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GUIDED WAVE GENERATION AND PROPAGATION IN SELF-SENSING PIEZOELECTRIC COMPOSITE PLATES FOR STRUCTURAL HEALTH MONITORING

机译:用于结构健康监测的自感应压电复合板中的导波产生和传播

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摘要

This paper presents a systematic numerical investigation of guided wave generation, propagation, interaction with damage, and reception in anisotropic piezoelectric composite plates. This approach employs piezoelectric composite materials as both load bearing and sensing elements. Finite element modal analysis of a plate unit cell with Bloch-Floquet boundary condition is performed to understand the guided wave propagation characteristics in piezoelectric composite plates. The guided wave generation and tuning characteristics are investigated using the harmonic analysis model with absorbing boundary conditions. The relationship between the generated wave modes and the laminate layup orientations is studied. Subsequently, an impact damage is introduced and modeled as a group of cone shape delaminated layers and stiffness losses within the layers through the thickness direction. 2D and 3D transient dynamic coupled-field finite element models are constructed to simulate the procedure of guided wave generation, propagation, interaction with the impact damage, and reception in an orthotropic piezoelectric composite plate using the commercial finite element software (ANSYS). In addition, Contact Acoustic Nonlinearity (CAN) is simulated via time domain transient analysis. Advanced signal processing techniques are used to extract the distinctive nonlinear features. The frequency-wavenumber analysis is further adopted to decipher wave modes and frequency components in the scattered wave field. This paper finishes with concluding remarks and suggestions for future work.
机译:本文介绍了各向异性压电复合板中导波的产生,传播,与损伤的相互作用以及接收的系统数值研究。这种方法采用压电复合材料作为承载和传感元件。对具有Bloch-Floquet边界条件的板单元进行了有限元模态分析,以了解压电复合板中的导波传播特性。使用具有吸收边界条件的谐波分析模型研究了导波的产生和调谐特性。研究了所产生的波模与层压板叠置方向之间的关系。随后,引入冲击损伤并将其建模为一组圆锥形分层的层,以及沿厚度方向的层内的刚度损失。使用商用有限元软件(ANSYS)构建2D和3D瞬态动态耦合场有限元模型,以模拟正交各向异性压电复合板中导波的生成,传播,与冲击损伤的相互作用以及接收的过程。此外,还通过时域瞬态分析来模拟接触声非线性(CAN)。先进的信号处理技术用于提取独特的非线性特征。进一步采用频率-波数分析法对散射波场中的波模和频率分量进行解密。本文最后总结了对未来工作的意见和建议。

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