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Development of a methodology for characterizing reaction kinetics, rheology, and in situ compaction of polyimide prepregs during cure

机译:制定用于治疗中聚酰亚胺预浸料的反应动力学,流变学,流变学和原位压实的方法

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摘要

PMR-type polyimide prepregs are challenging to fabricate into high quality composites due to volatiles that are generated and must be removed in situ during processing. The current work was conducted to develop accurate, reliable, and practical characterization techniques of the prepreg rheology, volatile generation, and subsequent volatile removal from the prepreg during composite fabrication. Thermal analysis was used to characterize volatile generation, reaction rates, and rheology. A novel approach was used to measure the thickness of the prepreg in situ during vacuum bag/oven processing using a high-temperature LVDT. Experimental results are presented for the commercially available RM-1100 polyimide/carbon prepreg system, including the reaction rate, rheology, and panel thickness results for a series of heating rates and ply counts. The results show the key interrelationships in these coupled phenomena and how that information can be used to select the optimum temperature of pressure application to minimize the final void content.
机译:PMR型聚酰亚胺预浸料坯是挑战,因为由于产生的挥发物,在高质量的复合材料中制造成高质量复合材料,并且必须在处理过程中原位除去。进行了当前的工作,以发展预浸料流变,挥发性产生和随后在复合制造期间从预浸料中从预浸料中取出的准确,可靠和实际表征技术。热分析用于表征挥发性产生,反应率和流变学。使用高温LVDT在真空袋/烤箱处理期间原位测量预浸料坯的厚度。提供了实验结果,用于市售的RM-1100聚酰亚胺/碳预浸料系统,包括反应速率,流变学和面板厚度为一系列加热速率和帘布层数。结果显示了这些耦合现象中的关键相互关系以及该信息如何用于选择压力应用的最佳温度,以最小化最终的空隙含量。

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