The stability of a circumferential through-wall crack in a stainless steel pipe; The cracked section is at a position where the pipe enters a larger component
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Mechanical Engineering,Condensed Matter Physics,General Materials Science
Reference5 articles.
1. Proc. Twelfth National Symp. Fracture Mechanics;Tada,1980
2. Proc. Symp. Elastic-Plastic Fracture;Paris,1979
3. The effect of nonuniform bending on the stability of circumferential growth of a through-wall crack in a pipe
4. Electric Power Research Institute Research Project T118-9;Cotter;NP-2261 Final Report,1982
5. E. Smith, “The instability of radial growth of a part-through and part-circumference circumferential crack in a stainless steel pipe subject to bending deformation”, Internat. J. Press. Vessels and Piping, to appear.
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1. The flexibility of a two-dimensional piping system that is subjected to out-of-plane deformation;Engineering Fracture Mechanics;1991-01
2. The effect of pipe bends on the elastic flexibility of a piping system;International Journal of Pressure Vessels and Piping;1991-01
3. The incorporation of earthquake loadings within a crack stability analysis for piping systems;International Journal of Pressure Vessels and Piping;1989-01
4. The effect of pipe bends on the stability of a circumferential through-wall crack in a type 304 stainless steel piping system. Exact theory accounting for axial strains in the piping segments;Engineering Fracture Mechanics;1989-01
5. The instability criterion for a circumferential through-wall crack in a bend in a stainless steel piping system: The effects of bend profile and bend angle;International Journal of Pressure Vessels and Piping;1989-01
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