Modeling of Metal-Mold Interface Resistance in the Al-11.5 wt% Si Alloy Casting Process
نویسندگان
doi
چکیده
In this investigation, a computational model has been developed, including heat transfer and the eects of the resistance of a metal-mold interface and pressure, for simulation of the solidication process. Simulation of the interface resistance is based on the Zero Thickness Element (ZTE), utilizing the Finite Element Method (FEM). Solid boundary conditions, including contact resistances, have been modied by a pressure gradient in each of the ZTE. The pressure gradient has been modeled, based on experimental data. In order to verify the computational results, an Al-11.5 wt% Si alloy was poured into a permanent mold and the temperature of the interface was measured by a data acquisition system. Then, the eect of metalo-static pressure on overall heat transfer in the interface resistance was modeled. Comparison between the experimental and simulation results during the solidication process shows a good consistency, which conrms the accuracy of the model for the eects of interface resistance on solidication time.