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Results 1 to 25 of 571

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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

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

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

Slip-band propagation at the tip of an edge crack during plastic deformationSAVRUK, M. P; DANILOVICH, A. M.International applied mechanics. 1994, Vol 30, Num 1, pp 48-52, issn 1063-7095Article

Characterization of optical, electronic and topographic images in fatigue researchSAVARY, G; CANS, M; BASTIAN, F. L et al.Image and vision computing. 1995, Vol 13, Num 8, pp 609-622, issn 0262-8856Article

Incipient yielding at a debond crack tip under mixed mode loadingBASTERO, C; ATKINSON, C.International journal of fracture. 1988, Vol 38, Num 3, pp 193-206, issn 0376-9429Article

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

Zbigniew Stanislaw Basinski's fundamental contributions to the understanding of metal fatigueMUGHRABI, Haël.Philosophical magazine (2003. Print). 2004, Vol 84, Num 3-5, pp 259-268, issn 1478-6435, 10 p.Conference Paper

A nanotheory of the intense slip localization causing metal fatiguePEDERSEN, Ole Bøcker.Zeitschrift für Metallkunde. 2002, Vol 93, Num 8, pp 790-798, issn 0044-3093Article

Stress fields of tilted dislocation wallsSEDLACEK, R; HECKER, M.Computational materials science. 1998, Vol 11, Num 4, pp 270-276, issn 0927-0256Article

Nucleation of persistent slip bands in Cu single crystals under stress controlled cyclingMELISOVA, D; WEISS, B; STICKLER, R et al.Scripta materialia. 1997, Vol 36, Num 9, pp 1061-1066, issn 1359-6462Article

On moving dipolar dislocation wallsSEDLACEK, R.Physica status solidi. B. Basic research. 1997, Vol 201, Num 2, pp R5-R6, issn 0370-1972Article

Fatigue damage at room temperature in aluminium single crystals-II. TEMZHAI, T; MARTIN, J. W; BRIGGS, G. A. D et al.Acta materialia. 1996, Vol 44, Num 5, pp 1729-1739, issn 1359-6454Article

Dislocation patterns from reaction-diffusion modelsSALAZAR, J. M; FOURNET, R; BANAI, N et al.Acta metallurgica et materialia. 1995, Vol 43, Num 3, pp 1127-1134, issn 0956-7151Article

Elementary processes in the formation of slip bands in single crystals of α-phase Cu-Al alloysMITCHELL, J. W.Physica status solidi. A. Applied research. 1993, Vol 135, Num 2, pp 455-466, issn 0031-8965Article

Vliv primárního skluzu při creepu trikrystalu mědi na tvar zrna a vzájemné posuvy zrn na hraniciCOCHNAR, Z; ZEMCIKOVA, M; CADEK, J et al.Kovové materiály. 1991, Vol 29, Num 4, pp 241-250, issn 0023-432XArticle

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

Statistical theory of slip channels in neutron-irradiated metalsZAISER, M.Applied physics. A, Materials science & processing (Print). 1997, Vol 64, Num 6, pp 607-613, issn 0947-8396Article

On the use of nickel foil strain gages at varying temperaturesSEIKA, M; SUGIURA, M; TSUBOI, M et al.Experimental mechanics. 1996, Vol 36, Num 2, pp 113-119, issn 0014-4851Article

A disclination-based approach for mesoscopic statistical modeling of grain subdivision in niobiumSEEFELDT, M.Computational materials science. 2013, Vol 76, pp 12-19, issn 0927-0256, 8 p.Article

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