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Numerical analysis of Lamb waves propagating through impact damage in a skin-stringer structure composed of interlaminar-toughened CFRP

机译:羊毛波通过冲击损伤在层间抗冲击性CFRP组成的皮肤纵梁结构中传播的数值分析

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摘要

Many structural health monitoring systems are being developed to detect the impact damages in carbon fiber reinforced plastic (CFRP) structures, which are widely adopted in the aviation industry. In this study, a refined finite element model is established to simulate a Lamb wave propagating through impact damage in a CFRP skin stringer structure. The accurate stiffness constants are determined for toughened CFRP laminates, which include the resin layers. The impact damage of toughened CFRP laminates is modeled as a truncated-cone-shaped region in which the rigidity is homogeneously reduced. Furthermore, the directive generation of the Lamb wave through a macro fiber composite (MFC) actuator is incorporated in the model. Simulations are performed for several configurations of the MFC and impact damage. The observed tendency of the delay in the arrival time of the lowest antisymmetric Lamb wave mode is noted to be consistent with the experimental results. The proposed model can facilitate the determination of the optimized configuration of MFCs in CFRP structures.
机译:正在开发出许多结构健康监测系统以检测碳纤维增强塑料(CFRP)结构中的影响损坏,这些结构在航空工业中广泛采用。在该研究中,建立了一种精制的有限元模型,以模拟通过CFRP皮肤纵梁结构中的冲击损坏传播的羊羔波。精确的刚度常数确定用于增韧的CFRP层压板,其包括树脂层。增韧CFRP层压板的冲击损伤被建模为截短的锥形区域,其中刚性均匀地降低。此外,通过宏观纤维复合物(MFC)致动器的羊波的指示产生在模型中。对MFC和冲击损坏的若干配置执行模拟。观察到最低反对子λ波动模式的到达时间延迟的趋势被认为是与实验结果一致的。所提出的模型可以促进CFRP结构中的MFC的优化配置。

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