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On the strength and failure of an electrolyte supported solid oxide fuel cell
Fleischhauer, F. (2016). On the strength and failure of an electrolyte supported solid oxide fuel cell [Doctoral dissertation]. Montanuniversität Leoben.
Fracture toughness and strength distribution at room temperature of zirconia tapes used for electrolyte supported solid oxide fuel cells
Fleischhauer, F., Terner, M., Bermejo, R., Danzer, R., Mai, A., Graule, T., & Kuebler, J. (2015). Fracture toughness and strength distribution at room temperature of zirconia tapes used for electrolyte supported solid oxide fuel cells. Journal of Power Sources, 275, 217-226. https://doi.org/10.1016/j.jpowsour.2014.10.083
High temperature mechanical properties of zirconia tapes used for electrolyte supported solid oxide fuel cells
Fleischhauer, F., Bermejo, R., Danzer, R., Mai, A., Graule, T., & Kuebler, J. (2015). High temperature mechanical properties of zirconia tapes used for electrolyte supported solid oxide fuel cells. Journal of Power Sources, 273, 237-243. https://doi.org/10.1016/j.jpowsour.2014.09.068
Strength of an electrolyte supported solid oxide fuel cell
Fleischhauer, F., Bermejo, R., Danzer, R., Mai, A., Graule, T., & Kuebler, J. (2015). Strength of an electrolyte supported solid oxide fuel cell. Journal of Power Sources, 297, 158-167. https://doi.org/10.1016/j.jpowsour.2015.07.075
Failure analysis of electrolyte-supported solid oxide fuel cells
Fleischhauer, F., Tiefenauer, A., Graule, T., Danzer, R., Mai, A., & Kuebler, J. (2014). Failure analysis of electrolyte-supported solid oxide fuel cells. Journal of Power Sources, 258, 382-390. https://doi.org/10.1016/j.jpowsour.2014.02.009
Coercivity mechanism in hard magnetic SmCo<SUB>5</SUB>/PrCo<SUB>5</SUB> bilayers
Patra, A. K., Fleischhauer, F., Oswald, S., Schultz, L., & Neu, V. (2014). Coercivity mechanism in hard magnetic SmCo5/PrCo5 bilayers. Journal of Physics D: Applied Physics, 47(21), 215001 (8 pp.). https://doi.org/10.1088/0022-3727/47/21/215001