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The influence of coating structure on micromachine stiction

机译:涂层结构对微机静摩擦的影响

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Stiction and friction in micromachines is commonly inhibited through the use of silane coupling agents such as 1H-, 1H-, 2H-, 2H-perfluorodecyltrichlorosilane (FDTS). FDTS coatings have allowed micromachine parts processed in water to be released without debilitating capillary adhesion occurring. These coatings are frequently considered as densely-packed monolayers, well-bonded to the substrate. In this paper, it is demonstrated that FDTS coatings can exhibit complex nanoscale structures, which control whether micromachine parts release or not. Surface images obtained via atomic force microscopy reveal that FDTS coating solutions can generate micellar aggregates that deposit on substrate surfaces. Interferometric imaging of model beam structures shows that stiction is high when the droplets are present and low when only monolayers are deposited. As the aggregate thickness (tens of nanometers) is insufficient to bridge the 2 μm gap under the beams, the aggregates appear to promote beam-substrate adhesion by changing the wetting characteristics of coated surfaces. Contact angle measurements and condensation figure experiments have been performed on surfaces and under coated beams to quantify the changes in interfacial properties that accompany different coating structures. These results may explain the irreproducibility that is often observed with these films.
机译:通常通过使用硅烷偶联剂(例如1H-,1H-,2H-,2H-全氟癸基三氯硅烷(FDTS))来抑制微型机械中的静摩擦。 FDTS涂层可释放水中加工的微机械零件,而不会破坏毛细管的附着力。这些涂层通常被认为是紧密堆积的单层,可以很好地粘合到基材上。在本文中,证明了FDTS涂层可以显示复杂的纳米级结构,从而控制微机械零件是否释放。通过原子力显微镜获得的表面图像表明,FDTS涂层溶液可产生胶束聚集体,该聚集体沉积在基材表面上。模型光束结构的干涉成像表明,当液滴存在时,静摩擦力高,仅沉积单层时,静摩擦力低。由于聚集体的厚度(数十纳米)不足以弥合光束下方的2μm间隙,聚集体似乎通过改变涂层表面的润湿特性而促进了光束与基板的粘合。已经在表面和涂覆光束下进行了接触角测量和冷凝图形实验,以量化伴随不同涂层结构的界面特性的变化。这些结果可以解释这些膜经常观察到的不可再现性。

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