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Improved First Order Formulation for Buckling Analysis of Functionally Graded Beams

机译:功能梯度梁屈曲分析的改进一阶公式

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In this research, an improved first order formulation is presented to study the critical buckling load in functionally graded beams. The formulation has five independent variables in comparison with the Timoshenko theory that has three. The Trefftz criterion is utilized with incremental and fundamental states to define the stability analysis. Virtual work statements are derived for the finite element model where the field variables are interpolated by Lagrange polynomials. The numerical results are compared and verified with other formulations found in literature. Parametric studies are also carried out for buckling behavior due to different slenderness ratios, power-law indices and boundary conditions. Applications of the model to functionally graded materials show the validity of the present approach.
机译:在这项研究中,提出了一种改进的一阶公式来研究功能梯度梁中的临界屈曲载荷。与蒂莫申科理论的三个独立变量相比,该公式具有五个独立变量。 Trefftz准则与增量状态和基本状态一起用于定义稳定性分析。虚拟工作陈述是针对有限元模型得出的,其中,通过Lagrange多项式对字段变量进行插值。将数值结果与文献中发现的其他公式进行比较和验证。由于细长比,幂律指数和边界条件的不同,还对屈曲行为进行了参数研究。该模型在功能分级材料上的应用表明了本方法的有效性。

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