[1] |
R.C. Reed, C.M.F. Rae, in Physical Metallurgy, ed. by D.E. Laughlin, K. Hono (Elsevier, Oxford, 2014), p. 2215
|
[2] |
T.M. Pollock, S. Tin, J. Propuls, Power 22, 361 (2006)
|
[3] |
T. Murakumo, T. Kobayashi, Y. Koizumi, H. Harada, Acta Mater. 52, 3737 (2004)
|
[4] |
M.V. Nathal, R.A. MacKay, R.V. Miner, Metall. Trans. A 20, 133 (1989)
|
[5] |
M.V. Nathal, Metall. Trans. A 18, 1961 (1987)
|
[6] |
P. Caron, T. Khan, Mater. Sci. Eng. 61, 173 (1983)
|
[7] |
J.L. Liu, T. Jin, J.J. Yu, X.F. Sun, H.R. Guan, Z.Q. Hu, Mater. Sci. Eng. A 527, 890 (2010)
|
[8] |
M.V. Acharya, G.E. Fuchs, Mater. Sci. Eng. A 381, 143 (2004)
|
[9] |
S. Meher, M.C. Carroll, T.M. Pollock, L.J. Carroll, Mater. Des. 140, 249 (2018)
|
[10] |
Z. Zhu, L. Höglund, H. Larsson, R.C. Reed, Acta Mater. 90, 330 (2015)
|
[11] |
A. Baldan, J. Mater. Sci. 37, 2379 (2002)
|
[12] |
Z. Zhu, H. Basoalto, N. Warnken, R.C. Reed, Acta Mater. 60, 4888 (2012)
|
[13] |
R.A. Mackay, M.V. Nathal, Acta Metall. Mater. 38, 993 (1990)
|
[14] |
A.M. Ges, O. Fornaro, H.A. Palacio, Mater. Sci. Eng. A 458, 96 (2007)
|
[15] |
S. Sadiq, D.R.F. West, Scr. Metall. 19, 833 (1985)
|
[16] |
J. Lapin, M. Gebura, T. Pelachova, M. Nazmy, Kovove Mater. Metall. Mater. 46, 313 (2008)
|
[17] |
C. Ai, X.B. Zhao, J. Zhou, H. Zhang, L. Liu, Y.L. Pei, S.S. Li, S.K. Gong, J. Alloys Compd. 632, 558 (2015)
|
[18] |
A.F. Giamei, D.L. Anton, Metall. Trans. A 16, 1997 (1985)
|
[19] |
N. Matan, Dissertation, University of Cambridge, 1999
|
[20] |
F.H. Liu, Dissertation, Central Iron and Steel Research Institute, 2017
|
[21] |
S. Liu, C. Liu, L. Ge, X. Zhang, T. Yu, P. Yan, C. Wang, Scr. Mater. 138, 100 (2017)
|
[22] |
H. Ur-Rehman, Dissertation, FAU University, 2016
|
[23] |
A. Janotti, M. Krčmar, C.L. Fu, R.C. Reed, Phys. Rev. Lett. 92, 085901 (2004)
|
[24] |
Y. Huang, Z. Mao, R.D. Noebe, D.N. Seidman, Acta Mater. 121, 288 (2016)
|
[25] |
H. Long, H. Wei, Y. Liu, S. Mao, J. Zhang, S. Xiang, Y. Chen, W. Gui, Q. Li, Z. Zhang, X. Han, Acta Mater. 120, 95 (2016)
|
[26] |
D. Qi, L. Wang, P. Zhao, L. Qi, S. He, Y. Qi, H. Ye, J. Zhang, K. Du, Scr. Mater. 167, 71 (2019)
|
[27] |
S. Tang, L.K. Ning, T.Z. Xin, Z. Zheng, J. Mater. Sci. Technol. 32, 172 (2016)
|
[28] |
A. Epishin, T. Link, G. Nolze, J. Microsc. Oxf. 228, 110 (2007)
|
[29] |
R.C. Reed, Superalloys: Foundations and Applications, 2nd edn. ( Cambridge University Press, Cambridge, 2006), p. 154
|
[30] |
I.M. Lifshitz, V.V. Slyozov, J. Phys. Chem. Solids 19, 35 (1961)
|
[31] |
C. Wagner, Z. Electrochem. 65, 581 (1961)
|
[32] |
Y. Wu, Y. Liu, C. Li, X. Xia, J. Wu, H. Li, J. Alloys Compd. 771, 526 (2019)
|
[33] |
Y. Zhang, Q. Wang, H.G. Dong, C. Dong, H.Y. Zhang, X.F. Sun, Acta Metall. Sin. (Engl. Lett.) 31, 127 (2018)
|
[34] |
C.G. Garay-Reyes, S.E. Hernández-Martínez, J.L. Hernández-Rivera, J.J. Cruz-Rivera, E.J. Gutiérrez-Castañeda, H.J. Dorantes-Rosales, J. Aguilar-Santillan, R. Martínez-Sánchez, Met. Mater. Int. 23, 298 (2017)
|
[35] |
T. Wang, G. Sheng, Z.K. Liu, L.Q. Chen, Acta Mater. 56, 5544 (2008)
|
[36] |
H.A. Calderon, P.W. Voorhees, J.L. Murray, G. Kostorz, Acta Metall. Mater. 42, 991 (1994)
|
[37] |
A.J. Ardell, Interface Sci. 3, 119 (1995)
|
[38] |
T. Hirata, D.H. Kirkwood, Acta Metall. 25, 1425 (1977)
|
[39] |
X. Li, N. Saunders, A.P. Miodownik, Metall. Mater. Trans. A 33, 3367 (2002)
|
[40] |
B. Sonderegger, E. Kozeschnik, Metall. Mater. Trans. A 40, 499 (2009)
|
[41] |
M.S.A. Karunaratne, P. Carter, R.C. Reed, Mater. Sci. Eng. A 281, 229 (2000)
|
[42] |
E.A. Brandes, G. Brook, Smithells Metals Reference Book (Elsevier, Oxford, 2013)
|
[43] |
S. Gorgannejad, E.A.E. Rodas, R.W. Neu, Mater. High Temp. 33, 291 (2016)
|
[44] |
P. Beardmore, Trans. AIME 245, 1537 (1969)
|
[45] |
M.V. Nathal, R.A. MacKay, R.G. Garlick, Mater. Sci. Eng. 75, 195 (1985)
|
[46] |
H. Predel, R. Börnstein, Phase Equilibria, Crystallographic and Thermodynamic Data of Binary Alloys (Springer, Berlin, 1991)
|
[47] |
N. Wanderka, U. Glatzel, Mater. Sci. Eng. A 203, 69 (1995)
|