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Isogeometric vibration analysis of multi-directional functionally graded circular and annular plates with variable thickness

机译:具有可变厚度的多向功能渐变圆形和环形板的异步振动分析

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In this paper, the free vibration of multi-directional functionally graded (multidirectional FG) circular and annular plates with variable thickness is studied. The plates are considered inhomogeneous in multiple directions, and the thickness of plates changes in both x- and y-axes by a specific law. A numerical method based on the isogeometric analysis and first-order shear deformation (FDST) theory is employed to analyze the natural frequencies and mode shapes of the multi-directional FG plates. By using isogeometric analysis (IGA) and the non-uniform rational B-spline (NURBS) as the basis function, the precise geometric representation and high computational efficiency can be obtained. Then the effects of material variation exponents, boundary conditions, thickness variation index on the natural frequencies and mode shapes of the above considered plates are investigated and discussed.
机译:在本文中,研究了多向功能梯度(多向FG)圆形和具有可变厚度的环形板的自由振动。 板在多个方向上被认为是不均匀的,并且通过特定法律,平板的厚度变化了X和Y轴。 基于异诊测分析和一阶剪切变形(FDST)理论的数值方法用于分析多向FG板的自然频率和模式形状。 通过使用异构测定分析(IgA)和非均匀的Rational B样条(NURBS)作为基函数,可以获得精确的几何表示和高计算效率。 然后研究了材料变异指数,边界条件,厚度变化指数对上述板的自然频率和模式形状的影响,并讨论。

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