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Measurement and analysis on in-plane and through-thickness air permeation of fiber/resin prepreg

机译:纤维/树脂预浸料的面内和全厚度透气度的测量和分析

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摘要

Nowadays, zero-bleeding process and out-of-autoclave process are prevailing for aircraft composite structures. For these cases, the prepreg property such as air permeability becomes a crucial element for entrapped air venting off from prepreg stack during cure process. Therefore, the measurement of air permeability is important for the understanding and optimization of autoclave and vacuum-bag processes to obtain void-free composite parts. In this paper, an air permeation measuring system was established to test in-plane and through-thickness air permeabilities of prepreg stack, and the effects of compacting pressure and temperature on the air permeability were investigated. Furthermore, the influences of air permeability of prepreg stack on the void characteristics inside the cured laminates processed by autoclave and vacuum-bag processes were analyzed. The results indicate that the proposed air permeation measuring systems can quantitatively measure the in-plane and through-thickness gas permeabilities of prepreg stack. The compacting pressure and temperature have important effects on air permeability. For the same prepreg system, the in-plane air permeability is two orders of magnitudes higher than the through-thickness one. Finally, void defects are sensitive to the air permeability for vacuum-bag process, especially in the case of thick laminates. It provides an effective way to evaluate the quality of the prepreg for control of void defect and an important guideline for prepreg manufacturers.
机译:如今,飞机复合材料结构普遍采用零渗漏工艺和高压灭菌工艺。对于这些情况,预浸料的性能(例如透气性)成为固化过程中残留空气从预浸料堆中排出的关键因素。因此,透气度的测量对于了解和优化高压釜和真空袋工艺以获得无空隙的复合零件非常重要。本文建立了一种透气度测量系统,以测试预浸料堆的面内和全厚度透气率,并研究了压实压力和温度对透气率的影响。此外,分析了预浸料叠层的透气性对通过高压釜和真空袋工艺处理的固化层压板内部的孔隙特性的影响。结果表明,所提出的空气渗透率测量系统可以定量地测量预浸料堆的面内和贯穿厚度的气体渗透率。压实压力和温度对透气性具有重要影响。对于相同的预浸料系统,面内透气率比通透厚度高两个数量级。最后,空隙缺陷对真空袋工艺的透气性很敏感,尤其是在厚层压板的情况下。它提供了一种有效的方法来评估用于控制空隙缺陷的预浸料的质量,并为预浸料制造商提供了重要的指导原则。

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