Two numerical models have been developed to describe the volumetric changes during solidification in pure metals and alloys and to predict shrinkage defects in the castings of general three-dimensional configuration. The first model is based on the full system of the Continuity, Navier-Stokes and Enthalpy Equations. Volumetric changes are described by introducing a source term in the Continuity Equation which is a function of the rate of local phase transformation. The model is capable of simulating both volumetric shrinkage and expansion. The second simplified shrinkage model involves the solution of only the Enthalpy Equation. Simplifying assumptions that the feeding flow is governed only by gravity and solidification rate and that phase ...
The solidification heat transfer, melt convection, and volume shrinkage in the casting of an energet...
The present paper presents a three-dimensional model that is capable of predicting the pressure drop...
The present paper presents a three-dimensional model that is capable of predicting the pressure drop...
Two numerical models have been developed to describe the volumetric changes during solidification i...
Presented paper shows the mathematical and numerical approaches for modelling of binary alloy solidi...
This paper concerns the modelling of the solidification process including the phenomena of heat tran...
This paper concerns the modelling of the solidification process including the phenomena of heat tran...
This paper concerns the modelling of the solidification process including the phenomena of heat tran...
A numerical model is developed to study Shrinkage induced convection and free surface evolution caus...
The shrinkage during solidification of aluminium and iron based alloys has been studied experimental...
The finite-element simulation of heat transfer and metal-casting solidification is discussed. New te...
The primary focus of the present work is to model the entire casting process from filling stage to c...
A mathematical model is established to investigate the shrinkage effect for a unidirectional solidif...
The most recent developments and applications in volume-averaged modeling of solidification processe...
The finite-element simulation of heat transfer and metal-casting solidification is discussed. New te...
The solidification heat transfer, melt convection, and volume shrinkage in the casting of an energet...
The present paper presents a three-dimensional model that is capable of predicting the pressure drop...
The present paper presents a three-dimensional model that is capable of predicting the pressure drop...
Two numerical models have been developed to describe the volumetric changes during solidification i...
Presented paper shows the mathematical and numerical approaches for modelling of binary alloy solidi...
This paper concerns the modelling of the solidification process including the phenomena of heat tran...
This paper concerns the modelling of the solidification process including the phenomena of heat tran...
This paper concerns the modelling of the solidification process including the phenomena of heat tran...
A numerical model is developed to study Shrinkage induced convection and free surface evolution caus...
The shrinkage during solidification of aluminium and iron based alloys has been studied experimental...
The finite-element simulation of heat transfer and metal-casting solidification is discussed. New te...
The primary focus of the present work is to model the entire casting process from filling stage to c...
A mathematical model is established to investigate the shrinkage effect for a unidirectional solidif...
The most recent developments and applications in volume-averaged modeling of solidification processe...
The finite-element simulation of heat transfer and metal-casting solidification is discussed. New te...
The solidification heat transfer, melt convection, and volume shrinkage in the casting of an energet...
The present paper presents a three-dimensional model that is capable of predicting the pressure drop...
The present paper presents a three-dimensional model that is capable of predicting the pressure drop...