Issue 50

L. Romanin et al., Frattura ed Integrità Strutturale, 50 (2019) 251-263; DOI: 10.3221/IGF-ESIS.50.21 263 [21] Lacki, P., Adamus, K., Wieczorek, P. (2014). Theoretical and experimental analysis of thermo-mechanical phenomena during electron beam welding process, Comput. Mater. Sci., , pp. 1–10, DOI: 10.1016/j.commatsci.2014.01.027. [22] Palmer, T.A., Elmer, J.W., Debroy, T. (2009). Heat Transfer and Fluid Flow during Electron Beam Welding of 304L Stainless Steel Alloy, ABSTRACT, 88(March). [23] Nie, P., Ojo, O.A., Li, Z. (2014). Numerical modeling of microstructure evolution during laser additive manufacturing of a nickel-based superalloy, Acta Mater., DOI: 10.1016/j.actamat.2014.05.039. [24] Kunidin, L. Mushongera, H.E. (2015). Acta Mater. 95, pp. 343–356. [25] Bylya, O., Reshetov, A., Stefani, N., Rosochowska, M., Blackwell, P. (2017). Applicability of JMAK-type model for predicting microstructural evolution in nickel-based superalloys, Procedia Eng., 207, pp. 1105–1110. [26] Reshetov, A., Bylya, O., Stefani, N., Rosochowska, M., Blackwell, P. (2016). An Approach to Microstructure Modelling in Nickel Based Superalloys. Superalloys 2016. [27] Masoumi, F., Shahriari, D., Jahazi, M., Cormier, J., Devaux, A. (2016). Kinetics and Mechanisms of γ′ Reprecipitation in a Ni-based Superalloy, Sci. Rep., 6, pp. 28650. [28] Choudhury, B., Chandrasekaran, M. (2017). Investigation on welding characteristics of aerospace materials--A review, Mater. Today Proc., 4(8), pp. 7519–7526. [29] Ferro, P. (2013). A dissolution kinetics model and its application to duplex stainless steels, Acta Mater., 61(9), pp. 3141–3147, DOI: 10.1016/j.actamat.2013.01.034. [30] Voort, G.F. Vander., Bowman, J.W., Frank, R.B. (1994). Microstructural Characterization of Custom Age 625 Plus Alloy, pp. 489–498. [31] Souloumiac, B., Boitout, F., Bergheau, J.M. (2002). A New Local-Global Approach for the Modelling of Welded Steel Components Distortions, Math. Model. Weld Phenom., 6, pp. 573–590. [32] Cabibbo, M., Gariboldi, E., Spigarelli, S., Ripamonti, D. (2007). Caratterizzazione dell’ evoluzione microstrutturale di una lega Ni-22Cr-12Co-9Mo A 700 E 800 °C, pp. 41–50. [33] Mu, Y., Wang, C., Zhou, W., Zhou, L. (2018). Effect of Nb on δ Phase Precipitation and the Tensile Properties in Cast Alloy IN625, , pp. 1–9, DOI: 10.3390/met8020086. [34] DuPont, J.N., Lippold, J.C., Kiser, S.D. (2009). Welding Metallurgy and Weldability of Nickel-Base Alloys.

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