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万发荣:材料辐照损伤中的点缺陷团簇与一维迁移现象 ·1541 学报,2013,62(16):166801-1) of prismatic dislocation loops simulated by stochastic discrete [16]Huang Y N,Wan F R,Xiao X,et al.The effect of isotope on the dislocation dynamics.Phys Rev Mater,2019,3(7):073805 interaction between hydrogen and irradiation defect in pure iron. 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Simulating dislocation loop internal dynamics and collective diffusion using stochastic differential equations. Phys Rev B, 2011, 84(13): 134109 [27] [28] Li Y, Boleininger M, Robertson C, et al. Diffusion and interaction of prismatic dislocation loops simulated by stochastic discrete dislocation dynamics. Phys Rev Mater, 2019, 3(7): 073805 Kuramoto E. Computer simulation of fundamental behaviors of interstitial clusters in Fe and Ni. J Nucl Mater, 2000, 276(1-3): 143 [29] Lu C Y, Niu L L, Chen N J, et al. Enhancing radiation tolerance by controlling defect mobility and migration pathways in multicomponent single-phase alloys. Nat Commun, 2016, 7: 13564 [30] Lu C Y, Yang T N, Niu L L, et al. Interstitial migration behavior and defect in ion irradiated pure nickel and Ni‒xFe binary alloys. J Nucl Mater, 2018, 509: 237 [31] Shi S, Bei H B, Robertson I M. Impact of alloy composition on one-dimensional glide of small dislocation loops in concentrated solid solution alloys. Mater Sci Eng A, 2017, 700: 617 [32] Amino T, Arakawa K, Mori H. Detection of one-dimensional migration of single self-interstitial atoms in tungsten using high￾voltage electron microscopy. Sci Rep, 2016, 6: 26099 [33] Satoh Y, Matsui H, Hamaoka T. Effects of impurities on one￾dimensional migration of interstitial clusters in iron under electron irradiation. Phys Rev B, 2008, 77(9): 094135 [34] Hamaoka T, Satoh Y, Matsui H. One-dimensional motion of interstitial clusters in iron-based binary alloys observed using a high-voltage electron microscope. J Nucl Mater, 2013, 433(11-3): 180 [35] Hayashi T, Fukumuto K, Matsui H. In situ observation of glide motions of SIA-type loops in vanadium and V–5Ti under HVEM irradiation. J Nucl Mater, 2002, 307-311: 993 [36] Satoh Y, Abe Y, Abe H, et al. Vacancy effects on one-dimensional migration of interstitial clusters in iron under electron irradiation at low temperatures. Philos Mag, 2016, 96: 2219 [37] Williams D B, Carter C B. Transmission Electron Microscopy. 2nd Ed. New York: Springer, 2009 [38] Li J, Gao J, Wan F R. The change of microstructure in deuteron￾implanted aluminum under electron irradiation. Acta Phys Sin, 2016, 65(2): 026102-1 (李杰, 高进, 万发荣. 电子束辐照下的注氘铝的结构变化. 物理 学报, 2016, 65(2):026102-1) [39] Huang M J, Li Y P, Ran G, et al. Cr coated Zr-4 alloy prepared by electroplating and its in-situ He+ irradiation behavior. J Nucl Mater, 2020, 538: 152240 [40] Matsukawa Y, Zinkle S J. One-dimensional fast migration of vacancy clusters in metals. Science, 2007, 318(5852): 959 [41] 万发荣: 材料辐照损伤中的点缺陷团簇与一维迁移现象 · 1541 ·
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