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A study on the plasticity of soda-lime silica glass via molecular dynamics simulations

机译:通过分子动力学模拟研究钠钙二氧化硅玻璃的可塑性研究

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Molecular dynamics (MD) simulations were applied to construct a plasticity model, which enables one to simulate deformations of soda-lime silica glass (SLSG) by using continuum methods. To model the plasticity, stress induced by uniaxial and a variety of biaxial deformations was measured by MD simulations. We found that the surfaces of yield and maximum stresses, which are evaluated from the equivalent stress-strain curves, are reasonably represented by the Mohr-Coulomb ellipsoid. Comparing a finite element model using the constructed plasticity model to a large scale atomistic model on a nanoindentation simulation of SLSG reveals that the empirical method is accurate enough to evaluate the SLSG mechanical responses. Furthermore, the effect of ion-exchange on the SLSG plasticity was examined by using MD simulations. As a result, it was demonstrated that the effects of the initial compressive stress on the yield and maximum stresses are anisotropic contrary to our expectations. Published by AIP Publishing.
机译:施加分子动力学(MD)模拟构建可塑性模型,其使得通过使用连续u um方法来实现钠钙二氧化硅玻璃(SLSG)的变形。为了模拟可塑性,通过MD模拟测量单轴和各种双轴变形的应力。我们发现,由等效应力 - 应变曲线评价的产量和最大应力的表面合理地由MoHR-Coulomb椭球合理地表示。将使用构造的塑性模型与大规模原子模型进行比较了SLSG纳米狭窄模拟的大规模原子模型表明,经验方法足以评估SLSG机械反应。此外,通过使用MD仿真检查离子交换对SLSG可塑性的影响。结果,证明了初始抗压应力对产量和最大应力的影响是与我们期望相反的各向异性。通过AIP发布发布。

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