Development and application of a photoelasto-plastic method to study stress distributions in vicinity of a simulated crack
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aluminum alloy birefringence curves Calibration Curve Calibration Specimen Centrally Located Hole centrally located simulated Configuration containing centrally located cr cr cr cr stresses crack length critical temperature Curve for Thermal Curves for Epoxy Curves for Polycarbonate diethanolamine disk Distance Fro7 Distance From Crack effective stress-strain curve elastic phase elastic stress distribution elastic-plastic boundary Elasto-Plastic Stress Distributions Epoxy Material Batch epoxy resin experimental Factors for Various Figure Fracture Surface fringe order Fro7 Crack Tip frozen stress function gage length heating-and-cooling rates Hydraulic Ram Inches Levels of Plasticity located simulated cracks maximum temperature measured midplane slice Neuber Non-Dimensionalized Stress-Strain Curves nondimensionalized Penetration Through Thickness photoelastic photoelasto-plastic method plane stress Plastic Zone Penetration plate thickness plates containing centrally plates with centrally polariscope Polycarbonate Batch polycarbonate material shown in Fig strain curves Strain-Birefringence Curves stress concentration factors thermal cycle consisting Thick Infinite Plate thick plates thick-plate models Various Levels Various Thermal Cycles