Some Calculations to Assess the Effect of the Stress-Strain rate Relationship on Creep in the Neighbourhood of An Opening in a Pressurized thin Spherical Shell
- 1 June 1967
- journal article
- research article
- Published by SAGE Publications in Journal of Mechanical Engineering Science
- Vol. 9 (3) , 198-210
- https://doi.org/10.1243/jmes_jour_1967_009_032_02
Abstract
Calculations were performed on a pressurized thin spherical shell with a sealed opening for material obeying a simple r-power steady creep law; they were done by an iterative procedure on an IBM 7090 computer. The results, in terms of stress resultant distributions and deformation patterns in the neighbourhood of the opening for different edge load boundary conditions, were examined critically with a view to detecting simple overall patterns of behaviour which are a function of the creep index r. Examination of the results from two different points of view leads to the conclusions that stress concentration factors vary smoothly and almost linearly with 1/ r and that deformation patterns are practically independent of r, for the same edge load boundary conditions. The strain rate concentration factors may be very high. The consequences of these conclusions are examined in the context of the design process.Keywords
This publication has 6 references indexed in Scilit:
- On the Design of Reinforcement for Openings and Nozzles in thin Spherical Pressure VesselsJournal of Mechanical Engineering Science, 1966
- The limit pressure for a flush cylindrical nozzle in a spherical pressure vesselInternational Journal of Mechanical Sciences, 1964
- Nesting surfaces of constant rate of energy dissipation in creepQuarterly of Applied Mathematics, 1962
- The Mises yield condition for rotationally symmetric shellsQuarterly of Applied Mathematics, 1961
- Approximate analysis of structures in the presence of moderately large creep deformationsQuarterly of Applied Mathematics, 1954
- Creep under Complex Stress Systems at Elevated TemperaturesProceedings of the Institution of Mechanical Engineers, 1951