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Study on the New Grinding Fluids of Oils on Water
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作者 魏源迁 钱怡 +1 位作者 中村隆 松原十三生 《Journal of Donghua University(English Edition)》 EI CAS 2003年第3期16-18,共3页
To fulfill a zero-emission in the process of grinding and thoroughly eliminate the influences of the conventional grinding fluids on the eco-environment as well as save up electric energy and reduce in production cost... To fulfill a zero-emission in the process of grinding and thoroughly eliminate the influences of the conventional grinding fluids on the eco-environment as well as save up electric energy and reduce in production costs, the new grinding fluids of botanic oils on water were developed, in which a lot of tiny water droplets attached with micro oil films were blown to the machining area by a compressing air-jet so good as to produce lubricating and cooling roles.In this study, grinding performances of the new fluids were investigated by comparison to the conventional ones such as emulsion on the plane NC grinder. 展开更多
关键词 Eco-machining Zero-emission ECO-ENVIRONMENT grinding fluids Botanic oils EMULSION grinding experiments grinding characteristics
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Research Progress of Interfacial Chemism of High Efficiency Organic Grinding Fluid for Si_3N_4 Ceramics
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作者 TIAN Xin-li(田欣利) +5 位作者 YANG Jun-fei(杨俊飞) WU Zhi-yuan(吴志远) HU Zhong-xiang(胡仲翔) 《Journal of Shanghai Jiaotong university(Science)》 EI 2005年第4期392-396,共5页
Grinding is a most important machining method for Si3N4 ceramics. Utilizing interracial chemistry reaction membrane between grinding fluid and Si3N4 ceramics can reduce friction factor, soften surface layer and meanwh... Grinding is a most important machining method for Si3N4 ceramics. Utilizing interracial chemistry reaction membrane between grinding fluid and Si3N4 ceramics can reduce friction factor, soften surface layer and meanwhile improve the grinding efficiency, which is a bran-new research direction. This article, based on high efficiency grinding of Si3N4 ceramics by the way of half plasticity removal, descanted on the assistant function of interface chemistry reaction to improve the removal rate of Si3N4 ceramics in the application of organic grinding fluids represented by alcohols grinding fluid. To target action mechanism research, it applies the methods of classification, comparison and induction, and advanced test equipments to explore the effects of long, short carbochain alcohol and their water solutions acting as grinding fluids. In addition, it also discusses the effective function of three groups of organic matters such as perhalogeno hydrocarbon, cationic surfactant and tetra ethoxysilane acting as grinding fluid components from different angles, reveals their mechanisms of action, and supplies theoretical basis for the development of machining ceramic grinding fluid of high efficiency, low cost. 展开更多
关键词 Si3N4 ceramics grinding fluid interracial chemical reaction mechanism
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