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A microscale model for strain-induced phase transformations and chemical reactions under high pressure

机译:高压下应变诱导的相变和化学反应的微观模型

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摘要

A simple strain-controlled kinetic equation for strain-induced phase transformations and chemical reactions is thermodynamically derived. This model is applied to explain various mechanochemical phenomena observed under compression and shear of materials in diamond or Bridgman anvils. In particular, it explains zero-pressure hysteresis and the appearance of new phases, especially strong phases, which were not obtained without shear. Also an explanation was obtained as to why a nonreacting matrix with a yield stress higher (lower) than that for reagents significantly accelerates (slows down) the reactions. Some methods to characterize and control strain-induced transformations and reactions are suggested.
机译:从热力学上推导了一个简单的应变控制的动力学方程,用于应变诱导的相变和化学反应。该模型用于解释在金刚石或Bridgman砧中的材料受到压缩和剪切作用下观察到的各种机械化学现象。特别是,它解释了零压力滞后现象以及新相的出现,特别是强相的出现,这些是没有剪切就无法获得的。还获得了关于为什么屈服应力高于(低于)屈服应力的非反应性基质会显着加速(减慢)反应的解释。建议一些表征和控制应变诱导的转化和反应的方法。

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