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首页> 外文期刊>Tribology International >Nanoscale friction and growth of surface oxides on a metallic glass under electrochemical polarization
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Nanoscale friction and growth of surface oxides on a metallic glass under electrochemical polarization

机译:电化学极化下金属玻璃上表面氧化物的纳米级摩擦和生长

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摘要

Metallic glasses are excellent materials for micromechanical systems, where miniature components involving mechanical contact require control of friction at the microscopic scale. We report on an in-situ study of the structure of oxide films formed upon electrochemical polarization and their role in nanoscale friction on a metallic glass in aqueous environment using atomic force microscopy. The oxide film has a bilayer structure, as revealed by repeated scanning with the tip of an atomic force microscope. The dependence of friction on electrochemical potential reveals the growth mechanism and highlights the role of the oxide films for the frictional response of metallic glasses. The chemical sensitivity of nanotribology studies under electrochemical control contributes to the understanding of corrosion mechanisms on metallic glasses.
机译:金属玻璃是微机械系统的优良材料,在微机械系统中,涉及机械接触的微型部件需要在微观尺度上控制摩擦。我们利用原子力显微镜对电化学极化形成的氧化膜的结构及其在水环境中金属玻璃纳米级摩擦中的作用进行了原位研究。用原子力显微镜尖端反复扫描发现,氧化膜具有双层结构。摩擦对电化学电位的依赖性揭示了金属玻璃的生长机制,并强调了氧化膜在金属玻璃摩擦响应中的作用。电化学控制下纳米核糖研究的化学敏感性有助于理解金属玻璃的腐蚀机理。

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