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3D Microstructural Evolution on Solidifying Mg-5Nd-5Zn Alloy Observed via In Situ Synchrotron Tomography

机译:原位同步加速器层析成像观察Mg-5Nd-5Zn合金凝固过程的3D组织演变

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In situ synchrotron tomography is a unique technique to study 3D microstructure evolution during solidification due to the high brilliance of the beam and the short acquisition time of the detector systems. In this work, in situ synchrotron tomographic observations were performed during the solidification of Mg-5Nd-5Zn (wt%) alloy with a cooling rate of 5 ℃/min. The experiment was performed at the TOMCAT beamline of the Swiss Light Source (Paul Scherrer Institute (PSI), Villigen, Switzerland). The sample was melted using a laser-based heating system and then cooled until completely solidified. 3D tomograms were acquired during solidification. The microstructural analysis starts after the coherency point until the end of solidification. A differential thermal analysis (DTA) experiment was performed to estimate the liquidus and solidus temperature of the alloy. These values were used to correct the measured temperature from the in situ solidification experiment. Different microstructural parameters such as the volume fractions of the phases, i.e. α-Mg dendrites, interdendritics and pores, as well as the interconnectivity and skeletonization results are discussed.
机译:原位同步加速器层析成像技术是一种独特的技术,用于研究凝固过程中3D微观结构的演变,这是因为光束的亮度很高,探测器系统的采集时间较短。在这项工作中,在冷却速度为5℃/ min的Mg-5Nd-5Zn(wt%)合金凝固过程中进行了原位同步加速器断层扫描观察。实验是在瑞士光源的TOMCAT光束线上进行的(Paul Scherrer研究所(PSI),瑞士维利根)。使用基于激光的加热系统将样品熔化,然后冷却直至完全固化。固化过程中获取了3D断层图。微观结构分析从相干点开始直到凝固结束。进行了差热分析(​​DTA)实验以估计合金的液相线和固相线温度。这些值用于根据原位凝固实验校正测得的温度。讨论了不同的微观结构参数,例如相的体积分数,即α-Mg树枝状晶体,树枝状晶体和孔,以及互连性和骨架化结果。

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