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A Finite Element Simulation Method Of Piezoelectric Wafer Active Sensors With Mechanical Elements

机译:具有机械元件压电晶片活性传感器的有限元模拟方法

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Piezoelectric wafer active sensors (PWAS) are widely used to generate and receive ultrasonic guided waves (UGW), and have shown great potentials in structural health monitoring (SHM) applications. Modeling as well as simulation for interaction between PWAS and host structure plays an important role in the SHM applications. Due to the complex coupled field and UGW propagation, numerical simulation via finite element (FE) method is introduced. When modeling the coupled fields between PWAS and the host structure, electro-mechanical interaction usually be considered, leading to the modeling complexity and time-consuming. This paper presents an FE method which just considering the mechanical elements to simulate the excitation and receiving process of PWAS. In the model, the effect of PWAS can be simulated by applying a series of in-plane forces. Based on the reciprocity theorem, the receiving voltage amplitude can also be calculated by in-plane displacement data of the structure surface. Theoretical analysis has been conducted to validate the feasibility of proposed method. And an FE model with 3D deformable solid elements is also implemented. Furthermore, an experiment of crack detection on an aerospace grade aluminum sheet metal alloys, which is the same as FE model, was designed using an array of PWAS to validate our method.
机译:压电晶片有源传感器(PWA)广泛用于产生和接收超声波引导波(UGW),并在结构健康监测(SHM)应用中显示出很大的潜力。模型以及PWA和主机结构之间交互的模拟在SHM应用中起重要作用。由于复杂的耦合场和UGW传播,引入了通过有限元(FE)方法的数值模拟。在对PWA和宿主结构之间的耦合场建模时,通常考虑电力交互,导致模拟复杂性和耗时。本文介绍了一种用于模拟PWA的激励和接收过程的机械元件的FE方法。在该模型中,可以通过施加一系列面内力来模拟PWA的效果。基于互易性定理,接收电压幅度也可以通过结构表面的面内位移数据来计算。已经进行了理论分析以验证所提出的方法的可行性。并且还实施了具有3D可变形固体元素的FE模型。此外,使用PWA阵列设计了与FE模型相同的航空级铝板金属合金的裂纹检测试验,以验证我们的方法。

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