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Vibration analysis of functionally graded beams using a higher-order shear deformable beam model with rational shear stress distribution

机译:具有高阶剪切可变形光束模型的功能梯度梁的振动分析,具有合理剪切应力分布

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摘要

This paper extends the higher-order shear deformable mixed beam element model with rational shear stress distribution to vibration analysis of functionally graded (FG) beams. In the element model proposed, the stress equilibrium equation is employed to derive the rational distribution of transverse shear stress. The beam element formulation oriented with vibration analysis is derived on the basis of the variational principle with mixed energy. To visualise the effectiveness and applicability of the proposed mixed beam element model in vibration analysis, numerical examples have been studied. According to the numerical results, in comparison with the classical beam element model and the beam element models based on the conventional first-order or higherorder shear deformation theory, the vibration frequencies obtained using the mixed beam element model are significantly more satisfactory. Moreover, the comparative study demonstrates that, for vibration analysis of FG sandwich beams, the rational distribution of transverse shear stress is of decisive significance to achieve highprecision solutions. With the mixed beam element used, the load-frequency relationship of FG sandwich beams is discussed. As indicated by the results, in addition to the axial force, the bending moment exerts a significant difference upon the vibration frequencies of the FG beams.
机译:本文延伸了具有合理剪切应力分布的高阶剪切可变形混合梁元件模型,以振动分析功能梯度(FG)梁。在提出的元素模型中,采用应力平衡方程来导出横向剪切应力的合理分布。以振动分析为取向的光束元件配方基于具有混合能量的变分原理来得出。为了可视化所提出的混合梁元件模型在振动分析中的有效性和适用性,已经研究了数值例子。根据数值结果,与基于传统的一阶或高阶剪切变形理论的经典梁元件模型和光束元件模型相比,使用混合光束元件模型获得的振动频率显着令人满意。此外,比较研究表明,对于FG夹层光束的振动分析,横向剪切应力的合理分布是实现高精度解决方案的决定性意义。利用所使用的混合梁元件,讨论了FG夹层光束的负载频率关系。如结果所示,除了轴向力之外,弯矩在FG梁的振动频率上施加显着差异。

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