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Study on interfacial heat transfer coefficient at metal/die interface during high pressure die casting process of AZ91D alloy
作者姓名:M. Murakami  Y. Matsumoto  S. Ikeda
作者单位:TOYO Machinery & Metal Co. Ltd,TOYO Machinery & Metal Co. Ltd,TOYO Machinery & Metal Co. Ltd 674-0091 Japan,674-0091 Japan,674-0091 Japan
摘    要:The high pressure die casting (HPDC) process is one of the fastest growing and most efficient methods for the production of complex shape castings of magnesium and aluminum alloys in today's manufacturing industry. In this study, a high pressure die casting experiment using AZ91D magnesium alloy was conducted, and the temperature profiles inside the die were measured. By using a computer program based on solving the inverse heat problem, the metal/die interfacial heat transfer coefficient (IHTC) was calculated and studied. The results show that the IHTC between the metal and die increases right after the liquid metal is brought into the cavity by the plunger, and decreases as the solidification process of the liquid metal proceeds until the liquid metal is completely solidified, when the IHTC tends to be stable. The interfacial heat transfer coefficient shows different characteristics under different casting wall thicknesses and varies with the change of solidification behavior.

关 键 词:AZ91D合金  高压模铸过程  金属/模具界面  界面传热系数

Study on interfacial heat transfer coefficient at metal/die interface during high pressure die casting process of AZ91D alloy
M. Murakami,Y. Matsumoto,S. Ikeda.Study on interfacial heat transfer coefficient at metal/die interface during high pressure die casting process of AZ91D alloy[J].China Foundry,2007,4(1):5-9.
Authors:GUO Zhi-peng  XIONG Shou-mei  M Murakami  Y Matsumoto  S Ikeda
Abstract:The high pressure die casting (HPDC) process is one of the fastest growing and most efficient methods for the production of complex shape castings of magnesium and aluminum alloys in today's manufacturing industry. In this study, a high pressure die casting experiment using AZ91D magnesium alloy was conducted, and the temperature profiles inside the die were measured. By using a computer program based on solving the inverse heat problem, the metal/die interfacial heat transfer coefficient (IHTC) was calculated and studied. The results show that the IHTC between the metal and die increases right after the liquid metal is brought into the cavity by the plunger, and decreases as the solidification process of the liquid metal proceeds until the liquid metal is completely solidified, when the IHTC tends to be stable. The interfacial heat transfer coefficient shows different characteristics under different casting wall thicknesses and varies with the change of solidification behavior.
Keywords:high pressure die casting (HPDC)  magnesium alloy  interfacial heat transfer coefficient(IHTC)
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