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Stone-Wales defect interaction in quasistatically deformed 2D silica

机译:石威尔士在拟定变形的2D二氧化硅中缺陷相互作用

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摘要

In the present article, we investigate the effect of two interacting Stone-Wales defects on the deformation and fracture behaviour of 2D silica. For this purpose, we use molecular simulations based on a recently developed Yukawa-type potential function that allows for the description of silica in two dimensions. Our main objective is to address the impact of the spatial arrangement of defects on the deformation and fracture behaviour of 2D silica. To this end, we prepare various 2D silica configurations with one and two Stone-Wales defects, while varying the spatial arrangement of the two defects. The samples are subjected to athermal quasistatic tensile deformation until fracture occurs. We show that, by introducing Stone-Wales defects, both the tensile strength and tensile strain of 2D silica decreases. However, we report that not only the number of Stone-Wales defects but also the distance between them, their orientation and additionally the loading direction play an important role in the deformation and fracture behaviour of 2D silica. We discuss and explain the respective stress-strain relation by evaluating the non-affine displacement field of each configuration under tensile deformation. We observe that under certain orientations and distances 2D silica containing two Stone-Wales defects may exhibit a higher tensile strength than 2D silica with a single Stone-Wales defect.
机译:在本文中,我们研究了两个相互作用的石威尔士缺陷对2D二氧化硅的变形和断裂行为的影响。为此目的,我们使用基于最近开发的Yukawa型潜在功能的分子模拟,其允许在两个维度中描述二氧化硅。我们的主要目标是解决缺陷空间排列对2D二氧化硅的变形和断裂行为的影响。为此,我们用一个和两个石威尔士缺陷准备各种2D二氧化硅配置,同时改变两个缺陷的空间排列。将样品进行静脉喹铜拉伸变形直至发生骨折。我们表明,通过引入石威尔士缺陷,两种抗拉强度和2D二氧化硅的拉伸应变均降低。但是,我们报告说,不仅是石威尔士缺陷的数量,而且还报告它们之间的距离,它们的方向和另外的装载方向在2D二氧化硅的变形和断裂行为中起重要作用。我们通过在拉伸变形下评估每个配置的非仿射位移场来讨论和解释各自的应力关系。我们观察到,在某些方向和距离含有两个石威尔士缺陷的二氧化硅的2D二氧化硅可能表现出比2D二氧化硅的拉伸强度更高,具有单个石威尔士缺陷。

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