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Quantitative criterion for recrystallization nucleation in single-phase alloys : Prediction of critical strains and incubation timesZUROB, H. S; BRECHET, Y; DUNLOP, J et al.Acta materialia. 2006, Vol 54, Num 15, pp 3983-3990, issn 1359-6454, 8 p.Article

Modelling discontinuous dynamic recrystallization using a physically based model for nucleationCRAM, D. G; ZUROB, H. S; BRECHET, Y. J. M et al.Acta materialia. 2009, Vol 57, Num 17, pp 5218-5228, issn 1359-6454, 11 p.Article

Structural changes in the multi-pass hot-rolling of commercial purity aluminumDOKO, T; ASAMI, S; BEKKI, Y et al.Keikinzoku. 1991, Vol 41, Num 8, pp 534-540, issn 0451-5994Article

Nucleation of recrystallizationHUTCHINSON, B.Scripta metallurgica et materialia. 1992, Vol 27, Num 11, pp 1471-1475, issn 0956-716XConference Paper

Subgrain growth in aluminium during static annealing = Subkornwachstum in Aluminium waehrend statischer GluehungVARMA, S.K; WILLITS, B.L.Metallurgical transactions. A, Physical metallurgy and materials science. 1984, Vol 15A, Num 7, pp 1502-1503, issn 0360-2133Article

A thermodynamic theory for dislocation cell formation and misorientation in metalsGALINDO-NAVA, E. I; RIVERA-DIAZ-DEL-CASTILLO, P. E. J.Acta materialia. 2012, Vol 60, Num 11, pp 4370-4378, issn 1359-6454, 9 p.Article

Nucleation and growth during primary recrystallization of certain metals and alloys with a face-centered cubic structure: Formation of the cube texturePENELLE, Richard.International journal of materials research. 2009, Vol 100, Num 10, pp 1420-1432, issn 1862-5282, 13 p.Article

Simulation of subgrain growth by subgrain rotation : a one-dimensional modelSAETRE, T. O; RYUM, N; EVANGELISTA, E et al.Metallurgical transactions. A, Physical metallurgy and materials science. 1991, Vol 22, Num 10, pp 2257-2263, issn 0360-2133Article

The effect of stress and subgrain size on the creep behavior of high purity aluminumFERREIRA, I; STANG, R.G.Acta metallurgica. 1983, Vol 31, Num 4, pp 585-590, issn 0001-6160Article

Recovery during annealing in a cold rolled low carbon steel. Part I: Kinetics and microstructural characterizationMARTINEZ-DE-GUERENU, A; ARIZTI, F; DIAZ-FUENTES, M et al.Acta materialia. 2004, Vol 52, Num 12, pp 3657-3664, issn 1359-6454, 8 p.Article

Microstructure evolution in a 3%Co modified P911 heat resistant steel under tempering and creep conditionsKIPELOVA, A; KAIBYSHEV, R; BELYAKOV, A et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2011, Vol 528, Num 3, pp 1280-1286, issn 0921-5093, 7 p.Article

Deformation and recrystallisation studied by EBSP : breakthroughs and limitationsJENSEN, D. Juul.Materials science and technology. 2000, Vol 16, Num 11-12, pp 1360-1363, issn 0267-0836Conference Paper

Validation of models for subgrain growth in Hg1-xCdxTe(MCT) by thermal annealingPEREZ, L. V; TRIGUBO, A. B; WALSÖE DE RECA, N. E et al.Journal of crystal growth. 1996, Vol 167, Num 1-2, pp 87-92, issn 0022-0248Article

Phase field simulation of stored energy driven interface migration at a recrystallization frontSUWA, Yoshihiro; SAITO, Yoshiyuki; ONODERA, Hidehiro et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2007, Vol 457, Num 1-2, pp 132-138, issn 0921-5093, 7 p.Article

On the nucleation of recrystallization by a bulging mechanism : a two-dimensional vertex simulationWEYGAND, D; BRECHET, Y; LEPINOUX, J et al.Philosophical magazine. B. Physics of condensed matter. Statistical mechanics, electronic, optical and magnetic properties. 2000, Vol 80, Num 11, pp 1987-1996, issn 1364-2812Article

Subgrain growth in armco-iron during recoveryLAN, Y; KLAAR, H. J; DAHL, W et al.Scripta metallurgica et materialia. 1990, Vol 24, Num 12, pp 2459-2463Article

Quantification of the effect of early microstructural degradation during creep of 9Cr―1Mo―NbV steels at 600 °CSPIGARELLI, S.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2013, Vol 565, pp 269-277, issn 0921-5093, 9 p.Article

Phase-field simulation of recrystallization based on the unified subgrain growth theorySUWA, Yoshihiro; SAITO, Yoshiyuki; ONODERA, Hidehiro et al.Computational materials science. 2008, Vol 44, Num 2, pp 286-295, issn 0927-0256, 10 p.Article

Growth related microstructure of Bridgman grown YBa2Cu3O7/Y2BaCuO5 single-grain barsDIKO, P; ZMORAYOVA, K; MENDOZA, E et al.Superconductor science & technology (Print). 2002, Vol 15, Num 10, pp 1385-1391, issn 0953-2048, 7 p.Article

Statistical evaluation of subgrain size growth in Hg1-xCdxTe (MCT)TRIGUBO, A. B; LAC-PRUGENT, C; PEREZ, L. V et al.Materials research bulletin. 1996, Vol 31, Num 6, pp 723-729, issn 0025-5408Article

Subgrain growth during creep of a tempered martensitic 12% Cr-steelBLUM, W; STRAUB, S.Steel research. 1991, Vol 62, Num 2, pp 72-74, issn 0177-4832, 3 p.Article

Phase-field simulation of static recrystallization considering nucleation from subgrains and nucleus growth with incubation periodMURAMATSU, M; AOYAGI, Y; TADANO, Y et al.Computational materials science. 2014, Vol 87, pp 112-122, issn 0927-0256, 11 p.Article

Onset of abnormal subgrain growth in cold rolled {1 1 0}<00 1 oriented copper single crystalsFERRY, M; HUMPHREYS, F. J.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2006, Vol 435-36, pp 447-452, issn 0921-5093, 6 p.Article

Mechanism of recrystallisation texture formation in IF-steelsREGLE, H; LANTERI, S.Materials science forum. 1998, pp 447-452, issn 0255-5476, isbn 0-87849-802-8Conference Paper

Phase transformations upon tempering of carbon steels after high-temperature thermal cyclingBELOUS, M. V; SIDORENKO, S. I; MOSKALENKO, Yu. N et al.Physics of metals and metallography. 1999, Vol 87, Num 3, pp 239-243, issn 0031-918XArticle

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