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Part A: Materials Science

Effects of one-dimensional migration of self-interstitial atom clusters on the decreasing behaviour of their number density in electron-irradiated α-iron

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Pages 110-125 | Received 29 May 2019, Accepted 12 Sep 2019, Published online: 03 Oct 2019

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Read on this site (3)

Y. Abe, Y. Satoh & N. Hashimoto. (2022) Vacancy migration in α-iron investigated using in situ high-voltage electron microscopy. Philosophical Magazine 102:12, pages 1173-1193.
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Articles from other publishers (4)

Ranran Li, Xiaoou Yi, Wentuo Han, Pingping Liu, Qian Zhan, Yoshitaka Matsukawa, Hideo Watanabe & Farong Wan. (2023) Micron-scale 1D migration of interstitial-type dislocation loops in aluminum. Materials Characterization 203, pages 113149.
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Gang Yang, Yukun Wu, Yifan Ding, Yipeng Li, Ziqi Cao, Gang Li, Dewang Cui, Kun He, Xi Qiu & Guang Ran. (2023) Effect of ion flux on one-dimensional migration of dislocation loops in Fe9Cr1.5W0.4Si F/M steel during in-situ Fe+ irradiation. Journal of Nuclear Materials 579, pages 154412.
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Ran-Ran Li, Yi-Fan Zhang, Yu-Peng Yin, Hideo Watanabe, Wen-Tuo Han, Xiao-Ou Yi, Ping-Ping Liu, Gao-Wei Zhang, Qian Zhan & Fa-Rong Wan. (2022) <i>In-situ</i> study of one-dimensional motion of interstitial-type dislocation loops in hydrogen-ion-implanted aluminum. Acta Physica Sinica 71:1, pages 016102.
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J. Wang, Q. Hou & B.L. Zhang. (2021) Migration behavior of self-interstitial defects in tungsten and iron. Solid State Communications 325, pages 114158.
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