Dr. Hajo Dieringa

Dr. Hajo Dieringa
Hybrid Materials and Processes
Head of DepartmentPhone: +49(0)4152 87 1955
Mobile: +49(0)151 17352726
2023
- journal articleInfluence of recycled carbon fiber addition on the microstructure and creep response of extruded AZ91 magnesium alloyKandemir, S., Bohlen, J., Dieringa, H. (2023)
In: Journal of Magnesium and Alloys, Vol. 11, 7, 2518-2529. - journal articleImproving the ductility and toughness of nano-TiC/AZ61 composite by optimizing bimodal grain microstructure via extrusion speedFan, L., Zhou, M., Lao, W., Zhang, Y., Dieringa, H., Zeng, Y., Huang, Y., Quan, G. (2023)
In: Journal of Magnesium and Alloys, - journal articleAchieving high strength and ductility in a heterogeneous bimodal grain structured TiC/AZ61 magnesium nanocomposites via powder metallurgyFan, L., Zhou, M., Zhang, Y., Dieringa, H., Qian, X., Zeng, Y., Lu, X., Huang, Y., Quan, G. (2023)
In: Materials Science and Engineering: A, Vol. 867, 144344. - journal articleMechanistic origin of the enhanced strength and ductility in Mg-rare earth alloysOvri, H., Markmann, J., Barthel, J., Kruth, M., Dieringa, H., Lilleodden, E. (2023)
In: Acta Materialia, Vol. 244, 118550. - journal articleCompressive creep behavior and microstructural evolution of sand-cast and peak-aged Mg–12Gd–0.4Zr alloy at 250 °CShi, H., Huang, Y., Yang, L., Liu, C., Dieringa, H., Lu, C., Xiao, L., Willumeit-Römer, R., Hort, N. (2023)
In: Materials Science and Engineering: A, Vol. 882, 145422.
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- book partCreep Characteristics of Metal Matrix CompositesYang, H., Gavras, S., Dieringa, H. (2021)
In: Encyclopedia of Materials: Composites, Vol. 1, 375-388. - book partCreep Characteristics of Metal Matrix CompositesYang, H., Gavras, S., Dieringa, H. (2021)
In: Encyclopedia of Materials: Composites, Vol. 1, 375-388.
- book partConnected Process Design for Hot Working of a Creep-Resistant Mg–4Al–2Ba–2Ca Alloy (ABaX422)Rao, K.P., Chalasani, D., Suresh, K., Prasad, Y.V.R.K., Dieringa, H., Hort, N. (2019)
In: Material and Process Design for Lightweight Structures, Vol. 1319, 90-103.
- book partMagnesium and Magnesium AlloysDieringa, H., Kainer, K.U. (2018)
In: Springer Handbook of Materials Data, 151-159.
- book partMaterials - Metal Matrix CompositesDieringa, H., Ibe, G., Kainer, K.U. (2016)
In: Ullmann's Encyclopedia of Industrial Chemistry,
- book partAdvances in manufacturing processes for magnesium alloysDieringa, H., Hort, N., Bohlen, J., Letzig, D., Kainer, K.U. (2014)
In: Essential Readings in Magnesium Technology, 19-24.
- book partMagnesiumlegierungen und -Matrix VerbundwerkstoffeEvertz, T., Flaxa, V., Georgeou, Z., Gronebaum, R.-H., Kwiaton, N., Lesch, C., Otto, M., Schoettler, J., Schulz, T., Springub, B., Furrer, P., Mueller, A., Dieringa, H., Kainer, K.U., Leyens, C., Peters, M., Gadow, R., Drechsler, K., Ziegmann, G. (2013)
In: Leichtbau in der Fahrzeugtechnik, 314-336. - book partApplications: magnesium-based metal matrix composites (MMCs)Dieringa, H. (2013)
In: Fundamentals of Magnesium Alloy Metallurgy, 317-341.
- bookZug- und Druckkriechverhalten von Magnesiumwerkstoffen - Vergleichende Untersuchung der minimalen Kriechraten der verstaerkten und unverstaerkten Magnesiumlegierung AE42Dieringa, H. (2008)
- book partParticles, Fibres and short Fibres for the reinforcement of metal materialsDieringa, H., Kainer, K.U. (2006)
In: Metal Matrix Composites, 55-76. - book partMagnesium Matrix CompositesHort, N., Dieringa, H., Thakur, S.K., Kainer, K.U. (2006)
In: Magnesium Technology, Metallurgy, Design Data, Applications, 315-334.
- book partPartikel, Fasern und Kurzfasern zur Verstaerkung von metallischen WerkstoffenDieringa, H., Kainer, K.U. (2003)
In: Metallische Verbundwerkstoffe, 66-88.
- Development of new magnesium alloys
- Creep resistance of magnesium alloys and composites
- Development and characterization of light metal matrix composites
- Magnesium based nanocomposites
- Work Package coordination "Metal Matrix Nanocomposites" in the FP7 EU-project "ExoMet"
- Coordination of the BMWK-project "OptUm-MagNa - Optimierte Umformbarkeit von Magnesium-Nanokompositen" in the Technologietransfer-Programm Leichtbau (TTP)