首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Nanometer-scale Mechanical/Structural Properties of Molybdenum Dithiocarbamate and Zinc Dialkylsithiophosphate Tribofilms and Friction Reduction Mechanism
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Nanometer-scale Mechanical/Structural Properties of Molybdenum Dithiocarbamate and Zinc Dialkylsithiophosphate Tribofilms and Friction Reduction Mechanism

机译:二硫代氨基甲酸钼和二烷基硅硫代磷酸锌摩擦膜的纳米级机械/结构性能及减摩机理

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摘要

Nanometer-scale differences in mechanical and structural properties between the molybdenum- dithiocarbamate/zinc-dialkylsithiophosphate (MoDTC/ZDDP) tribofilm and ZDDP tribofilm were successfully evaluated by using atomic force microscopic phase-image techniques, Auger electron spectroscopy and X-ray photo spectroscopy. It is well known that the MoDTC/ZDDP tribofilm exhibits markedly lower friction behavior than the ZDDP tribofilm. To elucidate the mechanism of friction reduction originating from the MoDTC additive, attention was focused on property differences in the surface area in particular, from the uppermost surface to an underlying region of less than 10 nm in depth. It was found that the friction reduction due to the MoDTC/ZDDP additives originates from an inner skin layer formed by MoS_2 nanostrips just below the surface. The MoS_2 nanostrips were oriented in the sliding direction, had low yield strength and acted as a solid lubricant in lowering the friction coefficient of the MoDTC/ZDDP tribofilm.
机译:通过原子力显微镜相图技术,俄歇电子能谱和X射线能谱,成功地评估了二硫代氨基甲酸钼/二烷基二硫代磷酸锌(MoDTC / ZDDP)摩擦膜和ZDDP摩擦膜的纳米尺度机械和结构性能差异。众所周知,MoDTC / ZDDP摩擦膜的摩擦性能明显低于ZDDP摩擦膜。为了阐明源自MoDTC添加剂的减少摩擦的机理,注意力集中在表面积的性能差异上,特别是从最上表面到深度小于10 nm的下层区域。已发现,由于MoDTC / ZDDP添加剂而导致的摩擦减小源自表面正下方由MoS_2纳米带形成的内蒙皮层。 MoS_2纳米带沿滑动方向取向,屈服强度低,并且在降低MoDTC / ZDDP摩擦膜的摩擦系数中起固体润滑剂的作用。

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