基于三阶剪切变形假设的非均质压电夹层环形板的自由振动与瞬态响应

P. R. Saffari, M. Fakhraie, M. A. Roudbari
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引用次数: 16

摘要

基于三阶剪切变形理论(TSDT),对三层功能梯度材料(fgm)片芯和压电片环形板在初始外加电压作用下的固有频率和时间响应进行了数值研究。假设FGM芯的令人印象深刻的材料规格在板厚上利用幂律分布连续变化。采用Hamilton法得到平衡方程,并结合Newmark-β,采用微分求积法求解。数值研究了外加电压、宽高比和材料梯度对FGM压电夹层环形板固有频率和时间响应曲线变化的影响。精确地表明,这些参数对自由振动和瞬态响应有相当大的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Free Vibration and Transient Response of Heterogeneous Piezoelectric Sandwich Annular Plate Using Third-Order Shear Deformation Assumption
Based on the third-order shear deformation theory (TSDT), this paper numerically investigates the natural frequencies and time response of three-layered annular plate with functionally graded materials (FGMs) sheet core and piezoelectric face sheets, under initial external electric voltage. The impressive material specifications of FGM core are assumed to vary continuously across the plate thickness utilizing a power law distribution. The equilibrium equations are obtained employing Hamilton’s method and then solved applying differential quadrature method (DQM) in conjunction with Newmark-β. Numerical studies are carried out to express the influences of the external electric voltage, aspect ratio, and material gradient on the variations of the natural frequencies and time response curves of FGM piezoelectric sandwich annular plate. It is precisely shown that these parameters have considerable effects on the free vibration and transient response.
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