PSI - Issue 42

P. Ferro et al. / Procedia Structural Integrity 42 (2022) 259–269 P. Ferro et al./ Structural Integrity Procedia 00 (2022) 000 – 000

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Mitrica, D., Badea, I.C., Serban, B.A., Olaru, M.T., Vonica, D., Burada, M., Piticescu, R.-R., Popov, V.V. 2021. Complex Concentrated Alloys for Substitution of Critical Raw Materials in Applications for Extreme Conditions. Materials 14(5), 1197 Pollock, M.T., Sammy, T. 2006. Nickel-Based Superalloys for Advanced Turbine Engines: Chemistry, Microstructure, and Properties. Reed, R.C. 2006. The superalloys: fundamentals and applications, Cambridge University Press, 2006. Siwek, A., Rońda, J., Banaś, K., Cybulka, P., Michalik, K., Płaszewski, P. 2013. Modeling of Inconel 625 TIG welding process. Computer Methods in Materials Science 13(1)| 181-187. Solomon, A.S., Aravinthan, G., Deepak, R., Kishore Kumar, M., Anantha Padmanaban, M.R. 2018. Simulation and Modeling of the Effect of Welding Process Parameters of Inconel 625. International Journal of Engineering Research & Technology, 6(7) 1-6. Thejasree, P., Manikandan, N., Binoj, J.S., Varaprasad, K.C., Palanisamy, D., Raju, R. 2021. Numerical simulation and experimental investigation on laser beam welding of Inconel 625. Materials Today: Proceedings 39 268 – 273. Thompson, E.G., Nunez, S., Prager, M. 1968. Practical solutions to strain-age cracking of Rene 41. Weld. J. 47 299 – 313. Viswanathan, R., Henry, J.F., Tanzosh, J., Stanko, G., Shingledecker, J., Vitalis, B., and Purgert, R. 2005. U.S. program on materials technology for ultra-supercritical coal power plants. J. Mater. Eng. Perform. 14 281 – 92.

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