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Characterization of tribo-layer formed during sliding wear of SiC ball against nanocrystalline diamond coatings

机译:SiC球对纳米晶金刚石涂层滑动磨损过程中形成的摩擦层的表征

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摘要

Tribo-layer formation and frictional characteristics of the SiC ball were studied with the sliding test against nanocrystalline diamond coating under atmospheric test conditions. Unsteady friction coefficients in the range of 0.04 to 0.1 were observed during the tribo-test. Friction and wear characteristics were found to be influenced by the formation of cohesive tribo-layer (thickness - 1.3 μm) in the wear track of nanocrystalline diamond coating. Hardness of the tribo-layer was measured using nanoindentation technique and low hardness of ~ 1.2 GPa was observed. The presence of silicon and oxygen in the tribo-layer was noticed by the energy dispersive spectroscopy mapping and the chemical states of the silicon were analyzed using X-ray photoelectron spectroscopy. Large amount of oxygen content in the tribo-layer indicated tribo-oxidation wear mechanism.
机译:在大气测试条件下,通过对纳米晶金刚石涂层的滑动试验研究了SiC球的摩擦层形成和摩擦特性。在摩擦试验期间,观察到的非定常摩擦系数为0.04至0.1。发现摩擦和磨损特性受纳米晶金刚石涂层磨损轨迹中内聚摩擦层(厚度-1.3μm)的影响。使用纳米压痕技术测量摩擦层的硬度,并观察到约1.2 GPa的低硬度。通过能量色散谱图观察到了摩擦层中硅和氧的存在,并使用X射线光电子能谱分析了硅的化学状态。摩擦层中的大量氧气表明摩擦氧化磨损机理。

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