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Nonlinear Field Theory of Stress Induced Diffusion in Crystalline Solids

机译:结晶固体应力诱导扩散的非线性场理论

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Two different mathematical descriptions of the material drift based respectively on the concept of mass- and molar-averaged velocities are presented. In this way two different material derivatives over time are introduced: mass and molar, respectively. The first approach based on the overall mass motion is used mainly in the traditional continuum thermodynamics of deformable solids while the second approach developed here comes back to the constitutive modelling used mainly in the chemical physics. The problem of the stress induced diffusion is situated on the border of the two different approaches developed often separately. In this paper, taking into account the standard balance laws for molar motion, the driving forces for diffusion are determined. The forces obtained for diffusion of chemical components depend not only on gradients of chemical potentials (osmotic force) but also on some additional forces controlling the stress induced diffusion process. The driving forces derived for dislocation field comprise the Peach-Koehler force as well as an additional term resulting from the effect of dislocation movement on the concentration of vacancies.
机译:分别基于质量和摩尔平均速度概念的材料漂移的两种不同数学描述。以这种方式,两种不同的材料衍生物分别介绍:质量和摩尔。基于整体大规模运动的第一方法主要用于可变形固体的传统连续体热力学,而这里开发的第二种方法恢复到主要在化学物理学中使用的本构型建模。应力诱导的扩散的问题位于两种不同方法的边界上,经常分开开发。本文考虑到摩尔运动的标准余额规律,确定了扩散的驱动力。用于扩散化学组分的力不仅取决于化学电位(渗透力)的梯度,而且还取决于控制应力诱导扩散过程的一些额外力。用于位错场的驱动力包括桃 - koehler力以及由位错运动对空位浓度的效果产生的额外术语。

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