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Layerwise mechanics and finite element for the dynamic analysis of piezoelectric composite plates

机译:压电复合材料板动力分析的分层力学和有限元

摘要

Laminate and structural mechanics for the analysis of laminated composite plate structures with piezoelectric actuators and sensors are presented. The theories implement layerwise representations of displacements and electric potential, and can model both the global and local electromechanical response of smart composite laminates. Finite-element formulations are developed for the quasi-static and dynamic analysis of smart composite structures containing piezoelectric layers. Comparisons with an exact solution illustrate the accuracy, robustness and capability of the developed mechanics to capture the global and local response of thin and/or thick laminated piezoelectric plates. Additional correlations and numerical applications demonstrate the unique capabilities of the mechanics in analyzing the static and free-vibration response of composite plates with distributed piezoelectric actuators and sensors.
机译:介绍了用于分析压电致动器和传感器的层压复合板结构的层压板和结构力学。这些理论实现了位移和电势的分层表示,并且可以对智能复合材料层压板的整体和局部机电响应进行建模。开发了有限元公式,用于包含压电层的智能复合结构的准静态和动态分析。与精确解决方案的比较说明了开发的技术在捕获薄和/或厚层压压电板的整体和局部响应方面的准确性,鲁棒性和功能。其他相关性和数值应用证明了力学在分析具有分布式压电致动器和传感器的复合板的静态和自由振动响应方面的独特能力。

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