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Original Articles

Computer simulation of solute-enhanced diffusion kinetics in dilute fcc alloys

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Pages 377-392 | Published online: 14 Nov 2010

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Read on this site (5)

I. V. Belova & G. E. Murch. (2006) Enhancement of solute self-diffusion in fcc alloys. Philosophical Magazine 86:12, pages 1615-1629.
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I. V. Belova, M. J. Brown, A. R. Allnatt & G. E. Murch . (2005) Diffusion kinetics of isolated and paired species: a Monte Carlo study. Philosophical Magazine 85:24, pages 2787-2798.
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A. V. Barashev . (2005) Monte Carlo simulation of phosphorus diffusion in α-iron via the vacancy mechanism. Philosophical Magazine 85:14, pages 1539-1555.
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Articles from other publishers (7)

Axel Seoane, Diana Farkas & Xian-Ming Bai. (2022) Influence of compositional complexity on species diffusion behavior in high-entropy solid-solution alloys. Journal of Materials Research 37:7, pages 1403-1415.
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Ravi Agarwal & Dallas R. Trinkle. 2020. Uncertainty Quantification in Multiscale Materials Modeling. Uncertainty Quantification in Multiscale Materials Modeling 93 118 .
Dallas R. Trinkle. (2018) Variational Principle for Mass Transport. Physical Review Letters 121:23.
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Thomas Garnier & Maylise Nastar. (2013) Coarse-grained kinetic Monte Carlo simulation of diffusion in alloys. Physical Review B 88:13.
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J. Pelleg & V. Segel. (2007) Vanadium diffusion in V–W alloys. Physica B: Condensed Matter 393:1-2, pages 259-265.
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Helmut Mehrer. 2007. Diffusion in Solids. Diffusion in Solids 327 339 .
István A. Szabó & Dezső L. Beke. (2004) Impurity enhancement effects in the frame of the five-frequency model. Phys. Chem. Chem. Phys. 006:13, pages 3625-3626.
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