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Prediction of Fiber Orientation in the Injection Molding of Long Fiber Suspensions

机译:长纤维悬浮液注射成型中纤维取向的预测

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The properties of long glass fiber reinforced parts are highly dependent on the fiber orientation generated during processing. In this research, the orientation of concentrated long glass fibers generated during the filling stage of a center-gated disk (CGD) mold was simulated. The orientation of the fibers was calculated using both the Folgar-Tucker model and a recently developed semiflexible Bead-Rod model. Ideologically consistent model parameters were used in these simulations, as determined from a previously proposed method, using a sliding plate rheometer and newly modified stress theory. The predicted CGD orientations were compared with experimentally measured values obtained from the parts. Both models performed very well when using model parameters consistent with the independent rheological study, and the results provide encouragement for the proposed method. Comparatively, the Folgar-Tucker model provided slightly better orientation predictions up to 20% of the fill radius, but above 20% the Bead-Rod model predicted better values of the orientation in both the radial and circumferential directions. The Folgar-Tucker model, however, provided better orientation values perpendicular to the flow direction. Lastly, both models only qualitatively represented the orientation above 70% of the fill radius where frontal flow effects were suspected to be non-negligible. The uniqueness of this research rests on a method for obtaining model parameters needed to predict fiber orientation which are independent of the experiments being simulated and a method for handling long semiflexible fiber suspensions.
机译:长玻璃纤维增​​强部件的性能高度依赖于加工过程中产生的纤维取向。在这项研究中,模拟了在中心浇口圆盘(CGD)模具填充阶段产生的集中长玻璃纤维的取向。使用Folgar-Tucker模型和最近开发的半柔性Bead-Rod模型计算纤维的取向。在这些模拟中使用了意识形态上一致的模型参数,这些参数是根据以前提出的方法使用滑板流变仪和新修改的应力理论确定的。将预测的CGD方向与从零件获得的实验测量值进行比较。当使用与独立流变学研究一致的模型参数时,两个模型的性能都非常好,结果为所提出的方法提供了鼓励。相比之下,Folgar-Tucker模型在填充半径的20%以下提供了更好的方向预测,但在20%以上的Bead-Rod模型在径向和圆周方向上都预测了更好的取向值。但是,Folgar-Tucker模型提供了更好的垂直于流动方向的方向值。最后,两个模型仅定性地表示高于填充半径70%的方向,在该方向上,正面流动效应被认为是不可忽略的。这项研究的独特性在于一种用于获得预测纤维取向所需的模型参数的方法,该模型参数与模拟的实验无关,并且该方法用于处理长的半柔性纤维悬浮液。

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