Interaction of T-Stiffener on A0 Lamb Mode Propagation Behavior in Thin Plate

Jiaying Sun, Zexing Yu, Chao Xu
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Abstract

Integrally T-stiffened plates are widely used in aerospace, marine and other engineering structures. When elastic guided wave method is used to detect the damage of such structures, it is necessary to well understand the wave propagation behavior in these structures to further mature the guided wave SHM method. In this paper, the interaction between the fundamental anti-symmetric guided Lamb mode (A0) and T-stiffener in an integrally stiffened thin plate is studied by finite element numerical simulation. The propagation behavior of A0 mode in stiffened plate is actuated using a piezoelectric wafer active sensor. The characteristics of wave propagation caused by the presence of stiffener are analyzed in time domain using response signals and displacement snapshots. The results show that the existence of stiffeners causes obvious mode conversion. With the change of excitation frequency, the reflection and transmission behaviors of guided waves in A0 and S0 modes change obviously.
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t型加强筋对薄板中A0 Lamb模传播行为的相互作用
整体t型加筋板广泛应用于航空航天、船舶等工程结构。当采用弹性导波法检测此类结构的损伤时,为了进一步完善导波SHM方法,有必要深入了解这些结构中的波传播特性。本文采用有限元数值模拟方法,研究了整体加筋薄板中基反对称导态Lamb模(A0)与t型加强筋的相互作用。利用压电片有源传感器实现了加筋板中A0模式的传播特性。利用响应信号和位移快照在时域上分析了加筋引起的波的传播特性。结果表明,加筋的存在引起了明显的模态转换。随着激励频率的变化,导波在A0和S0模式下的反射和透射行为发生明显变化。
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