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Modeling of piezo-induced ultrasonic wave propagation in composite structures using layered solid spectral element

机译:层状固体谱元对复合结构中压电感应超声波传播的建模

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摘要

This article presents the development of a three-dimensional spectral element-based Piezo-Enabled Spectral Element Analysis code to simulate piezo-induced ultrasonic wave propagation in composite structures. Piezo-Enabled Spectral Element Analysis solves the coupled electromechanical governing equations for a given arbitrary voltage input to a piezoelectric actuator and outputs the voltage response of the piezoelectric sensors. In case of modeling laminated composites, one element per ply is computationally expensive, and smeared material properties may give inaccurate results; hence, a layered solid spectral element is introduced. Layered solid spectral element can model several plies per element and uses combined nodal quadrature and Simpson's 1/3 integration rule for numerical integration of mechanical stiffness matrix. It is worth noting that Piezo-Enabled Spectral Element Analysis can interface with commercial finite element mesh generators such as Abaqus/CAE to model structures with complex configuration. Delaminations and debonds are modeled by separating the nodes in the damaged area to create a volume split. Experiments and simulations have been carried out to verify and validate Piezo-Enabled Spectral Element Analysis for composites. This article also presents simulations of ultrasonic wave propagation in a stiffened composite plate with delamination and debond.
机译:本文介绍了基于三维频谱元素的压电启用频谱元素分析代码的开发,以模拟压电感应超声在复合结构中的传播。压电使能的频谱元素分析解决了输入给压电致动器的给定任意电压的耦合机电控制方程式,并输出了压电传感器的电压响应。在对叠层复合材料进行建模的情况下,每层一个元素在计算上是昂贵的,并且涂抹的材料特性可能会给出不准确的结果;因此,引入了分层的固体光谱元素。分层固体光谱单元可以对每个单元建模几个层,并使用组合节点正交和Simpson的1/3积分规则对机械刚度矩阵进行数值积分。值得注意的是,启用压电的光谱元素分析可以与商业有限元网格生成器(例如Abaqus / CAE)进行接口,以对具有复杂配置的结构进行建模。通过分离受损区域中的节点以创建体积拆分来对分层和分离进行建模。已经进行了实验和模拟,以验证和验证复合材料的压电能谱元素分析。本文还介绍了在具有分层和脱粘作用的刚性复合板中超声波传播的模拟。

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