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首页> 外文期刊>Journal of Engineering Mechanics >Thermal Buckling Analysis of Circular Plates Made of Piezoelectric and Saturated Porous Functionally Graded Material Layers
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Thermal Buckling Analysis of Circular Plates Made of Piezoelectric and Saturated Porous Functionally Graded Material Layers

机译:压电和饱和多孔功能梯度材料层制成的圆板的热屈曲分析

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摘要

This study presents the thermal buckling of a radially solid sandwich circular plate made of a piezoelectric actuator and porous material. The porous material properties vary through the thickness of the plate for a specific function. The general thermoelastic nonlinear equilibrium and linear stability equations are derived using the variational formulations to obtain the governing equations of the piezoelectric porous plate. The geometrical nonlinearities are considered along with the higher-order shear deformation plate theory. The problem is simplified to an axisymmetric one, and then closed-form solutions for circular plates subjected to temperature load are obtained. The buckling temperatures that are derived for solid circular plates under uniform temperature rise through the thickness for an immovable clamped edge of the boundary conditions. The effects of the porous plate thickness, piezoelectric thickness, applied actuator voltage, and variation of porosity on the critical temperature load are investigated. In this paper, the stability of the plate is compared through saturated and unsaturated porous layers, and the effect of the fluid's thermal expansion coefficient on the stability of the plate is investigated. (C) 2014 American Society of Civil Engineers.
机译:这项研究提出了由压电致动器和多孔材料制成的径向实心夹心圆形板的热屈曲。对于特定功能,多孔材料的特性会随着板的厚度而变化。使用变分公式推导了一般的热弹性非线性平衡和线性稳定性方程,从而获得了压电多孔板的控制方程。几何非线性与高阶剪切变形板理论一起考虑。将问题简化为轴对称问题,然后获得承受温度载荷的圆形板的封闭形式解。对于边界条件不可移动的夹紧边缘,在均匀温度下为实心圆板得出的屈曲温度会随着厚度的增加而上升。研究了多孔板厚度,压电厚度,施加的致动器电压以及孔隙率变化对临界温度载荷的影响。本文通过饱和和不饱和多孔层比较了板的稳定性,并研究了流体的热膨胀系数对板的稳定性的影响。 (C)2014美国土木工程师学会。

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