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Semi-analytical hybrid approach for the simulation of layered waveguide with a partially debonded piezoelectric structure

机译:半解析混合方法,用于部分剥离压电结构的分层波导的仿真

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This paper presents an efficient semi-analytical hybrid approach for simulating the dynamic interaction of perfectly bonded or damaged piezoelectric structures with a layered elastic waveguide. In the proposed approach, the frequency domain spectral element method is utilized for the discretization of the finite-sized surface mounted piezoelectric structure, and the semi-analytical boundary integral method is employed for the evaluation of wave phenomena in the host laminate structure. While the spectral element method allows cost-effective simulation of dynamics of a complex-shaped transducer (e.g. curvilinear or with wrapped electrodes), the analytically-based technique reliably describes wave excitation and propagation in multi-layered structures. The coupling of these methods is achieved through the rigorous fulfillment of the boundary conditions at the area of waveguide-transducer contact. Three various combinations of approximation polynomials and surface-load interpolation functions are applied in order to obtain the solution in a frequency domain. The time-domain solution is evaluated employing the inverse Laplace transform. Convergence of the method is confirmed for different bonding conditions. The paper demonstrates the efficiency of the proposed method for the multi-parameter analysis of the dependence of the resonance characteristics on the debonding parameters and contact conditions. The approach can be used for such a crucial task as diagnosing failures of piezoelectric devices incorporated into a structural health monitoring system based on guided waves.
机译:本文提出了一种有效的半解析混合方法,用于模拟层状弹性波导完美结合或损坏的压电结构的动态相互作用。在所提出的方法中,频域谱元法被用于离散有限尺寸的表面安装压电结构,半解析边界积分法被用于评估主体层合结构中的波动现象。尽管频谱元素方法可以经济高效地模拟复杂形状的换能器(例如曲线形或带缠绕电极)的动力学,但基于分析的技术可靠地描述了多层结构中的波激发和传播。这些方法的耦合是通过严格满足波导-换能器接触区域的边界条件来实现的。为了获得频域中的解,应用了近似多项式和表面载荷插值函数的三种不同组合。使用逆拉普拉斯变换评估时域解。对于不同的结合条件,该方法的收敛性得到了确认。本文证明了所提出的方法在共振特性对脱粘参数和接触条件的依赖性的多参数分析中的有效性。该方法可用于诸如诊断基于导波的结构健康监测系统中并入压电装置的故障之类的关键任务。

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