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首页> 外文期刊>Modelling and simulation in materials science and engineering >Coarse grain model for coupled thermo-mechano-chemical processes and its application to pressure-induced endothermic chemical reactions
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Coarse grain model for coupled thermo-mechano-chemical processes and its application to pressure-induced endothermic chemical reactions

机译:热力-化学-化学过程耦合的粗粒模型及其在压力诱导的吸热化学反应中的应用

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摘要

We extend a thermally accurate model for coarse grain dynamics (Strachan and Holian 2005 Phys. Rev. Lett. 94 014301) to enable the description of stressinduced chemical reactions in the degrees of freedom internal to the mesoparticles. Similar to the breathing sphere model, we introduce an additional variable that describes the internal state of the particles and whose dynamics is governed both by an internal potential energy function and by interparticle forces. The equations of motion of these new variables are derived from a Hamiltonian and the model exhibits two desired features: total energy conservation and Galilean invariance. We use a simple model material with pairwise interactions between particles and study pressure-induced chemical reactions induced by hydrostatic and uniaxial compression. These examples demonstrate the ability of the model to capture non-trivial processes including the interplay between mechanical, thermal and chemical processes of interest in many applications.
机译:我们扩展了粗粒动力学的热精确模型(Strachan和Holian 2005 Phys。Rev. Lett。94 014301),以描述介观粒子内部自由度中的应力诱导化学反应。与呼吸球模型类似,我们引入了一个附加变量,该变量描述了粒子的内部状态,其动力学受内部势能函数和粒子间力共同控制。这些新变量的运动方程式是从哈密顿量导出的,该模型具有两个所需特征:总能量守恒和伽利略不变性。我们使用具有颗粒之间成对相互作用的简单模型材料,并研究由静水压和单轴压缩引起的压力诱导的化学反应。这些示例说明了该模型捕获非平凡过程的能力,包括许多应用中感兴趣的机械,热和化学过程之间的相互作用。

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