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首页> 外文期刊>Tribology Transactions >Phase transformations in silicon under dry and lubricated sliding
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Phase transformations in silicon under dry and lubricated sliding

机译:干和润滑滑动下硅中的相变

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摘要

Sliding friction and wear mechanisms of silicon/silicon nitride test pairs were investigated under conditions of both dry and lubricated sliding. High-resolution surface topography mapping and electron microscopy studies revealed that microfracture was the predominant wear mechanism under dry and grease-lubricated sliding conditions. Raman spectroscopy suggested that in certain areas of the sliding contact, silicon underwent phase transformation and reached a metallic state because of high contact pressures. The extent of phase transformation was greater during the very early stages of the run-in period than during steady-state sliding regimes. The use of grease and oil as lubricants led to a substantial reduction in friction and greatly diminished wear due to microfracture. Furthermore, almost all areas on Si surfaces subjected to lubricated sliding contact underwent pressure-induced phase transformation. Both amorphous material and crystalline Si phases were identified by Raman spectroscopy. The experimental observations suggested that the wear process in lubricated sliding contacts was mainly dominated by the formation of a ductile metallic Si phase and subsequent removal of the transformed layers. The results of this study demonstrate that pressure-induced phase transformation must be taken into account when considering possible wear mechanisms of silicon in contact with other hard materials, inasmuch as it contributes notably to the wear of silicon under lubricated sliding.
机译:在干式和润滑式滑动条件下,研究了硅/氮化硅测试对的滑动摩擦和磨损机理。高分辨率表面形貌图和电子显微镜研究表明,在干燥和油脂润滑的滑动条件下,微裂纹是主要的磨损机制。拉曼光谱表明,在滑动接触的某些区域,硅由于高的接触压力而经历了相变并达到金属态。相变的程度在磨合期的早期阶段要比稳态滑移阶段大。使用油脂作为润滑剂可大大减少摩擦,并大大减少由于微断裂而引起的磨损。此外,Si表面上几乎所有经受润滑滑动接触的区域都经历了压力诱导的相变。通过拉曼光谱法鉴定非晶材料和结晶Si相。实验观察表明,润滑的滑动触点的磨损过程主要由韧性金属Si相的形成和随后去除相变层所决定。这项研究的结果表明,在考虑硅与其他硬质材料接触的可能的磨损机理时,必须考虑到压力引起的相变,因为它显着地影响了润滑滑动下硅的磨损。

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