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首页> 外文期刊>Journal of Vibration and Acoustics >Small-Amplitude Free-Vibration Analysis of Piezoelectric Composite Plates Subject to Large Deflections and Initial Stresses
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Small-Amplitude Free-Vibration Analysis of Piezoelectric Composite Plates Subject to Large Deflections and Initial Stresses

机译:大变形和初始应力作用下压电复合材料板的小振幅自由振动分析

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摘要

A coupled theoretical and computational framework is presented for analyzing the small amplitude-free vibrational response of composite laminated plates with piezoelectric actuators and sensors, subject to nonlinear effects due to large rotations and initial stresses. Coupled laminate mechanics incorporating nonlinear governing equations with mixed-field shear-layerwise assumptions for the piezoelectric laminate are implemented. A finite element method is formulated to yield the linearized discrete dynamic equations of a piezocomposite plate on top of its nonlinear electrostatic response, and a novel eight-node coupled nonlinear plate finite element forms the basis of numerical analyses. The natural frequencies in a beam with a piezoceramic actuator and sensor subject to in-plane mechanical loading, high enough to induce buckling and postbuckling are also experimentally characterized, and comparisons to numerical results show excellent correlation. Additional numerical evaluations quantify the active shifting of natural frequencies in adaptive beams and plates subject to high out-of-plane and in-plane electromechanical loading, and the variation of modal frequencies during buckling and postbuckling response. Finally, the possibility to detect and actively manage buckling in adaptive piezocomposite plates is illustrated.
机译:提出了一个耦合的理论和计算框架,用于分析带有压电致动器和传感器的复合层合板的小幅值无振幅振动响应,该响应受大旋转和初始应力的非线性影响。实现了将非线性控制方程与压电叠层的混合场剪切层假设结合在一起的叠层力学。提出了一种有限元方法,以在压电复合材料板的非线性静电响应之上产生线性离散动力学方程,而新颖的八节点耦合非线性板有限元构成了数值分析的基础。具有压电陶瓷致动器和传感器的光束在平面内机械载荷下的固有频率高到足以引起屈曲和后屈曲的特性也得到了实验表征,与数值结果的比较显示出极好的相关性。其他数值评估量化了承受高平面外和平面内机电载荷的自适应梁和板中固有频率的主动位移,以及屈曲和后屈曲响应期间模态频率的变化。最后,说明了在自适应压电复合材料板中检测和主动管理屈曲的可能性。

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