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Nonlinear vibration analysis of multiscale doubly curved piezoelectric composite shell in hygrothermal environment

机译:湿热环境下多尺度双弯曲压电复合材料壳体的非线性振动分析

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摘要

This research studied large amplitude vibration behaviors of multiscale composites doubly curved shells with piezoelectric layer. By using Reddy's third-order shear deformation theory, the strains and stresses are obtained. According to the Halpin-Tsai model three-phase composites layers are considered. The governing equations of the multiscale doubly curved shell are derived by implementing the Hamilton's principle and are solved via homotopy perturbation method. For investigating correctness and accuracy, this article is validated by other previous studies. Finally, the influence of different parameters such as temperature rise, various distributions pattern, applied voltage, magnetic potential, and aspect and curvature ratio are observed in this article. It is found that these parameters have significant influence on nonlinear frequencies.
机译:本研究研究了带压电层的多尺度复合材料双曲壳的大振幅振动行为。利用雷迪三阶剪切变形理论,获得了应变和应力。根据Halpin-Tsai模型,考虑了三相复合材料层。通过实施汉密尔顿原理推导了多尺度双曲壳的控制方程,并通过同伦摄动法求解。为了调查正确性和准确性,本文已通过其他先前的研究验证。最后,观察了温度上升,各种分布模式,施加电压,磁势以及纵横比之类的不同参数的影响。发现这些参数对非线性频率有显着影响。

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