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Topology and Shape Optimization Design in Cooling System of Vacuum Calibrator for Plastic Profile Extrusion

机译:塑料异型材挤出机真空校准器冷却系统的拓扑和形状优化设计

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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. Based on the finite element method (FEM) and the finite difference method (FDM), the numerical simulation of the cooling process is realized for plastic profile within calibrator. The simultaneous shape and topology optimization design is developed for the cooling system in calibrator. A mathematical model is constructed in which the cooling uniformity and efficiency of each domain in the cross sections of the calibrator's exit are taken as the objective function. An evolutionary optimization method is presented to treat such topological problems whereby cooling channel is introduced or eliminated within the calibrator through a sequence of shape optimization processes. A mathematical programming technique enables the optimal location of the cooling channels plus their shape. The correctness and validity of the design method are illustrated through optimization design of SF66 profile's calibrator.
机译:挤出模具生产的塑料型材需要冷却并通过校准器进行校准,因此,对于型材质量而言,正确设计校准器中的冷却系统非常重要。基于有限元法(FEM)和有限差分法(FDM),对校准器内塑料型材的冷却过程进行了数值模拟。为校准器中的冷却系统开发了形状和拓扑结构同时优化的设计。建立一个数学模型,其中将校准器出口横截面中每个区域的冷却均匀性和效率作为目标函数。提出了一种进化优化方法来处理此类拓扑问题,从而通过一系列形状优化过程在校准器内引入或消除冷却通道。数学编程技术可实现冷却通道及其形状的最佳位置。通过对SF66型材标定器的优化设计,说明了该设计方法的正确性和有效性。

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