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Investigation on the Coupling Effects between Flow and Fibers on Fiber-Reinforced Plastic (FRP) Injection Parts

机译:纤维增强塑料(FRP)注射件流动和纤维耦合效应的研究

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摘要

Glass or carbon fibers have been verified that can enhance the mechanical properties of the polymeric composite injection molding parts due to their orientation distribution. However, the interaction between flow and fiber is still not fully understood yet, especially for the flow–fiber coupling effect. In this study, we have tried to investigate the flow–fiber coupling effect on fiber reinforced plastics (FRP) injection parts utilizing a more complicated geometry system with three ASTM D638 specimens. The study methods include both numerical simulation and experimental observation. Results showed that in the presence of flow–fiber coupling effect, the melt flow front advancement presents some variation, specifically the “convex-flat-flat” pattern will change to a “convex-flat-concave” pattern. Furthermore, through the fiber orientation distribution (FOD) study, the flow–fiber coupling effect is not significant at the near gate region (RG). It might result from the strong shear force to repress the appearance of the flow–fiber interaction. However, at the end of filling region (ER), the flow–fiber coupling effect tries to diminish the flow direction orientation tensor component A11 and enhance the cross-flow orientation tensor component A22 simultaneously. It results in the dominance in the cross-flow direction at the ER. This orientation distribution behavior variation has been verified using a micro-computerized tomography (micro-CT) scan and image analysis technology.
机译:已经验证了玻璃或碳纤维,其由于其取向分布而可以增强聚合物复合注射成型部件的机械性能。然而,尚未完全理解流动和光纤之间的相互作用,特别是对于流动光纤耦合效果。在这项研究中,我们试图研究利用具有三个ASTM D638样本的更复杂的几何系统对纤维增强塑料(FRP)喷射部件的流动纤维耦合效应。研究方法包括数值模拟和实验观察。结果表明,在流动纤维耦合效果的情况下,熔体流动前进方向具有一些变化,特别是“凸平扁平的”图案将改变为“凸平凹槽”图案。此外,通过纤维取向分布(FOD)研究,流动光纤耦合效果在近栅极区域(RG)处不显着。它可能是由强剪切力来压制流动纤维相互作用的外观。然而,在填充区域(ER)的末端,流动光纤耦合效果试图减小流动方向取向张量组件A11并同时增强横向定向张量组件A22。它导致er的交叉流动方向的优势。使用微型计算机断层扫描(Micro-CT)扫描和图像分析技术已经验证了该定向分布行为变化。

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