Comparative Study of Energy Absorption Capability of Flat Plate Coupons Made by CFRP Plain Weave Fabric Composites

R. Lombarkia, A. Gakwaya, Denis Nandlall, M. Dano, L. Julie, vesque, Ameur BenKhelifa, P. Vachon-Joannette, Philippe Gagnon
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引用次数: 2

Abstract

Despite years of governmental and academic institutions’ researches, no experimental standards are established for evaluating crush Specific Energy Absorption SEA for plain weave fabric woven carbon-fiber-reinforced composites used in modern aircraft structures as elements of the boxes to mitigate damage during crush events. At the laboratory scale, this paper proposes a comparative study of energy absorption capability of flat plate coupons made by CFRP plain weave fabric composites. A new fixture design and setup were created with hydraulic pressure and drop tower machines to carry out tests of flat plate composite specimens under quasi-static and low velocity on-axis crash loading. For investigating parameters sensibility of triggers and layups, numerical and experimental results of four trigger types and three stacking sequences were compared. A confrontation between experimental and pre-developed UL-Crush numerical material model results confirms that coupons with 0˚ oriented central plies and saw teeth or corrugated triggers dissipates higher energy during crush, compared to coupons with 90˚ or 45˚ oriented central plies and chamfer 45˚ or steeple triggers. An efficient and simplified experimental methodology was developed to measure and investigate different parameters influencing SEA of composites under crush load. Comparison between experimental and UL-Crush material model confirms the performance of such simulation tool.
CFRP平纹织物复合材料平板卷吸能性能的对比研究
尽管政府和学术机构进行了多年的研究,但没有建立任何实验标准来评估现代飞机结构中用作盒子元件的平纹织物编织碳纤维增强复合材料的压碎比能吸收SEA,以减轻压碎事件中的损伤。在实验室规模上,本文提出了CFRP平纹织物复合材料平板试件的能量吸收能力的比较研究。利用液压和落塔机建立了一种新的夹具设计和设置,以在准静态和低速轴上碰撞载荷下对平板复合材料试件进行试验。为了研究触发器和上篮的参数敏感性,比较了四种触发器类型和三种叠加序列的数值和实验结果。实验和预先开发的UL Crush数值材料模型结果之间的对抗证实,与具有90˚或45˚定向中心帘布层和倒角45˚或尖塔触发器的试件相比,具有0˚定向中央帘布层和锯齿或波纹触发器的试片在挤压过程中消耗的能量更高。建立了一种有效且简化的实验方法来测量和研究挤压载荷下影响复合材料SEA的不同参数。实验和UL Crush材料模型的比较证实了该模拟工具的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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