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Multi-objective optimization of injection molding parameters, based on the Gkriging-NSGA-vague method

机译:基于Gkriging-NSGA - 模糊法的注塑参数多目标优化

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摘要

Plastic production quality, manufacturing cost, and molding efficiency are three important indices for a new product development. In addition to injection molding process parameters (IMPP), runner system also has an important role in the injection molding process. In this study, the plastic production quality, manufacturing costs, and molding efficiency are considered as the optimized objectives. The design parameters include runner diameters and IMPP. The improved Kriging surrogate model (Gkriging), nondominated sorting genetic algorithm (NSGA-II), and multicriteria fuzzy decision-making approach (vague sets) are combined, and the Gkriging-NSGA-vague scheme is proposed to optimize the runner diameters and the IMPP. Firstly, the Gkriging model is established to map the correlation between design parameters and optimized objectives. Based on the Gkriging model, the NSGA-II is combined with predictive models to obtain the Pareto-optimal solutions. Then, the optimal Pareto-optimal solution is obtained by the vague approach. A multicavity mold with two different plastic parts is utilized as the design case. The optimization results indicate that the Gkriging-NSGA-vague method is a powerful method for solving the multi-objective optimization problems. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 137, 48659.
机译:塑料生产质量,制造成本和成型效率是新产品开发的三个重要指标。除了注塑工艺参数(IMPP)之外,RORNER系统还具有在注塑过程中具有重要作用。在本研究中,塑料生产质量,制造成本和成型效率被认为是优化的目标。设计参数包括旋流器直径和IMPP。组合了改进的克里格替代模型(GKriging),Nondomined分类遗传算法(NSGA-II)和多标准模糊决策方法(模糊组),提出了GKRIGing-NSGA模糊方案,以优化转轮直径和IMPP。首先,建立GKriging模型以映射设计参数与优化目标之间的相关性。基于GKRIGING模型,NSGA-II与预测模型组合以获得静态最佳解决方案。然后,通过模糊的方法获得最佳静态溶液。具有两种不同塑料部件的多游程模具用作设计案例。优化结果表明,GKriging-NSGA模糊方法是解决多目标优化问题的强大方法。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,137,48659。

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