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Natural frequency analysis of sigmoid functionally graded sandwich beams in the framework of high order shear deformation theory

机译:高阶剪切变形理论框架中六翼型夹层功能梯夹层的自然频率分析

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摘要

The current study aims to analyze the natural frequencies of sigmoid functionally graded (FG) sandwich beams having various configurations employing the high-order shear deformation theory. To do this, three diverse types of sandwich layup schemes have been constructed. The material characteristics of FG components of sandwich beams are presumed to vary continuously along the thickness direction, as indicated by the volume fraction of constituents specified with sigmoid law distribution, whilst the other components are assumed to be isotropic ceramic/metal. The governing equations are derived for higher-order shear deformation theory, i.e., hyperbolic shear deformation theory (HSDT). Navier's method is used to solve the governing differential equations analytically for simply supported boundary conditions at both ends. To show the efficiency of the current theory, the numerical results are obtained not only for HSDT but also for first-order shear deformation theory (FSDT), in the special case. Similarly, power law distributions of FG sandwich beams are also presented for emphasizing the effectiveness of sigmoid law distribution. Detailed comparisons are performed with available results of open literature to confirm the current formulation. Finally, the effects of the HSDT, variations of material properties, layup schemes, and geometrical characteristics of sandwich beams on the non-dimensional natural frequencies are discussed.
机译:目前的研究旨在分析具有采用高阶剪切变形理论的各种配置的乙状功能梯度(FG)夹层梁的自然频率。为此,已经建立了三种不同类型的三明治覆盖方案。假定夹层梁的FG部件的材料特性沿着厚度方向连续变化,如用S形法分布所指定的成分的体积分数所示,而另一个组分被假定是各向同性的陶瓷/金属。导出控制方程,用于高阶剪切变形理论,即双曲线剪切变形理论(HSDT)。 Navier的方法用于在两端的简单支持的边界条件下分析地解决控制微分方程。为了表明当前理论的效率,在特殊情况下,不仅获得了HSDT的数值结果,还可以获得一流的剪切变形理论(FSDT)。类似地,还提出了FG夹层光束的电力律分布,以强调Sigmoid法分布的有效性。使用公开文献的可用结果进行详细的比较,以确认当前的制定。最后,讨论了HSDT,材料特性的变化,夹层梁对非维度自然频率的夹层的变化。

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