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Effects of grain size and dislocation density on the susceptibility to high-pressure hydrogen environment embrittlement of high-strength low-alloy steelsTAKASAWA, Koichi; IKEDA, Ryo; ISHIKAWA, Noboru et al.International journal of hydrogen energy. 2012, Vol 37, Num 3, pp 2669-2675, issn 0360-3199, 7 p.Article

Sulfur segregation and intergranular fracture in α-ironHEO, N. H.Scripta materialia. 2004, Vol 51, Num 4, pp 339-342, issn 1359-6462, 4 p.Article

Possibility of prevention of the grain boundary disintegration of cadmium during creepSAVITSKIJ, A.P; CHUKHLANTSEVA, I.S.Metallovedenie i termičeskaâ obrabotka metallov. 1985, Vol 31, Num 6, pp 42-44, issn 0026-0819Article

Multiscale modeling of intergranular fracture in aluminum : constitutive relation for interface debondingYAMAKOV, V; SAETHER, E; GLAESSGEN, E. H et al.Journal of materials science. 2008, Vol 43, Num 23-24, pp 7488-7494, issn 0022-2461, 7 p.Conference Paper

Evaluation method of sensitivity of hydrogen embrittlement for high strength boltsHAM, Jong-Oh; JANG, Yo-Han; LEE, Geun-Pil et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2013, Vol 581, pp 83-89, issn 0921-5093, 7 p.Article

Deformation twins in nanocrystalline body-centered cubic Mo as predicted by molecular dynamics simulationsYONGFENG ZHANG; MILLETT, Paul C; TONKS, Michael et al.Acta materialia. 2012, Vol 60, Num 18, pp 6421-6428, issn 1359-6454, 8 p.Article

The development of microstructural damage during high temperature creep-fatigue of a nickel alloyCARROLL, L. J; CABET, C; CARROLL, M. C et al.International journal of fatigue. 2013, Vol 47, pp 115-125, issn 0142-1123, 11 p.Article

Grain boundary segregation and fractureFAULKNER, R. G.Zeitschrift für Metallkunde. 2005, Vol 96, Num 10, pp 1213-1218, issn 0044-3093, 6 p.Article

Effect of carbon on the hydrogen induced grain boundary fracture in ironKIMURA, A; KIMURA, H.Nippon Kinzoku Gakkaishi (1952). 1983, Vol 47, Num 10, pp 807-813, issn 0021-4876Article

Effects of intergranular carbide precipitation on delayed fracture behavior in three TWinning Induced Plasticity (TWIP) steelsSEOKMIN HONG; JUNGHOON LEE; LEE, Byeong-Joo et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2013, Vol 587, pp 85-99, issn 0921-5093, 15 p.Article

Corrosion fatigue crack initiation in 12% chromium stainless steelEBARA, Ryuichiro.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2007, Vol 468-470, pp 109-113, issn 0921-5093, 5 p.Conference Paper

Prediction of creep―fatigue crack growth rates in inert and active environments in an aluminium alloyHENAFF, G; ODEMER, G; BENOIT, G et al.International journal of fatigue. 2009, Vol 31, Num 11-12, pp 1943-1951, issn 0142-1123, 9 p.Conference Paper

Roles of structure-dependent hardening at grain boundaries and triple junctions in deformation and fracture of molybdenum polycrystalsKOBAYASHI, Shigeaki; TSUREKAWA, Sadahiro; WATANABE, Tadao et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2008, Vol 483-84, pp 712-715, issn 0921-5093, 4 p.Conference Paper

Effect of strain rate and specimen size on intergranular fracture of Si-rich Al―Mg―Si alloy sheetsKINOSHITA, Katsuyuki; KOMURA, Yoshifumi; OSAKI, Shuhei et al.Keikinzoku. 2010, Vol 60, Num 12, pp 635-640, issn 0451-5994, 6 p.Article

Effects of alloy compositions on hydrogen embrittlement of Al-Mg-Si based alloysANDO, Makoto; KANNO, Motohiro; ICHITANI, Koji et al.Keikinzoku. 2009, Vol 59, Num 2, pp 81-86, issn 0451-5994, 6 p.Article

Hot Ductility of Sulfur-containing Low Manganese Mild Steels at High Strain RateKIZU, Taro; URABE, Toshiaki.ISIJ international. 2009, Vol 49, Num 9, pp 1424-1431, issn 0915-1559, 8 p.Article

Environmental embrittlement of Al-Mg-Si alloys in airANDOH, Makoto; ASAKURA, Kentaroh; KANNO, Motohiro et al.Keikinzoku. 2005, Vol 55, Num 10, pp 468-472, issn 0451-5994, 5 p.Article

Fragilização intergranular de ferros fundidos de alta ductilidade = Fragilisation intergranulaire de fonts maclées à haute ductilité = Intergranular embrittlement of high ductility cast ironsGUESSER, W. L; KRAUSE, W; PIESKE, A et al.Metalurgia ABM. 1984, Vol 40, Num 322, pp 485-490, issn 0026-0983Article

Fatigue of Cu-1 Pct Cd = Ermuedung von Cu-1% CdBEHNOOD, N; EVANS, J.T.Metallurgical transactions. A, Physical metallurgy and materials science. 1983, Vol 14A, Num 7, pp 1327-1332, issn 0360-2133Article

Intergranular fracture of a high purity iron due to oxygen = Rupture intergranulaire due à l'oxygène dans un fer de haute puretéMATSUI, H; KIMURA, H.Transactions of the Japan institute of metals. 1983, Vol 24, Num 8, pp 539-547, issn 0021-4434Article

The relationship between the fracture toughness and grain boundary characteristics in hot-dip galvanized zinc coatingsVINCENT, G; BONASSO, N; LECOMTE, J. S et al.Journal of materials science. 2006, Vol 41, Num 18, pp 5966-5975, issn 0022-2461, 10 p.Article

A rationalization of factors affecting strength, ductility and toughness of AA6061-type Al-Mg-Si-(Cu) alloysDORWARD, R. C; BOUVIER, C.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 1998, Vol 254, Num 1-2, pp 33-44, issn 0921-5093Article

Intergranular fracture of low-alloy cast steelLI, C; GUANGYING, Z.Materials characterization. 1996, Vol 36, Num 2, pp 65-72, issn 1044-5803Article

Random and non-random fractal analyses of fractured surfacesHUI SU; LENG CHEN; ZHENQI YAN et al.Journal of physics. D, Applied physics (Print). 1993, Vol 26, Num 2, pp 203-208, issn 0022-3727Article

The effect of cerium additions on the tensile ductility of nickel-chromium-cerium alloys = Effet d'additions de cérium sur la ductilité en traction d'alliages nickel-chrome-cériumKANDRA, J; COSANDEY, F.Scripta metallurgica. 1985, Vol 19, Num 4, pp 397-400, issn 0036-9748Article

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