Carbon deposit cleansing agent of engine and preparation method of carbon deposit cleansing agent

A carbon deposit cleaning agent and engine technology, applied in the field of engine cleaning agents, can solve the problems of dry metal surface, rapid diffusion of anionic surfactants, and excessive engine emissions, so as to achieve no corrosion of the overall metal, good instant cleaning effect, and dissolving effect. improved effect

Active Publication Date: 2019-05-10
广州市泰戈尔生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although this type of cleaning agent is neutral and has a certain cleaning effect on the carbon deposits in the combustion chamber, due to the excessive use of diethylene glycol butyl ether acetate solvent, it will cause the rapid diffusion of anionic surfactants, resulting in dryness of the metal surface , even if the lubricating oil is sprayed on the cleaned metal surface, it will produce metal surface stress microcracks on the metal surface of the ferroalloy engine, all-aluminum engine, and magnesium-aluminum engine, especially when the car engine is driven for more than 1,000 kilometers after cleaning.

Method used

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  • Carbon deposit cleansing agent of engine and preparation method of carbon deposit cleansing agent
  • Carbon deposit cleansing agent of engine and preparation method of carbon deposit cleansing agent
  • Carbon deposit cleansing agent of engine and preparation method of carbon deposit cleansing agent

Examples

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Embodiment 1

[0039] A car engine carbon deposit cleaning agent, comprising the following raw materials in parts by weight: 28 parts of diethylene glycol ether acetate, 28 parts of diethylene glycol monophenyl ether, 28 parts of methyl pyrrolidone, 2 parts of lactic acid solution, long-chain carboxylic acid Ester polyoxyethylene-18 3 parts, isothiazolinone 3 parts by weight, ammonia solution 9 parts.

[0040] The concentration of the lactic acid solution is 0.58, and the concentration of the ammonia solution is 0.37.

[0041] The preparation method of this cleaning agent is:

[0042] Step S1: add diethylene glycol ether acetate into the reaction tank and stir, the stirring speed is 200r / min, and the stirring time is 5mins;

[0043] Step S2: Add diethylene glycol monophenyl ether, and stir at a stirring speed of 200r / min for 5mins;

[0044] Step S3: Add methylpyrrolidone and stir at a stirring speed of 200r / min for 5mins;

[0045] Step S4: adding lactic acid solution, stirring at a stirri...

Embodiment 2

[0063] A car engine carbon deposit cleaning agent, comprising the following raw materials in parts by weight: 28 parts of diethylene glycol ether acetate, 29 parts of diethylene glycol monophenyl ether, 30 parts of methyl pyrrolidone, 2.5 parts of lactic acid solution, long-chain carboxylic acid Ester polyoxyethylene-18 3 parts, isothiazolinone 3.5 parts by weight, sodium hydroxide solution 4 parts.

[0064] The concentration of the lactic acid solution is 0.64, and the concentration of the sodium hydroxide solution is 0.42.

[0065] The preparation method of this cleaning agent is:

[0066] Step S1: add diethylene glycol ether acetate into the reaction tank and stir, the stirring speed is 250r / min, and the stirring time is 5mins;

[0067] Step S2: Add diethylene glycol monophenyl ether, and stir at a stirring speed of 250r / min for 5mins;

[0068] Step S3: Add methylpyrrolidone and stir at a stirring speed of 250r / min for 5mins;

[0069] Step S4: adding lactic acid solution...

Embodiment 3

[0087] A car engine carbon deposit cleaning agent, comprising the following raw materials in parts by weight: 29 parts of diethylene glycol ether acetate, 29 parts of diethylene glycol monophenyl ether, 29 parts of methylpyrrolidone, 3 parts of lactic acid solution, long-chain carboxyl Ester polyoxyethylene-18 3 parts, isothiazolinone 3 parts by weight, potassium hydroxide solution 4 parts.

[0088] The concentration of the lactic acid solution is 0.72, and the concentration of the potassium hydroxide solution is 0.46.

[0089] The preparation method of this cleaning agent is:

[0090] Step S1: adding diethylene glycol ether acetate into the reaction tank and stirring, the stirring speed is 280r / min, and the stirring time is 5mins;

[0091] Step S2: Add diethylene glycol monophenyl ether, and stir at a stirring speed of 280r / min for 5mins;

[0092] Step S3: Add methylpyrrolidone and stir at a stirring speed of 280r / min for 5mins;

[0093] Step S4: adding lactic acid solutio...

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PUM

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Abstract

The invention belongs to the field of cleansing agents of an engine, and particularly relates to a carbon deposit cleansing agent of an engine and a preparation method of the carbon deposit cleansingagent. The carbon deposit cleansing agent comprises the following raw materials in parts by mass of 28-64 parts of diethylene glycol ether acetate, 28-65 parts of diethylene glycol monophenyl ether, 28-65 parts of N-methyl pyrrolidone, 2-8 parts of a lactic acid solution, 1-5 parts of Long-chain carboxylate polyoxyethylene-18, 1-6 parts of isothiazolinone, and 1-9 parts of an alkaline solution. The carbon deposit cleansing agent disclosed by the invention adopts a manner that a positive ion surface active agent is collocated with the diethylene glycol ether acetate, the diethylene glycol monophenyl ether and the N-methyl pyrrolidone, so that the problems that in the prior art, when carbon deposit is washed with a solvent, an anionic surface active agent and a plasticizer, each component ofthe engine is subjected to dual corrosion, the engine coating is peeled off, and ternary noble metals are peeled off are effectively solved; the engine carbon deposit cleansing agent is friendly to environment and the engine; and the carbon deposit removing effect is good, and the effect of instantly peeling the carbon deposit off can be achieved.

Description

technical field [0001] The invention relates to the field of engine cleaning agents, in particular to an engine carbon deposit cleaning agent and a preparation method thereof. Background technique [0002] Engine carbon deposits refer to the residues produced after the fuel and lubricating oil are combusted together, which are easily deposited and adsorbed on the intake manifold, throttle valve, valve, combustion chamber, piston, spark plug, fuel injector, three-way catalytic converter, etc. , Excessive carbon deposits will cause difficulty in cold start of the engine, poor engine air intake, jittering, unstable idle speed, increased fuel consumption after the engine is overheated, and easy to cause problems such as overheating and burning parts. The carbon deposition deposits at the above positions are generally cationic adsorbents. The cations are losing one or several electrons, making the outermost electrons reach a stable structure of 8 or 2 electrons. The atoms with la...

Claims

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Application Information

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IPC IPC(8): C23G5/032C23G5/036
Inventor 殷振鹏殷鹤鸣
Owner 广州市泰戈尔生物科技有限公司
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