The solidification heat transfer, melt convection, and volume shrinkage in the casting of an energetic material are analyzed through numerical modeling and experimental investigation. The shrinkage resulting from phase change is considered through the volume-of-fluid method. The model is validated against an analytical solution and then applied to study the volume contraction during the casting of trinitrotoluene (TNT). Good agreement is obtained between experimental results and predictions of temperatures at selected locations as well as shrinkage shape. New casting conditions are suggested based on the analysis, and improved results are observed both numerically and experimentally
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...
The solidification phenomenon is present in the casting process of energetic materials. In defence i...
Two numerical models have been developed to describe the volumetric changes during solidification in...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
A mathematical model is established to investigate the shrinkage effect for a unidirectional solidif...
This dissertation presents an analytical study of shrinkage-induced transport phenomena during alloy...
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...
The shrinkage during solidification of aluminium and iron based alloys has been studied experimental...
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...
The solidification phenomenon is present in the casting process of energetic materials. In defence i...
Two numerical models have been developed to describe the volumetric changes during solidification in...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
Cast trinitrotoluene (TNT) based high explosive charges suffer from different defects such as cracks...
A mathematical model is established to investigate the shrinkage effect for a unidirectional solidif...
This dissertation presents an analytical study of shrinkage-induced transport phenomena during alloy...
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...
The shrinkage during solidification of aluminium and iron based alloys has been studied experimental...
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...