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Quasi-static and dynamic characterization of unidirectional non-crimp carbon fiber fabric composites processed by HP-RTM

机译:通过HP-RTM处理单向非卷曲碳纤维织物复合材料的准静态和动态特征

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摘要

Recently developed high-pressure resin transfer molding (HP-RTM) processes have enabled the integration of lightweight fiber-reinforced composites into automobiles (e.g., frame and roof components, floor segments), which may also be suitable for energy absorption applications such as front crush structures in high volume production vehicles. Heavy tow stitch-bonded non-crimp fabrics with rapid curing resins have been recently used to fabricate HP-RTM parts; however, there is a lack of mechanical property data in the literature for such materials. To fill this gap and support the development of lightweight automotive structures, this study reports an investigation assessing the microstructure, quasi-static and dynamic mechanical properties of a non-crimp carbon fabric composite manufactured by HP-RTM, as well as properties of the rapid curing neat epoxy resin. The presented study of the microstructure and constituent properties provide data for in-depth microstructural modeling of the processed non-crimp fabric HP-RTM composite. The study reports 18-20% increase in the tensile transverse strength and strain-at-failure at strain rates on the order of 1000 s(-1). Measured macroscopic material properties can be used as input data for numerical modeling of automotive composite structures, including simulations of vehicle collisions.
机译:最近开发的高压树脂转移成型(HP-RTM)工艺使轻质纤维增强复合材料的整合成为汽车(例如,框架和屋顶部件,地板段),这也可能适用于诸如前部的能量吸收应用大量生产车辆中的挤压结构。最近曾经使用过快速固化树脂的重型牵引缝合非卷曲织物,用于制造HP-RTM部件;然而,这些材料的文献中缺乏机械性质数据。为了填补这种差距并支持轻质汽车结构的发展,本研究报告了评估通过HP-RTM制造的非卷曲碳织物复合材料的微观结构,准静态和动态力学性能以及快速的性质的调查固化整齐的环氧树脂。本发明的微观结构和成分特性的研究提供了用于加工的非卷曲织物HP-RTM复合材料的深度微观结构建模的数据。该研究报告的抗拉横向强度和应变率在1000秒(-1)的速率下的应变率增加18-20%。测量的宏观材料特性可用作汽车复合结构的数值建模的输入数据,包括车辆碰撞的模拟。

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