论文标题

无定形碳可塑性的构成关系

Constitutive relations for plasticity of amorphous carbon

论文作者

Jana, Richard, von Lautz, Julian, Khosrownejad, S. Mostafa, Andrews, W. Beck, Moseler, Michael, Pastewka, Lars

论文摘要

我们使用键盘和机器学习间的原子体电位变形了从分子动力学计算中从熔炉中获得的无定形碳的代表体积元素。 Drucker-prager Law的零压力流应力为$ 41.2 $ 〜GPA,内部摩擦系数为0.39美元,$ 0.39 $描述了流动过程中的偏离应力随压力的函数。我们将平均配位数确定为描述该流面的顺序参数。但是,描述了淬灭样品对稳态流的动态松弛需要附加的订单参数。我们建议样品的固有应变作为可能的阶参数,并将其进化的方程化。我们的结果提供了对涂层表面之间摩擦的复杂性和压力依赖性的见解,以及在变形模型中描述无定形碳的途径。

We deform representative volume elements of amorphous carbon obtained from melt-quenches in molecular dynamics calculations using bond-order and machine learning interatomic potentials. A Drucker-Prager law with a zero-pressure flow stress of $41.2$~GPa and an internal friction coefficient of $0.39$ describes the deviatoric stress during flow as a function of pressure. We identify the mean coordination number as the order parameter describing this flow surface. However, a description of the dynamical relaxation of the quenched samples towards steady-state flow requires an additional order parameter. We suggest an intrinsic strain of the samples as a possible order parameter and present equations for its evolution. Our results provide insights into rehybridization and pressure dependence of friction between coated surfaces as well as routes towards the description of amorphous carbon in macroscale models of deformation.

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