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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Modeling the micro-scale static friction coefficient of the MEMS silicon surfaces affected by Ag and Au deposition using the thermal evaporation method
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Modeling the micro-scale static friction coefficient of the MEMS silicon surfaces affected by Ag and Au deposition using the thermal evaporation method

机译:使用热蒸发方法对Ag和Au沉积影响的MEMS硅表面的微观静态摩擦系数进行建模

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摘要

In different macro-scale applications, regarding what should be done, many of the prepared surfaces are immediately used after machining with no limitation. Since the micro-electromechanical applications have different conditions, their different properties, such as friction and adherence, must be checked. In the present study, using the thermal evaporation method, the silver and gold layers with different thicknesses were deposited on the silicon surfaces widely used in micromechanical systems (e.g. micro-assembly). Thereafter, the effects of the deposition on the geometrical properties of the surfaces were studied. Also, the effects of the deposition on the adherence and friction properties of the surfaces were examined by modeling the geometrical condition. To this end, the height function distribution was used to exploit the surface friction model in conjunction with the DMT surface adhesion model. The results show the extent to which gold affects the adhesion and friction properties of the coated surfaces.
机译:在不同的宏观尺度应用中,关于应该做的是,在加工后立即使用许多制备的表面,没有限制。由于微机电应用具有不同的条件,因此必须检查它们的不同性质,例如摩擦和粘附。在本研究中,使用热蒸发方法,沉积在微机械系统(例如微型组装)中广泛使用的硅表面上具有不同厚度的银和金层。此后,研究了沉积对表面的几何特性的影响。而且,通过建模几何状况来检查沉积对表面的粘附性和摩擦性质的影响。为此,使用高度功能分布用于利用表面摩擦模型与DMT表面粘合模型结合。结果表明,黄金影响涂覆表面的粘附性和摩擦性能的程度。

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