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Flow restrictor design for extrusion slit dies for a range of materials: Simulation and comparison of optimization techniques

机译:适用于各种材料的挤出狭缝模具的限流器设计:优化技术的模拟和比较

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摘要

Based on a finite element simulation of slit die performance that takes into account the coupling of melt flow and die body deflection due to melt pressure, a genetic algorithm, a multipoint approximation optimization technique, and a gradient-based optimization technique are applied to determine choker bar profiles to give optimum melt flow distribution. The performances of the optimization methods are compared with respect to efficiency and ability to obtain a global optimum. This work involves three materials of varying degrees of shear thinning, each at a high and a low flow rate. The developed software makes it possible to predict whether restrictor adjustment can produce acceptably uniform flow distribution in a given application, using a given die, and shows what restrictor profile should be set up, thereby eliminating or reducing the need for on-line trial and adjustment, and establishing if the same die can be used for a range of materials to reduce costs.
机译:在考虑熔体压力导致熔体流动和模体挠度耦合的情况下,采用狭缝模具性能有限元模拟,采用遗传算法、多点逼近优化技术和梯度优化技术确定扼流圈轮廓,以获得最佳熔体流动分布。比较了优化方法在效率和获得全局最优值的能力方面的性能。这项工作涉及三种不同程度剪切变薄的材料,每种材料都处于高流速和低流速状态。开发的软件可以预测限流器调整是否可以在给定的应用中使用给定的模具产生可接受的均匀流量分布,并显示应设置哪种限流器轮廓,从而消除或减少在线试验和调整的需要,并确定是否可以将同一模具用于一系列材料以降低成本。

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