Fatigue design and reliability /
This volume represents a selection of papers presented at the Third International Symposium on Fatigue Design, Fatigue Design 1998, held in Espoo, Finland, 26-29 May, 1998. One objective of this symposium series was to help bridge the gap that sometimes exists between researchers and engineers respo...
Clasificación: | Libro Electrónico |
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Autores Corporativos: | , |
Otros Autores: | , |
Formato: | Electrónico Congresos, conferencias eBook |
Idioma: | Inglés |
Publicado: |
Amsterdam ; New York :
Elsevier,
1999.
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Colección: | ESIS publication ;
23. |
Temas: | |
Acceso en línea: | Texto completo Texto completo |
Tabla de Contenidos:
- Selected papers: Fatigue design and reliability in the automotive industry (J-J. Thomas <IT>et al.</IT>). Reliability based fatigue design of maintained welded joints in the side shell of tankers (C. Guedes Soares, Y. Garbatov). A method for uncertainty quantification in the life prediction of gas turbine components (K. Lodeby <IT>et al.</IT>). The probability of success using deterministic reliability (K. Wallin). Fatigue life evaluation of grey cast iron machine components under variable amplitude loading (R. Rabb). Increase of reliability of aluminium space-frame structures by the use of hydroformed T-fittings (C. Kunz <IT>et al.</IT>). Fatigue strength of L610-P wing-fuselage attachment lug made of glare 2 fibre-metal laminate (A. Vasek <IT>et al.</IT>). Reliable design of fatigue of bonded steel sheet structures (H. Stensi�o <IT>et al.</IT>). Welding and TIG dressing induced residual stresses
- relaxation and influence on fatigue strength of spectrum loaded weldments (L. Lopez Martinez <IT>et al.</IT>). Material testing for fatigue design of heavy-duty gas turbine blading with film cooling (Y. Pan <IT>et al.</IT>). Consideration of crack propagation behaviour in the design of cyclic loaded structures (W. Fricke, A. M�uller-Schmerl). Effects of initial cracks and firing environment on cannon fatigue life (J.H. Underwood, M.J. Audino). Weight functions and stress intensity factors for embedded cracks subjected to arbitrary mode I stress fields (G. Glinka, W. Reinhardt). A modified fracture-mechanics method for the prediction of fatigue failure from stress concentrations in the engineering components (D. Taylor). Fatigue resistance and repairs of riveted bridge members (A. Bassetti <IT>et al.</IT>). The similitude of fatigue damage principle: application in S-N curves-based fatigue design (S.V. Petinov <IT>et al.</IT>). Probabilistic fracture mechanics approach for reliability assessment of welded structures of earthmoving machines (H. Jakubczak).