论文标题

抗十分类异形的纳米力学

Nanomechanics of Antimonene Allotropes

论文作者

Akash, Tanmay Sarkar, Subad, Rafsan A. S. I., Bose, Pritom, Islam, Md Mahbubul

论文摘要

由于其有希望的物理特性,单层抗氨基烯吸引了研究群落的注意。但是抗十的机械性能仍然在很大程度上尚未探索。在这项工作中,我们通过分子动力学(MD)模拟研究了单层抗氨基烯两个稳定阶段的机械性能和断裂机制 - $α$抗氨基烯($α$ -SB)和$β$抗氨基烯($β$ -SB)。我们的模拟表明,与$α$ - 抗苯乙烯相比,手性效应更强,导致$β$抗苯乙烯的各向异性弹性行为更大。在本文中,我们使用局部体积平均病毒应力定义的裂纹应力分布,并从裂纹线应力中得出断裂韧性。我们计算出的裂纹尖端应力分布可确保线性弹性断裂力学(LEFM)适用于裂纹的抗抵烯同种异体,直至原始结构。我们评估温度,应变速率,裂纹长度和点缺失浓度对强度和弹性特性的影响。拉伸强度会随温度,裂纹​​长度和缺陷百分比的增加而经历明显的降解。弹性模量不太容易受到温度变化的影响,但在很大程度上受到缺陷浓度的影响。应变率诱导强度和断裂应变之间的功率定律关系。最后,我们根据裂纹的传播讨论断裂机制,并在断裂机理与观察到的各向异性特性之间建立联系。

Monolayer antimonene has drawn the attention of research communities due to its promising physical properties. But mechanical properties of antimonene is still largely unexplored. In this work, we investigate the mechanical properties and fracture mechanisms of two stable phases of monolayer antimonene -- the $α$ antimonene ($α$-Sb) and the $β$ antimonene ($β$-Sb), through molecular dynamics (MD) simulations. Our simulations reveal that stronger chiral effect results in a greater anisotropic elastic behavior in $β$-antimonene than in $α$-antimonene. In this paper we focus on crack-tip stress distribution using local volume averaged virial stress definition and derive the fracture toughness from the crack-line stress. Our calculated crack tip stress distribution ensures the applicability of linear elastic fracture mechanics (LEFM) for cracked antimonene allotropes with considerable accuracy up to a pristine structure. We evaluate the effect of temperature, strain rate, crack-length and point-defect concentration on the strength and elastic properties. Tensile strength goes through significant degradation with the increment of temperature, crack length and defect percentage. Elastic modulus is less susceptible to temperature variation but is largely affected by the defect concentration. Strain rate induces a power law relation between strength and fracture strain. Finally, we discuss the fracture mechanisms in the light of crack propagation and establish the links between the fracture mechanism and the observed anisotropic properties.

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