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Development of cryogenic ferrous materials and improvement of their welding techniques in Japan
Considerations in the nuclear industry R J Slember
Materials development M G Gemmill
2 other sections not shown
analysis applied arc welding ASME code ASTM austenitic Author's reply Authors autofrettage axial base metal behaviour bending calculated circumferential components crack growth creep cryogenic curve cylindrical shell defect developed displacement ductile effect elastic elbow embrittlement engineering equation experimental failure fatigue finite element flange fracture mechanics fracture toughness geometry heat exchanger heat treatment inspection Japan kg/cm ligament efficiency load matching ferritic material maximum mechanical properties ment method N/mm notch nozzles nuclear obtained operating oversquare paper pipe plant plastic plate Poisson's ratio predicted present pressure vessels problems quenched and tempered radial ratio reactor vessel residual stress safety factor SESSION shell flange shown in Fig Si-Mn steels solution specimens strain structure stud tensioner Submerged arc welding surface techniques temperature tensile test thermal thickness tion tube tubesheet ultrasonic unperforated values weld metal welded joints weldments wide-plate Young's modulus zone