Dehm, G.; Scheu, C.; Raj, R.; Rühle, M.: Growth, structure and interfaces of Cu and Cu/Ti thin films on (0001)alpha-Al2O3. Materials Science Forum 207-209 (1), pp. 217 - 220 (1996)
Clemens, H.; Mayer, S.; Scheu, C.: Microstructure and Properties of Engineering Materials. In: Neutrons and Synchrotron Radiation in Engineering Materials Science: From Fundamentals to Applications: Second Edition, pp. 3 - 20 (Eds. Schreyer, A.; Clemens, H.; Mayer, S.). wiley, Hoboken, NJ, USA (2017)
Microstructure of Ni2B Laser-Induced Surface-Alloyed α-Fe (Materials Resaerch Symposium Proceedings, Phase Transformations and Systems Driven far from Equilibrium, 481). MRS Fall Meeting´97, Boston, MA, USA. (2001)
Hieke, S. W.; Willinger, M. G.; Wang, Z.-J.; Richter, G.; Dehm, G.; Scheu, C.: In situ electron microscopy – insights in solid state dewetting of epitaxial Al thin films on sapphire. In: Microscopy Conference 2017 (MC 2017) - Proceedings (Ed. Laue, M.). Microscopy Conference 2017 (MC 2017), Lausanne, Switzerland, August 21, 2017 - August 25, 2017. Universität Regensburg, Regensburg (2017)
Folger, A.; Wisnet, A.; Scheu, C.: Defects in as-grown vs. annealed rutile titania nanowires and their effect on properties. EMC 2016, 16th European Microscopy Congress, Lyon, France, August 28, 2016 - September 02, 2016. European Microscopy Congress 2016: Proceedings, pp. 409 - 410 (2016)
Hieke, S. W.; Dehm, G.; Scheu, C.: Investigation of solid state dewetting phenomena of epitaxial Al thin films on sapphire using electron microscopy. In: European Microscopy Congress 2016: Proceedings, pp. 203 - 204. The 16th European Microscopy Congress (EMC 2016), Lyon, France, August 28, 2016 - September 02, 2016. Wiley-VCH Verlag GmbH & Co KGaA (2016)
Cha, L.; Scheu, C.; Dehm, G.: A TEM study of ultra-fine lamellar structures in titanium aluminide. In: 9th Multinational Microscopy Conference 2009 Materials Science, Vol. 3, pp. 247 - 248 (Eds. Kothleitner, G.; Leisch, M.). 9th Multinational Microscopy Conference 2009, Graz, Austria, August 30, 2009 - September 04, 2009. Verlag der Technischen Universität Graz, Graz, Austria (2009)
Cha, L.; Scheu, C.; Dehm, G.; Schnitzer, R.; Clemens, H. J.: Initial stages of lamellae formation in high Nb containing γ-TiAl based alloys. In: Materials Research Society Symposium Proceedings 2009, Vol. 1128, pp. 153 - 158. MRS Fall Meeting 2009, Boston, MA, USA, November 30, 2009 - December 04, 2009. (2009)
Rester, M.; Cha, L.; Scheu, C.; Dehm, G.; Clemens, H. J.; Kothleitner, G.; Leisch, M.: Microstructure of a massively transformed high Nb containing γ-TiAl based alloy. In: 9th Multinational Microscopy Conference 2009, pp. 231 - 232 (Eds. Kothleitner, G.; Leisch, M.). 9th Multinational Microscopy Conference 2009, Graz, Austria, August 30, 2009. Verlag der Technischen Universität Graz, Graz, Austria (2009)
Rashkova, B.; Kothleitner, G.; Šturm, S.; Scheu, C.; Kutschej, K.; Mitterer, C.; Lazar, P.; Redinger, J.; Podloucky, R.; Dehm, G.: A Comparison of the Electronic Structure of N–K in TiN and VN using EELS and Ab-initio Calculations. In: Proceeding 33rd Microscopy Conference, Deutsche Gesellschaft für Elektronenmikroskopie, pp. 414 - 415. Microscopy 33rd Conference, Deutsche Gesellschaft für Elektronenmikroskopie, Saarbrücken, Germany, September 02, 2007 - September 07, 2007. (2007)
