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首页> 外文期刊>Physica, B. Condensed Matter >Tribological performance of polycrystalline tantalum-carbide-incorporated diamond films on silicon substrates
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Tribological performance of polycrystalline tantalum-carbide-incorporated diamond films on silicon substrates

机译:多晶钽碳化物掺入金刚石薄膜的摩擦性能

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Polycrystalline tantalum-carbide-incorporated diamond coatings have been made on unpolished side of Si (100) wafer by hot filament chemical vapor deposition process. Morphology of the coatings has been found to vary from (111) triangular-facetted to predominantly (111) square-faceted by increasing the concentration of tantalum carbide. The results have been compared to those of a diamond reference coating with no tantalum content. An increase in roughness has been observed with the increase of tantalum carbide (TaC) due to change in morphology of the diamond films. It is noticed that roughness of the coatings increases as grains become more square-faceted. It is found that diamond coatings involving tantalum carbide are not as resistant as diamond films with no TaC content and the coefficient of friction for such coatings with microcrystalline grains can be manipulated to 0.33 under high vacuum of 10(-7) Torr. Such a low friction coefficient value enhances tribological behavior of unpolished Si substrates and can possibly be used in sliding applications.
机译:通过热丝化学气相沉积工艺在Si(100)晶片的未溶于侧面上制造了多晶钽碳化物金刚石涂层。已经发现涂层的形态从(111)三角形移位以主要(111)通过增加碳化物的浓度来改变(111)方形。将结果与金刚石参考涂层的结果进行了比较,没有钽含量。由于金刚石薄膜的形态变化,随着钽碳化物(TAC)的增加,已经观察到粗糙度的增加。注意到涂层的粗糙度随着颗粒变得更加平坦的刻划而增加。结果发现,涉及钽碳化物的金刚石涂层与没有TAC含量的金刚石膜和这种涂层的摩擦系数可以在10(-7)托的高真空下以0.33操纵至0.33。这种低摩擦系数值提高了未呈现的Si基板的摩擦学行为,并且可能用于滑动应用。

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