PSI - Issue 13

Florian Fehringer et al. / Procedia Structural Integrity 13 (2018) 932–938 Fehringer, F., Schuler, X., Seidenfuß, M. / Structural Integrity Procedia 00 (2018) 000 – 000

938

7

Chaboche, J.-L., Rousselier, G., 1983. On the Plastic and Viscoplastic Constitutive Equations — Part I: Rules Developed With Internal Variable Concept. Journal of Pressure Vessel Technology, Vol. 105 (2), p. 153 – 158. Chaboche, J.-L., Rousselier, G., 1983. On the Plastic and Viscoplastic Constitutive Equations — Part II: Application of Internal Variable Concepts to the 316 Stainless Steel. Journal of Pressure Vessel Technology, Vol. 105 (2), p. 159 – 164. CSA-Z662-2007, 2007. Oil and gas pipeline systems. Canadian standards association. DIN EN 13445-3, 2015. Unfired pressure vessels – Part 3: Design. DNV-OS-F101, 2012. Submarine Pipeline Systems[S]. HØvik Norway. Fehringer, F., Seidenfuß, M., Schuler, X., 2016. Experimental and numerical investigations on limit strains in ductile fracture. Structural Integrity Procedia Volume 2, 3345 – 3352. FKM-Richtlinie, 2012. Rechnerisches Festigkeitsnachweis Für Maschinenbauteile. Volume 6. Herter, K.-H., Schuler, X., Seidenfuß, M., 2012. Strain Limits for the Analysis of Mechanical Behavior of pressurized Components. Pressure Vessels & Piping Conference, Toronto. Hosford, W. F., 1972. A Generalized isotropic Yield Criterion. Journal of Applied Mechanics 39 (2). KTA 3201.2, Nuclear safety standards of KTA (Nuclear Safety Standards Commission), 2013. Komponenten des Primarkreislaufes von Leichtwasserreaktoren, Teil 2: Auslegung, Konstruktion und Berechnung. KTA 3211.2, Nuclear safety standards of KTA (Nuclear Safety Standards Commission), 2013. Druck- und aktivitätsführende Komponenten von Systemen außerhalb des Primärkreises, Teil 2: Auslegung, Konstruktion und Berechnung. Krieg, R., Seidenfuß, M., 2003. Limit Strains for Severe Accident Conditions (LISSAC). CONTRACT N° FIKS-CT1999-00012, Final Report. Kucharczyk, P., Münstermann, S., 2013. Development of safety assessment concepts for the failure behavior of ferritic steels in the brittle-to ductile region – Development of a strain-based criterion for upper transition and upper shelf behavior. Final Report, Reactor Safety Research – Project No. 150 1390 A. Lode, W., 1926. Versuche über den Einfluss der mittleren Hauptspannung auf das Fließen der Metalle Eisen Kupfer und Nickel. Zeitschrift für Physik, Volume. 36 Issue 11, 913 – 939. Nahshon, K., Hutchinson, J.W., 2008. Modification of the Gurson Model for shear failure. European Journal of Mechanics A/Solids, Volume 27, 1 – 17. Prager, W., 1949. Recent Developments in the Mathematical Theory of Plasticity. Journal of Applied Physics, Vol. 20 (3), p. 235 – 241. Rousselier, G., 1987. Ductile Fracture Models and their Potential in Local Approach of Fracture. Nuclear Engineering and Design 105, 97 – 111. Seidenfuß, M., 2012. Schädigungsmechanische Modelle zur Beschreibung des Versagensablaufs in metallischen Bauteilen. Habilitationsschrift, University of Stuttgart. Simatos, A., Krätschmer, D., Herter, K.-H., 2011. Strain Limits for the Analysis of the Mechanical Behavior of Pressurized Components. 37. MPA Seminar, Stuttgart.

Made with FlippingBook. PDF to flipbook with ease