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Experimental study of void evolution in partially impregnated prepregs

机译:部分浸渍的预浸料中空隙演化的实验研究

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摘要

Controlling voids to minimize the final porosity level is an important concern when processing advanced composite structures. In this study, the porosity evolution during processing of partially impregnated prepregs is investigated using interrupted cure cycles and optical microscopy. Laminates made of MTM 45-1/5HS carbon/epoxy prepreg subjected to different cure cycles, bagging conditions, and humidity levels were studied. Fiber tow geometry and gas permeability were measured to determine the amount of compaction and the interconnectivity of unsaturated zones in the laminates. Three types of voids were identified: inter-laminar, fiber tow and resin voids, all with different origins and evolution patterns. It is shown that gas transport (both in-plane and through-thickness), fiber bed compaction, and resin infiltration govern void evolution during processing. The results provide insights for development of representative transport models and to optimize processing cycles.
机译:控制空隙以最小化最终孔隙度水平是加工先进的复合结构时的重要关注。 在该研究中,使用中断的固化循环和光学显微镜研究了部分浸渍的预浸料坯的处理过程中的孔隙率发展。 研究了由MTM 45-1 / 5HS碳/环氧树脂预浸料进行的层压材料进行了研究,对不同的固化循环,袋装条件和湿度水平进行了研究。 测量光纤牵引几何和透气性以确定层压板中不饱和区的压实量和互连。 鉴定了三种类型的空隙:层间,纤维丝束和树脂空隙,全部具有不同的起源和进化模式。 结果表明,气体输送(平面内和厚度),纤维床压实和树脂渗透在加工过程中控制空隙演变。 结果为代表性运输模型的开发和优化处理周期提供了见解。

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