Bonk, S.; Wicinski, M.; Hassel, A. W.; Stratmann, M.: Electrochemical characterizations of precipitates formed on zinc in alkaline sulphate solution with increasing pH values. Electrochemistry Communicatios 6, 8, pp. 800 - 804 (2004)
Hassel, A. W.; Bonk, S.; Wicinski, M.; Stratmann, M.; Ogle, K.; Philips-Falcey, N.; Ostwald, C.; Janssen, S.; Stellnberger, K.-H.; Konrath, P.: Passive/active transistions in cyclic corrosion tests. Office for Official Publications of the European Communities, Luxembourg, Luxembourg (2007)
Hassel, A. W.; Bonk, S.; Wicinski, M.; Stratmann, M.: Corrosion of zinc coated steel sheets under cyclic corrosion conditions. 13th Asian Pacific Corrosion Control Conference, Osaka, Japan (2003)
Bonk, S.; Tsuri, S.; Hassel, A. W.; Stratmann, M.: Construction of a cyclic corrosion test simulator. GDCH Jahrestagung 2003, Fachgruppe Angewandte Elektrochemie mit 8. Grundlagensymposium der GDCh, DECHEMA, DBG, München, Germany (2003)
Bonk, S.; Wicinski, M.; Hassel, A. W.; Stratmann, M.: Sensitivity of pure zinc and zinc-alloyed steel sheets to pH-changes in alkaline electrolyte. Electrochem 2003, Southhampton, UK (2003)
Bonk, S.; Wicinski, M.; Hassel, A. W.; Stratmann, M.: Elektrochemische Untersuchungen verzinkter Stähle in alkalischer Sulfatlösung bei verschiedenen pH-Werten. 79. AGEF Seminar - 25 Jahre Elektrochemie in Düsseldorf, Düsseldorf, Germany (2004)
Bonk, S.; Tsuri, S.; Hassel, A. W.; Stratmann, M.: Entwicklung eines universellen Wechseltauchsimulators für die Durchführung beschleunigter, zyklischer Korrosionstests. 76. AGEF Seminar, Düsseldorf, Germany (2003)
International researcher team presents a novel microstructure design strategy for lean medium-manganese steels with optimized properties in the journal Science
Within this project, we will use a green laser beam source based selective melting to fabricate full dense copper architectures. The focus will be on identifying the process parameter-microstructure-mechanical property relationships in 3-dimensional copper lattice architectures, under both quasi-static and dynamic loading conditions.
Oxides find broad applications as catalysts or in electronic components, however are generally brittle materials where dislocations are difficult to activate in the covalent rigid lattice. Here, the link between plasticity and fracture is critical for wide-scale application of functional oxide materials.
The fracture toughness of AuXSnY intermetallic compounds is measured as it is crucial for the reliability of electronic chips in industrial applications.
Within this project we investigate chemical fluctuations at the nanometre scale in polycrystalline Cu(In,Ga)Se2 and CuInS2 thin-flims used as absorber material in solar cells.