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Microemulsion cutting fluid for processing glass ceramics and preparation method of microemulsion cutting fluid

A glass-ceramic and micro-emulsion technology, which is applied in the petroleum industry and lubricating compositions, can solve the problems of poor cooling performance, poor lubricity and anti-rust effect, and environmental pollution, and achieves improved service life, excellent cooling, and low pollution effect

Active Publication Date: 2014-04-16
当涂县金龙凤科技股份有限公司
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AI Technical Summary

Problems solved by technology

Generally, oil-soluble cutting fluid has good lubricating performance, but poor cooling performance, and contains a large amount of organic matter, polluting the environment
Although some water-soluble cutting fluids have good cooling performance, they also have the problem of poor lubricity and anti-rust effect. Cutting fluid that does not corrode the equipment and does not pollute the environment is very important

Method used

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  • Microemulsion cutting fluid for processing glass ceramics and preparation method of microemulsion cutting fluid

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Embodiment Construction

[0009] A microemulsion cutting fluid for processing glass-ceramics, made of the following raw materials in parts by weight (kg): soybean oil 22, zirconium fluoride 3.5, ethylene glycol 13, sodium tripolyphosphate 2.5, palmitoleic acid 3.5, month Polyoxyethylene silicate 1.5, engine oil 13, nano-montmorillonite 1.5, sodium petroleum sulfonate 1.5, auxiliary agent 7, water 200; the auxiliary agent is made of the following raw materials in parts by weight (kg): polyoxyethylene Sorbitan monooleate 3, nano aluminum nitride 0.1, ammonium bicarbonate 3, ethanolamine 1, carboxymethyl chitosan 2, diethylene glycol butyl ether 1, propylene glycol 8, peach gum 3, sodium silicate 1. Urea 4, ammonium persulfate 2, water 20; the preparation method is to dissolve ammonium persulfate in water, then add other remaining materials, stir for 10-15 minutes, heat to 70-80°C, and stir for 1-2 hours , that is.

[0010] The preparation method of the microemulsified cutting fluid for processing glass-...

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Abstract

A microemulsion cutting fluid for processing glass ceramics is prepared from the following raw materials by weight: 20-23 parts of soybean oil, 3-4 parts of zirconium fluoride, 12-14 parts of glycol, 2-3 parts of sodium tripolyphosphate, 3-4 parts of palmitoleic acid, 1-2 parts of polyglycol laurate, 12-14 parts of engine oil, 1-2 parts of nano-montmorillonite, 1-2 parts of petroleum sodium sulfonate, 6-8 parts of an additive, and 200 parts of water. The microemulsion cutting fluid is a transparent fluid, so that the turbidity condition of the cutting fluid is easily observed, and the microemulsion cutting fluid is not easy to spoil, and low in pollution, has no foams in processing and no corrosion on a machine tool, has the excellent cooling, lubricating and cleaning properties, can prolong the service life of the cutting tool, and is high in workpiece processing precision.

Description

technical field [0001] The invention relates to the field of cutting fluids, in particular to a microemulsion cutting fluid for processing glass-ceramics and a preparation method thereof. Background technique [0002] The cutting fluid should have good cooling performance, lubricating performance, anti-rust performance, degreasing and cleaning function, anti-corrosion function, and easy dilution. At present, cutting fluid can be divided into two categories, oil-soluble cutting fluid and water-soluble cutting fluid. Generally, oil-soluble cutting fluid has good lubricating performance, but poor cooling performance, and contains a large amount of organic matter, which pollutes the environment. Although some water-soluble cutting fluids have good cooling performance, they also have the problem of poor lubricity and anti-rust effect. It is very important to have a cutting fluid that does not corrode the equipment and does not pollute the environment. Contents of the inventio...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C10M173/00C10N30/06C10N30/12C10N30/04
Inventor 张万宝
Owner 当涂县金龙凤科技股份有限公司