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Vacuum-Bag-Only Prepreg Processing of Honeycomb Structures: From Lab-Scale Experiments to an Aircraft Demonstrator

机译:蜂窝结构的仅真空袋预浸料加工:从实验室规模的实验到飞机演示器

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摘要

An aircraft demonstrator was manufactured using out-of-autoclave prepreg and vacuum-bag-only processing techniques. The demonstrator featured flat, double-curvature, joggles, abrupt geometry changes, and honeycomb inserts. The scientific literature was used to assess and mitigate the processing risks for this demonstrator. Low through-thickness gas permeability and ply-bridging in small radii corners were thought to be the most significant risks. The through-thickness permeability of the target material was undetectable, therefore spiking was used to increase gas evacuation. Unfortunately, the available mould had small radii that could not be increased, as a result ply bridging was observed in these corners. Miniature pressure sensors were successfully embedded in the demonstrator to monitor the honeycomb core pressure throughout the lay-up, including intermittent de-bulking, the pre-cure vacuum hold, and the elevated temperature cure. The sensors identified two insightful process phenomena: 1) gas evacuation increased with additional plies, and 2) non-uniform pressure response was observed in the part during cure. Visible part quality was acceptable, excluding small radii geometrical features. Internal part quality (voidage) was estimated using pulsed infrared thermography non-destructive-evaluation. While void contents are not exact, the thermography revealed local voidage can vary significantly over the part.
机译:飞机演示器是使用高压灭菌的预浸料和仅使用真空袋的加工技术制造的。该演示器具有平坦,双曲率,微动,几何形状突然变化和蜂窝状插入物的功能。科学文献被用来评估和减轻该演示者的加工风险。低通透性和小半径拐角处的层间桥接被认为是最大的风险。目标材料的全厚度渗透性无法检测,因此使用尖峰来增加气体的排出。不幸的是,可用的模具的半径很小,无法增加,结果是在这些角上观察到了板桥。微型压力传感器已成功嵌入演示器中,以监控整个叠层中的蜂窝芯压力,包括间歇性减薄,预固化真空保持和高温固化。传感器确定了两个有洞察力的过程现象:1)气体排空随着层数的增加而增加,以及2)在固化过程中零件中观察到不均匀的压力响应。可见的零件质量是可以接受的,不包括小半径的几何特征。内部零件质量(空隙率)使用脉冲红外热成像非破坏性评估进行评估。虽然空隙含量不准确,但热成像显示局部空隙可能在零件上有很大差异。

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