Stratmann, M.: Electrochemical reactions of metal surfaces, covered by thin condensed electrolyte layers. Bulletin of Electrochemistry 8, p. 30 - 30 (1992)
Stratmann, M.; Streckel, H.: Monitoring of blistering of organic coatings by a contact-free measurement. Werkstoffe und Korrosion 43, 6, pp. 316 - 320 (1992)
Stratmann, M.; Wolpers, M.; Lösch, R.; Volmer, M.: The structure and reactivity of chemically modified reactive metal surfaces. Bulletin of Electrochemistry 8, p. 8 - 8 (1992)
Volmer-Uebing, M.; Stratmann, M.: A Surface Analytical and an Electrochemical Study of Iron Surfaces Modified by Thiols. Applied Surface Science 55, 1, pp. 19 - 35 (1992)
Reynders, B.; Stratmann, M.: Adsorption of simple S-organic compounds on iron surfaces prepared in an UHV-system. Fresenius' Journal of Analytical Chemistry 341 (5-6), pp. 406 - 407 (1991)
Wolpers, M.; Stratmann, M.; Viefhaus, H.: Structure and stability of silane modified metal surfaces. Fresenius' Journal of Analytical Chemistry 341 (5-6), pp. 337 - 338 (1991)
Feser, R.; Stratmann, M.: Neue Erkenntnisse zum Korrosionsschutz von organischen Beschichtungen auf Eisen. Werkstoffe und Korrosion 42, 4, pp. 187 - 195 (1991)
Stratmann, M.; Hoffmann, K.; Müller, J.: Die Bedeutung von Rostschichten für den Ablauf von Korrosionsreaktionen bei niedrig legierten Stählen. Werkstoffe und Korrosion 42, 9, pp. 467 - 472 (1991)
Stratmann, M.; Streckel, H.; Feser, R.: A new technique able to measure directly the delamination of organic polymer films. Corrosion Science 32 (4), 4, pp. 467 - 470 (1991)
Stratmann, M.; Streckel, H.; Feser, R.: Ein neues Verfahren zur Untersuchung der Delamination von Polymerbeschichtungen. Farbe und Lack 97, pp. 9 - 13 (1991)
Stratmann, M.; Streckel, H.; Kim, K. T.; Yee, S.: The Investigation of the Corrosion Properties of Metal Surfaces Covered by thin Electrolyte Layers. La Metallurgia Italiana 83, pp. 665 - 670 (1991)
Stratmann, M.; Wolpers, M.; Streckel, H.; Feser, R.: Use of a Scanning-Kelvinprobe in the Investigation of Electrochemical Reactions at the Metal/Polymer Interface. Berichte Bunsengesellschaft Physikalische Chemie 95, 11, pp. 1365 - 1375 (1991)
Uebing-Volmer, M.; Reynders, B.; Stratmann, M.: Anbindungsverhalten organischer Monomere auf Eisenoberflächen und Korrosion der durch die Anbindung chemisch modifizierten Oberflächen. Werkstoffe und Korrosion 42 (1), pp. 19 - 34 (1991)
Wolpers, M.; Viefhaus, H.; Stratmann, M.: Surface Analytical Investigation on Metal Surfaces, Modified by LB Films of Silanes. Applied Surface Science 47, 1, pp. 49 - 62 (1991)
Yee, S.; Stratmann, M.; Oriani, R. A.: Application of Kelvin Microprobe to the Corrosion of Metals in Humid Atmospheres. Journal Electrochemical Society 138, 1, pp. 55 - 61 (1991)
Stratmann, M.: The Atmospheric Corrosion of Iron - A Discussion of the Physico-Chemical Fundamentals of this Omnipresent Corrosion Process. Berichte Bunsengesellschaft Physikalische Chemie 94 (6), pp. 626 - 639 (1990)
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…
With the support of DFG, in this project the interaction of H with mechanical, chemical and electrochemical properties in ferritic Fe-based alloys is investigated by the means of in-situ nanoindentation, which can characterize the mechanical behavior of independent features within a material upon the simultaneous charge of H.
The goal of this project is the investigation of interplay between the atomic-scale chemistry and the strain rate in affecting the deformation response of Zr-based BMGs. Of special interest are the shear transformation zone nucleation in the elastic regime and the shear band propagation in the plastic regime of BMGs.
The aim of the current study is to investigate electrochemical corrosion mechanisms by examining the metal-liquid nanointerfaces. To achieve this, corrosive fluids will be strategically trapped within metal structures using novel additive micro fabrication techniques. Subsequently, the nanointerfaces will be analyzed using cryo-atom probe…
Hydrogen embrittlement (HE) of steel is a great challenge in engineering applications. However, the HE mechanisms are not fully understood. Conventional studies of HE are mostly based on post mortem observations of the microstructure evolution and those results can be misleading due to intermediate H diffusion. Therefore, experiments with a…
Smaller is stronger” is well known in micromechanics, but the properties far from the quasi-static regime and the nominal temperatures remain unexplored. This research will bridge this gap on how materials behave under the extreme conditions of strain rate and temperature, to enhance fundamental understanding of their deformation mechanisms. The…
“Smaller is stronger” is well known in micromechanics, but the properties far from the quasi-static regime and the nominal temperatures remain unexplored. This research will bridge this gap on how materials behave under the extreme conditions of strain rate and temperature, to enhance fundamental understanding of their deformation mechanisms. The…