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Mechanical properties of honeycomb nanoporous silicon: a high strength and ductile structure

机译:蜂窝纳米孔硅的力学性能:高强度和韧性结构

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摘要

There are remarkable studies geared towards developing mechanical analysis of nanoporous structures, while the size effect has been a major concern so far to improve strength or deformability. In this study, molecular dynamics simulations are utilized to study the pore shape effect on the mechanical behaviour of nanoporous silicon with circular, elliptical, square and hexagonal pore shapes. The influence of pore configuration on load transfer capabilities is studied for nanoporous silicon. A distinguished set of mechanical properties is observed on silicon with a hexagonal pore shape-resembling a honeycomb structure-with a high tensile strength and toughness. The study exhibits an improvement in the ductility through unique stress transformation in the hexagonal pore shape. In addition to the relative density, the potential to control the mechanical properties is demonstrated through the hexagon angle. Finally, a scaling law is developed for the mechanical behaviour of honeycomb nanoporous silicon. In addition to their outstanding mechanical properties, the work provides further insight into the capability of nanoporous structures in sensing applications due to their high surface-to-volume ratios.
机译:朝向开发纳米多孔结构的机械分析有了显着的研究,而尺寸效应是迄今为止提高强度或可变形的主要问题。在该研究中,利用分子动力学模拟来研究孔形效应与圆形,椭圆形,方形和六边形孔形状的纳米多孔硅的力学行为。纳米多孔硅研究了孔结构对负载转移能力的影响。在硅上观察到具有六边形孔的硅形状 - 类似于蜂窝结构 - 具有高抗拉强度和韧性的型具有卓越的机械性能。该研究表现出延展性通过六边形孔形状的独特应力转换改善。除了相对密度之外,通过六边形角度证明控制机械性能的电位。最后,为蜂窝纳米多孔硅的力学行为开发了一种扩展法。除了出色的机械性能之外,该工作还提供了进一步了解纳米多孔结构在感测应用中的能力,这是由于它们的高度高度比率。

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