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Results 1 to 25 of 670

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Variational approach to subgrain formationSEDLACEK, Radan; KRATOCHVIL, Jan.Zeitschrift für Metallkunde. 2005, Vol 96, Num 6, pp 602-607, issn 0044-3093, 6 p.Article

INHOMOGENEITY OF THE COLD WORKED STATE AND THE NUCLEATION OF RECRYSTALLISATION = INHOMOGENEITE DE L'ETAT DEFORME A FROID ET GERMINATION DE LA RECRISTALLISATIONDOHERTY RD.1979; METAL. ODLEW.; ISSN 0137-6535; POL; DA. 1979; NO 744; PP. 179-197; ABS. RUS; BIBL. 50 REF.; IDEM POLArticle

Relationship between the applied stress and cell diameter from the soft and hard region theoryOROZCO, E; MONTEMAYOR-ALDRETE, J.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 1994, Vol 174, Num 1, pp L5-L8, issn 0921-5093Article

The recrystallization mechanism of doped tungsten wireZHONGCHUN, C; TIEYONG, Z; MEILING, Z et al.Journal of materials science letters. 1990, Vol 9, Num 7, pp 782-784, issn 0261-8028, 3 p.Article

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

Improved Creep Behavior of Ferritic-Martensitic Alloy T91 by Subgrain Boundary Density EnhancementGUPTA, G; WAS, Gary S.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2008, Vol 39, Num 1, pp 150-164, issn 1073-5623, 15 p.Article

Evidence for dynamic recrystallization during Harper-Dorn creepGINTER, Timothy J; MOHAMED, Farghalli A.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2002, Vol 322, Num 1-2, pp 148-152, issn 0921-5093Conference Paper

Grain and subgrain boundaries in ultrafine-grained materialsSAXL, Ivan; KALOUSOVA, Anna; ILUCOVA, Lucia et al.Materials characterization. 2009, Vol 60, Num 10, pp 1163-1167, issn 1044-5803, 5 p.Article

On grain and subgrain rotations in two dimensionsSAETRE, T. O; RYUM, N.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 1995, Vol 26, Num 7, pp 1687-1697, issn 1073-5623Article

Subgrain and dislocation structure changes in hot-deformed high-temperature Fe-Ni austenitic alloyDUCKI, K. J; RODAK, K; HETMANCZYK, M et al.Materials chemistry and physics. 2003, Vol 81, Num 2-3, pp 493-495, issn 0254-0584, 3 p.Conference Paper

Effects of subgrain structures and stress orientation on fatigue of brass = Effet de la structure des sous-grains et de l'orientation des contraintes sur la fatigue du laitonLIU, T. F; WAN, C. M; JAHN, M. T et al.Journal of materials science. 1983, Vol 18, Num 12, pp 3749-3755, issn 0022-2461Article

SUBSTRUCTURAL DEVELOPMENTS DURING RECOVERY IN EC ALUMINUM = DEVELOPPEMENTS SOUS-STRUCTURAUX AU COURS DE LA RESTAURATION DANS L'ALUMINIUM ECVARMA SK.1979; SCRIPTA METALLURG.; USA; DA. 1979; VOL. 13; NO 5; PP. 345-348; BIBL. 6 REF.Article

A SZUBSZERKEZETEK SZILARDSAGNOEVELO" HATASA = STRENGTH IMPROVEMENT OF SUBSTRUCTURES = EFFET D'AUGMENTATION DE RESISTANCE DES SOUSSTRUCTURESRAJKOVITS Z; TASNADI P.1981; MAGYAR FIZ. FOLYOIRAT; HUN; DA. 1981; VOL. 29; NO 3; PP. 255-262; BIBL. 18 REF.Article

Increase of martensite start temperature after small deformation of austeniteHE, B. B; XU, W; HUANG, M. X et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2014, Vol 609, pp 141-146, issn 0921-5093, 6 p.Article

SUBGRAIN COALESCENCE AND THE NUCLEATION OF RECRYSTALLIZATION AT GRAIN BOUNDARIES IN ALUMINIUM = COALESCENCE DE SOUS-GRAINS ET GERMINATION DE LA RECRISTALLISATION AUX JOINTS DE GRAINS DANS ALJONES AR; RALPH B; HANSEN N et al.1979; PROC. R. SOC. LOND., SER. A, MATH. PHYS. SCI.; ISSN 0080-4630; GBR; DA. 1979; VOL. 368; NO 1734; PP. 345-357; H.T. 8; BIBL. 19 REF.Article

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

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

Dynamic subgrain coalescence during low-temperature large plastic strains = Coalescence dynamique de sous-grains pendant de grandes déformations plastiques à basse températureFLAQUER, J; SEVILLANO, J. G.Journal of materials science. 1984, Vol 19, Num 2, pp 423-427, issn 0022-2461Article

Kaltverformung, Erholung und Rekristallisation der Legierung AlZnMgCu = Déformation à froid, restauration et recristallisation de l'alliage AlZnMgCu = Cold working, recovery and recrystallization of the alloy AlZnMgCuPOGANITSCH, R; JEGLITSCH, F; RATZI, R et al.Zeitschrift für Metallkunde. 1984, Vol 75, Num 4, pp 249-262, issn 0044-3093Article

ON THE DISLOCATION STRUCTURES OF (321) COPPER AND COPPER-ALUMINIUM DILUTE ALLOY CRYSTALS GROWN BY THE BRIDGMAN METHODWATANABE J; IMASHIMIZU Y.1981; J. JAP. INST. MET.; JPN; DA. 1981-10; VOL. 45; NO 10; PP. 990-996; BIBL. 19 REF.Article

Study of fatigue damage in 7010 aluminum alloyPATTON, G; RINALDI, C; BRECHET, Y et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 1998, Vol 254, Num 1-2, pp 207-218, issn 0921-5093Article

The influence of subgrain boundary migration on modeling of the response to stress change in creepDOBES, F.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 1993, Vol 167, Num 1-2, pp 31-36, issn 0921-5093Article

Creep Behavior and Degradation of Subgrain Structures Pinned by Nanoscale Precipitates in Strength-Enhanced 5 to 12 Pct Cr Ferritic SteelsHASSAN GHASSEMI ARMAKI; CHEN, Ruiping; MARUYAMA, Kouichi et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2011, Vol 42, Num 10, pp 3084-3094, issn 1073-5623, 11 p.Article

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