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Multi-objective Runner Optimization for injection Mold of Combinational Cavities Based on Kriging Model

机译:基于Kriging模型的组合腔注射模具多目标流道优化

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Aiming at the runner design feature of injection mold of combinational cavities laid in non-natural balance, the design method of multi-objective runner optimization is put forward based on Kriging model. At fist, the basic theory of Kriging approximate model is proposed, and aiming at the feature of combinational cavities, the multi-objective optimum model of runner system is proposed also. In the solving multi-objective optimum model, the multi-objective ant colonies algorithm with crossover and mutation based on Pareto optimization is proposed. The given method is testified by a runner design instance of top and down cover of mouse, and it has a good application in engineering. The optimum result shows that the multi-objective ant colonies algorithm with crossover and mutation has good algorithmic performance.
机译:针对非自然平衡铺设的组合腔注射模具的跑步者设计特征,基于Kriging模型提出了多目标流道优化的设计方法。在拳头时,提出了克里格近似模型的基本理论,并旨在组合腔的特征,提出了转轮系统的多目标优化模型。在求解多目标优化模型中,提出了基于Pareto优化的交叉和突变的多目标蚁群算法。给定的方法由鼠标顶部和下盖的跑步者设计实例作证,并且它在工程中具有良好的应用。最佳结果表明,具有交叉和突变的多目标蚁群算法具有良好的算法性能。

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