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Crystalline-Phase Solidification Analysis Using In Situ Neutron Diffraction

机译:使用原位中子衍射结晶相凝固分析

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In situ neutron diffraction was utilized to examine the solidification behavior of aluminum and magnesium alloys for further understanding of solidification, hot tearing, and grain refinement. The experiments consisted of melting samples and allowing them to cool while being irradiated by neutrons. During solidification, solid phases enabled diffraction of neutrons. The diffraction profiles were collected at each temperature step and were used to interpret the growth of individual planes and phases. In situ neutron diffraction enabled determination of fraction solid curves for individual planes and phases, which was not possible with traditional thermal analysis and computational techniques. This paper outlines the method of generation of fraction solid curves from neutron diffraction intensity data, including a technique to account for the effects of the Debye–Waller factor. This method was successful in revealing detailed insights into crystalline solidification. It showed promise in quantifying many other phenomena beyond those discussed.
机译:原位中子衍射用于检查铝和镁合金的凝固行为,以进一步了解凝固,热撕裂和晶粒细化。实验由熔化的样品组成,并使它们在被中子照射的同时冷却。在凝固过程中,固体相使中子的衍射使得。在每个温度步骤中收集衍射曲线,并用于解释单个平面和相的生长。在原位中子衍射使能够测定各个平面和阶段的分数固体曲线,这对于传统的热分析和计算技术来说是不可能的。本文概述了从中子衍射强度数据产生的馏分固体曲线的方法,包括用于解释德拜德沃勒因子的影响的技术。该方法成功地揭示了对晶体凝固的详细洞察。它表明希望量化超出讨论的许多其他现象。

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