Modeling of Air Venting in Pressure Die Casting Process

Author:

Nouri-Borujerdi A.1,Goldak J. A.2

Affiliation:

1. School of Mechanical Engineering, Sharif University of Technology, P.O. Box 11365-9567, Tehran, Iran

2. Carleton University, Mechanical and Aerospace Engineering Department, Ottawa ON K1S 5B6, Canada

Abstract

In this study an analytical model has been developed to describe air pressure and residual air mass variations in pressure die casting for atmospheric venting. During injection of molten metal into a die cavity, air is evacuated from the cavity through vents. In this study, the influences of air velocity and friction factor due to temperature dependent viscosity and vent roughness change have been investigated. The results of the model show that there is a critical area ratio over which a quasi steady state is reached, therefore, the air pressure in the cavity remains constant. In addition, for each area ratio there is a critical/minimum time ratio below which outlet Mach number is not large enough to create choked flow. In this case, the rate of outflow air mass is not maximum. Finally, the results of the model addresses that the friction factor depends on hydraulic diameter of the vent and assuming a constant value for it is not valid.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference19 articles.

1. Yoshiaki, Yamamoto, and Yasushi, Iwata, 1988, “Metal Flow and Solidification Behavior of Aluminum Die Casting,” Foundry Trade J., 60, pp. 770–776.

2. Yoshiaki, Yamamoto, and Yasushi Iwata, 1989, “Molten Metal Velocities and Gas Pressure in Die Cavity and Defects in Commercial Aluminum Pressure Die Casting,” 15th International Die Casting Congress and Exposition, paper No. G-T 89-081, St. Louis.

3. Koichi, Tanaka, and Kazuhiko, Terashima, 1993, “Metal Filling Behavior During Die Casting under the Reduced Pressure,” Foundry Trade J., 65, pp. 277–283.

4. Lee, Wing-Bun, 1976, “The High Pressure Die Casting of Quality Thin-Wall Components,” Dissertation, Brunel University.

5. Li, Xianchen, 1990, “On the Filling Theory and Porosity Forming in Die Casting, Trends of Die Casting,” Shanghai Die Casting Society, pp. 3–4.

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