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Application of phase diagram calculations to development of new ultra-high temperature structural materials

机译:相图计算在新型超高温结构材料开发中的应用

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摘要

In-situ refractory metal intermetallic composites(RMICs) based either on (Nb, Si) or (Mo, Si, B) are candidate materials for ultra-high temperature applications (> 1 400 ℃). To provide a balance of mechanical and environmental properties, Nb-Si composites are typically alloyed with Ti and Cr, and Mo-Si-B composites are alloyed with Ti. Phase diagrams of Nb-Cr-Ti-Si and Mo-Si-B-Ti, as prerequisite knowledge for advanced materials design and processing development, are critically needed. The phase diagrams in the metal-rich regions of multicomponent Nb-Cr-Ti-Si and Mo-Si-B-Ti were rapidly established using the Calphad(Calculation of phase diagram) approach coupled with key experiments. The calculated isotherms, isopleths, and solidification paths were validated by experimental work. The important heterogeneous multiphase equilibria in both quaternary systems identified will offer engineers the opportunity to develop materials with a balance of properties for high-temperature applications.
机译:基于(NB,Si)或(Mo,Si,B)的原位耐火金属金属间复合材料(RMIC)是超高温应用(> 1 400℃)的候选材料。为了提供机械和环境性能的平衡,Nb-Si复合材料通常用Ti和Cr合金,并且Mo-Si-B复合材料与Ti合金合金。 Nb-Cr-Ti-Si和Mo-Si-B-Ti的相图,作为先进材料设计和加工开发的先决知识,是批判性所需的。使用Calphad(计算相图的计算)与关键实验相结合的方法,快速建立了多组分NB-CR-Ti-Si和Mo-Si-B-Ti的金属富含Nb-Cr-Ti-Si和Mo-Si-B-Ti的相图。通过实验工作验证了计算的等温物,Isopleth和凝固路径。所确定的四季系统中的重要非均相多相均衡将为工程师提供有机会开发具有高温应用的性能平衡的材料。

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