Samples of binary Al–Cu alloys quenched from the mushy state during permeability measurements [Ø. Nielsen, L. Arnberg, A. Mo, H. Thevik, Metall. Mater. Trans. A 30A (1999) 2455–2462] were mapped in 3D using microtomography at the European Synchrotron Radiation Facility. Using 3D image analysis, the tomograms were binarised in order to separate the Al dendrite skeleton from the quenched Al–Al2Cu eutectic, i.e., the interdendritic liquid during the permeability measurement. Subsequently, the complete permeability tensor was calculated for each sample by solving Stokes equations in the 3D tomogram domain constituted by the interdendritic liquid. In general, there is a reasonable agreement between the trace of the calculated permeability tensor...
The permeability of the semi-solid state is important for the compensation of volume shrinkage durin...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Samples of binary Al–Cu alloys quenched from the mushy state during permeability measurements [Ø. Ni...
A central parameter to describe the formation of porosity and macrosegregation during casting proce...
AbstractThe influence of the β-Al5FeSi intermetallic phase on permeability evolution during solidifi...
During the twin roll casting of Al alloys, the interdendritic liquid may flow as the two solidificat...
The interdendritic permeability is a critical parameter that defines the feedability of the mushy zo...
A new technique of analyzing flows through dendritic microstructures for permeability calculations i...
In order to characterize the flow of interdendritic liquid through the solid-liquid zones of solidif...
The equation for the conservation of momentum in the mushy zone during solidification is derived usi...
Important heat transfer parameters of aluminum foams of varying pore sizes are investigated through ...
The production of aluminium sheet is expensive and energy intensive despite the reduced environmenta...
Measurements of liquid permeability in the mushy zones of AI-15.42% Cu and Al-8.68% Cu alloy samples...
International audiencePowders of different compositions of Al-Cu alloys were atomized in helium and ...
The permeability of the semi-solid state is important for the compensation of volume shrinkage durin...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Samples of binary Al–Cu alloys quenched from the mushy state during permeability measurements [Ø. Ni...
A central parameter to describe the formation of porosity and macrosegregation during casting proce...
AbstractThe influence of the β-Al5FeSi intermetallic phase on permeability evolution during solidifi...
During the twin roll casting of Al alloys, the interdendritic liquid may flow as the two solidificat...
The interdendritic permeability is a critical parameter that defines the feedability of the mushy zo...
A new technique of analyzing flows through dendritic microstructures for permeability calculations i...
In order to characterize the flow of interdendritic liquid through the solid-liquid zones of solidif...
The equation for the conservation of momentum in the mushy zone during solidification is derived usi...
Important heat transfer parameters of aluminum foams of varying pore sizes are investigated through ...
The production of aluminium sheet is expensive and energy intensive despite the reduced environmenta...
Measurements of liquid permeability in the mushy zones of AI-15.42% Cu and Al-8.68% Cu alloy samples...
International audiencePowders of different compositions of Al-Cu alloys were atomized in helium and ...
The permeability of the semi-solid state is important for the compensation of volume shrinkage durin...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...
Nowadays, the need for developing more effective heat exchange technologies and innovative materials...