Pressure Vessel Technology: Materials, fabrication, and inspection
American Society of Mechanical Engineers, 1973 - Pressure vessels
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acoustic emission analysis applied ASME axial base metal beam behavior bending brittle fracture calculated circumferential Code concentration factor constant crack growth crack initiation crack length crack propagation crack tip cylinder deformation diameter displacement ductile effect elastic-plastic electron beam welding equation evaluation experimental fatigue crack fatigue strength fatigue tests finite element method flaw Fracture Mechanics fracture toughness gage geometry header hoop stress increase internal pressure limit linear elastic longitudinal low-cycle fatigue material maximum measured nominal stress notch number of cycles obtained parameters percent plane strain plastic predicted pressure vessel pressure vessel models ratio residual stresses shear stress shell shown in Fig shows static strain concentration strain range stress amplitude stress concentration stress intensity factor structure surface Table temperature tensile test results test specimens tion transducer tube tubeplate ultrasonic velocity wall thickness weld metal welded joints wide plate tests yield strength yield stress