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Energy dissipation analysis of elastic-plastic materials

机译:弹塑性材料的耗能分析

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Presented is an energy dissipation analysis framework for granular material that is based on thermodynamics. Theoretical formulations are derived from the second law of thermodynamics, in conjunction with a few plausible assumptions on energy transformation and dissipation. The role of plastic free energy is emphasized by a conceptual experiment showing its physical nature. Theoretical formulation is adapted in order to be applied in elastic-plastic finite element method (FEM) simulations. Developed methodology is verified through comparison of input work, stored energy, and energy dissipation of the system. Separation of plastic work into plastic free energy and energy dissipation removes a common mistake, made in a number of publications, where energy dissipation can attain negative values (energy production) which is impossible. (C) 2017 Published by Elsevier B.V.
机译:提出了一种基于热力学的粒状材料能耗分析框架。理论公式是从热力学第二定律得出的,并结合了一些关于能量转换和耗散的合理假设。通过显示其物理性质的概念性实验强调了塑料自由能的作用。调整了理论公式,以便应用于弹塑性有限元方法(FEM)模拟。通过比较输入功,存储的能量和系统的能量消耗来验证所开发的方法。将塑料制品分解为塑料的自由能和能量耗散消除了许多出版物中的一个常见错误,在这些出版物中,能量耗散可以达到负值(产生能量),这是不可能的。 (C)2017由Elsevier B.V.发布

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