Vacuum Arc Remelting (VAR) is the accepted method for producing homogeneous, fine microstructures that are free of inclusions required for rotating grade applications. However, as ingot sizes are increasing INCONEL 718 becomes increasingly susceptible to defects such as freckles, tree rings, and white spots increases for large diameter billets. Therefore, predictive models of these defects are required to allow optimization of process parameters. In this paper, a multiscale and multi-physics model is presented to predict the development of microstructures in the VAR ingot during solidification. At the microscale, a combined stochastic nucleation approach and finite difference solution of the solute diffusion is applied in the semi-soli...
Our recent works are devoted to simple thermal model concerning the ingot solidification during vacu...
Vacuum arc remelting (VAR) aims at production of high quality, segregation-free alloys. The quality ...
The presence of bulk and interdendritic flow during solidification can alter the microstructure, pot...
The final solidification structures of Vacuum Arc Remelting (VAR) ingots depend on the temperature d...
A multi-scale model of the VAR process was developed to simulate unsteady phenomena within the ingot...
A three-dimensional, transient, multiscale model of the VAR process is presented, allowing novel sim...
Vacuum Arc Remelting (VAR) is employed to produce homogeneous ingots with a controlled, fine, micros...
Vacuum arc remelting (VAR) is a secondary melting process for production of metal ingots with elevat...
The chemical homogeneity and metallurgical structure of vacuum arc remelted (VAR) zirconium ingots a...
Segregation defects greatly affect the service performance and working life of castings during the v...
Vacuum Arc Remelting (VAR) is employed to produce homogeneous ingots with a controlled, fine, micro...
International audienceAs the quality of vacuum arc-remelted (VAR) zirconium ingots is directly linke...
Main modeling challenges for vacuum arc remelting (VAR) are briefly highlighted concerning various i...
textVacuum Arc Remelting (VAR) is a secondary process used for homogenization of high-melting-point ...
textVacuum Arc Remelting (VAR) is a secondary process used for homogenization of high-melting-point ...
Our recent works are devoted to simple thermal model concerning the ingot solidification during vacu...
Vacuum arc remelting (VAR) aims at production of high quality, segregation-free alloys. The quality ...
The presence of bulk and interdendritic flow during solidification can alter the microstructure, pot...
The final solidification structures of Vacuum Arc Remelting (VAR) ingots depend on the temperature d...
A multi-scale model of the VAR process was developed to simulate unsteady phenomena within the ingot...
A three-dimensional, transient, multiscale model of the VAR process is presented, allowing novel sim...
Vacuum Arc Remelting (VAR) is employed to produce homogeneous ingots with a controlled, fine, micros...
Vacuum arc remelting (VAR) is a secondary melting process for production of metal ingots with elevat...
The chemical homogeneity and metallurgical structure of vacuum arc remelted (VAR) zirconium ingots a...
Segregation defects greatly affect the service performance and working life of castings during the v...
Vacuum Arc Remelting (VAR) is employed to produce homogeneous ingots with a controlled, fine, micro...
International audienceAs the quality of vacuum arc-remelted (VAR) zirconium ingots is directly linke...
Main modeling challenges for vacuum arc remelting (VAR) are briefly highlighted concerning various i...
textVacuum Arc Remelting (VAR) is a secondary process used for homogenization of high-melting-point ...
textVacuum Arc Remelting (VAR) is a secondary process used for homogenization of high-melting-point ...
Our recent works are devoted to simple thermal model concerning the ingot solidification during vacu...
Vacuum arc remelting (VAR) aims at production of high quality, segregation-free alloys. The quality ...
The presence of bulk and interdendritic flow during solidification can alter the microstructure, pot...