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Optimal Design of the Coat-Hanger Die Used for Producing Melt-Blown Fabrics by Finite Element Method and Evolution Strategies

机译:有限元法和演变策略的熔喷织物生产挂衣架模具的优化设计。

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摘要

In this article, an optimal design procedure that improves the uniformity of flow rate distribution at the outlet of the coat-hanger die is proposed. The twomembered evolution strategy was combined with the finite element method to optimize the design parameters of an initial coat-hanger die geometry designed by analytical method based on one-dimensional lubrication method. The slot gap and the manifold angle were chosen to be the optimized design parameters, and the coefficient of variation (CV) value of the flow velocity at the die outlet is regarded as the objective function. The optimal results were achieved in the 22nd generation after 100 generations' evolution, which show that the CV% value of the flow velocity at the die outlet is only 1.3631% and decreases by 68% of the initial value caused by unoptimizable die geometry. [PUBLICATION ABSTRACT]
机译:在本文中,提出了一种优化设计程序,该程序可以提高衣架模具出口处的流速分布的均匀性。将二元演​​化策略与有限元方法相结合,以基于一维润滑方法的解析方法设计的初始衣架模具的几何参数优化。选择缝隙间隙和歧管角度作为优化设计参数,并将模具出口处流速的变异系数(CV)值作为目标函数。经过100代的演变,在第22代中获得了最佳结果,该结果表明,模具出口处流速的CV%值仅为1.3631%,并且由于无法优化的模具几何形状而降低了初始值的68%。 [出版物摘要]

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