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Strain-induced phase transformations under compression, unloading, and reloading in a diamond anvil cell

机译:金刚石砧座中压缩,卸载和再加载下应变诱导的相变

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摘要

Strain-induced phase transformations (PTs) in a sample under compression, unloading, and reloading in a diamond anvil cell are investigated in detail, by applying finite element method. In contrast to previous studies, the kinetic equation includes the pressure range in which both direct and reverse PTs occur simultaneously. Results are compared to the case when “no transformation” region in the pressure range exists instead, for various values of the kinetic parameters and ratios of the yield strengths of low and high pressure phases. Under unloading (which has never been studied before), surprising plastic flow and reverse PT are found, which were neglected in experiments and change interpretation of experimental results. They are caused both by heterogeneous stress redistribution and transformation-induced plasticity. After reloading, the reverse PT continues followed by intense direct PT. However, PT is less pronounced than after initial compression and geometry of transformed zone changes. In particular, a localized transformed band of a weaker high pressure phase does not reappear in comparison with the initial compression. A number of experimental phenomena are reproduced and interpreted.
机译:应用有限元方法,对金刚石砧座单元在压缩,卸载和再加载过程中的应变诱导相变(PTs)进行了详细研究。与以前的研究相比,动力学方程包括同时出现正向和反向PT的压力范围。对于动力学参数的各种值以及低压相和高压相的屈服强度之比,将结果与压力范围中存在“无转变”区域的情况进行比较。在卸载下(之前从未研究过),发现了令人惊讶的塑性流动和反向PT,这些在实验中被忽略,并且改变了对实验结果的解释。它们是由异质应力再分布和相变诱导的可塑性引起的。重新加载后,反向PT继续,随后是强烈的直接PT。但是,PT的效果不如初始压缩和变换区域的几何形状变化后明显。特别地,与初始压缩相比,没有出现较弱的高压相的局部转变带。复制和解释了许多实验现象。

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