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摘要:
The aim of the present work is to confirm the fundamental possibility of creating new generation of the nanostructured composite coatings-orientants are studied under conditions of boundary lubrication in inactive oil, as green tribology aspect and to experimentally prove the efficacy of the nanostructured composite coatings-orientants for engineering applications. Tribological properties of nanostructured composite coatings-orientants are studied under conditions of boundary lubrication in inactive oil, as green tribology aspect. The friction tests were carried out by using two test configurations: “ball-on-disc” and “ring-to-ring”. As lubricants some model and commercial oils were used. It is found that the friction coefficient and its temperature dependence differ significantly for nanostructured composite coatings under study. The obtained results were attributed to different orientating effect of these coatings on structural ordering in boundary layers, which structure is considered as a mesophase of liquid crystals. The findings suggest that the nanostructured composite coatings-orientants with orientating effect on boundary layers are advantageous for improving antifriction characteristics and for governing processes of boundary lubrication. The nanostructured composite coatings-orientants can improve lubricating properties of oils (with and without additives) and may be advantageous for engineering practice as they improve antifriction characteristics of rubbing pairs and allow controlling the processes of boundary lubrication. Thus, received nanostructured composite coatings-orientants can be today the best materials of green tribology in engineering.
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篇名 To the New Concept of Green Tribology
来源期刊 材料科学与化学工程(英文) 学科 医学
关键词 Green TRIBOLOGY DLC Coatings-Orientant Nanostructural COATING BOUNDARY LUBRICANT LAYERS Structural Order
年,卷(期) clkxyhxgcyw_2017,(1) 所属期刊栏目
研究方向 页码范围 175-187
页数 13页 分类号 R73
字数 语种
DOI
五维指标
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研究主题发展历程
节点文献
Green
TRIBOLOGY
DLC
Coatings-Orientant
Nanostructural
COATING
BOUNDARY
LUBRICANT
LAYERS
Structural
Order
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引文网络交叉学科
相关学者/机构
期刊影响力
材料科学与化学工程(英文)
季刊
2327-6045
武汉市江夏区汤逊湖北路38号光谷总部空间
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489
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0
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