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Dynamic stability of laminated FGM plates based on higher-order shear deformation theory

机译:基于高阶剪切变形理论的叠层FGM板的动力稳定性

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This paper conducts a dynamic stability analysis of symmetrically laminated FGM rectangular plates with general out-of-plane supporting conditions, subjected to a uniaxial periodic in-plane load and undergoing uniform temperature change. Theoretical formulations are based on Reddy’s third-order shear deformation plate theory, and account for the temperature dependence of material properties. A semi-analytical Galerkin-differential quadrature approach is employed to convert the governing equations into a linear system of Mathieu–Hill equations from which the boundary points on the unstable regions are determined by Bolotin’s method. Free vibration and bifurcation buckling are also discussed as subset problems. Numerical results are presented in both dimensionless tabular and graphical forms for laminated plates with FGM layers made of silicon nitride and stainless steel. The influences of various parameters such as material composition, layer thickness ratio, temperature change, static load level, boundary constraints on the dynamic stability, buckling and vibration frequencies are examined in detail through parametric studies.
机译:本文对具有一般面外支撑条件,承受单轴周期性面内载荷并经受均匀温度变化的对称层压FGM矩形板进行了动力稳定性分析。理论公式是基于Reddy的三阶剪切变形板理论,并说明了材料特性对温度的依赖性。使用半解析Galerkin微分正交方法将控制方程式转换为Mathieu-Hill方程式的线性系统,并根据其通过Bolotin方法确定不稳定区域上的边界点。自由振动和分叉屈曲也作为子集问题进行了讨论。数值结果以无量纲表格和图形形式显示了具有由氮化硅和不锈钢制成的FGM层的层压板。通过参数研究详细检查了各种参数的影响,例如材料组成,层厚比,温度变化,静态载荷水平,边界约束对动态稳定性,屈曲和振动频率的影响。

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