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Experimental and Molecular Dynamics Investigations of Nanoindentation-induced Phase Transformations in Monocrystalline Silicon

机译:单晶硅纳米狭窄诱导相变的实验性和分子动力学研究

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This work presents experimental and molecular dynamics approaches towards deformation and phase transformation mechanisms of monocrystalline Si(100) subjected to nanoindentation. The nanoindentation experiment was conducted with a Berkovich indenter. Following the analysis using cross-sectional transmission electron microscopy with the samples prepared by focused ion beam milling, upon pressure release, metastable Si-III and Si-XII phases were identified inside the indentation-induced deformed region beneath the indent. We also demonstrated phase distributions during loading and unloading stages of spherical and Berkovich nanoindentations through molecular dynamics simulations. By searching the presence of the fifth neighboring atom within a non-bonding length, Si-III and Si-XII have been successfully distinguished from Si-I. Crystallinity of this mixed-phase was further identified by radial distribution functions.
机译:该工作介绍了对经过纳米茚满的单晶Si(100)的变形和相变机制的实验和分子动力学方法。纳米茚地段实验用贝尔古希肾上腺进行。在使用横截面透射电子显微镜与通过聚焦离子束铣削制备的样品的分析之后,在压力释放时,在缩进的压痕诱导的变形区域内鉴定了亚稳态Si-III和Si-XII相。我们还通过分子动力学模拟在装载和卸载球和Berkovich纳米indentation的阶段期间展示了相分布。通过在非粘合长度内搜索第五个相邻原子,Si-III和Si-XII已成功地与Si-1区分开。通过径向分布功能进一步鉴定该混合相的结晶度。

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