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Molecular Orientation Distributions During Injection Molding of Liquid Crystalline Polymers: Ex Situ Investigation of Partially Filled Moldings

机译:液晶聚合物注射成型过程中的分子取向分布:部分填充成型品的异位研究

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The development of molecular orientation in thermo-tropic liquid crystalline polymers (TLCPs) during injection molding has been investigated using two-dimensional wide-angle X-ray scattering coordinated with numerical computations employing the Larson-Doi polydomain model. Orientation distributions were measured in 'short shot' moldings to characterize structural evolution prior to completion of mold filling, in both thin and thick rectangular plaques. Distinct orientation patterns are observed near the filling front. In particular, strong extension at the melt front results in nearly transverse molecular alignment. Far away from the flow front shear competes with extension to produce complex spatial distributions of orientation. The relative influence of shear is stronger in the thin plaque, producing orientation along the filling direction. Exploiting an analogy between the Larson-Doi model and a fiber orientation model, we test the ability of process simulation tools to predict TLCP orientation distributions during molding. Substantial discrepancies between model predictions and experimental measurements are found near the flow front in partially filled short shots, attributed to the limits of the Hele-Shaw approximation used in the computations. Much of the flow front effect is however 'washed out" by subsequent shear flow as moid filling progresses, leading to improved agreement between experiment and corresponding numerical predictions.
机译:使用二维广角X射线散射并结合使用Larson-Doi多畴模型的数值计算,研究了注塑过程中热致液晶聚合物(TLCP)中分子取向的发展。在“短射”成型品中测量取向分布,以表征在完成模具填充之前在薄和厚矩形板中的结构演变。在灌装前沿附近观察到明显的定向模式。特别地,在熔体前沿的强延伸导致近乎横向的分子排列。远离流动的前沿,剪切力与延伸力竞争,以产生复杂的定向空间分布。剪切的相对影响在薄板中更强,沿填充方向产生方向。利用Larson-Doi模型和纤维取向模型之间的类比,我们测试了过程仿真工具预测成型期间TLCP取向分布的能力。模型预测和实验测量之间的显着差异在部分填充的短镜头中在流动前沿附近发现,这归因于计算中使用的Hele-Shaw近似值的限制。但是,随着模子填充的进行,随后的剪切流会“冲走”大部分流前效应,从而改善了实验与相应的数值预测之间的一致性。

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