High Pressure Technology, 1998: Presented at the 1998 ASME/JSME Joint Pressure Vessels and Piping Conference, San Diego, California, July 26-30, 1998Leo M. Picqueur, Mansanori Kawahara, J. A. Kapp Twenty papers representing five sessions dealing with high pressure technology at the July 1998 Conference. Topics include high pressure applications--polyethylene processing; fracture mechanics analysis and experiments; high pressure analysis; large deformation analysis and deformation; and materials and applications. Contains an author index but no subject index. Annotation copyrighted by Book News, Inc., Portland, OR |
Contents
Stress Analysis of Flanged Joint in Tubular Polyethylene Reactor | 1 |
Optimization of a Polyethylene Secondary Compressor Valve | 9 |
ElasticPlastic Finite Element Analysis of High Pressure Components | 17 |
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analysis ASME autofrettage pressure autofrettaged cylinder axial load bellows calculated carbon steel carbon steel pipes circumferential crack component compressive residual stresses compressive stress convolution crack angle crack growth rate crack initiation crack length crack penetration crack propagation crack velocity cross-bore curve cycles displacement ductile elastic elastic-plastic equation equivalent stress eroded depth evaluated experimental fatigue LBB condition finite element finite element analysis flange flaws fracture behavior fracture mechanics High Pressure Technology hoop stress initial crack Inner crack inner surface crack internal pressure lens ring liner Load Step material maximum notch obtained optimization Outer crack parameter plastic collapse plastic strain Pressure Vessel PVP-Vol radius ratio residual stresses shown in Figure shows SHPB specimen statically indeterminate strain rate stress distribution stress intensity factor suction valve seat technique temperature tensile stress thick-walled cylinder TOFD torsion tube wall thickness wall thinning weld yield strength Yokohama National University