Prof. Dipl.-Ing. Haifeng Wang

Profile

Academic positionFull Professor
Research fieldsMaterials Engineering,Thermodynamics and Kinetics as well as Properties of Phases and Microstructure of Materials
KeywordsThermodynamics, Kinetics, Solidification, Solid-state phase transformation, Theory

Current contact address

CountryPeople's Republic of China
CityXi'an
InstitutionNorthwestern Polytechnical University
InstituteState Key Laboratory of Solidification Processing

Host during sponsorship

Prof. Dr. Dieter HerlachInstitut für Materialphysik im Weltraum, Deutsches Zentrum für Luft- und Raumfahrt e.V. (DLR), Köln
Start of initial sponsorship01/12/2011

Programme(s)

2011Humboldt Research Fellowship Programme for Postdocs

Publications (partial selection)

2015Haifeng Wang, Wangwang Kuang, Xiao Zhang, Feng Liu: A hyperbolic phase-field model for rapid solidification of a binary alloy. In: Journal of Materials Science, 2015, 1277-1286
2015Haifeng Wang, Feng Liu, D. M. Herlach: Kinetics of triple-junctions in eutectic solidification: a sharp interface model. In: Journal of Materials Science, 2015, 176-188
2015Haifeng Wang,P.K. Galenko,Xiao Zhang, Wangwang Kuang, Feng Liu, D.M. Herlach: Phase-field modeling of an abrupt disappearance of solute drag in rapid solidification. In: Acta Materialia, 2015, 282-291
2015Haifeng Wang, Xiao Zhang, Cun Lai, Wangwang Kuang, Feng Liu: Thermodynamic principles for phase-field modeling of alloy solidification. In: Current Opinion in Chemical Engineering, 2015, 6-15
2014H. Wang, D. M. Herlach, R. P. Liu: Dendrite growth in Cu50Zr50 glass-forming melts, thermodynamics vs. kinetics. In: EPL, 2014, 36001-1-36001-5
2014Haifeng Wang Feng Liu D.M. Herlach: Modeling the growth kinetics of a multi-component stoichiometric compound. In: Journal of Materials Science , 2014, 1537-1543
2014Haifeng Wang Feng Liu D.M. Herlach: On the solution of solute diffusion during eutectic growth. In: Journal of Crystal Growth, 2014, 68-73
2013Haifeng Wang Feng Liu G.J. Ehlen D.M. Herlach: Application of the maximal entropy production principle to rapid solidification: A multi-phase-field model. In: Acta Materialia, 2013, 2617-2627