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Simulation of mold filling and prediction of gas entrapment on practical high pressure die castings 被引量:9

Simulation of mold filling and prediction of gas entrapment on practical high pressure die castings
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摘要 Element parameters including volume filled ratio,surface dimensionless distance,and surface filled ratio for DFDM(direct finite difference method)were proposed to describe shape and location of free surfaces in casting mold filling processes.A mathematical model of the filling process was proposed specially considering the mass,momentum and heat transfer in the vicinity of free surfaces.Furthermore,a method for gas entrapment was established by tracking flow of entrapped gas.The model and method were applied to practical ADC1 high pressure die castings.The gas entrapment prediction was compared with the fraction and maximum size of porosities in the different casting parts.The comparison shows validity of the proposed model and method.The study indicates that final porosities in high pressure die castings are dependent on both gas entrapment during mold filling process and pressure transfer within solidification period. Element parameters including volume filled ratio, surface dimensionless distance, and surface filled ratio for DFDM (direct finite difference method) were proposed to describe shape and location of free surfaces in casting mold filling processes. A mathematical model of the filling process was proposed specially considering the mass, momentum and heat transfer in the vicinity of free surfaces. Furthermore, a method for gas entrapment was established by tracking flow of entrapped gas. The model and method were applied to practical ADC1 high pressure die castings. The gas entrapment prediction was compared with the fraction and maximum size of porosities in the different casting parts. The comparison shows validity of the proposed model and method. The study indicates that final porosities in high pressure die castings are dependent on both gas entrapment during mold filling process and pressure transfer within solidification period.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第11期2064-2070,共7页 中国有色金属学报(英文版)
基金 Project(50975093)supported by the National Natural Science Foundation of China Project(08-0209)supported by New Century Excellent Talent in University,Ministry of Education,China Project(2009ZM0283)supported by the Fundamental Research Funds for the Central Universities,China
关键词 铸件充型 高压 预测 滞留 气体 模拟 表面形状 数学模型 high pressure die casting mold filling gas entrapment
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参考文献15

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二级参考文献17

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