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Friction-condition-dependent sulfide and sulfate evolution on dialkylpentasulfide tribofilm studied by XANES

机译:XANES研究的二烷基硫化亚硫酰呋喃呋喃的摩擦条件依赖性硫化物和硫酸盐进化

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The effects of friction conditions, such as rotational speed, frictional time, and applied load, on the evolution mechanism of sulfide and sulfate on the top and bottom layers of tribofilm were investigated by total electron yield (TEY) and fluorescence yield (FY) mode X-ray absorption near-edge structure (XANES) spectra in the same beam line (4B7A). The results demonstrated that the top and bottom layers of tribofilms were covered by sulfide and sulfate. The addition of dialkylpentasulfide (DPS) could form complex nonuniform tribofilm. In addition, the friction condition (speed, load, or time) has its unique role in the generation of sulfide and sulfate at a specific depth on the tribofilm surface. The enhancement of friction conditions could promote the sulfur tribochemical reaction in a comparatively large range and alter the relative intensity of sulfurization and the sulfur-oxidizing process.
机译:通过总电子收率(Tey)和荧光产量(FY)模式,研究了摩擦速度,摩擦时间和施加负荷的摩擦条件,例如转速,摩擦时间和施加的载荷的影响,硫化物和底层和底层相同光束线(4B7a)中的X射线吸收近边缘结构(XANES)光谱。结果表明,硫化物和硫酸盐覆盖了呋喃酚的顶层和底层。加入二烷基硫醚硫化物(DPS)可以形成复杂的非均匀呋喃代酯。此外,摩擦条件(速度,载荷或时间)在呋喃晶和硫酸盐处具有其在呋喃吡喃表面上的特定深度的硫酸盐中的独特作用。摩擦条件的增强可以在相对大的范围内促进硫杂化反应,并改变硫化的相对强度和硫氧化过程。

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