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Analysis of Cracked Plates and Shells and its Application in Engineering
W S Johnson 897
Fatigue Crack Growth and Crack Closure Behavior of the CrNiMo Steels at Negative Stress
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applied ASTM axial behavior bending boundary conditions brittle calculated components compression computed constant crack arrest crack extension crack front crack growth crack initiation crack length crack propagation crack tip CTOD cylindrical deformation density determined dislocation distribution ductile fracture dynamic fracture toughness effect elastic elastic-plastic fracture Engineering evaluated experimental finite element analysis finite element method fracture mechanics fracture toughness geometry hardening exponent impact increase J-integral J-R curve Kobayashi ligament linear linear elastic measured Mech method microcrack mode modulus normal nucleation numerical obtained opening displacement parameter plane strain plane stress plastic strain plastic zone plate predicted problem ratio region shear shear stress shell shown in Fig shows singular Solids solution specimen static steel strain energy strain hardening strain rate stress field stress intensity factor stress-strain structural surface technique temperature tensile tension theory thickness three-dimensional values void weight function weld metal weldment yield stress