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NURBS-based finite element analysis of functionally graded plates: Static bending, vibration, buckling and flutter

机译:基于NURBS的功能梯度板的有限元分析:静态弯曲,振动,屈曲和颤动

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摘要

In this paper, a non-uniform rational B-spline based iso-geometric finite element method is used to study the static and dynamic characteristics of functionally graded material (FGM) plates. The material properties are assumed to be graded only in the thickness direction and the effective properties are computed either using the rule of mixtures or by Mori-Tanaka homogenization scheme. The plate kinematics is based on the first order shear deformation plate theory (FSDT). The shear correction factors are evaluated employing the energy equivalence principle and a simple modification to the shear correction factor is presented to alleviate shear locking. Static bending, mechanical and thermal buckling, linear free flexural vibration and supersonic flutter analysis of FGM plates are numerically studied. The accuracy of the present formulation is validated against available three-dimensional solutions. A detailed numerical study is carried out to examine the influence of the gradient index, the plate aspect ratio and the plate thickness on the global response of functionally graded material plates.
机译:本文采用基于非均匀有理B样条的等几何有限元方法来研究功能梯度材料(FGM)板的静态和动态特性。假定材料特性仅在厚度方向上分级,并且可以使用混合规则或通过Mori-Tanaka均化方案计算有效特性。板的运动学基于一阶剪切变形板理论(FSDT)。使用能量等效原理评估剪切校正因子,并提出对剪切校正因子的简单修改以减轻剪切锁定。数值研究了FGM板的静态弯曲,机械和热屈曲,线性自由弯曲振动和超音速颤振分析。相对于可用的三维解决方案验证了本制剂的准确性。进行了详细的数值研究,以检查梯度指数,板高宽比和板厚对功能梯度材料板整体响应的影响。

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