Ultrastrong nanocrystalline steel with exceptional thermal stability and radiation tolerance

Weaker ferritic/matensitic steels rather than stronger austenitic steels are usually candidates for nuclear reactors since they do not easily swell under irradiation. Here, the authors make an ultrastrong lanthanum-doped nanocrystalline austenitic steel that is thermally stable and radiation-toleran...

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Autores principales: Congcong Du, Shenbao Jin, Yuan Fang, Jin Li, Shenyang Hu, Tingting Yang, Ying Zhang, Jianyu Huang, Gang Sha, Yugang Wang, Zhongxia Shang, Xinghang Zhang, Baoru Sun, Shengwei Xin, Tongde Shen
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/a73ab4d9f96d4f6189026c3325dad96b
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Sumario:Weaker ferritic/matensitic steels rather than stronger austenitic steels are usually candidates for nuclear reactors since they do not easily swell under irradiation. Here, the authors make an ultrastrong lanthanum-doped nanocrystalline austenitic steel that is thermally stable and radiation-tolerant.