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Process for producing lubricating cooling liquid

A production process, lubrication and cooling technology, applied in the direction of lubricating composition, petroleum industry, base materials, etc., can solve the problems of increasing production cost, polluting the environment, and short service life

Inactive Publication Date: 2005-06-08
HAIYING CHEM IND TRADE SHANGHAI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, the emulsified oil or coolant routinely used in the market has at least the following defects: the emulsified liquid has poor anti-rust performance, not only contains toxic and harmful ingredients such as sodium nitrite, but also has a short service life; in the case of high temperature and high humidity in summer, It is easy to be corrupted and deteriorated, which greatly reduces the efficiency in actual production and application
[0004] For all kinds of steel products in the metallurgical industry, rolling oil is generally used in the process of hot rolling, cooling and rolling various stainless steel pipes and plates, and the pipes and plates rolled with oil are generally coated on the surface of the material. There is a layer of grease left on the surface, and the removal of the grease is usually cleaned with lye and then dried, which not only increases the production cost, but also seriously pollutes the environment

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] A kind of production technology of lubricating coolant, comprises the following steps successively:

[0020] (1), 30 parts of borax are heated and stirred to dissolve to obtain solution A;

[0021] (2), sequentially add 150 parts of diethanolamine, 5 parts of silicone oil, and 20 parts of sodium petroleum sulfonate into solution A, heat and stir to dissolve, and obtain solution B;

[0022] (3), add 30 parts of boric acid and 10 parts of sebacic acid successively in solution B, heat and stir to dissolve to obtain solution C;

[0023] (4), add 200 parts of heptanoic acid in solution C, heat and stir to dissolve, and obtain solution D;

[0024] (5), add 2 parts of benzotriazole in solution D, heat and stir to dissolve, and obtain solution E;

[0025] (6) Add 100 parts of oleic acid to solution E, heat and stir to dissolve, and add 1 part of defoamer to obtain the finished product.

Embodiment 2

[0027] A kind of production technology of lubricating coolant, comprises the following steps successively:

[0028] (1), 50 parts of borax are heated and stirred to dissolve to obtain solution A;

[0029] (2) Add 220 parts of diethanolamine, 15 parts of silicone oil, and 40 parts of sodium petroleum sulfonate in sequence in solution A, heat and stir to dissolve to obtain solution B;

[0030] (3), add 70 parts of boric acid and 50 parts of sebacic acid successively in solution B, heat and stir to dissolve, and obtain solution C;

[0031] (4), add 400 parts of heptanoic acid in solution C, heat and stir to dissolve, and obtain solution D;

[0032] (5), add 10 parts of benzotriazole in solution D, heat and stir to dissolve, and obtain solution E;

[0033] (6) Add 300 parts of oleic acid to solution E, heat and stir to dissolve, add 5 parts of defoamer to obtain the finished product.

Embodiment 3

[0035] A kind of production technology of lubricating coolant, comprises the following steps successively:

[0036] (1), 40 parts of borax are heated and stirred to dissolve to obtain solution A;

[0037] (2) Add 180 parts of diethanolamine, 10 parts of silicone oil, and 30 parts of sodium petroleum sulfonate in sequence in solution A, heat and stir to dissolve to obtain solution B;

[0038] (3), sequentially add 50 parts of boric acid and 30 parts of sebacic acid in solution B, heat and stir to dissolve to obtain solution C;

[0039] (4), add 300 parts of heptanoic acid in solution C, heat and stir to dissolve, and obtain solution D;

[0040] (5), add 6 parts of benzotriazoles in solution D, heat and stir to dissolve, and obtain solution E;

[0041] (6) Add 200 parts of oleic acid to solution E, heat and stir to dissolve, add 3 parts of defoamer to obtain the finished product.

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PUM

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Abstract

A process for preparing lubricating-cooling liquid is prepared from borax, biethanolamine or triethanolamine, silica oil, sodium petrosulfonate, boric acid, decanedioic acid, heptanoic acid or octanoic acid, phenyltriazole, and oleic acid. Its advantages are high performance and no pollution.

Description

Technical field: [0001] The invention relates to a metal working fluid, in particular to a production process of a lubricating cooling fluid. Background technique: [0002] At present, with the development of modern machining in the direction of high speed, strength and precision, the development of hard-to-machine materials such as super-hard and super-strength makes cutting more and more difficult. Due to these two reasons, the friction force and friction heat in the cutting process are greatly increased, which requires metalworking fluids to have better lubrication, cooling, cleaning, and anti-rust properties to obtain an ideal machined surface. [0003] At present, the emulsified oil or coolant routinely used in the market has at least the following defects: the emulsion has poor antirust performance, not only contains toxic and harmful ingredients such as sodium nitrite, but also has a short service life; in the case of high temperature and high humidity in summer, It ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C10M107/50
Inventor 钱极烨
Owner HAIYING CHEM IND TRADE SHANGHAI
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