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Design and optimization of three-dimensional extrusion dies, using constraint optimization algorithm

机译:基于约束优化算法的三维挤压模设计与优化

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Balancing the distribution of flow through a die to achieve a uniform velocity distribution is the primary objective and one of the most difficult tasks of extrusion die design. If the manifold in a Coat-hanger die is not properly designed, the exit velocity distribution may be not uniform; this can affect the thickness across the width of the die. Yet, no procedure is known to optimize the coat hanger die with respect to an even velocity profile at the exit. While optimizing the exit velocity distribution, the constraint optimization algorithm used in this work enforced a limit on the maximum allowable pressure drop in the die; according to this constraint we can control the pressure in the die. The computational approach incorporates three-dimensional finite element simulations software Rem3D~R and includes an optimization algorithm based on the global response surfaces with the Kriging interpolation and SQP algorithm within an adaptive strategy of the search space to allow the location of the global optimum with a fast convergence. The optimization results which represent the best die design are presented according to the imposed constraint on the pressure.
机译:平衡通过模具的流量分布以实现均匀的速度分布是挤出模具设计的主要目标,也是最困难的任务之一。如果衣帽架模具中的歧管设计不当,出口速度分布可能会不均匀;这会影响整个模具宽度的厚度。然而,尚无程序针对出口处的均匀速度分布来优化衣架模具。在优化出口速度分布的同时,这项工作中使用的约束优化算法对模具中的最大允许压降施加了限制。根据此约束,我们可以控制模具中的压力。该计算方法结合了三维有限元模拟软件Rem3D〜R,并在搜索空间的自适应策略中包括了基于全局响应面的优化算法以及Kriging插值和SQP算法,从而可以通过快速收敛。根据对压力的限制,给出了代表最佳模具设计的优化结果。

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