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Optimal Geometry Design of Double Coat-hanger Die for Melt Blowing Process

机译:吹塑双衣架模具的最佳几何设计

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摘要

Design of the wide coat-hanger die is of significant importance for melt blowing system because the die plays a key role in the uniformity wider nonwoven webs. In this article, a mathematical method combining finite element and numerical simulation is used to optimize double coat-hanger die with uniform outlet velocity. A numerical approach is developed for design of double coat-hanger die with quadratic geometry manifold. The results indicate that melt flow direction in the manifold is along its lengthwise direction and the CV value of outlet velocity is decreased obviously. In addition, a 40:3 elliptic rate of ellipse cavity is inserted in the double coat-hanger die slot. It shows that the ellipse cavity and slot act together to improve flow distribution and pressure drop. The result of outlet velocity CV value is under 1 % for 3.4 meter width of double coat-hanger die. The current study provides a simple method to obtain wider coat-hanger die suitable for melt blowing commercial production.
机译:宽衣架模具的设计对于熔喷系统非常重要,因为该模具在较宽的非织造纤维网的均匀性中起关键作用。在本文中,将有限元和数值模拟相结合的数学方法用于优化具有均匀出口速度的双层衣架模具。开发了一种用于设计具有二次几何流形的双层衣架模具的数值方法。结果表明,歧管中的熔体流动方向沿其长度方向,出口速度的CV值明显降低。另外,将椭圆腔的椭圆率为40:3插入双层衣架模头槽中。它表明椭圆形腔和狭缝共同作用以改善流量分布和压降。对于3.4米宽的双层衣架模具,出口速度CV值的结果低于1%。当前的研究提供了一种简单的方法来获得适用于熔喷商业生产的更宽的衣架模具。

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