JOURNAL ARTICLE

Microstructural evolution during containerless rapid solidification of Co-Si alloys

Yao Wen-JingWei Bing-Bo

Year: 2003 Journal:   Chinese Physics Vol: 12 (11)Pages: 1272-1282   Publisher: IOP Publishing

Abstract

The Co-12%Si hypoeutectic, Co-12.52%Si eutectic and Co-13%Si hypereutectic alloys are rapidly solidified in a containerless environment in a drop tube. Undercoolings up to 207K (0.14TE) are obtained, which play a dominant role in dendritic and eutectic growth. The coupled zone around Co-12.52%Si eutectic alloy has been calculated, which covers a composition range from 11.6 to 12.7%Si. A microstructural transition from lamellar eutectic to divorced eutectic occurs to Co-12.52%Si eutectic droplets with increasing undercooling. The lamellar eutectic structure of the Co-12.52%Si alloy consists of εCo and Co3Si phases at small undercooling. The Co3Si phase cannot decompose completely into εCo and αCo2Si phases. As undercooling becomes larger, the Co3Si phase grows very rapidly from the highly undercooled alloy melt to form a divorced eutectic. The structural morphology of the Co-12%Si alloy droplets transforms from εCo primary phase plus lamellar eutectic to anomalous eutectic, whereas the microstructure of Co-13%Si alloy droplets experiences a `dendritic to equiaxed' structural transition. No matter how large the undercooling is, the εCo solid solution is the primary nucleation phase. In the highly undercooled alloy melts, the growth of εCo and Co3Si phases is controlled by solutal diffusion.

Keywords:
Eutectic system Supercooling Materials science Lamellar structure Nucleation Alloy Eutectic bonding Equiaxed crystals Phase (matter) Microstructure Recalescence Metallurgy Thermodynamics Chemistry

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Citation History

Topics

Solidification and crystal growth phenomena
Physical Sciences →  Materials Science →  Materials Chemistry
Aluminum Alloy Microstructure Properties
Physical Sciences →  Engineering →  Aerospace Engineering
Intermetallics and Advanced Alloy Properties
Physical Sciences →  Engineering →  Mechanical Engineering

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