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首页> 外文期刊>Tribology letters >Qualitative Evaluation of Ultra-thin Multi-layer Diamond-Like Carbon Coatings Using Molecular Dynamics Nanoindentation Simulations
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Qualitative Evaluation of Ultra-thin Multi-layer Diamond-Like Carbon Coatings Using Molecular Dynamics Nanoindentation Simulations

机译:使用分子动力学纳米压痕模拟对超薄多层类金刚石碳涂层进行定性评估

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摘要

Ultra-thin diamond-like carbon (DLC) coatings are used in hard disk drives to protect the intricate magnetic structures from wear and corrosion. The coating on the recording head consists of a hard DLC layer and a silicon (Si) layer that improves adhesion between the DLC layer and the substrate. Damage to this protective coating can expose the magnetic structures to corrosion and compromise the reliability and functionality of the hard disk drive. Hence, it is critical to understand how coating design parameters affect the mechanical properties of these protective DLC coatings. We have used molecular dynamics simulations to determine the hardness and Young's modulus of the ultra-thin multi-layer protective DLC coating of a recording head as a function of coating design parameters. We have found that hardness and Young's modulus of the multi-layer coating increase with increasing DLC layer and decreasing Si layer thickness. Furthermore, hardness and Young's modulus of the multi-layer coating are a function of the sp(3) fraction and, thus, the hardness of the DLC layer. In addition, the mismatch between the hardness of the DLC layer and the substrate determines whether plastic deformation occurs in the coating or the substrate, and significantly affects the hardness of the multi-layer protective coating.
机译:硬盘驱动器中使用超薄类金刚石碳(DLC)涂层,以保护复杂的磁性结构免于磨损和腐蚀。记录头上的涂层由硬质DLC层和硅(Si)层组成,可提高DLC层与基材之间的附着力。损坏此保护涂层可能会使磁性结构暴露在腐蚀之下,并损害硬盘驱动器的可靠性和功能。因此,了解涂层设计参数如何影响这些保护性DLC涂层的机械性能至关重要。我们已经使用分子动力学模拟来确定记录头的超薄多层保护性DLC涂层的硬度和杨氏模量与涂层设计参数的关系。我们已经发现,多层涂层的硬度和杨氏模量随着DLC层的增加和Si层厚度的减小而增加。此外,多层涂层的硬度和杨氏模量是sp(3)分数的函数,因此是DLC层的硬度的函数。另外,DLC层和基底的硬度之间的不匹配决定了在涂层或基底中是否发生塑性变形,并且显着影响多层保护涂层的硬度。

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