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General equations for free vibrations of thick doubly curved sandwich panels with compressible and incompressible core using higher order shear deformation theory

机译:使用高阶剪切变形理论,具有可压缩和不可压缩芯的厚双弯曲夹层面板的自由振动一般方程

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This paper deals with general equations of motion for free vibration analysis response of thick three-layer doubly curved sandwich panels (DCSP) under simply supported boundary conditions (BCs) using higher order shear deformation theory. In this model, the face sheets are orthotropic laminated composite that follow the first order shear deformation theory (FSDT) based on Rissners-Mindlin (RM) kinematics field. The core is made of orthotropic material and its in-plane transverse displacements are modeled using the third order of the Taylor's series extension. It provides the potentiality for considering both compressible and incompressible cores. To find these equations and boundary conditions, Hamilton's principle is used. Also, the effect of trapezoidal shape factor for cross-section of curved panel element (1 +/- z/R) is considered. The natural frequency parameters of DCSP are obtained using Galerkin Method. Convergence studies are performed with the appropriate formulas in general form for three-layer sandwich plate, cylindrical and spherical shells (both deep and shallow). The influences of core stiffness, ratio of core to face sheets thickness and radii of curvatures are investigated. Finally, for the first time, an optimum range for the core to face sheet stiffness ratio by considering the existence of in-plane stress which significantly affects the natural frequencies of DCSP are presented.
机译:本文涉及使用高阶剪切变形理论的简单支持的边界条件(BCS)下厚三层双层夹层板(DCSP)的自由振动分析响应的一般运动方程。在该模型中,面板是基于Rissners-Mindlin(RM)运动场的第一阶剪切变形理论(FSDT)的正交层压复合材料。核心由正交材料制成,并且其面内横向位移使用泰勒串联延伸的三阶进行建模。它提供了考虑可压缩和不可压缩核心的潜力。为了找到这些方程和边界条件,使用汉密尔顿的原理。而且,考虑曲面形状因子对弯曲板元件(1 +/- Z / R)的横截面的影响。使用Galerkin方法获得DCSP的固有频率参数。用适当的公式为三层夹层,圆柱形和球形壳(深层和浅)的一般形式进行收敛性研究。研究了核心刚度,芯比与面板厚度和曲率半径的影响。最后,首次通过考虑在显着影响DCSP的自然频率的平面压力的面内应力的存在来面对片状刚度比的最佳范围。

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