Estimation of the heat flow at the metal-mold interface is necessary for accurate simulation of the solidification processes. For the numerical simulation, a precise prediction of boundary conditions is required to determine the temperature distribution during solidification, porosity nucleation, microstructure development, and residual stresses. Determination of the heat transfer coefficients at the metal-mold interface is a critical aspect for simulation of the solidification process and the microstructure modeling of the castings. For crystallization under the pressure and for thin-walled castings, HTC evaluation is important due to the very limited freezing time
grantor: University of TorontoA generalized temperature boundary condition coupling strate...
The evolution of heat transfer coefficient (HTC) in the sand casting of A357 aluminum alloy against ...
The evolution of heat transfer coefficient (HTC) in the sand casting of A357 aluminum alloy against ...
Estimation of the heat flow at the metal-mold interface is necessary for accurate simulation of the ...
The present work focuses on the determination of transient mold-environment and metal-mold heat tran...
During solidification, the mathematical analysis of heat flow depends on the transient heat transfer...
The present work identifies the mechanisms of heat transfer at a metal-mold interface during the sol...
The present work identifies the mechanisms of heat transfer at a metal-mold interface during the sol...
Accurate modeling of the metal casting process prior to creating a mold design demands reliable know...
The future of solidification processing clearly lies not only in elucidating the various aspects of ...
During the solidification process, the mathematical analysis of heat flow depends on the transient h...
The heat transfer coefficient at the metal-mold interface (h MM) has been determined for the first t...
In order to obtain reliable sand casting products, it is essential that the temperature distribution...
In order to obtain reliable sand casting products, it is essential that the temperature distribution...
grantor: University of TorontoA generalized temperature boundary condition coupling strate...
grantor: University of TorontoA generalized temperature boundary condition coupling strate...
The evolution of heat transfer coefficient (HTC) in the sand casting of A357 aluminum alloy against ...
The evolution of heat transfer coefficient (HTC) in the sand casting of A357 aluminum alloy against ...
Estimation of the heat flow at the metal-mold interface is necessary for accurate simulation of the ...
The present work focuses on the determination of transient mold-environment and metal-mold heat tran...
During solidification, the mathematical analysis of heat flow depends on the transient heat transfer...
The present work identifies the mechanisms of heat transfer at a metal-mold interface during the sol...
The present work identifies the mechanisms of heat transfer at a metal-mold interface during the sol...
Accurate modeling of the metal casting process prior to creating a mold design demands reliable know...
The future of solidification processing clearly lies not only in elucidating the various aspects of ...
During the solidification process, the mathematical analysis of heat flow depends on the transient h...
The heat transfer coefficient at the metal-mold interface (h MM) has been determined for the first t...
In order to obtain reliable sand casting products, it is essential that the temperature distribution...
In order to obtain reliable sand casting products, it is essential that the temperature distribution...
grantor: University of TorontoA generalized temperature boundary condition coupling strate...
grantor: University of TorontoA generalized temperature boundary condition coupling strate...
The evolution of heat transfer coefficient (HTC) in the sand casting of A357 aluminum alloy against ...
The evolution of heat transfer coefficient (HTC) in the sand casting of A357 aluminum alloy against ...