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Mechanical properties of alternating high-low sp~3 content thick non-hydrogenated diamond-like amorphous carbon films

机译:交替的高低sp〜3含量厚非氢化类金刚石非晶碳膜的力学性能

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Thick non-hydrogenated DLC films (approx 1 mu m), consisting of alternating sub-layers of high/low sp~3 content, were deposited onto n++ Si substrates using the filtered cathodic vacuum arc method. These films were systematically studied to determine how the changes in composition of the sub-layers would affect the mechanical properties such as intrinsic stress, hardness, friction coefficient, wear rate and surface roughness. Variations of both the ratio of hard to soft layers (from 1:3 to 3:1) and thickness of individual layers (from 12.5nm to 75nm) were studied in detail. The stress of the film was sufficiently lowered (7.8GPa-2.4GPa) by the multilayer approach. The results indicated that although hardness has some correlations with the internal composition of the film, the reduced Young's modulus is largely not affected. Wear and frictional characterizations also showed that the multilayer was a good candidate for many mechanical applications.
机译:使用过滤阴极真空电弧法将厚的非氢化DLC膜(约1μm)(由高/低sp〜3含量的交替子层组成)沉积到n ++ Si衬底上。对这些薄膜进行了系统研究,以确定亚层组成的变化将如何影响机械性能,例如固有应力,硬度,摩擦系数,磨损率和表面粗糙度。详细研究了硬层与软层的比率(从1:3到3:1)和各个层的厚度(从12.5nm到75nm)的变化。通过多层方法,膜的应力被充分降低(7.8GPa-2.4GPa)。结果表明,尽管硬度与膜的内部组成有一定关系,但是降低的杨氏模量在很大程度上不受影响。磨损和摩擦特性还表明,多层材料是许多机械应用的理想选择。

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