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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Prediction and Validation of Short Fiber Orientation in a Complex Injection Molded Part with Chunky Geometry
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Prediction and Validation of Short Fiber Orientation in a Complex Injection Molded Part with Chunky Geometry

机译:具有矮胖几何形状的复杂注塑件中短纤维取向的预测和验证

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摘要

The paper shows the capability of state-of-the-art models and software to predict the fiber orientation distribution (FOD) on injection molded parts with a complex and thick-walled geometry. Predictions by the standard Folgar-Tucker model and the Reduced Strain Closure model were compared to measurements of the fiber orientation distribution obtained by Xray Computed Tomography. Measurements and simulations were performed under different processing conditions to investigate the influence of injection velocity and packing pressure on the FOD. It was found that the predicted fiber orientation is in good qualitative agreement with the measurements. The measured orientation shows a distinct shell-core structure with high alignment of the fibers in flow direction in the shell layer and a orientation perpendicular to the flow direction in the core layer. While the orientation in the shell layer is predicted fairly well, a significant deviation is found in the prediction of the orientation in the core layer.
机译:本文展示了先进的模型和软件能够预测具有复杂和厚壁几何形状的注塑零件上的纤维取向分布(FOD)的能力。将标准Folgar-Tucker模型和“减少应变闭合”模型的预测与通过X射线计算机断层扫描获得的纤维取向分布的测量值进行比较。在不同的加工条件下进行了测量和模拟,以研究注射速度和填充压力对FOD的影响。发现预测的纤维取向与测量结果在质量上吻合良好。测得的取向显示出独特的壳-芯结构,其中壳层中的纤维在流动方向上具有较高的排列性,而在芯层中的纤维与流动方向垂直。尽管可以很好地预测壳层中的方向,但是在预测芯层中的方向时会发现明显的偏差。

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