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Anhydrous cooling liquid for engines and preparation method thereof

A water cooling and engine technology, applied in the field of waterless coolant, can solve problems such as unhealthy and unenvironmental protection, and achieve the effect of fast biodegradation, low cost, and cavitation inhibition

Inactive Publication Date: 2015-04-15
江门市江海区一言科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In view of this, the first object of the present invention is to provide a water-free coolant for generators, which has environmental protection, non-toxicity, low freezing point, high boiling point, high ignition point, no scale, fuel saving, heat conduction Good performance, thus solving the unhealthy and unenvironmental problems existing in the prior art

Method used

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  • Anhydrous cooling liquid for engines and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A kind of anhydrous cooling liquid that engine is used, and its composition and weight percent are as follows:

[0029] AST Polymer: 11%; Propylene Glycol: 70%; Triethanolamine: 2%; Coco Diethanolamide: 0.53%; Glycerol: 15%; Sodium Metasilicate: 0.05%; ; Sodium borate: 0.01%; Silicone defoamer: 0.01%; Sodium benzoate: 0.35%.

[0030] A preparation method for an anhydrous coolant for an engine, comprising the following steps:

[0031] (1) Add propylene glycol, glycerin, sodium metasilicate and sodium borate into the reaction axe, start stirring, heat up to 90°C and react for 2 hours;

[0032] (2) Add triethanolamine and coconut oil diethanolamide to the reactor to react for 2 hours, and cool down to 60°C;

[0033] (3) Add benzotriazole and AST polymer to the reaction kettle and react for 2 hours, then cool down to 35°C;

[0034] (4) Add sodium benzoate and organic silicon defoamer to the reaction kettle and react for 2 hours to obtain the product;

[0035] Among them...

Embodiment 2

[0037] A kind of anhydrous cooling liquid that engine is used, and its composition and weight percent are as follows:

[0038] AST Polymer: 40%; Propylene Glycol: 20%; Triethanolamine: 8%; Coco Diethanolamide: 1.5%; Glycerol: 24%; Sodium Metasilicate: 1%; Benzotriazole: 2.2% ; Sodium borate: 0.3%; Silicone defoamer: 1%; Sodium benzoate: 2%.

[0039] A preparation method for an anhydrous coolant for an engine, comprising the following steps:

[0040] (1) Add propylene glycol, glycerin, sodium metasilicate and sodium borate into the reaction axe, start stirring, heat up to 90°C and react for 2 hours;

[0041] (2) Add triethanolamine and coconut oil diethanolamide to the reactor to react for 2 hours, and cool down to 60°C;

[0042] (3) Add benzotriazole and AST polymer to the reaction kettle and react for 2 hours, then cool down to 35°C;

[0043] (4) Add sodium benzoate and organic silicon defoamer to the reaction kettle and react for 2 hours to obtain the product;

[0044] A...

Embodiment 3

[0046] A kind of anhydrous cooling liquid that engine is used, and its composition and weight percent are as follows:

[0047] AST Polymer: 30%; Propylene Glycol: 40%; Triethanolamine: 5%; Coco Diethanolamide: 1%; Glycerin: 20%; Sodium Metasilicate: 0.5%; Benzotriazole: 1.5% ; Sodium borate: 0.1%; Silicone defoamer: 0.4%; Sodium benzoate: 1.5%.

[0048] A preparation method for an anhydrous coolant for an engine, comprising the following steps:

[0049] (1) Add propylene glycol, glycerin, sodium metasilicate and sodium borate into the reaction axe, start stirring, heat up to 90°C and react for 2 hours;

[0050] (2) Add triethanolamine and coconut oil diethanolamide to the reactor to react for 2 hours, and cool down to 60°C;

[0051] (3) Add benzotriazole and AST polymer to the reaction kettle and react for 2 hours, then cool down to 35°C;

[0052] (4) Add sodium benzoate and organic silicon defoamer to the reaction kettle and react for 2 hours to obtain the product;

[005...

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Abstract

The invention puts forward an anhydrous cooling liquid for engines. The anhydrous cooling liquid is composed of the following components by weight: 10-50% of an AST polymer; 20-70% of propylene glycol; 1-10% of triethanolamine; 0.1-3% of coconut oil diethanolamide; 10-30% of glycerol; 0.05-1% of sodium metasilicate; 0.05-3% of benzotriazole; 0.01-0.3% of sodium borate; 0.01-1% of an organic silicon defoamer; and 0.05-3% of sodium benzoate. The invention also discloses a preparation method of the anhydrous cooling liquid for engines. The anhydrous cooling liquid provided by the invention has the advantages of environmental protection and no toxicity, low freezing point, high boiling point, high ignition point, no scale, fuel oil saving, and good heat conductivity, thereby solving the problems of unhealthiness and no environmental protection in the prior art. In addition, the production process is simple and the cost is low, so that the anhydrous cooling liquid is of great popularization performance.

Description

technical field [0001] The invention relates to an anhydrous cooling liquid, in particular to an anhydrous cooling liquid for cooling an engine, and also discloses a preparation method of the anhydrous cooling liquid. Background technique [0002] Coolant is a complex multi-component system, mainly composed of antifreeze, corrosion inhibitor, defoamer, colorant, antifungal agent and buffer. An excellent coolant should have the functions of heat dissipation, anti-corrosion, anti-freezing, high boiling point, anti-scaling and anti-foaming. Antifreeze as an engine coolant has undergone changes from methanol, ethanol, water, salt water, to glycerin, diethylene glycol, and then to ethylene glycol. With the improvement of people's understanding and the development of technology, most antifreezes have been eliminated due to various reasons, such as methanol and ethanol have low boiling points, high vapor pressure and are flammable; salt water mixtures are prone to rust and crystal...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K5/20
CPCC09K5/20
Inventor 龚裕强
Owner 江门市江海区一言科技有限公司
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