PRIMARY DENDRITE TRUNK DIAMETER IN Al-7wt% ALLOY DIRECTIONALLY SOLIDIFIED ABOARD THE INTERNATIONAL SPACE STATION

18 Jun 2019, 11:10
20m
P4 (IMLAUER HOTEL PITTER SALZBURG)

P4

IMLAUER HOTEL PITTER SALZBURG

Rainerstraße 6, 5020 Salzburg, Austria
Oral Presentation Dendritic microstructure

Speaker

Prof. Surendra Tewari (Cleveland State University)

Description

Under a NASA (National Aeronautics and Space Agency)-ESA (European Space Agency) collaborative research project, MICAST (Microstructure formation in casting of technical alloys under a diffusive and magnetically controlled convection conditions), three Al-7wt% Si samples (MICAST-6, MICAST-7 and MICAST2-12) were directionally solidified at growth speeds varying from 10 to 50 μm s-1 aboard the International Space Station to determine the effect of mitigating convection on the primary dendrite array. The observed primary dendrite trunk diameters during steady-state growth of MICAST samples show a good agreement with predictions from a coarsening based model developed by the authors. The trunk diameters in the terrestrial-grown equivalent samples were larger than those predicted from the model. This suggest that thermosolutal convection increases the trunk diameter of primary dendrites, perhaps by increasing their tip radius due to compositional changes.
Speaker Country USA

Author

Ms Supriya Upadhyay (Cleeland State University)

Co-authors

Prof. David Poirier (Department of Materials Science and Engineering, The University of Arizona, Tucson, AZ 85721.) Dr Mark Lauer (ME Elecmetal Inc., Duluth, MN 55808) Dr Masoud Ghods (Middle East Technical University, Northern Cyprus Campus, Güzelyurt, Mersin 10 Turkey) Dr Richard Grugel (NASA-Marshall Space Flight Center, Huntsville, AL 35811.) Prof. Surendra Tewari (Cleveland State University)

Presentation materials