High Temperature Materials


Organisation:
Lehrstuhl für Werkstoffwissenschaften (Werkstoffkunde und Technologie der Metalle)

FAU Contact:
Körner, Carolin Prof. Dr.-Ing.

Description:


Our research focuses on material development and process technology (investment casting and powder injection molding) of high temperature alloys, in particular Nickel-base superalloys.


Related Project(s)

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(Ein neue Generation einkristalliner Superlegierungen: Vom Atom zur Turbinenschaufel – Festigkeitssteigernde Elementarprozesse, verfahrenstechnische Grundlagen u. skalenübergreifende Modellierung):
SFB/TRR 103 (C07): Multi-criteria calculation of optimum compositions for single crystal superalloys
Prof. Dr.-Ing. Carolin Körner; Dr.-Ing. Matthias Markl
(01/01/2016 - 31/12/2019)
MatSim: High temperature single crystal and materials simulation
Prof. Dr.-Ing. Robert Singer
(21/07/2014 - 30/11/2017)
Advanced MIM-Technologies for Engine Applications
Prof. Dr.-Ing. Robert Singer
(01/03/2013 - 31/07/2017)
BiTaNi: Design and system integration of Multimaterial bliscrotors in future aerocraft engines
Prof. Dr.-Ing. Robert Singer
(01/10/2012 - 30/09/2016)
Relationship between microstructure and mechanical properties of the nickel base superalloy Allvac®718Plus®, especially the creep behavior, taking into account long-term stability and location-dependent properties
Prof. Dr. Mathias Göken; Prof. Dr.-Ing. Robert Singer
(01/01/2012 - 30/12/2014)



Assigned publications

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Zhang, J., & Singer, R. (2004). Effect of Zr and B on castability of Ni-based superalloy IN792. Metallurgical and Materials Transactions A-Physical Metallurgy and Materials Science, 4, 1337-1342.
Volek, A., & Singer, R. (2004). Influence of solidification conditions on TCP phase formation, casting porosity and high temperature mechanical properties in a Re-containing nickel-base superalloy with columnar grain structure. In K. Green, H. Harada, T.E. Howson, T.M. Pollock, R.C. Reed, J.J. Schirra, S. Walston (Eds.), Superalloys 2004: Proceedings of the 10th Intenational Symposium of Superalloys (pp. 713-718). Seven Springs, US: Minerals, Metals and Materials Society.
Quadbeck, P., Kaschta, J., & Singer, R. (2004). Superalloy IN625 with cellular microstructure - Fabrication route and mechanical properties. Advanced Engineering Materials, 6(8). https://dx.doi.org/10.1002/adem.200400054
Zhang, J., & Singer, R. (2002). Effect of hafnium on castability of directionally solidified nickel-base superalloys. Zeitschrift für Metallkunde, 93, 806-811.
Volek, A. (2002). Erstarrungsmikrostruktur und Hochtemperatureigenschaften rheniumhaltiger, stängelkristalliner Nickel-Basis-Superlegierungen (Dissertation).
Lohmüller, A. (2002). Gerichtete Erstarrung mittels Flüssigmetallkühlung - Verfahrensoptimierung und Parametereinflüsse (Dissertation).
Zhang, J., & Singer, R. (2002). Hot tearing of nickel-based superalloys during directional solidification. Acta Materialia, 50, 1869-1879. https://dx.doi.org/10.1016/S1359-6454(02)00042-3
Pfennig, A. (2001). Mikrostruktur und Eigenschaften keramischer Formmassen im Feinguss (Dissertation).
Lohmüller, A., Eßer, W., Großmann, J., Hördler, M., Preuhs, J., & Singer, R. (2000). Improved Quality and Economics of Investment Castings by Liquid Metal Cooling Media - The Selection of Cooling Media. In K. Green, T. M. Pollock, R. Kissinger, R.R. Bowman, K.A. Green, M. McLean, S. Olson, J.J. Schirra (Eds.), Superalloys 2000: Proceedings of the 9th Intenational Symposium of Superalloys (pp. 181-188). Seven Springs, US: Warrendale: TMS.
Heck, K., Blackford, J., & Singer, R. (1999). Castability of directionally solidified nickel base superalloys. Materials Science and Technology, 15(2), 213-220.

Last updated on 2019-15-07 at 10:17