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2000

Conference Publication

Eutectic solidification and porosity formation in Al-Si alloys: the role of strontium

McDonald, S., Nogita, K., Dahle, A. K., Taylor, J. A. and St John, D. H. (2000). Eutectic solidification and porosity formation in Al-Si alloys: the role of strontium. 104th AFS Casting Congress, Pittsburgh, PA, USA, 8-11 April 2000. Des Plaines, Illinois, USA: American Foundrymen's Society.

Eutectic solidification and porosity formation in Al-Si alloys: the role of strontium

2000

Conference Publication

Eutectic growth mode in strontium, antimony and phosphorous modified Al-Si foundry alloys

Nogita, K. and Dahle, A. K. (2000). Eutectic growth mode in strontium, antimony and phosphorous modified Al-Si foundry alloys. JIM Fall Meeting, Nagoya, Japan, 1-3 October 2000. Japan: Japanese Institute of Metals.

Eutectic growth mode in strontium, antimony and phosphorous modified Al-Si foundry alloys

2000

Conference Publication

EBSD analysis of eutectic solidification in Al-Si alloys

Nogita, K., Dahle, A. K., Hogan, L. M. and Drennan, J. (2000). EBSD analysis of eutectic solidification in Al-Si alloys. MicroOZcopy 2000, Canberra, Australia, 6-11 February 2000. Canberra, Australia:

EBSD analysis of eutectic solidification in Al-Si alloys

2000

Conference Publication

Specimen preparation for electron backscatter diffraction (EBSD) analysis of aluminimum silicon cast alloys, electro polishing versus fast atom bombardment (FAB)

Guldbrandsen-Dahl, S., Heiberg, G., Hjelen, J., Nogita, K., Raanes, M. and Dahle, A. K. (2000). Specimen preparation for electron backscatter diffraction (EBSD) analysis of aluminimum silicon cast alloys, electro polishing versus fast atom bombardment (FAB). 12th European Congress on Electron Microscopy (EUREM 12), Brno, Czech Republic, 9-14 July 2000. Brno, Czech Republic: Czechoslovak Society for Electron Microscopy.

Specimen preparation for electron backscatter diffraction (EBSD) analysis of aluminimum silicon cast alloys, electro polishing versus fast atom bombardment (FAB)