Using a fully coupled transient 3-dimensional numerical model, the effects of convection on the microstructural evolution of a thin sample of Ga-In25%wt. was predicted. The effects of natural convection, forced convection and thermoelectric magnetohydrodynamics were investigated numerically. A comparison of the numerical results is made to experimental results for natural convection and forced convection. In the case of natural convection, density variations within the liquid cause plumes of solute to be ejected into the bulk. When forced convection is applied observed effects include the suppression of solute plumes, preferential secondary arm growth and an increase in primary arm spacing. These effects were observed both numerically and e...
Dendritic growth velocities of pure Fe under static magnetic fields of intensity ranging from B = 0 ...
International audienceThis work investigated the thermoelectric magnetic convection (TEMC) during di...
Melt pools formed in laser additive manufacturing (AM) are subject to large thermal gradients, resul...
During the directional solidification of Ga-In25%wt., density variations in the liquid cause plumes ...
The effects of a constant uniform magnetic field on thermoelectric currents during dendritic solidif...
The effects of applying a 0.2-T transverse magnetic field on a solidifying Ga-25 wt%In alloy have be...
The focus of this work is to investigate the effects of applying an external magnetic field to a sol...
The effects of applying a 0.2-T transverse magnetic field on a solidifying Ga-25 wt%In alloy have be...
The effects of applying a 0.2-T transverse magnetic field on a solidifying Ga-25 wt%In alloy have be...
An unexplored potential exists to control microstructure evolution through the use of external DC ma...
During alloy solidification, it has been observed that the morphology of microstructures can be alte...
The mechanism of macrosegregation and modification to dendrite size and spacing from a transverse ma...
Thermoelectric currents in the presence of a magnetic field generate Lorentz forces which can drive ...
A key technique for controlling solidification microstructures is magneto-hydrodynamics (MHD), resul...
The effects of a constant uniform magnetic field on dendritic solidification were investigated using...
Dendritic growth velocities of pure Fe under static magnetic fields of intensity ranging from B = 0 ...
International audienceThis work investigated the thermoelectric magnetic convection (TEMC) during di...
Melt pools formed in laser additive manufacturing (AM) are subject to large thermal gradients, resul...
During the directional solidification of Ga-In25%wt., density variations in the liquid cause plumes ...
The effects of a constant uniform magnetic field on thermoelectric currents during dendritic solidif...
The effects of applying a 0.2-T transverse magnetic field on a solidifying Ga-25 wt%In alloy have be...
The focus of this work is to investigate the effects of applying an external magnetic field to a sol...
The effects of applying a 0.2-T transverse magnetic field on a solidifying Ga-25 wt%In alloy have be...
The effects of applying a 0.2-T transverse magnetic field on a solidifying Ga-25 wt%In alloy have be...
An unexplored potential exists to control microstructure evolution through the use of external DC ma...
During alloy solidification, it has been observed that the morphology of microstructures can be alte...
The mechanism of macrosegregation and modification to dendrite size and spacing from a transverse ma...
Thermoelectric currents in the presence of a magnetic field generate Lorentz forces which can drive ...
A key technique for controlling solidification microstructures is magneto-hydrodynamics (MHD), resul...
The effects of a constant uniform magnetic field on dendritic solidification were investigated using...
Dendritic growth velocities of pure Fe under static magnetic fields of intensity ranging from B = 0 ...
International audienceThis work investigated the thermoelectric magnetic convection (TEMC) during di...
Melt pools formed in laser additive manufacturing (AM) are subject to large thermal gradients, resul...