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 mu m 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 s...
International audienceMicrogravity offers a unique opportunity to achieve solidification in the limi...
This article reports research that has been carried out under the aegis of NASA as part of a collabo...
International audienceMicrogravity offers a unique opportunity to achieve solidification in the limi...
Under a NASA (National Aeronautics and Space Agency)-ESA (European Space Agency) collaborative resea...
Under a NASA (National Aeronautics and Space Agency)-ESA (European Space Agency) collaborative resea...
Under a NASA-ESA collaborative research project, three Al-7-weight-percentage Si samples (MICAST-6, ...
Samples from directionally solidified Al- 7 wt. % Si have been analyzed for primary dendrite arm spa...
The primary dendrite trunk diameters of Al-Si alloys that were directionally solidified over a range...
Aluminum 7wt% silicon alloys were directionally solidified in the microgravity environment aboard t...
This thesis entails a detailed microstructure analysis of directionally solidified (DS) Al-7Si alloy...
The US team of the European led "MIcrostructure Formation in CASTing of Technical Alloys under Diffu...
The effect of fluid flow on the microstructure formation in Al-cast alloys is studied experimentally...
Under a NASA (National Aeronautics and Space Administration)-ESA (European Space Agency) collaborati...
Under a NASA (National Aeronautics and Space Administration)-ESA (European Space Agency) collaborati...
Under a NASA (National Aeronautics and Space Administration)-ESA (European Space Agency) collaborati...
International audienceMicrogravity offers a unique opportunity to achieve solidification in the limi...
This article reports research that has been carried out under the aegis of NASA as part of a collabo...
International audienceMicrogravity offers a unique opportunity to achieve solidification in the limi...
Under a NASA (National Aeronautics and Space Agency)-ESA (European Space Agency) collaborative resea...
Under a NASA (National Aeronautics and Space Agency)-ESA (European Space Agency) collaborative resea...
Under a NASA-ESA collaborative research project, three Al-7-weight-percentage Si samples (MICAST-6, ...
Samples from directionally solidified Al- 7 wt. % Si have been analyzed for primary dendrite arm spa...
The primary dendrite trunk diameters of Al-Si alloys that were directionally solidified over a range...
Aluminum 7wt% silicon alloys were directionally solidified in the microgravity environment aboard t...
This thesis entails a detailed microstructure analysis of directionally solidified (DS) Al-7Si alloy...
The US team of the European led "MIcrostructure Formation in CASTing of Technical Alloys under Diffu...
The effect of fluid flow on the microstructure formation in Al-cast alloys is studied experimentally...
Under a NASA (National Aeronautics and Space Administration)-ESA (European Space Agency) collaborati...
Under a NASA (National Aeronautics and Space Administration)-ESA (European Space Agency) collaborati...
Under a NASA (National Aeronautics and Space Administration)-ESA (European Space Agency) collaborati...
International audienceMicrogravity offers a unique opportunity to achieve solidification in the limi...
This article reports research that has been carried out under the aegis of NASA as part of a collabo...
International audienceMicrogravity offers a unique opportunity to achieve solidification in the limi...