The Interactions of Composition and Stress in Crystalline Solids.

F C Larché, J W Cahn
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Abstract

The thermodynamics of stressed crystals that can change phase and composition is examined with particular attention to hypotheses used and approximations made, Bulk and surface conditions are obtained and for each of them practical expressions are given in terms of experimentally measurable quantities. The concept of open-system elastic constants leads to the reformulation of internal elastochemical equilibrium problems into purely elastic problems, whose solutions are then used to compute the composition distribution. The atmosphere around a dislocation in a cubic crystal is one of several examples that are completely worked out. The effects of vacancies and their equilibrium within a solid and near surfaces are critically examined, and previous formulas are found to be first order approximations. Consequences of the boundary equations that govern phase changes are studied with several examples. Finally, problems connected with diffusional kinetics and diffusional creep are discussed.

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结晶固体中成分与应力的相互作用。
研究了能改变相和组成的应力晶体的热力学,特别注意所使用的假设和所作的近似,获得了体积和表面条件,并根据实验可测量的量给出了它们的实际表达式。开放系统弹性常数的概念导致将内部弹性化学平衡问题重新表述为纯弹性问题,然后将其解用于计算组分分布。立方晶体中位错周围的大气是几个被完全弄清楚的例子之一。空位的影响及其平衡在固体和近表面的严格检查,并发现以前的公式是一阶近似。通过几个例子研究了控制相变的边界方程的结果。最后,讨论了扩散动力学和扩散蠕变的有关问题。
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