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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Tribology of ethyleneair diffusion flame soot under dry and lubricated contact conditions
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Tribology of ethyleneair diffusion flame soot under dry and lubricated contact conditions

机译:在干燥和润滑的接触条件下乙烯空气扩散火焰烟尘的摩擦学

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摘要

Soot particles are generated in a flame caused by burning ethylene gas. The particles are collected thermophoretically at different locations of the flame. The particles are used to lubricate a steel/steel ball on flat reciprocating sliding contact, as a dry solid lubricant and also as suspended in hexadecane. Reciprocating contact is shown to establish a protective and low friction tribo-film. The friction correlates with the level of graphitic order of the soot, which is highest in the soot extracted from the mid-flame region and is low in the soot extracted from the flame root and flame tip regions. Micro-Raman spectroscopy of the tribo-film shows that the a priori graphitic order, the molecular carbon content of the soot and the graphitization of the film as brought about by tribology distinguish between the frictions of soot extracted from different regions of the flame, and differentiate the friction associated with dry tribology from that recorded under lubricated tribology.
机译:由于燃烧乙烯气体而在火焰中产生烟尘颗粒。微粒通过热电泳收集在火焰的不同位置。这些颗粒既可作为干燥的固体润滑剂,也可悬浮在十六烷中,用于在平面往复滑动接触上润滑钢/钢球。显示往复接触可建立起保护性且低摩擦的摩擦膜。摩擦力与烟灰的石墨级相关,在从火焰中部区域提取的烟灰中碳烟的石墨级最高,而从火焰根部和火焰尖端区域中提取的烟灰的碳级低。摩擦膜的显微拉曼光谱表明,由摩擦学引起的先验石墨级,烟灰的分子碳含量和薄膜的石墨化作用,区分了从火焰不同区域提取的烟灰的摩擦,并且区分与干摩擦学相关的摩擦与润滑摩擦学中记录的摩擦。

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