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Numerical simulation and experimental study on consolidation of toughened epoxy resin composite laminates

机译:增韧环氧树脂复合材料层合板固结的数值模拟与实验研究

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摘要

Toughened epoxy resin is one of the most important matrices in composite structural materials. In this article a one-dimensional resin flow/fiber compaction model was used for analysis of the consolidation of a toughened epoxy resin 5228/T700S carbon fiber laminates. The laminate thickness and the fiber volume fraction distribution of cured laminates under different cure cycles were investigated both from the experimental measurements and from the numerical simulation. The calculated and experimental results are in good agreement for all the studied cases. A significantly uneven degree of consolidation along the laminate thickness direction is observed, and it is difficult to improve by altering cure cycle. These results are valuable for the study of the performance of composite parts, provided that uneven distribution of fibers does affect some properties of composite materials.
机译:增韧环氧树脂是复合结构材料中最重要的基质之一。在本文中,使用一维树脂流动/纤维压实模型来分析增韧环氧树脂5228 / T700S碳纤维层压板的固结。通过实验测量和数值模拟,研究了不同固化周期下固化层压板的层压板厚度和纤维体积分数分布。计算结果与实验结果在所有研究案例中均吻合良好。观察到沿层压体厚度方向的固结度明显不均匀,并且难以通过改变固化周期来改善。如果纤维的不均匀分布确实会影响复合材料的某些性能,那么这些结果对于研究复合材料零件的性能是有价值的。

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