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Adhesive and corrosive wear at microscales in different vapor environments

机译:在不同的蒸汽环境下,微尺度的胶粘剂和腐蚀性磨损

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摘要

Adhesive and corrosive wear at microscales are quantitatively distinguished in lifetime tests of resonant bulk-fabricated silicon microelectromechanical systems (MEMS). By analyzing the oscillation decay characteristics in different vapor environments, we find that wear is dominated by asperity adhesion during the initial stages of rubbing in dry N2 or O2/N2 mixtures; in these situations the transient wear rate is inversely proportional to the wear depth. But in water or ethanol vapors, chemical reactions between the corrosive adsorbed layer and the silicon substrate limit the wear rate to a constant. These observations are consistent with atomic explanations. The differences between adhesive and corrosive wear explain the advantages offered by lubricating with alcohol vapors rather than using dry environments for tribo-MEMS devices. Compared to ethanol, the relatively poor anti-wear effect of water vapor is explained by aggressive and rapid tribo-reactions.
机译:在谐振批量制造的硅微机电系统(MEMS)的寿命测试中,在数量上可以区分微尺度的粘着磨损和腐蚀性磨损。通过分析不同蒸气环境下的振荡衰减特性,我们发现在干燥的N2或O2 / N2混合物中,摩擦的初始阶段磨损主要由粗糙粘合引起。在这些情况下,瞬态磨损率与磨损深度成反比。但是在水或乙醇蒸气中,腐蚀性吸附层和硅基板之间的化学反应将磨损率限制为恒定。这些观察与原子的解释是一致的。粘着磨损和腐蚀性磨损之间的差异说明了用酒精蒸气润滑而不是在摩擦式MEMS器件中使用干燥环境的优势。与乙醇相比,水蒸气的相对较差的抗磨作用可以通过剧烈的快速摩擦反应来解释。

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