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Effects of Overload on Hydrogen Sulphide Cracking
Influence of Grain Size on the Fracture of Aluminum Alloys
70 other sections not shown
alloys behaviour brittle fracture calculated cementite cleavage crack cleavage fracture crack growth crack initiation crack nucleation crack propagation crack tip criterion crystals curves decreasing diameter dimples dislocation ductile ductile fracture effect elastic embrittlement energy equation EXPERIMENTAL failure fatigue crack ferrite fractographic fracture mechanisms fracture mode fracture process fracture strength fracture stress fracture surface fracture toughness grain boundary grain size hardening heat treatment hydrogen inclusions increase interface intergranular fracture investigation lath packet load martensite material matrix measured Mech mechanical properties Metals micro microcrack microscopic microstructure notch nucleation observed occurs parameter particles pearlite phase plane strain plastic deformation plastic zone precipitate prestrain prior austenite grain ratio room temperature scanning electron segregation shear shown in Figure shows slip bands solution steel stress intensity structure tensile specimens tensile tests Trans transition temperature twin values void volume fraction yield strength yield stress