Wetscher, F.; Pippan, R.; Šturm, S.; Kauffmann, F.; Scheu, C.; Dehm, G.: Microstructural evolution of a pearlitic steel during severe plastic deformation. In: 7th Multinational Congress on Microscopy. 7th Multinational Congress on Microscopy, Portorož, Slovenia, June 26, 2005 - June 30, 2005. (2005)
Oh, S. H.; Scheu, C.; Dehm, G.; Wagner, T. A.; Rühle, M.; Lee, H. J.: Direct atomic scale observation of dynamic alumina-aluminum solid-liquid interfaces. In: The 8th Asia-Pacific Conference on Electron Microscopy (8APEM): In Conjunction with the 60th Annual Meeting of the Japanese Society of Microscopy, pp. 671 - 672. 8th Asia-Pacific Conference on Electron Microscopy (8APEM), Kanazawa, Japan, June 07, 2004 - June 11, 2004. Die Japanische Gesellschaft für Mikroskopie, Uchinada-mati (Isikawa-ken), Japan (2004)
Dehm, G.; Scheu, C.; Rühle, M.: Interface Structure of Epitaxial Cu Films on (0001) α-Al2O3. In: Proceedings of the 14th ICEM, Vol. 2, pp. 567 - 568. 11th International Congress on Electron Microscopy, Dublin, Ireland, August 26, 1996 - August 30, 1996. (1998)
Rühle, M.; Dehm, G.; Scheu, C.: Structure and Composition of Interfaces in Ceramics and Ceramic Composites. In: Proc. of the International Materials Symposium on Ceramic Microstructures: Controll at the Atomic Level, pp. 1 - 12 (Eds. Tomsia, A. P.; Glaeser, A.). International Materials Symposium on Ceramic Microstructures: Controll at the Atomic Level, Berkley, CA, USA, June 24, 1996 - June 27, 1996. Plenum Press, New York (1998)
Scheu, C.; Dehm, G.; Kaplan, W. D.; Vilela, D.; Claussen, N. E.: Microstructure of Nb Based Al2O3 Composites. In: Proc. of 56rd Annual Meeting of MSA, pp. 588 - 589. 56rd Meeting of the Microscopy Society of America, Atlanta, GA, USA, July 12, 1998 - July 16, 1998. (1998)
Scientists of the Max-Planck-Institut für Eisenforschung pioneer new machine learning model for corrosion-resistant alloy design. Their results are now published in the journal Science Advances
In order to prepare raw data from scanning transmission electron microscopy for analysis, pattern detection algorithms are developed that allow to identify automatically higher-order feature such as crystalline grains, lattice defects, etc. from atomically resolved measurements.
New product development in the steel industry nowadays requires faster development of the new alloys with increased complexity. Moreover, for these complex new steel grades, it is more challenging to control their properties during the process chain. This leads to more experimental testing, more plant trials and also higher rejections due to…
The general success of large language models (LLM) raises the question if they could be applied to accelerate materials science research and to discover novel sustainable materials. Especially, interdisciplinary research fields including materials science benefit from the LLMs capability to construct a tokenized vector representation of a large…
Crystal Plasticity (CP) modeling [1] is a powerful and well established computational materials science tool to investigate mechanical structure–property relations in crystalline materials. It has been successfully applied to study diverse micromechanical phenomena ranging from strain hardening in single crystals to texture evolution in…
Advanced microscopy and spectroscopy offer unique opportunities to study the structure, composition, and bonding state of individual atoms from within complex, engineering materials. Such information can be collected at a spatial resolution of as small as 0.1 nm with the help of aberration correction.