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Original Article

Monte Carlo simulation of influence of reheat temperature on austenite grain growth in C–Mn steel

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Pages 711-718 | Received 01 Dec 2011, Accepted 22 Dec 2011, Published online: 12 Nov 2013

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Sheuli Hore & Suchandan K. Das. (2019) Computer simulation of microstructure evolution in strip-cast silicon steel with cube and fibre texture. Philosophical Magazine 99:22, pages 2841-2857.
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Articles from other publishers (6)

Sibing Wang, Wenchen Xu, He Wu, Ranxu Yuan, Xueze Jin & Debin Shan. (2021) Simulation of dynamic recrystallization of a magnesium alloy with a cellular automaton method coupled with adaptive activation energy and matrix deformation topology. Manufacturing Review 8, pages 11.
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Guang-Ming Lu, Yan-Li Lu, Ting-Ting Hu & Zheng Chen. (2015) Phase field crystal study on the phase boundary migration induced by the Kirkendall effect. Computational Materials Science 106, pages 170-174.
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S. Hore, S.K. Das, S. Banerjee & S. Mukherjee. (2015) Computational modelling of static recrystallization and two dimensional microstructure evolution during hot strip rolling of advanced high strength steel. Journal of Manufacturing Processes 17, pages 78-87.
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S. Hore, S.K. Das, S. Banerjee & S. Mukherjee. (2013) A multiscale coupled Monte Carlo model to characterize microstructure evolution during hot rolling of Mo-TRIP steel. Acta Materialia 61:19, pages 7251-7259.
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Sheuli Hore, S. K. Das, S. Banerjee & S. Mukherjee. (2013) Monte Carlo simulation of microstructure evolution during thermo-mechanical rolling of steel using grid computing technology. Monte Carlo simulation of microstructure evolution during thermo-mechanical rolling of steel using grid computing technology.
I. Toda-Caraballo, C. Capdevila, G. Pimentel & C.G. De Andrés. (2013) Drag effects on grain growth dynamics. Computational Materials Science 68, pages 95-106.
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