Guo, X.; Zaefferer, S.; Archie, F. M. F.; Bleck, W.: Hydrogen effect on the mechanical behaviour and microstructural features of a Fe–Mn–C twinning induced plasticity steel. International Journal of Minerals, Metallurgy and Materials 28, pp. 835 - 846 (2021)
Guo, X.; Zaefferer, S.; Archie, F. M. F.; Bleck, W.: Dislocation and twinning behaviors in high manganese steels in respect to hydrogen and aluminum alloying. ECF22 - Loading and Environmental effects on Structural Integrity, 22nd European Conference on Fracture, Belgrade, Serbia, August 25, 2018 - August 26, 2018. Procedia Structural Integrity 13, pp. 1453 - 1459 (2018)
Guo, X.; Zaefferer, S.; Archie, F. M. F.; Wu, H.; Prahi, U.; Bleck, W.: Hydrogen effects on the microstructure evolution of high manganese steel during tensile deformation. In: 3rd International Conference on High Manganese Steels, HMnS2016, pp. 151 - 154. 3rd International Conference on High Manganese Steels, HMnS2016, Chengdu, China, November 16, 2016 - November 18, 2016. (2016)
Max Planck scientists design a process that merges metal extraction, alloying and processing into one single, eco-friendly step. Their results are now published in the journal Nature.
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
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…