Multi-objective optimization of process parametersduring low-pressure die casting of AZ91Dmagnesium alloy wheel castings  被引量:10

Multi-objective optimization of process parameters during low-pressure die casting of AZ91D magnesium alloy wheel castings

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作  者:Chen Zhang Yu Fu Han Wang Hai Hao 

机构地区:[1]Key Laboratort of Solidification Control and Digital Preparation Technology of Liaoning Province,School of Materials Science and Engineering,Dalian University of Technology,Dalian 116024,China

出  处:《China Foundry》2018年第5期327-332,共6页中国铸造(英文版)

基  金:financially supported by the National Key Research and Development Program of China(Grant No.2016YFB0701204)

摘  要:Multi-objective optimization has been increasingly applied in engineering where optimal decisions need to be made in the presence of trade-offs between two or more objectives. Minimizing the volume of shrinkage porosity, while reducing the secondary dendritic arm spacing of a wheel casting during low-pressure die casting(LPDC) process, was taken as an example of such problem. A commercial simulation software Pro CASTTM was applied to simulate the filling and solidification processes. Additionally, a program for integrating the optimization algorithm with numerical simulation was developed based on SiPESC. By setting pouring temperature and filling pressure as design variables, shrinkage porosity and secondary dendritic arm spacing as objective variables, the multi-objective optimization of minimum volume of shrinkage porosity and secondary dendritic arm spacing was achieved. The optimal combination of AZ91 D wheel casting was: pouring temperature 689 °C and filling pressure 6.5 kPa. The predicted values decreased from 4.1% to 2.1% for shrinkage porosity, and 88.5 μm to 81.2 μm for the secondary dendritic arm spacing. The optimal results proved the feasibility of the developed program in multi-objective optimization.Multi-objective optimization has been increasingly applied in engineering where optimal decisions need to be made in the presence of trade-offs between two or more objectives. Minimizing the volume of shrinkage porosity, while reducing the secondary dendritic arm spacing of a wheel casting during low-pressure die casting(LPDC) process, was taken as an example of such problem. A commercial simulation software Pro CASTTM was applied to simulate the filling and solidification processes. Additionally, a program for integrating the optimization algorithm with numerical simulation was developed based on SiPESC. By setting pouring temperature and filling pressure as design variables, shrinkage porosity and secondary dendritic arm spacing as objective variables, the multi-objective optimization of minimum volume of shrinkage porosity and secondary dendritic arm spacing was achieved. The optimal combination of AZ91 D wheel casting was: pouring temperature 689 °C and filling pressure 6.5 kPa. The predicted values decreased from 4.1% to 2.1% for shrinkage porosity, and 88.5 μm to 81.2 μm for the secondary dendritic arm spacing. The optimal results proved the feasibility of the developed program in multi-objective optimization.

关 键 词:magnesium alloy multi-objective optimization process parameters shrinkage porosity secondary DENDRITIC arm SPACING 

分 类 号:TG249.2[金属学及工艺—铸造]

 

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