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首页> 外文期刊>Journal of Sandwich Structures and Materials >Buckling analysis of the functionally graded sandwich rectangular plates integrated with piezoelectric layers under bi-axial loads
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Buckling analysis of the functionally graded sandwich rectangular plates integrated with piezoelectric layers under bi-axial loads

机译:双轴载荷下压电层集成的功能梯形夹层矩形板的屈曲分析

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Mechanical stability of the functionally graded rectangular plates bonded with functionally graded piezoelectric layers is studied in the present research. Classical plate theory is employed in the description of three components of the plate displacement. Geometric nonlinearity is considered in the strain-displacement relations using the von Karman equation. The constitutive relations are developed for the functionally graded material core and functionally graded plate material layers in the general state. The top and bottom of the piezoelectric layers is assumed to be short-circuited. Three equilibrium equations as well as Maxwell equation are constituted of four governing differential equations of the problem. Some important nondimensional parameters representing the geometries of the sandwich plate incorporated with nonhomogeneous index of the material properties are considered for this analysis. The results indicate that these parameters have important effects on the buckling loads.
机译:在本研究中研究了与功能梯度压电层结合的功能渐进矩形板的机械稳定性。经典板理论在板位移的三个部件的描述中使用。使用von Karman方程在应变 - 位移关系中考虑几何非线性。在一般状态下为功能渐变的材料芯和功能分级板材层开发了本构关系。假设压电层的顶部和底部被短路。三个平衡方程以及麦克斯韦方程由问题的四个控制差分方程构成。考虑了具有由材料特性的非均匀指标的夹层板的几何形状的一些重要的非潜在参数被认为是该分析。结果表明,这些参数对屈曲负荷具有重要影响。

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