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Analysis of the Impact Dynamics of Shape Memory Alloy Hybrid Composites for Advanced Applications

机译:先进应用的形状记忆合金杂化复合材料的冲击动力学分析

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摘要

In this work, the behaviour of thermoplastic composites and Shape Memory Alloy Hybrid Composites (SMAHCs) for aeronautical applications is analysed and compared by means of findings from numerical analyses and experimental tests. At first, experimental tests are performed by using a drop tower facility on both carbon fibre reinforced plastic samples and Carbon Fibre Reinforced Plastic (CFRP) samples hybridized with shape memory alloy materials. The materials properties and the different lower velocity impacts behaviours are simulated and validated by means of numerical models discretized in LS-Dyna explicit solver. For both configurations, the deformation mechanism for low intensity impacts, the absorbed energy, and the effect of rebounding upon the velocity change, and hence the amount of force, are investigated. Then, a configuration is prepared to withstand higher-energy impacts. Finally, the numerical analysis is extended for an innovative layup adapted on an aeronautical structure, which is subjected to the bird-strike phenomenon at 180 m/s and with an impacting mass of 1.8 kg according to the airworthiness requirements. In this study, SMAHCs are used to improve the composite impact response and energy absorption thanks to the superelastic effect.
机译:在这项工作中,通过数值分析和实验测试的结果,对热塑性复合材料和形状记忆合金混合复合材料(SMAHCs)在航空领域的性能进行了分析和比较。首先,使用吊塔设备对碳纤维增强塑料样品和与形状记忆合金材料混合的碳纤维增强塑料(CFRP)样品进行实验测试。通过在LS-Dyna显式求解器中离散化的数值模型,对材料特性和不同的较低速度冲击行为进行了仿真和验证。对于这两种配置,都研究了低强度冲击的变形机理,吸收的能量以及回弹对速度变化的影响,从而研究了力的大小。然后,准备配置以承受更高的能量冲击。最后,将数值分析扩展到适用于航空结构的创新叠层,根据适航性要求,该叠层以180 m / s的速度发生鸟击现象,冲击质量为1.8 kg。在这项研究中,由于超弹性效应,SMAHCs用于改善复合材料的冲击响应和能量吸收。

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