonyl Phenol polyoxyethylene ether 1%, diethylene glycol monobutyl ether 3%, polyvinyl alcohol 1%, nano-sized TiO 2 0.3%, water lily extract lignans 3%, cactus root sac extract 3%, deionized water remainder; mix the water lily extract lignans and cactus root sac extract, adjust the pH value to 4, After lyophilization, take out and grind for 20 minutes to obtain powder;

[0022] S2, the nano-scale TiO to be weighed 2 Disperse in the weighed deionized water by ultrasonic oscillation equipment;

[0023] S3, the deionized water gained in step S2 is transferred in the steam explosion tank, afte...

Embodiment 2

[0028] S1. Weigh 5% of potassium stearate, 7% of plant fiber powder, 4% of coconut oil fatty acid diethanolamide, 1% of disodium edetate, 4% of AE09, 5% of polyepoxysuccinic acid, and 6% of propylene glycol %, cetyl alcohol polyoxyethylene ether 4.5%, methyl epichlorohydrin 6.3%, branched secondary alcohol polyoxyethylene ether 5.7%, urea peroxide 5.5%, dodecylbenzenesulfonic acid 5.7%, nonyl Phenol polyoxyethylene ether 3%, diethylene glycol monobutyl ether 6%, polyvinyl alcohol 3%, nano-sized TiO 2 6.5%, water lily extract lignans 5%, cactus root sac extract 5%, deionized water balance; the water lily extract lignans and cactus root sac extract were mixed, and the pH value was adjusted to 4. After lyophilization, take out and grind for 20 minutes to obtain powder;

[0029] S2, the nano-scale TiO to be weighed 2 Disperse in the weighed deionized water by ultrasonic oscillation equipment;

[0030] S3, the deionized water gained in step S2 is transferred in the steam explosi...

Embodiment 3

[0035] S1. Weigh 3.5% of potassium stearate, 5% of vegetable fiber powder, 3% of coconut oil fatty acid diethanolamide, 0.75% of disodium edetate, 3% of AE09, 3% of polyepoxysuccinic acid, and 4% of propylene glycol. %, cetyl alcohol polyoxyethylene ether 3%, methyl epichlorohydrin 4.4%, branched secondary alcohol polyoxyethylene ether 3.4%, urea peroxide 3.9%, dodecylbenzenesulfonic acid 3.9%, nonyl Phenol polyoxyethylene ether 2%, diethylene glycol monobutyl ether 4.5%, polyvinyl alcohol 2%, nano-sized TiO 2 3.4%, water lily extract lignans 4%, cactus root sac extract 4%, deionized water remainder; mix the water lily extract lignans and cactus root sac extract, adjust the pH value to 4, After lyophilization, take out and grind for 20 minutes to obtain powder;

[0036] S2, the nano-scale TiO to be weighed 2 Disperse in the weighed deionized water by ultrasonic oscillation equipment;

[0037] S3, the deionized water gained in step S2 is transferred in the steam explosion ta...

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PUM

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Abstract

The invention discloses a water-based metal detergent and a preparation method thereof. The detergent is prepared from potassium stearate, vegetable fiber powder, cocoanut fatty acid diethanolamide, disodium ethylene diamine tetraacetate, AEO9, polyepoxysuccinic acid, propylene glycol, cetanol polyoxyethylene ether, methylepichlorohydrin, branched secondary alcohol ethoxylate, urea peroxide, dodecylbenzene sulfonic acid, nonylphenol polyoxyethylene ether, diethylene glycol monobutyl ether, polyvinyl alcohol, nanometer TiO2, water lily extract product lignanoids, cactus root extract liquid, and the balance of deionized water. The pure plant extract water lily lignanoids are introduced to the preparation field of metal decontaminating agents, and the nanometer TiO2 is added, so the detergent has a substantial decontamination effect, can rapidly clean spots, oil stains and other pollutants on parts, and can prevent rusts of the parts to maintain the shining state of the parts for a long term.

Description

technical field [0001] The invention relates to the field of cleaning agents, in particular to a water-based metal cleaning agent and a preparation method thereof. Background technique [0002] In the maintenance and repair of machining, mechanical equipment, automobiles, etc., diesel oil, kerosene or gasoline are mostly used as cleaning fluids to clean parts. This not only wastes energy, but also has potential unsafe factors. If you are not careful, it may lead to a fire. In recent years, a new type of metal cleaning agent has gradually been widely used. It can replace diesel, kerosene and gasoline to clean parts, and it is cheap and safe to use. It is very suitable for mechanized cleaning operations. It can wash metal without rust spots. [0003] At present, most of the metal cleaners on the market contain harmful chemical components such as strong acid, strong alkali, phosphate and aluminum salt. These chemical components will not only cause certain damage to the metal ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C23G1/02
Inventor 刘琳邢锦娟张艳萍许家胜刘娇
Owner BOHAI UNIV
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