Material Fracture Life Prediction Using Linear Regression Techniques Under High Temperature Creep Conditions

Author:

Fernandez Martinez RobertoORCID,Jimbert PelloORCID,Barbero Jose Ignacio,Callejo Lorena M.,Somocueto Igor

Publisher

Springer International Publishing

Reference43 articles.

1. Sachadel, U.A., Morris, P.F., Clarke, P.D.: Design of 10% Cr martensitic steels for improved creep resistance in power plant applications. J. Mater. Sci. Technol. 29(7), 767–774 (2013)

2. Morris, P.F., Sachadel, U.A., Clarke, P.D.: Design of heat treatments for 9–12% Cr steels to optimise creep resistance for power plant applications. In: Proceedings of 9th Liège Conference on Materials for Advanced Power Engineering, Liège, Belgium, pp 554–564 (2010)

3. Mayer, K.H., Bendick, W., Husemann, R.V., Kern, T., Scarlin, R.B.: International Joint Power Generation Conference, PWR, vol. 33, pp. 831–841. ASME, New York (1998)

4. Gold, M., Jaffee, R.I.: Materials for advanced steam cycles. J. Mater. Energy Syst. 6(2), 130–145 (1984)

5. Viswanathan, R., Bakker, W.: Materials for ultrasupercritical coal power plants - boiler materials: Part 1. J. Mater. Eng. Perform. 10(1), 81–95 (2001)

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1. Material Fracture Life Prediction Under High Creep Conditions Using Decision Trees and Rule-based Techniques;2022 RIVF International Conference on Computing and Communication Technologies (RIVF);2022-12-20

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