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Aluminizing for enhanced oxidation resistance of ductile refractory high-entropy alloys

机译:铝化用于增强韧性耐火高熵合金的抗氧化性能

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摘要

Refractory high-entropy alloys (RHEAs) emerge as promising candidate materials for ultrahigh-temperature applications. One critical issue to solve for RHEAs is their balanced oxidation resistance and mechanical properties, mainly room-temperature ductility for the latter. Recently, it was found that existing ductile RHEAs are subject to catastrophic accelerated oxidation, also known as pesting. In this work, both alloying and surface coating, are applied to enhance the oxidation resistance of ductile RHEAs, with the focus on surface coating using the pack cementation method and more specifically, aluminizing. The oxidation resistance of two RHEAs, Hf0.5Nb0.5Ta0.5Ti1.5Zr, one recently identified ductile RHEA which pests in the temperature range of 600-1000 degrees C, and Al0.5Cr0.25Nb0.5Ta0.5Ti1.5, the newly designed ductile RHEA which does not pest but embrittles after oxidation, are studied after aluminizing at 900 degrees C using three different pack components. Aluminizing, if using the appropriate pack cementation parameters, can avoid pesting in Hf0.5Nb0.5Ta0.5Ti1.5Zr and alleviate the oxidation induced embrittlement in Al0.5Cr0.25Nb0.5Ta0.5Ti1.5, and holds the promise for further improving the RHEAs as potential ultrahigh-temperature materials.
机译:难治性高熵合金(RHEAS)出现为超高温应用的承诺候选材料。解决RHEAS的一个关键问题是它们平衡的抗氧化性和机械性能,主要是后者的室温延性。最近,发现现有的延性Rheas受到灾难性加速氧化的影响,也称为粘合。在这项工作中,适用于合金化和表面涂层,用于增强延展性Rheas的抗氧化性,在使用包装胶结方法的焦点上的表面涂层,更具体地,铝化。两种Rheas,HF0.5nb0.5ta0.5ti1.5zr的氧化抗性,最近鉴定的延性rhea在600-1000℃的温度范围内,Al0.5cr0.25nb0.5ta0.5ti1.5,新的设计在氧化后没有害虫而且在氧化后造成的韧性rhea,使用三种不同的包装组分在900℃下铝化后研究。铝化合物,如果使用适当的包装胶粘参数,可以避免在HF0.5nb0.5ta0.5ti1.5zr中捕捉在AL0.5CR0.25NB0.5TA0.5TI1.5中缓解氧化诱导的脆化,并拥有进一步改善的承担RHEAS作为潜在的超高温材料。

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