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Characteristic features of slip bands in submicron single-crystal gold component produced by fatigueSUMIGAWA, Takashi; SHIOHARA, Ryosuke; MATSUMOTO, Kenta et al.Acta materialia. 2013, Vol 61, Num 7, pp 2692-2700, issn 1359-6454, 9 p.Article

AFM study of the morphology and micro-strain of slip bands in twin under cyclic deformationJUN MA.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2007, Vol 457, Num 1-2, pp 63-68, issn 0921-5093, 6 p.Article

Dislocation patterning in fatigued metals: labyrinth structures and rotational effectsWALGRAEF, D; AIFANTIS, E. C.International journal of engineering science. 1986, Vol 24, Num 12, pp 1789-1798, issn 0020-7225Article

Utilisation de revêtements photoélastiques pour l'étude des déformations dans les microrégions des polycristauxKRASNOV, L. A; SHABANOV, A. P.Prikladnaâ mehanika i tehničeskaâ fizika. 1984, Vol 145, Num 3, pp 146-150, issn 0869-5032Article

Computational modeling of intrinsically induced strain gradients during compression of c-axis-oriented magnesium single crystalHUSSER, Edgar; LILLEODDEN, Erica; BARGMANN, Swantje et al.Acta materialia. 2014, Vol 71, pp 206-219, issn 1359-6454, 14 p.Article

Mapping deformation in small-scale testingDI GIOACCHINO, Fabio; CLEGG, William John.Acta materialia. 2014, Vol 78, pp 103-113, issn 1359-6454, 11 p.Article

Slip band-grain boundary interactions in commercial-purity titaniumGUO, Y; BRITTON, T. B; WILKINSON, A. J et al.Acta materialia. 2014, Vol 76, pp 1-12, issn 1359-6454, 12 p.Article

Creep mechanisms in Ti-3Al-2.5V alloy tubing deformed under closed-end internal gas pressurizationGOLLAPUDI, S; CHARIT, I; MURTY, K. L et al.Acta materialia. 2008, Vol 56, Num 10, pp 2406-2419, issn 1359-6454, 14 p.Article

High resolution X-ray tomography of micromechanisms of fatigue crack closure : 3D characterization and analysis of materialsKHOR, K. H; BULLIDRE, J.-Y; LUDWIG, W et al.Scripta materialia. 2006, Vol 55, Num 1, pp 47-50, issn 1359-6462, 4 p.Article

Strain localization and fatigue cracking behaviors of Cu bicrystal with an inclined twin boundaryLI, L. L; ZHANG, P; ZHANG, Z. J et al.Acta materialia. 2014, Vol 73, pp 167-176, issn 1359-6454, 10 p.Article

YIELD AND STAGE I DEFORMATION OF NEUTRON-IRRADIATED COPPER CRYSTAL IN CONNECTION WITH FORMATION OF SLIP BANDS = ELASTICITE ET DEFORMATION DU TYPE I DANS LES CRISTAUX DE CU IRRADIES PAR DES NEUTRONS ET FORMATION DE BANDES DE GLISSEMENTSHINOHARA K; KITAJIMA S; OKAMOTO A et al.1982; TRANS. JPN. INST. MET.; ISSN 0021-4434; JPN; DA. 1982; VOL. 23; NO 1; PP. 8-18; BIBL. 38 REF.Article

ON THE INTERGRANULAR FRACTURE MECHANISM DUE TO LEDGE FORMATION IN AN AL-6.0% ZN-2.5% MG ALLOYKAWABATA T; IZUMI O.1979; J. MATER. SCI.; GBR; DA. 1979; VOL. 14; NO 5; PP. 1071-1079; BIBL. 19 REF.Article

THE CYCLIC HARDENING AND SATURATION BEHAVIOUR OF COPPER SINGLE CRYSTALS.MUGHRABI H.1978; MATER. SCI. ENGNG; NDL; DA. 1978; VOL. 33; NO 2; PP. 207-223; BIBL. 70 REF.Article

FATIGUE CRACK INITIATION VS SLIP BANDSVLADIMIROV VI; LUKASH P.1982; PROBL. PROCN. (KIEV); ISSN 0556-171X; UKR; DA. 1982; NO 1; PP. 73-74; ABS. ENG; BIBL. 7 REF.Article

STUDIUM INICIACIE TRHLIN PO NIZKOCYKLOVEJ UNAVE V ALPHA -FE POMOCOU SKLZOVYCH PASOV = ETUDE DE L'INITIATION A LA RUPTURE EN FATIGUE OLIGOCYCLIQUE DANS LE FE-ALPHABOSANSKY J.1978; KOVOVE MATER.; CSK; DA. 1978; VOL. 16; NO 4; PP. 449-461; ABS. RUS/ENG; BIBL. 5 REF.Article

THE ROLE OF SURFACE REMOVAL ON CYCLIC DEFORMATION AND CRACK INITIATION IN SINGLE CRYSTAL AND POLYCRYSTALLINE COPPER.HAHN H; DUQUETTE DJ.sdIN: INT. CONF. STRENGTH MET. ALLOYS. 4. PROC.; NANCY; 1976; NANCY; ENSMIM-INPL; DA. S.D.; VOL. 2; PP. 916-921; BIBL. 5 REF.Conference Paper

Dislocation pile-ups, slip-bands, ellipsoids, and cracksBROWN, Lawrence M.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2005, Vol 400-01, pp 2-6, issn 0921-5093, 5 p.Conference Paper

Bowing out of a dislocation from wall of persistent slip bands (PSB)KRIST'AN, Josef; KRATOCHVIL, Jan.International journal of materials research. 2010, Vol 101, Num 5, pp 680-683, issn 1862-5282, 4 p.Article

Modeling of the crack tip plastic zone by two slip lines and the order of stress singularityKAMINSKY, Anatoly A; KIPNIS, Leonid A; DUDIK, Michael V et al.International journal of fracture. 2004, Vol 127, Num 1, pp L105-L109, issn 0376-9429Article

Structural changes in martensite foils at the tips of microcracks arising as a result of stress relaxationETERASHVILI, T. V; KUTELIYA, E. R; KHASIYA, N. I et al.Strength of materials. 1990, Vol 22, Num 12, pp 1834-1840, issn 0039-2316Article

Non-linéarité incrémentale et localisation des déformations: quelques remarques = On incremental non-linearity and strain-localizationLORET, B.Journal de mécanique théorique et appliquée. 1987, Vol 6, Num 3, pp 423-459, issn 0750-7240Article

On the reconciliation of reduced cohesion and enhanced plasticity mechanisms for hydrogen embrittlement = Sur la réconciliation des mécanismes de cohésion réduite et de plasticité augmentée pour la fragilisation par l'hydrogèneHACK, J. E.Scripta metallurgica. 1985, Vol 19, Num 4, pp 543-545, issn 0036-9748Article

Irréversibilité de la déformation plastique à l'échelle microscopique et fatigue des matériaux cristallinsKHANNANOV, SH. KH.Fizika metallov i metallovedenie. 1984, Vol 58, Num 5, pp 837-844, issn 0015-3230Article

Part II: Grains, deformation substructures, and slip bands observed in thermosonic copper ball bonding of 6-mil-diameter wireMURALI, S; SRIKANTH, N; VATH, Charles J et al.Materials characterization. 2005, Vol 54, Num 1, pp 93-95, issn 1044-5803, 3 p.Article

Coarse slip bands and the transition to macroscopic shear bandsDAO, M; ASARO, R. J.Scripta metallurgica et materialia. 1994, Vol 30, Num 6, pp 791-796, issn 0956-716XArticle

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