论文标题

在极端环境中的新型难治性无定形高渗透合金的观点

Perspectives on Novel Refractory Amorphous High-Entropy Alloys in Extreme Environments

论文作者

Tunes, Matheus A., Vo, Hi T., Baldwin, Jon K. S., Saleh, Tarik A., Fensin, Saryu J., El-Atwani, Osman

论文摘要

W--TA-CR-– V和W--TA--CR-cr--v-Hf系统中的两种新的折射式无形高凝集合金(RAHEAS)在此使用磁构成量进行合成,并在高温下进行了测试,并在高温下使用\ textIt {sotIt {sotiTIT {sotu {sotu {sotu {int sotu {int sotu} tromplysection}。尽管发现在此类测试下发现WTACRV RAHEA是不稳定的,但在该系统中添加HF的添加,该系统组成了新的Quinary WTACRVHF RAHEA是在退火和辐照下达到稳定性的途径。观察到的纳米沉淀重新组合的新效果在辐射下发生在WTACRVHF RAHEA内,表明由具有结晶纳米尺寸沉淀物的无定形基质组成的双链微结构增强了系统的辐射响应。证明可调化学复杂性是一种新的合金设计策略,以促进在极端环境中使用新型Raheas的使用。在高温退火和置换辐射时,提出了对极端环境中化学复合金属合金的合金设计和应用的新观点。

Two new refractory amorphous high-entropy alloys (RAHEAs) within the W--Ta--Cr--V and W--Ta--Cr--V--Hf systems were herein synthesized using magnetron-sputtering and tested under high-temperature annealing and displacing irradiation using \textit{in situ} Transmission Electron Microscopy. While the WTaCrV RAHEA was found to be unstable under such tests, additions of Hf in this system composing a new quinary WTaCrVHf RAHEA was found to be a route to achieve stability both under annealing and irradiation. A new effect of nanoprecipitate reassembling observed to take place within the WTaCrVHf RAHEA under irradiation indicates that a duplex microstructure composed of an amorphous matrix with crystalline nanometer-sized precipitates enhances the radiation response of the system. It is demonstrated that tunable chemical complexity arises as a new alloy design strategy to foster the use of novel RAHEAs within extreme environments. New perspectives for the alloy design and application of chemically-complex amorphous metallic alloys in extreme environments are presented with focus on their thermodynamic phase stability when subjected to high-temperature annealing and displacing irradiation.

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