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Microscopic origin of nonlinear nonaffine deformation in bulk metallic glasses

机译:块状金属玻璃中非线性非仿射变形的微观成因

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摘要

The atomic theory of elasticity of amorphous solids, based on the nonaffine response formalism, is extended into the nonlinear stress-strain regime by coupling with the underlying irreversible many-body dynamics. The latter is implemented in compact analytical form using a qualitative method for the many-body dynamics. The resulting nonlinear stress-strain (constitutive) relation is very simple, with few fitting parameters, yet contains all the microscopic physics. The theory is successfully tested against experimental data on metallic glasses, and it is able to reproduce the ubiquitous feature of stress-strain overshoot upon varying temperature and shear rate. A clear atomic-level interpretation is provided for the stress overshoot, in terms of the competition between the elastic instability caused by nonaffine deformation of the glassy cage and the stress buildup due to viscous dissipation.
机译:基于非仿射响应形式论的无定形固体弹性原子理论,通过与潜在的不可逆多体动力学耦合,扩展到非线性应力-应变状态。后者以定性的方法以紧凑的分析形式实现了多体动力学。由此产生的非线性应力-应变(本构)关系非常简单,拟合参数很少,但包含了所有微观物理学。该理论已针对金属玻璃上的实验数据成功进行了测试,并且能够在温度和剪切速率变化时重现应力-应变超调的普遍特征。根据玻璃笼的非仿射变形引起的弹性不稳定性和由于粘性耗散引起的应力累积之间的竞争,为应力过冲提供了清晰的原子级解释。

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