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Three-dimensional flow visualization experiment of an RTM injection for a GFRP cuff mold

机译:GFRP袖带模具RTM注射的三维流动可视化实验

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This work presents a three-dimensional flow visualization of the injection process for a glass fiber reinforced plastic (GFRP) beam-column connection also known as a GFRP cuff. Previous work on flow visualization is extended by highlighting the stage-wise process of the injection and the dependence on three-dimensional qualities. The work also provides finite element model adaptations suggested by three physical flow experiments performed in a GFRP cuff mold. The first experiment revealed the nature of the injection in the actual GFRP cuff mold; the second explored the effects of varying the size of void spaces and cutting channels in the fibers; the last experiment shows that small deflections of the mold allow the resin to flow freely to channels which distribute resin into the fibers. The final section of this paper provides the results of a finite element model of the injection process. The results reveal i that including the adaptations suggested by the experiments greatly increases the accuracy of the numerical simulation.
机译:这项工作呈现了玻璃纤维增​​强塑料(GFRP)梁柱连接(也称为GFRP袖套)的注射过程的三维流动可视化。通过重点介绍注射的分阶段过程以及对三维质量的依赖性,扩展了有关流动可视化的先前工作。这项工作还提供了在GFRP袖口模具中进行的三个物理流动实验所建议的有限元模型修改。第一个实验揭示了在实际的GFRP袖带模具中注射的性质;第二部分探讨了改变纤维中空隙空间和切割通道的尺寸的影响。最后的实验表明,模具的小变形允许树脂自由流动到将树脂分配到纤维中的通道中。本文的最后一部分提供了注射过程的有限元模型的结果。结果表明,包括实验建议的适应方法可以大大提高数值模拟的准确性。

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