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MICRO/NANO-TRIBOLOGICAL BEHAVIOR OF OCTADECYLTRICHLOROSILANE ON SILICON AS A COATING FOR MEMS

机译:十八烷基三氯硅烷对硅的微/纳米摩擦学行为作为MEMS的涂层

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Despite progresses achieved in the technology of MEMS, the tribological problem continues being an unresolved matter. Wear and stick-slip phenomena are many times the origin of failure of these devices. The application of self-assembled monolayers (SAMs) in liquid phase seems to be a solution to this problems. SAMs of octadecyltrichlorosilane (CH{sub}3(CH{sub}2){sub}17SiCl{sub}3, OTS) were attached to Si(100) oxidized in liquid phase. Contact angle measurements were used for characterizing the grade of hydrophobicity. The topography of the coating was obtained with an Atomic Force Microscopy (AFM) in semicontact mode. The images showed the presence of particles related to the polymerization of the precursor molecule during the formation process of the SAMs. Creating the film of lubricant in vapour phase would avoid this undesirable effect. Tribological tests were carried out with a microtribometer in linear reciprocating movement with a ball of 2 mm of diameter (100Cr6 and Si{sub}3N{sub}4) and load of some milinewtons. Results were compared with those obtained for silicon oxidized without any coating. The coefficient of friction (COF) and wear (substrate and ball) were studied under different test conditions.
机译:尽管在MEMS技术中取得了进展,但摩擦学问题仍然是一个尚未解决的事情。磨损和粘滑现象很多次这些设备故障原点。自组装单层(SAMS)在液相中的应用似乎是这种问题的解决方案。十八烷基三氯硅烷的SAM(CH {子} 3(CH {子} 2){子} 17SiCl {子} 3,OTS)被附连到在液相中氧化Si(100)。接触角测量用于表征疏水性等级。在半圆形模式下用原子力显微镜(AFM)获得涂层的形貌。图像显示存在与前体分子的聚合相关的颗粒在SAM的形成过程中。在气相中创造润滑剂薄膜将避免这种不良影响。摩擦学试验是用在直线往复运动的microtribometer具有2mm直径的(100Cr6和Si {子} {3N子} 4)和负载一些milinewtons的球进行。将结果与氧化硅的氧化剂的结果进行比较。在不同的试验条件下研究了摩擦系数(COF)和磨损(衬底和球)。

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