首页> 外文期刊>Journal of vibration and control: JVC >Vibration and thermal buckling analyses of three-layered centrosymmetric piezoelectric microplates based on the modified consistent couple stress theory
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Vibration and thermal buckling analyses of three-layered centrosymmetric piezoelectric microplates based on the modified consistent couple stress theory

机译:基于改进的一致耦合耦合理论的三层焦门压电微孔板振动和热屈曲分析

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摘要

In this study, free and forced vibration investigations and thermal buckling analysis of three-layered centrosymmetric piezoelectric microplates are examined. To model the size effects, the size-dependent consistent couple stress theory is used. To be compatible with the modified coupled stress theory, a modification is proposed to apply to the consistent couple stress theory. Resorting to the Navier's approach, the governing equations are treated in the case of simply supported boundary conditions to extract the free and forced vibration outcomes and the thermal buckling numerical results. The verifications demonstrate the effectiveness of the proposed modification. The effects of the material length scale parameter and the flexoelectricity coefficient on the findings are investigated. Moreover, the closed- and open-circuit condition impacts on the free and forced vibration and the thermal buckling analyses are studied.
机译:在本研究中,检查了三层碳水化合物压电微孔板的自由和强制振动研究和热屈曲分析。 为了模拟尺寸效应,使用尺寸依赖于尺寸的一致耦合应力理论。 为了与改进的耦合应力理论兼容,提出了一种修改以适用于一致的夫妇应力理论。 借助Navier的方法,在简单地支持边界条件的情况下对控制方程进行处理,以提取自由和强制振动结果和热屈曲数值结果。 验证证明了所提出的修改的有效性。 研究了材料长度比参数和柔性电系数对结果的影响。 此外,研究了对自由振动和热屈曲分析的闭合和开路状态的影响。

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