Density-Stiffness Scaling in Minerals Upon Disordering: Irradiation vs. Vitrification

N. Krishnan, R. Ravinder, Rajesh S. Kumar, Y. Pape, G. Sant, M. Bauchy
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Abstract

When subjected to irradiation or vitrification, minerals become disordered at the atomic scale, which, in turn, affect their density and stiffness. However, the nature of the relationship between structural disorder, density, and stiffness remains poorly understood. Here, based on molecular dynamics simulations, we investigate the effect of irradiation- and vitrification-induced disordering in a series of silicate minerals. We show that irradiation- and vitrification-induced disordering yield comparable, yet not fully equivalent variations in density and stiffness. Interestingly, we report the existence of a power law density-stiffness scaling exhibiting a scaling exponent that is similar to that observed in porous assembled cellular materials.
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无序时矿物的密度-刚度缩放:辐照与玻璃化
当受到辐射或玻璃化时,矿物在原子尺度上变得无序,这反过来影响它们的密度和硬度。然而,结构无序、密度和刚度之间关系的本质仍然知之甚少。在此,基于分子动力学模拟,我们研究了辐照和玻璃化诱导的一系列硅酸盐矿物的无序效应。我们表明,辐照和玻璃化诱导的无序产生可比较的,但不是完全等效的密度和刚度变化。有趣的是,我们报告了幂律密度-刚度标度的存在,其标度指数与在多孔组装细胞材料中观察到的相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Density-Stiffness Scaling in Minerals Upon Disordering: Irradiation vs. Vitrification
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