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MECHANICAL AND ENVIRONMENTAL DEGRADATION OF SELF-ASSEMBLED MONOLAYER COATINGS FOR MICROELECTROMECHANICAL SYSTEMS

机译:微机电系统自组装单层涂层的机械和环境降解

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摘要

Self-assembled monolayer coatings have shown great promise for dramatically reducing the tribological forces of adhesion and friction in microelectro-mechanical systems (MEMS). However, monolayer coatings often display significant degradation when exposed to extreme environments, dynamic sliding contact, and dynamic impact loading. This degradation is coupled with a corresponding increase in the tribological properties. In this study, the degradation of tridecafluorotri(dimethylamino)silane is examined under the typical operating conditions of MEMS technology using a specialized microdevice designed for characterizing the tribological behavior surface micromachines. Results of friction and adhesion degradation under normal loading and sliding contact are interpreted in relation to the primary degradation mechanisms of self-assembled monolayers.
机译:自组装单层涂层已显示出极大的希望,可以显着降低微机电系统(MEMS)中的附着力和摩擦力。但是,单层涂层在暴露于极端环境,动态滑动接触和动态冲击载荷时通常会表现出明显的降解。这种降解与摩擦学特性的相应增加相结合。在这项研究中,使用专门用于表征摩擦行为表面微机械的专用微型设备,在MEMS技术的典型操作条件下检查了十三氟三(二甲基氨基)硅烷的降解。解释了在正常载荷和滑动接触下摩擦和附着力下降的结果,它们与自组装单分子层的主要降解机理有关。

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