首页> 外文会议>World Tribology Congress III 2005 vol.2 >ADHESION/STICTION AND FRICTION STUDIES OF NANO/MICRO-TEXTURED SURFACES PRODUCED BY CRYSTALLIZATION OF AMORPHOUS SILICON
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ADHESION/STICTION AND FRICTION STUDIES OF NANO/MICRO-TEXTURED SURFACES PRODUCED BY CRYSTALLIZATION OF AMORPHOUS SILICON

机译:非晶硅晶体化制备的纳米/微织构表面的附着/粘着和摩擦研究

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摘要

This paper reports a new method of nano/micro surface-texturing and the results of systematic studies of adhesion/stiction and friction properties on the textured surfaces produced by this method. Nano/micro-textured surfaces with various roughnesses were produced by low temperature aluminum-induced crystallization of plasma enhanced chemical vapor deposited (PECVD) amorphous silicon. Adhesion/stiction experiments on these nano/micro-textured and non-textured surfaces were performed using two diamond tips under predefined displacement profiles with different maximum indentation displacements. Friction experiments on the textured and non-textured surfaces were conducted using the same tips under various normal contact forces. The adhesion/stiction forces and coefficients of friction (COF) of the textured surfaces were found to be much smaller than those of non-textured surfaces.
机译:本文报道了一种新的纳米/微观表面纹理化方法,并系统研究了通过该方法产生的纹理表面上的附着/粘着和摩擦性能。通过低温铝诱导的等离子体增强化学气相沉积(PECVD)非晶硅的结晶,可以生产出具有各种粗糙度的纳米/微织构表面。在预定的位移曲线下,使用两个金刚石尖端在具有不同最大压痕位移的情况下,对这些纳米/微纹理和非纹理表面进行了附着/粘着实验。使用相同的尖端在各种法向接触力下对带纹理和无纹理表面进行摩擦实验。发现带纹理的表面的粘附/静摩擦力和摩擦系数(COF)比没有纹理的表面小得多。

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