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Modeling guided wave excitation in plates with surface mounted piezoelectric elements: coupled physics and normal mode expansion

机译:用表面安装压电元件的板材建模导波励磁:耦合物理和正常模式扩展

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摘要

Guided waves have been extensively studied and widely used for structural health monitoring because of their large volumetric coverage and good sensitivity to defects. Effectively and preferentially exciting a desired wave mode having good sensitivity to a certain defect is of great practical importance. Piezoelectric discs and plates are the most common types of surface-mounted transducers for guided wave excitation and reception. Their geometry strongly influences the proportioning between excited modes as well as the total power of the excited modes. It is highly desirable to predominantly excite the selected mode while the total transduction power is maximized. In this work, a fully coupled multi-physics finite element analysis, which incorporates the driving circuit, the piezoelectric element and the wave guide, is combined with the normal mode expansion method to study both the mode tuning and total wave power. The excitation of circular crested waves in an aluminum plate with circular piezoelectric discs is numerically studied for different disc and adhesive thicknesses. Additionally, the excitation of plane waves in an aluminum plate, using a stripe piezoelectric element is studied both numerically and experimentally. It is difficult to achieve predominant single mode excitation as well as maximum power transmission simultaneously, especially for higher order modes. However, guidelines for designing the geometry of piezoelectric elements for optimal mode excitation are recommended.
机译:由于其大容量覆盖率和对缺陷的良好敏感性,引导波已经广泛研究并广泛用于结构性健康监测。有效地优先激发具有对某些缺陷具有良好敏感性的所需波模式具有很大的实际重要性。压电盘和板是用于引导波激励和接收的最常见的表面上安装换能器。它们的几何形状强烈影响激发模式和激发模式的总功率之间的比例。非常希望主要激发所选择的模式,而总转换功率最大化。在这项工作中,一种完全耦合的多物理有限元分析,它结合了驱动电路,压电元件和波导,与正常模式扩展方法组合,以研究模式调谐和总波功率。用圆形压电盘的铝板中的圆形冠状波的激发用于不同的盘和粘合剂厚度。另外,使用条带压电元件在铝板中的平面波的激发在数值和实验中进行了使用条纹压电元件。难以实现主要的单模激励以及同时最大功率传输,特别是对于更高阶模式。但是,建议使用用于设计压电元件的几何形状的准则以获得最佳模式激励。

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