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Finite Element Study on the Impact Resistance of Laminated and Textile Composites

机译:层压和纺织复合材料耐冲击性的有限元研究

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摘要

The impact resistance of fiber-reinforced polymer composites is a critical concern for structure design in aerospace applications. In this work, experiments were conducted to evaluate the impact performance of four types of composite panels, using a gas-gun test system. Computational efficient finite element models were developed to model the high-speed ballistic impact behavior of laminate and textile composites. The models were first validated by comparing the critical impact threshold and the failure patterns against experimental results. The damage progression and energy evolution behavior were combined to analyze the impact failure process of the composite panels. Numerical parametric studies were designed to investigate the sensitivity of impact resistance against impact attitude, including impact deflection angles and projectile deflection angles, which provide a comprehensive understanding of the damage tolerance of the composite panels. The numerical results elaborate the different impact resistances for laminate and textile composites and their different sensitivities to deflection angles.
机译:纤维增强聚合物复合材料的耐冲击性是航空航天应用中结构设计的关键问题。在这项工作中,使用气枪测试系统进行了实验,以评估四种类型的复合板的冲击性能。开发了计算有效的有限元模型来对层压板和纺织品复合材料的高速弹道冲击行为进行建模。首先通过将临界冲击阈值和失效模式与实验结果进行比较来验证模型。结合损伤进展和能量演化行为分析了复合板的冲击破坏过程。设计了数值参数研究来研究抗冲击性对冲击姿态的敏感性,包括冲击偏转角和弹丸偏转角,从而全面了解了复合板的损伤容限。数值结果阐述了层压板和纺织品复合材料的不同抗冲击性以及它们对偏转角的不同敏感性。

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