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首页> 外文期刊>Shock and vibration >New Finite Modeling of Free and Forced Vibration Responses of Piezoelectric FG Plates Resting on Elastic Foundations in Thermal Environments
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New Finite Modeling of Free and Forced Vibration Responses of Piezoelectric FG Plates Resting on Elastic Foundations in Thermal Environments

机译:电压型电压抗弹性振动响应的新型有限型建模在热环境中弹性基础上的基础

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This paper carries out free and forced vibration analysis of piezoelectric FGM plates resting on two-parameter elastic foundations placed in thermal environments. By employing the third-order shear deformation theory and the finite element method, this work establishes free and forced vibration equations of piezoelectric FGM plates, where the materials are assumed to be varied in the thickness directions, and the mechanical properties depend on the temperature. Then, comparative examples are conducted to verify the proposed theory and mathematical model, and the results of this study and other methods meet a very good agreement. Then, effects of geometrical and material properties such as the feedback coefficient, voltage, volume fraction index, temperature as well as the parameters of elastic foundations on free and forced vibration of the plates are investigated, and the conclusions are given out to provide the effective direction for the design and practical use of these structures.
机译:本文采用搁置在热环境的双参数弹性基础上的压电FGM板的自由和强制振动分析。 通过采用三阶剪切变形理论和有限元方法,该工作建立了压电FGM板的自由且强制的振动方程,其中假设材料在厚度方向上变化,并且机械性能取决于温度。 然后,进行比较例以验证提出的理论和数学模型,这项研究的结果和其他方法符合非常良好的一致性。 然后,研究了几何和材料特性,例如反馈系数,电压,体积分数指数,温度以及弹性基础的自由和强制振动的弹性基础的影响,并结论提供了有效的 设计和实际使用这些结构的方向。

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