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Original Articles

Interaction of glissile dislocations with perfect and truncated stacking-fault tetrahedra in irradiated metals

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Pages 2709-2735 | Received 09 Jan 2002, Accepted 29 Apr 2002, Published online: 04 Aug 2009

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Read on this site (4)

Shree Krishna, Amir Zamiri & Suvranu De. (2010) Dislocation and defect density-based micromechanical modeling of the mechanical behavior of fcc metals under neutron irradiation. Philosophical Magazine 90:30, pages 4013-4025.
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E. Martinez, J. Marian, A. Arsenlis, M. Victoria & J.M. Perlado. (2008) A dislocation dynamics study of the strength of stacking fault tetrahedra. Part I: interactions with screw dislocations. Philosophical Magazine 88:6, pages 809-840.
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Y. Matsukawa, Y. N. Osetsky, R. E. Stoller & S. J. Zinkle. (2008) Mechanisms of stacking fault tetrahedra destruction by gliding dislocations in quenched gold. Philosophical Magazine 88:4, pages 581-597.
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Y. N. Osetsky, D. Rodney & D. J. Bacon. (2006) Atomic-scale study of dislocation–stacking fault tetrahedron interactions. Part I: mechanisms. Philosophical Magazine 86:16, pages 2295-2313.
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Lianping Wu, Wenshan Yu, Shuling Hu & Shengping Shen. (2018) Size-dependent stability of stacking fault tetrahedron in coherent twin boundary bicrystal: Comparisons among Al, Ni, Cu and Ag. Computational Materials Science 155, pages 256-265.
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Jin Li, D.Y. Xie, S. Xue, C. Fan, Y. Chen, H. Wang, J. Wang & X. Zhang. (2018) Superior twin stability and radiation resistance of nanotwinned Ag solid solution alloy. Acta Materialia 151, pages 395-405.
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Peter J. Doyle, Kelsa M. Benensky & Steven J. Zinkle. (2018) Modeling of dislocation channel width evolution in irradiated metals. Journal of Nuclear Materials 499, pages 47-64.
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Peter Hosemann. (2018) Small-scale mechanical testing on nuclear materials: bridging the experimental length-scale gap. Scripta Materialia 143, pages 161-168.
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Liang Zhang, Cheng Lu, Guillaume Michal, Guanyu Deng & Kiet Tieu. (2017) The formation and destruction of stacking fault tetrahedron in fcc metals: A molecular dynamics study. Scripta Materialia 136, pages 78-82.
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Y. Chen, J. Li, K.Y. Yu, H. Wang, M.A. Kirk, M. Li & X. Zhang. (2016) In situ studies on radiation tolerance of nanotwinned Cu. Acta Materialia 111, pages 148-156.
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Haidong Fan, Jaafar A. El-Awady & Qingyuan Wang. (2015) Towards further understanding of stacking fault tetrahedron absorption and defect-free channels – A molecular dynamics study. Journal of Nuclear Materials 458, pages 176-186.
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I.N. Mastorakos & H.M. Zbib. (2014) A multiscale approach to study the effect of chromium and nickel concentration in the hardening of iron alloys. Journal of Nuclear Materials 449:1-3, pages 101-110.
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I. Salehinia & D.F. Bahr. (2014) Crystal orientation effect on dislocation nucleation and multiplication in FCC single crystal under uniaxial loading. International Journal of Plasticity 52, pages 133-146.
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Dongsheng Li, Hussein Zbib, Xin Sun & Mohammad Khaleel. (2014) Predicting plastic flow and irradiation hardening of iron single crystal with mechanism-based continuum dislocation dynamics. International Journal of Plasticity 52, pages 3-17.
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K. Y. Yu, D. Bufford, C. Sun, Y. Liu, H. Wang, M. A. Kirk, M. Li & X. Zhang. (2013) Removal of stacking-fault tetrahedra by twin boundaries in nanotwinned metals. Nature Communications 4:1.
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Y.N. Osetsky & D.J. Bacon. 2012. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 333 356 .
Shree Krishna & Suvranu De. (2011) A temperature and rate-dependent micromechanical model of molybdenum under neutron irradiation. Mechanics of Materials 43:2, pages 99-110.
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M. Briceño, J. Fenske, M. Dadfarnia, P. Sofronis & I.M. Robertson. (2011) Effect of ion irradiation-produced defects on the mobility of dislocations in 304 stainless steel. Journal of Nuclear Materials 409:1, pages 18-26.
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B.N. Mordyuk, Yu.V. Milman, M.O. Iefimov, G.I. Prokopenko, V.V. Silberschmidt, M.I. Danylenko & A.V. Kotko. (2008) Characterization of ultrasonically peened and laser-shock peened surface layers of AISI 321 stainless steel. Surface and Coatings Technology 202:19, pages 4875-4883.
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I.M. Robertson, A. Beaudoin, K. Al-Fadhalah, Li. Chun-Ming, J. Robach, B.D. Wirth, A. Arsenlis, D. Ahn & P. Sofronis. (2005) Dislocation–obstacle interactions: Dynamic experiments to continuum modeling. Materials Science and Engineering: A 400-401, pages 245-250.
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Yu. N. Osetsky, R.E. Stoller, D. Rodney & D.J. Bacon. (2005) Atomic-scale details of dislocation–stacking fault tetrahedra interaction. Materials Science and Engineering: A 400-401, pages 370-373.
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D.J. Edwards, B.N. Singh & J.B. Bilde-Sørensen. (2005) Initiation and propagation of cleared channels in neutron-irradiated pure copper and a precipitation hardened CuCrZr alloy. Journal of Nuclear Materials 342:1-3, pages 164-178.
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S.J Zinkle & Y Matsukawa. (2004) Observation and analysis of defect cluster production and interactions with dislocations. Journal of Nuclear Materials 329-333, pages 88-96.
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Yu.N Osetsky, R.E Stoller & Y Matsukawa. (2004) Dislocation–stacking fault tetrahedron interaction: what can we learn from atomic-scale modelling. Journal of Nuclear Materials 329-333, pages 1228-1232.
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Yoshitaka Matsukawa & Steven J Zinkle. (2004) Dynamic observation of the collapse process of a stacking fault tetrahedron by moving dislocations. Journal of Nuclear Materials 329-333, pages 919-923.
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M Hiratani, V.V Bulatov & H.M Zbib. (2004) Orientation dependent elastic interaction between a truncated stacking fault tetrahedron and a glissile dislocation. Journal of Nuclear Materials 329-333, pages 1103-1106.
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