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Real-Time X-Ray Transmission Microscopy of Solidifying Al-In Alloys

机译:凝固铝铟合金的实时X射线透射显微镜

摘要

Real-time observations of transparent analog materials have provided insight, yet the results of these observations are not necessarily representative of opaque metallic systems. In order to study the detailed dynamics of the solidification process, we develop the technologies needed for real-time X ray microscopy of solidifying metallic systems, which has not previously been feasible with the necessary resolution, speed, and contrast. In initial studies of Al-In monotectic alloys unidirectionally solidified in an X-ray transparent furnace, in situ records of the evolution of interface morphologies, interfacial solute accumulation, and formation of the monotectic droplets were obtained for the first time: A radiomicrograph of Al-30In grown during aircraft parabolic maneuvers is presented, showing the volumetric phase distribution in this specimen. The benefits of using X-ray microscopy for postsolidification metallography include ease of specimen preparation, increased sensitivity, and three-dimensional analysis of phase distribution. Imaging of the solute boundary layer revealed that the isoconcentration lines are not parallel (as is often assumed) to the growth interface. Striations in the solidified crystal did not accurately decorate the interface position and shape. The monotectic composition alloy under some conditions grew in an uncoupled manner.
机译:透明模拟材料的实时观察提供了见解,但是这些观察的结果不一定代表不透明的金属系统。为了研究凝固过程的详细动态,我们开发了实时X射线显微照相凝固金属系统所需的技术,以前在具有必要的分辨率,速度和对比度的情况下这是不可行的。在X射线透明炉中单向凝固的Al-In单晶合金的初步研究中,首次获得了界面形貌演变,界面溶质积聚和单晶液滴形成的原位记录:Al的射线照相呈现了在飞机上生长的-30In的抛物线形动量,显示了该样品的体积相分布。使用X射线显微镜进行凝固后金相分析的好处包括易于制备样品,提高了灵敏度以及对相分布进行了三维分析。溶质边界层的成像显示,等浓度线与生长界面不平行(通常假定)。凝固晶体中的条纹不能准确地修饰界面位置和形状。在某些条件下,单晶成分合金以非耦合方式生长。

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