作者
Yanwen Zhang, Ke Jin, Haizhou Xue, Chenyang Lu, Raina J Olsen, Laurent K Beland, Mohammad W Ullah, Shijun Zhao, Hongbin Bei, Dilpuneet S Aidhy, German D Samolyuk, Lumin Wang, Magdalena Caro, Alfredo Caro, G Malcolm Stocks, Ben C Larson, Ian M Robertson, Alfredo A Correa, William J Weber
发表日期
2016/8
期刊
Journal of Materials Research
卷号
31
期号
16
页码范围
2363-2375
出版商
Cambridge University Press
简介
Historically, alloy development with better radiation performance has been focused on traditional alloys with one or two principal element(s) and minor alloying elements, where enhanced radiation resistance depends on microstructural or nanoscale features to mitigate displacement damage. In sharp contrast to traditional alloys, recent advances of single-phase concentrated solid solution alloys (SP-CSAs) have opened up new frontiers in materials research. In these alloys, a random arrangement of multiple elemental species on a crystalline lattice results in disordered local chemical environments and unique site-to-site lattice distortions. Based on closely integrated computational and experimental studies using a novel set of SP-CSAs in a face-centered cubic structure, we have explicitly demonstrated that increasing chemical disorder can lead to a substantial reduction in electron mean free paths, as well as …
引用总数
201720182019202020212022202320241120141817241513
学术搜索中的文章