Recently we have developed methods to enable the application of state-of-the-art analysis techniques for the determination of modification mechanisms, nucleation and growth during solidification in non-facet/facet hypoeutecic alloys. This work aims to use this unique method to develop grain refiners while keeping eutectic modification for use in the casting industry. The application focuses on the development of eutectic grain refiners for modified hypoeutectic aluminium-silicon alloys, which will result in major material property and processing improvements. New experimental approaches are μ-XRF(X-ray fluorescence) in Synchrotron radiation, EBSD (electron back-scattering diffraction) in SEM and FIB (focusing ion beam) in TEM
In addition to a change in silicon morphology, modification of aluminium-silicon alloys with stronti...
The eutectic microstructure in hypoeutectic Al-Si cast alloys is strongly influenced by AlP particle...
The purpose of this article is to examine the effect of different technological processes during and...
The nucleation mechanism of eutectic grains in hypoeutectic Al-Si foundry alloys has been investigat...
The effect of eutectic modification by strontium on nucleation and growth of the eutectic in hypoeut...
A previous study tried to prove that each plate of Si in the ordinary Al-Si eutectic is nucleated in...
Nucleation and growth of the eutectic, in hypoeutectic Al-Si foundry alloys has been investigated by...
The effects of different levels of strontium on nucleation and growth of the eutectic in a commercia...
Recent increasing applications for cast Al-Si alloys are particularly driven by the need for lightwe...
The effect of strontium (Sr), antimony (Sb) and phosphorus (P) on nucleation and growth mode of the ...
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...
The formulation of alloy compositions for aluminium castings has not changed significantly for decad...
Directional solidification of unmodified and strontium modified binary, high-purity aluminium-7 wt% ...
Analysis of intra- and inter-phase distribution of modifying elements in aluminium-silicon alloys is...
In addition to a change in silicon morphology, modification of aluminium-silicon alloys with stronti...
The eutectic microstructure in hypoeutectic Al-Si cast alloys is strongly influenced by AlP particle...
The purpose of this article is to examine the effect of different technological processes during and...
The nucleation mechanism of eutectic grains in hypoeutectic Al-Si foundry alloys has been investigat...
The effect of eutectic modification by strontium on nucleation and growth of the eutectic in hypoeut...
A previous study tried to prove that each plate of Si in the ordinary Al-Si eutectic is nucleated in...
Nucleation and growth of the eutectic, in hypoeutectic Al-Si foundry alloys has been investigated by...
The effects of different levels of strontium on nucleation and growth of the eutectic in a commercia...
Recent increasing applications for cast Al-Si alloys are particularly driven by the need for lightwe...
The effect of strontium (Sr), antimony (Sb) and phosphorus (P) on nucleation and growth mode of the ...
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...
The formulation of alloy compositions for aluminium castings has not changed significantly for decad...
Directional solidification of unmodified and strontium modified binary, high-purity aluminium-7 wt% ...
Analysis of intra- and inter-phase distribution of modifying elements in aluminium-silicon alloys is...
In addition to a change in silicon morphology, modification of aluminium-silicon alloys with stronti...
The eutectic microstructure in hypoeutectic Al-Si cast alloys is strongly influenced by AlP particle...
The purpose of this article is to examine the effect of different technological processes during and...