Parezanovic, I.; Poeter, B.; Spiegel, M.: B and N segregation on dual phase steel after annealing. Defect and Diffusion Forum 237 – 240, p. 934 - 934 (2005)
Parezanovic, I.; Spiegel, M.: Selective Oxidation and Surface Segregation in High Strength Steels during short term annealing in N2-H2 -Influence of B an surface chemistry. Steel Research Int. 76 (11), p. 832 - 832 (2005)
Pöter, B.; Parezanović, I.; Spiegel, M.: In-situ FE-SEM and EBSD Investigation on the Oxidation of Pure Iron. Mater. at High Temp. Proc. of Microscopy of Oxidation, pp. 9 - 18 (2005)
Parezanovic, I.; Spiegel, M.: Surface modification of various Fe-Si and Fe-Mn alloys by oxidation/reduction treatments. Surface Engineering 20, 2 (2004)
Parezanovic, I.; Strauch, E.; Spiegel, M.: Development of spinel forming alloys with improved electronic conductivity for MCFC application. Journal of Power Sources 135, pp. 52 - 61 (2004)
Spiegel, M.; Parezanovic, I.: Selective Oxidation and Segregation during Annealing of Steels. 6th International Conference on the Microscopy of Oxidation, Birmingham, UK, April 04, 2005 - April 06, 2005. Mater. at High Temp., Proc. of Microscopy of Oxidation, (2005)
Parezanovic, I.; Spiegel, M.: Influence of dew point on the selective oxidation of cold rolled DP and IF-steels. In: Proceedings of GALVATECH, pp. 401 - 409. GALVATECH, Chicago, USA. (2004)
Parezanovic, I.; Spiegel, M.: Influence of dew point on the selective oxidation of cold rolled DP and IF-steels. In: Corrosion Science in the 21th Century, 1. UMIST, Manchester, UK (2003)
Parezanovic, I.; Spiegel, M.: Surface modification of different Fe–Si and Fe–Mn alloys by oxidation/reduction treatments. In: Eurocorr 2003, 1. Eurocorr 2003, Budapest, Hungary, September 29, 2003 - October 03, 2003. (2003)
Parezanović, I.; Spiegel, M.; Strauch, E.; Grabke, H.-J.: High alloyed stainless steels containing Co, Mn, Mo, Ni, Si as possible cathode current collectors in MCFC. In: Proceedings of International Congress on Advanced Materials, pp. 1 - 8. Materials Week 2001, International Congress on Advanced Materials, München, Germany, October 01, 2001 - October 04, 2001. (2001)
Parezanovic, I.; Spiegel, M.: Selective Oxidation and Segregation during Annealing of Steels. 6th International Conference on the Microscopy of Oxidation, Birmingham, UK (2005)
Parezanovic, I.; Spiegel, M.: Influence of B, S, P, Si and C segregation on the selective oxidation of dual phase and interstitial free steels. GALVATECH, Chicago, IL, USA (2004)
Parezanovic, I.; Spiegel, M.: Surface modification of different Fe–Si and Fe–Mn alloys by oxidation/reduction treatments. Eurocorr 2003, Budapest, Hungary (2003)
Spiegel, M.; Parezanovic, I.; Strauch, E.; Grabke, H. J.: Spinel forming stainless steels as possible current collector materials for molten carbon ate fuel cells. Fuel Cells Science and Technology, Amsterdam, The Netherlands (2002)
Hydrogen in aluminium can cause embrittlement and critical failure. However, the behaviour of hydrogen in aluminium was not yet understood. Scientists at the Max-Planck-Institut für Eisenforschung were able to locate hydrogen inside aluminium’s microstructure and designed strategies to trap the hydrogen atoms inside the microstructure. This can…
This project aims to investigate the influence of grain boundaries on mechanical behavior at ultra-high strain rates and low temperatures. For this micropillar compressions on copper bi-crystals containing different grain boundaries will be performed.
Oxidation and corrosion of noble metals is a fundamental problem of crucial importance in the advancement of the long-term renewable energy concept strategy. In our group we use state-of-the-art electrochemical scanning flow cell (SFC) coupled with inductively coupled plasma mass spectrometer (ICP-MS) setup to address the problem.
For understanding the underlying hydrogen embrittlement mechanism in transformation-induced plasticity steels, the process of damage evolution in a model austenite/martensite dual-phase microstructure following hydrogenation was investigated through multi-scale electron channelling contrast imaging and in situ optical microscopy.
We will investigate the electrothermomechanical response of individual metallic nanowires as a function of microstructural interfaces from the growth processes. This will be accomplished using in situ SEM 4-point probe-based electrical resistivity measurements and 2-point probe-based impedance measurements, as a function of mechanical strain and…
Hydrogen induced embrittlement of metals is one of the long standing unresolved problems in Materials Science. A hierarchical multiscale approach is used to investigate the underlying atomistic mechanisms.
Hydrogen embrittlement affects high-strength ferrite/martensite dual-phase (DP) steels. The associated micromechanisms which lead to failure have not been fully clarified yet. Here we present a quantitative micromechanical analysis of the microstructural damage phenomena in a model DP steel in the presence of hydrogen.
This project will aim at developing MEMS based nanoforce sensors with capacitive sensing capabilities. The nanoforce sensors will be further incorporated with in situ SEM and TEM small scale testing systems, for allowing simultaneous visualization of the deformation process during mechanical tests
The project aims to study corrosion, a detrimental process with an enormous impact on global economy, by combining denstiy-functional theory calculations with thermodynamic concepts.