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In situ diffraction measurements of lattice response due to shock loading, including direct observation of the α-ε phase transition in iron

机译:冲击载荷引起的晶格响应的原位衍射测量,包括直接观察铁中的α-ε相变

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摘要

In situ diffraction is a technique to probe directly the lattice response of materials during the shock loading process. It is used to record diffraction patterns from multiple lattice planes simultaneously. The application of this technique is described for laser-based shock experiments. The approach to analyze in situ wide-angle diffraction data is discussed. This is presented in the context of single crystal [001] iron shock experiments where uniaxial compression of the bcc lattice by up to 6% was observed. Above the α-ε transition pressure, the lattice showed a collapse along the [001] direction by 15-18%. Additional diffraction lines appear that confirm the transformation of the iron crystal from the initial bcc phase to the hcp phase.
机译:原位衍射是一种在冲击载荷过程中直接探测材料晶格响应的技术。它用于同时记录来自多个晶格平面的衍射图样。描述了该技术在基于激光的冲击实验中的应用。讨论了分析原位广角衍射数据的方法。这是在单晶[001]铁冲击实验的背景下提出的,其中观察到bcc晶格的单轴压缩高达6%。在α-ε转变压力以上,晶格沿[001]方向显示塌陷15-18%。出现了另外的衍射线,证实了铁晶体从初始bcc相到hcp相的转变。

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