Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Chan, Kwai S
2002.
Modeling creep behavior of niobium silicide in-situ composites.
Materials Science and Engineering: A,
Vol. 337,
Issue. 1-2,
p.
59.
Yang, Y
Chang, Y.A
Zhao, J.-C
and
Bewlay, B.P
2003.
Thermodynamic modeling of the Nb–Hf–Si ternary system.
Intermetallics,
Vol. 11,
Issue. 5,
p.
407.
Zelenitsas, K.
and
Tsakiropoulos, P.
2006.
Study of the role of Ta and Cr additions in the microstructure of Nb–Ti–Si–Al in situ composites.
Intermetallics,
Vol. 14,
Issue. 6,
p.
639.
Yang, Y.
Bewlay, B.P.
and
Chang, Y.A.
2007.
Thermodynamic modeling of the Hf–Ti–Si ternary system.
Intermetallics,
Vol. 15,
Issue. 2,
p.
168.
Thandorn, T.
and
Tsakiropoulos, P.
2010.
Study of the role of B addition on the microstructure of the Nb-24Ti-18Si-8B alloy.
Intermetallics,
Vol. 18,
Issue. 5,
p.
1033.
Wu, Meiling
Li, Shusuo
and
Han, Yafang
2012.
Effect of rotation mode on microstructure and mechanical properties of directionally solidified Nb-Silicon based alloys.
Procedia Engineering,
Vol. 27,
Issue. ,
p.
1179.
Gang, F.
and
Heilmaier, M.
2014.
Influence of Directional Solidification on the Creep Properties of a Binary NbSi Eutectic Alloy.
JOM,
Vol. 66,
Issue. 9,
p.
1908.
Zhao, Jiang
Utton, Claire
and
Tsakiropoulos, Panos
2020.
On the Microstructure and Properties of Nb-18Si-6Mo-5Al-5Cr-2.5W-1Hf Nb-Silicide Based Alloys with Ge, Sn and Ti Additions (at.%).
Materials,
Vol. 13,
Issue. 20,
p.
4548.
Zhao, Jiang
Utton, Claire
and
Tsakiropoulos, Panos
2020.
On the Microstructure and Properties of Nb-12Ti-18Si-6Ta-5Al-5Cr-2.5W-1Hf (at.%) Silicide-Based Alloys with Ge and Sn Additions.
Materials,
Vol. 13,
Issue. 17,
p.
3719.
Svetlov, I. L.
Karpov, M. I.
Stroganova, T. S.
Zaitsev, D. V.
and
Artemenko, Yu. V.
2020.
High-Temperature Creep of Nb–Si In Situ Composites.
Russian Metallurgy (Metally),
Vol. 2020,
Issue. 4,
p.
396.
Thandorn, Tophan
and
Tsakiropoulos, Panos
2021.
The Effect of Boron on the Microstructure and Properties of Refractory Metal Intermetallic Composites (RM(Nb)ICs) Based on Nb-24Ti-xSi (x = 16, 17 or 18 at.%) with Additions of Al, Cr or Mo.
Materials,
Vol. 14,
Issue. 20,
p.
6101.
Thandorn, Tophan
and
Tsakiropoulos, Panos
2021.
On the Microstructure and Properties of Nb-Ti-Cr-Al-B-Si-X (X = Hf, Sn, Ta) Refractory Complex Concentrated Alloys.
Materials,
Vol. 14,
Issue. 24,
p.
7615.
Tsakiropoulos, Panos
2022.
Refractory Metal Intermetallic Composites, High-Entropy Alloys, and Complex Concentrated Alloys: A Route to Selecting Substrate Alloys and Bond Coat Alloys for Environmental Coatings.
Materials,
Vol. 15,
Issue. 8,
p.
2832.
Tsakiropoulos, Panos
2023.
On the Nb5Si3 Silicide in Metallic Ultra-High Temperature Materials.
Metals,
Vol. 13,
Issue. 6,
p.
1023.