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Analysis of functionally graded material plates using triangular elements with cell-based smoothed discrete shear gap method

机译:基于单元的平滑离散剪切间隙法分析三角单元功能梯度材料板

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摘要

A cell-based smoothed finite element method with discrete shear gap technique is employed to study the static bending, free vibration, and mechanical and thermal buckling behaviour of functionally graded material (FGM) plates. The plate kinematics is based on the first-order shear deformation theory and the shear locking is suppressed by the discrete shear gap method. The shear correction factors are evaluated by employing the energy equivalence principle. The material property is assumed to be temperature dependent and graded only in the thickness direction. The effective properties are computed by using the Mori-Tanaka homogenization method. The accuracy of the present formulation is validated against available solutions. A systematic parametric study is carried out to examine the influence of the gradient index, the plate aspect ratio, skewness of the plate, and the boundary conditions on the global response of the FGM plates. The effect of a centrally located circular cutout on the global response is also studied.
机译:采用基于单元的平滑有限元方法和离散剪切间隙技术来研究功能梯度材料(FGM)板的静态弯曲,自由振动以及机械和热屈曲行为。板的运动学基于一阶剪切变形理论,并且通过离散剪切间隙法抑制了剪切锁定。剪切校正因子通过采用能量等效原理进行评估。假定材料属性取决于温度,并且仅在厚度方向上分级。通过使用Mori-Tanaka均质化方法计算有效性质。根据可用的解决方案验证了本制剂的准确性。进行了系统的参数研究,以检查梯度指数,板高宽比,板的偏度以及边界条件对FGM板整体响应的影响。还研究了位于中心的圆形切口对整体响应的影响。

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