Bouchbinder Eran, Langer J S
Racah Institute of Physics, Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Sep;80(3 Pt 1):031131. doi: 10.1103/PhysRevE.80.031131. Epub 2009 Sep 22.
This is the first of three papers devoted to the nonequilibrium thermodynamics of amorphous materials. Our focus here is on the role of internal degrees of freedom in determining the dynamics of such systems. For illustrative purposes, we study a solid whose internal degrees of freedom are vacancies that govern irreversible volume changes. Using this model, we compare a thermodynamic theory based on the Clausius-Duhem inequality to a statistical analysis based directly on the law of increase of entropy. The statistical theory is used first to derive the Clausius-Duhem inequality. We then use the theory to go beyond those results and obtain detailed equations of motion, including a rate factor that is enhanced by deformation-induced noisy fluctuations. The statistical analysis points to the need for understanding how both energy and entropy are shared by the vacancies and their environments.
这是关于非晶态材料非平衡热力学的三篇论文中的第一篇。我们这里关注的是内部自由度在确定此类系统动力学方面的作用。为了说明目的,我们研究一种固体,其内部自由度是控制不可逆体积变化的空位。使用这个模型,我们将基于克劳修斯 - 杜亥姆不等式的热力学理论与直接基于熵增加定律的统计分析进行比较。首先使用统计理论来推导克劳修斯 - 杜亥姆不等式。然后我们使用该理论超越这些结果并获得详细的运动方程,包括一个由变形引起的噪声涨落增强的速率因子。统计分析指出需要理解能量和熵如何在空位及其环境之间分配。