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Optimization Design in Cooling System of Heterogeneous Calibrator for Plastic Profile Extrusion

机译:用于塑性型材挤压的异构校准器冷却系统优化设计

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Plastic profiles produced by extrusion die are cooled down and calibrated by calibrators, so it is very important to properly design the cooling system in calibrator for the profile quality. In this paper, considering the cooling channels’ location, size, number and the calibrator’s material distribution simultaneously, the optimization design of heterogeneous calibrator cooling system is investigated. An evolutionary optimization method is presented to treat such coupling problem of geometry and material by the concurrent design for cooling channels and material distribution of calibrator with a series of topology configurations (number of cooling channels). The changing of topological configuration is realized by channel-inserting policy based on the sensitivity analysis of objective function. For the concurrent design for cooling channels and material of calibrator with definite topology configuration, a new approach combining the interior penalty-function method with the genetic algorithm (GA) is proposed. The correctness and validity of the design method are illustrated through optimization design of SF66 profile’s calibrator.
机译:通过挤出模具产生的塑料型材通过校准器冷却并校准,因此正确地设计校准器中的冷却系统非常重要。本文同时考虑冷却通道的位置,尺寸,数量和校准器的材料分布,研究了异质校准冷却系统的优化设计。提出了一种进化优化方法,以通过一系列拓扑配置的冷却通道和校准器材料分布的并发设计来处理几何形状和材料的这种耦合问题。基于客观函数的灵敏度分析,通过通道插入策略实现拓扑配置的变化。对于具有明确拓扑结构的冷却通道和校准器材料的并发设计,提出了一种与遗传算法(GA)结合内部惩罚功能方法的新方法。通过SF66简介校准器的优化设计说明了设计方法的正确性和有效性。

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