首页> 外文会议>STLE/ASME international joint tribology conference 2010 >NANOMECHANICAL AND FRICTION PROPERTIES OF ULTRATHIN AMORPHOUS CARBON FILMS STUDIED BY MOLECULAR DYNAMICS ANALYSIS
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NANOMECHANICAL AND FRICTION PROPERTIES OF ULTRATHIN AMORPHOUS CARBON FILMS STUDIED BY MOLECULAR DYNAMICS ANALYSIS

机译:分子动力学分析研究超薄非晶碳薄膜的纳米力学和摩擦性能

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摘要

An ultrathin (<4 nm) film of amorphous carbon (a-C) is used in contemporary disk drives to protect the magnetic medium of the hard disk from corrosion and mechanical wear due to intermittent impact of the low-flying magnetic head. Because of increasing demands for much higher magnetic storage densities (i.e., >10 Tbits/in2), the a-C film thickness must be decreased to <2 nm. However, the tribological and mechanical properties of such thin a-C films are not well understood and, moreover, are extremely difficult to determine experimentally. The objective of this study was to obtain insight into the tribological behavior of ultrathin a-C films by performing molecular dynamics (MD) simulations. MD results of the hardness and friction properties of nanometer-thick a-C films are interpreted in terms of the ratio of tetrahedral-to-trigonal carbon atom hybridization. A critical thickness for the effective protection of the magnetic medium by the a-C film is estimated from MD results. The results of this study elucidate the nanomechanical and nanotribological properties of ultrathin a-C films used as protective overcoats in extremely-high-density magnetic recording.
机译:现代磁盘驱动器中使用了非晶碳(a-C)的超薄(<4 nm)薄膜,以保护硬盘的磁性介质免受由于低飞磁头的间歇性冲击而引起的腐蚀和机械磨损。由于对更高的磁存储密度(即> 10 Tbits / in2)的需求不断增加,因此a-C膜厚度必须减小至<2 nm。但是,这种α-C薄膜的摩擦学和机械性能还没有被很好地理解,而且,通过实验很难确定。这项研究的目的是通过执行分子动力学(MD)模拟来了解超薄a-C膜的摩擦学行为。纳米厚的a-C膜的硬度和摩擦性能的MD结果用四面体与三角形碳原子杂交的比率来解释。由MD结果估计出用于通过a-C膜有效保护磁性介质的临界厚度。这项研究的结果阐明了超薄a-C膜在极高密度磁记录中用作保护层的纳米力学和纳米摩擦学特性。

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