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Development of Oxidation Resistant Refractory High Entropy Alloys for High Temperature Applications: Recent Results and Development Strategy

机译:高温应用抗氧化耐火高熵合金的开发:最新成果和发展策略

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Refractory High Entropy Alloys (HEAs) can be considered as promising materials for high temperature applications because of their high melting point and outstanding high temperature strength. The microstructure of the equimolar alloy Nb-Mo-Cr-Ti-Al consists of a disordered body centered cubic (BCC) phase and a small amount of the Laves phase, while the equimolar alloy Ta-Mo-Cr-Ti-Al exhibits the ordered B2 and several Laves phases in addition to the BCC phase. The experimental studies reveal that these alloys possess a beneficial combination of high temperature strength and corrosion protectiveness. The compressive yield stress of the alloy Nb-Mo-Cr-Ti-Al and Ta-Mo-Cr-Ti-Al at 1200 °C is determined to 100 MPa and 200 MPa, respectively. The oxidation resistance of the alloy Ta-Mo-Cr-Ti-Al in the temperature range between 900 and 1100 °C is comparable to that of multi-phase Ni-based alloys. The main drawback of both alloys is their low ductility at room temperature. Strategies for the future alloy development are discussed.
机译:难熔高熵合金(HEA)因其高熔点和出色的高温强度而被认为是有前途的高温应用材料。等摩尔合金Nb-Mo-Cr-Ti-Al的微观结构由无序的体心立方(BCC)相和少量的Laves相组成,而等摩尔合金Ta-Mo-Cr-Ti-Al表现出除了BCC阶段外,还订购了B2和几个Laves阶段。实验研究表明,这些合金具有高温强度和腐蚀防护性的有益组合。 Nb-Mo-Cr-Ti-Al合金和Ta-Mo-Cr-Ti-Al合金在1200°C时的压缩屈服应力分别确定为100 MPa和200 MPa。 Ta-Mo-Cr-Ti-Al合金在900至1100°C的温度范围内的抗氧化性与多相Ni基合金的抗氧化性相当。两种合金的主要缺点是它们在室温下的延展性低。讨论了未来合金发展的策略。

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