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Vibration of multilayer FG-GPLRC toroidal panels with elastically restrained against rotation edges

机译:多层FG-GPLRC环形面板的振动,弹性地抑制了旋转边缘

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The vibrational behavior of multilayer functionally graded graphene platelets reinforced composite (FG-GPLRC) toroidal panels with elastically restrained against rotation edges is investigated. The first-order shear deformation theory (FSDT) of shells together with the finite element method (FEM) is employed to develop a general formulation and solution procedure. Nine-noded isoparametric shell elements with five degrees of freedom per node are used to discretize the spatial domain. After validating the approach, the influences of different distribution patterns of graphene platelets (GPLs) through the panel thickness, the geometrical parameters, and the elastic coefficients of the rotational springs are studied. It is shown that among the multilayer FG-GPLRC toroidal panels with different GPLs distribution patterns, the toroidal panels with X-type pattern have the highest frequency values whereas the minimum values belong to the shells with O-type and A-type for the first and second frequency parameters, respectively. Also, the numerical results reveal that by increasing the GPLs volume fraction and the elastic coefficients of rotational springs, the frequency parameters increase, and these parameters have considerable effects on the frequency parameters. Also, the mode shapes of multilayer FG-GPLRC toroidal panels for different GPLs distribution patterns are depicted.
机译:研究了多层功能梯度石墨烯片增强复合材料(FG-GPLRC)环形板的振动行为,该环形板具有弹性地限制了旋转边缘。壳体的一阶剪切变形理论(FSDT)与有限元方法(FEM)一起被用于制定一般的公式和求解程序。每个节点具有五个自由度的九节点等参壳单元用于离散空间域。在验证了该方法之后,研究了石墨烯薄片(GPL)的不同分布模式对面板厚度,几何参数和旋转弹簧弹性系数的影响。结果表明,在具有不同GPL分布模式的多层FG-GPLRC环形板中,具有X型模式的环形板具有最高的频率值,而最小值属于第一个为O型和A型的壳。和第二频率参数。此外,数值结果表明,通过增加GPL的体积分数和旋转弹簧的弹性系数,频率参数会增加,并且这些参数对频率参数有相当大的影响。而且,描绘了用于不同GPL分布图案的多层FG-GPLRC环形面板的模式形状。

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