约束(计算机辅助设计)
刚度(电磁)
统计物理学
分子动力学
财产(哲学)
拓扑(电路)
计算机科学
数学
物理
材料科学
计算化学
化学
机械工程
工程类
哲学
复合材料
组合数学
认识论
作者
Yushu Hu,Han Liu,Kai Yang,Qi Zhou,Christian G. Hoover,N. M. Anoop Krishnan,Morten Mattrup Smedskjær,Matthieu Micoulaut,Lei Guo,Mathieu Bauchy
标识
DOI:10.1002/9781118939079.ch5
摘要
Despite many successes, the application of topological constraint theory to engineering novel glasses with tailored properties has been limited by a lack of knowledge of glass structure and topology. To this end, atomistic simulations (e.g. molecular dynamics) can yield valuable information as they offer a full and direct access to the atomic structure of glasses. In turn, these inputs can be used to inform analytical topological models that can be used to guide glass design. In this chapter, we review a series of methods aiming to describe the rigidity of glasses by means of atomistic simulations. We show that atomistic simulations can offer a robust estimation of the density of topological constraints acting in a given glass. By assessing the existence of internal floppy modes of deformation and internal stress in glassy networks, atomistic simulations can also be used to track some signatures of flexible-to-rigid and unstressed-stressed transitions. The topological information offered by atomistic simulations is key to inform predictive, analytical composition-property models and to pinpoint promising glass formulations featuring optimally connected networks.
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