Prediction of Creep Rupture of Pressure Vessels

Author:

Bergheau Jean-Michel1,Devaux Josette2,Mottet Ge´rard2,Gilles Philippe3

Affiliation:

1. LTDS, UMR 5513, CNRS/ECL/ENISE, 42023 Saint Etienne Cedex 2, France

2. ESI France, 69485 Lyon Cedex 03, France

3. Framatome, Tour Framatome, 92084 Paris La De´fense Cedex, France

Abstract

Predictions of creep rupture of a reactor pressure vessel in a severe hypothetical accident needs to accurately take into account the interactions between creep and damage phenomena. This paper presents an approach based on a model coupling elasto-visco-plasticity and damage, formulated within the framework of continuous damage theory. The model and its implementation in a finite element software are presented and special attention is devoted to the procedure enabling the identification of the parameters of the model. The approach is validated on two tests of the program “RUPTHER” which concerns A508 cl3 steel cylinder and on the EC-FOREVER experiment (A533 steel mockup) developed as part of the European Commission Program “Assessment of Reactor Vessel Integrity.”

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference14 articles.

1. Bhandari, S., Feral, X., Bergheau, J. M., Mottet, G., Dupas, P., and Nicolas, L., 2000, “Creep-Damage Analysis: Comparison Between Coupled and Uncoupled Models,” ASME J. Pressure Vessel Technol., 122, pp. 408–412.

2. Kachanov, L. M., 1958, “Time of the Rupture Process Under Creep Conditions,” Izv. Akad. Nauk. SSSR, Otd. Tekh. Nauk. Metall. Topl., 8, pp. 26–31.

3. Rabotnov, Y. N., 1969, Creep Problems in Structural Members, North Holland.

4. Lemaitre, J., and Chaboche, J. L., 1985, Me´canique des Mate´riaux Solides, Dunod.

5. SYSTUS®, 2002, Version 2.0, User’s Manual, ESI Group, France.

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