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Transitions between nanomechanical and continuum mechanical contacts: new insights from liquid structure

机译:纳米机械之间的转换和连续性机械接触:从液体的新见解结构

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摘要

The use of continuum mechanics to describe contacts involving nanoscale and atomic interactions has been one of the key controversies in nanoscience, tribology, and petrophysical and geological studies. By applying a novel nonequilibrium molecular dynamics scheme to wet quartz contacts, this study revealed the key transitions between continuum electrostatic, nanomechanical and Hertzian contact behaviors at around one nm of surface separation, which results in critical contact pressure fluctuations between -30 and 100 MPa. Using a novel liquid-structure analysis scheme based on the spatial distribution of water molecules, the nanomechanical behavior was found to originate from the collapse and localization of layers of water molecules. Moreover, the role of surface curvature on this effect was also quantified and explained based on a new topological descriptor. The findings of this study enrich our understanding of wet contacts and have a wide range of applications from the nanoscale to macroscale.
机译:使用连续介质力学来描述涉及纳米和原子的接触相互作用的一个关键争议在纳米科学、摩擦学和岩石物性和地质研究。一种新的非平衡分子动力学方案湿石英接触,这项研究揭示了关键的连续静电之间的转换,纳米机械和赫兹接触行为一纳米表面分离,结果在关键接触压力波动在-30年和100 MPa。基于liquid-structure分析方案水分子的空间分布纳米机械行为被发现产生崩溃和本地化的层水分子。在这效果也量化和曲率基于一种新的拓扑描述符解释道。本研究丰富我们的结果湿接触和有广泛的理解从纳米尺度范围的应用程序宏观尺度。

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