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首页> 外文期刊>Practical Metallography >Microstructural and Phase Analysis of an Additively Manufactured Intermetallic TiAl Alloy using Metallographic Techniques and High-Energy X-Rays
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Microstructural and Phase Analysis of an Additively Manufactured Intermetallic TiAl Alloy using Metallographic Techniques and High-Energy X-Rays

机译:使用金相技术和高能量X射线的含有添加金属间金属间合金的组织和相位分析

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摘要

Due to the unique combination of low density and their excellent properties-profile at elevated temperatures, intermetallic y-titanium aluminide based alloys are a promising structural material for applications in aviation and the automotive industry. Additive manufacturing of a TiAl alloy of nominal composition Ti-48AI-2Cr-2Nb (in at. %), using electron beam melting, resulted in a banded and anisotropic microstruc-ture. In this work, the present microstructure was examined by means of visible light and scanning electron microscopy with regard to morphology and phase distribution. Furthermore, a three-dimensional representation of the microstructure was generated based on differently oriented metallographic specimens. Phase analysis was performed using high-energy X-ray diffraction in order to quantitatively determine present phase fractions and to relate them to findings from microstructural analysis.
机译:由于低密度的独特组合和其优异的升高温度,金属间Y-铝化物基合金是航空和汽车工业中应用的有希望的结构材料。 使用电子束熔化的标称组合物Ti-48ai-2Cr-2NB(在AT。%)的Tial制造。 在这项工作中,通过关于形态和相分布的可见光和扫描电子显微镜检查本微观结构。 此外,基于不同取向的金相样品产生微结构的三维表示。 使用高能X射线衍射进行相位分析,以定量地确定存在的相位级分,并将它们与微观结构分析的结果相关联。

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