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- W2045023604 abstract "Purpose The purpose of this paper is to find the optimal values of process parameters in injection molding when both warpage and shrinkage are minimized. Design/methodology/approach In finding the optimal values, advantages of finite element software, Moldflow, and dual response surface method (dual RSM) combined with the nonlinear programming technique by Lingo are exploited. Considering the nine process parameters, injection time, injection pressure, packing pressure, packing time, cooling time, coolant temperature, mold‐open time, melting temperature and mold surface temperature, a series of mold analyses are performed to exploit the warpage and shrinkage data. In the analyses, warpage is considered the primary response, whereas shrinkage is the secondary response. Findings The results indicate that dual RSM combined with the nonlinear programming technique can outperform the Taguchi's optimization method. The optimal process values are also confirmed by re‐running experiments on Moldflow. Additionally, an auxiliary dual RSM model is proposed to search for a better result based on the given findings by dual RSM at the cost of running extra experiments. Based on dual RSM, a multiple objective optimization for the whole plastic product is finally suggested to integrate the dual RSM models that are developed for the individual nodes or edges. Originality/value This paper proposes a new method to find the optimal process for plastic injection molding." @default.
- W2045023604 created "2016-06-24" @default.
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- W2045023604 date "2010-11-16" @default.
- W2045023604 modified "2023-09-25" @default.
- W2045023604 title "Optimization of plastic injection molding process by dual response surface method with non‐linear programming" @default.
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- W2045023604 doi "https://doi.org/10.1108/02644401011082971" @default.
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