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Vibration and stability of initially stressed sandwich plates with FGM face sheets in thermal environments

机译:热环境中具有FGM面板初始压力夹层板的振动和稳定性

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In this paper, thermal effect on the vibration and stability of initially stressed sandwich plates with functionally graded material (FGM) face sheets is analyzed. Material properties of FGM face sheet are graded continuously in the thickness direction. The variation of FGM properties assumes a simple power law distribution in terms of the volume fractions of the constituents. The governing equations of arbitrarily initially-stressed sandwich plates including the effects of transverse shear deformation and rotary inertia are derived. The initial stress is taken to be a combination of a uniaxial extensional stress and a pure bending stress in the examples. The eigenvalue problems are formed to study the vibration and buckling characteristics of simple supported initially stressed FGM/metal/FGM plates. The effects of volume fraction index, temperature rise, initial stress and layer thickness of metal on the natural frequencies and buckling loads are investigated. The results reveal that the volume fraction index, initial stresses and layer thickness of metal have significant influence on the vibration and stability of sandwich plates with FGM face sheets.
机译:本文分析了对具有功能渐变材料(FGM)面板的最初应力夹芯板的振动和稳定性的热效应。 FGM面板的材料特性在厚度方向上连续地分级。 FGM性能的变化在成分体积分数方面具有简单的电力法分布。衍生包括横向剪切变形和旋转惯性的效果的任意初始应力夹层板的控制方程。初始应力被认为是单轴延伸应力和实施例中的纯弯曲应力的组合。形成特征值问题以研究简单支撑的最初应力的FGM /金属/ FGM板的振动和屈曲特性。研究了体积分数指数,升温,初始应力和金属层厚度对固有频率和屈曲负荷的影响。结果表明,金属的体积分数指数,初始应力和层厚度对与FGM面板的夹层板的振动和稳定性有显着影响。

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