Understanding and controlling the eutectic solidification process in Al-Si alloys permits prediction of the formation of casting porosity, eventually leading to methods for its control and elimination. In addition, it enables control of eutectic structure, silicon morphology, and eutectic grain size to further improve the alloy properties. This paper presents the current understanding of eutectic solidification in hypoeutectic Al-Si foundry alloys and the relationship between eutectic solidification and porosity formation. New concepts in engineering eutectic solidification are also explored
The influence of sodium (Na) on nucleation and growth of the Al-Si eutectic in a commercial hypoeute...
As the refiner or modifier, the master alloys containing high concentration phosphor are widely used...
A new multi-zone model is proposed that explains how porosity forms in various regions of a casting ...
The formation of the Al-Si eutectic is generally the final stage of the solidification process of Al...
Commercial hypoeutectic Al-Si foundry alloys contain between 50 and 90 vol% eutectic. Solidification...
It is now well established that three different eutectic solidification mechanisms may occur in Al-S...
Recent increasing applications for cast Al-Si alloys are particularly driven by the need for lightwe...
This work will be focused on problematics of controling the grain size and morphology of eutectics o...
The formulation of alloy compositions for aluminium castings has not changed significantly for decad...
The eutectic microstructure in hypoeutectic Al-Si cast alloys is strongly influenced by AlP particle...
The nucleation mechanism of eutectic grains in hypoeutectic Al-Si foundry alloys has been investigat...
This sample is a casting alloy of eutectic composition. From the melt a eutectic is formed between a...
The effects of different levels of strontium on nucleation and growth of the eutectic in a commercia...
Eutectic modification with Sr, Na or Sb yields a refined fibrous silicon morphology which can improv...
Directional solidification of unmodified and strontium modified binary, high-purity aluminium-7 wt% ...
The influence of sodium (Na) on nucleation and growth of the Al-Si eutectic in a commercial hypoeute...
As the refiner or modifier, the master alloys containing high concentration phosphor are widely used...
A new multi-zone model is proposed that explains how porosity forms in various regions of a casting ...
The formation of the Al-Si eutectic is generally the final stage of the solidification process of Al...
Commercial hypoeutectic Al-Si foundry alloys contain between 50 and 90 vol% eutectic. Solidification...
It is now well established that three different eutectic solidification mechanisms may occur in Al-S...
Recent increasing applications for cast Al-Si alloys are particularly driven by the need for lightwe...
This work will be focused on problematics of controling the grain size and morphology of eutectics o...
The formulation of alloy compositions for aluminium castings has not changed significantly for decad...
The eutectic microstructure in hypoeutectic Al-Si cast alloys is strongly influenced by AlP particle...
The nucleation mechanism of eutectic grains in hypoeutectic Al-Si foundry alloys has been investigat...
This sample is a casting alloy of eutectic composition. From the melt a eutectic is formed between a...
The effects of different levels of strontium on nucleation and growth of the eutectic in a commercia...
Eutectic modification with Sr, Na or Sb yields a refined fibrous silicon morphology which can improv...
Directional solidification of unmodified and strontium modified binary, high-purity aluminium-7 wt% ...
The influence of sodium (Na) on nucleation and growth of the Al-Si eutectic in a commercial hypoeute...
As the refiner or modifier, the master alloys containing high concentration phosphor are widely used...
A new multi-zone model is proposed that explains how porosity forms in various regions of a casting ...