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A Semi-analytical Study of Geometrically Nonlinear Free Axisymmetric Vibrations of Thin Circular Functionally Graded Plates using Iterative and Explicit Analytical Solution

机译:使用迭代和明确分析解决方法对薄圆形功能梯度板几何非线性轴对称振动的半分析研究

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This paper deals with nonlinear free axisymmetric vibrations of functionally graded thin circular plates (FGCP) whose properties vary through its thickness. The inhomogeneity of the plate is characterized by a power law variation of the Young's modulus and mass density of the material along the thickness direction, whereas Poisson's ratio is assumed to be constant. The theoretical model is based on Hamilton's principle and spectral analysis using a basis of admissible Bessel's functions to yield the frequencies of the circular plates under clamped boundary conditions on the basis of the classical plate theory. The large vibration amplitudes problem, reduced to a set of non-linear algebraic equations, is solved numerically. The non-linear to linear frequency ratios are presented. Then, explicit analytical solutions are presented, based on the semi-analytical model previously developed by EL Kadiri et al. [1-2] for beams and rectangular plates, which allow direct and easy calculation for the first non-linear axisymmetric mode shape, with their associated nonlinear frequencies of FG circular plates and which are expected to be very useful in engineering applications and in further analytical developments. An excellent agreement is found with the results obtained by the iterative method.
机译:本文使用功能梯度薄圆板(FGCP),其性质通过其厚度而变化的非线性自由轴对称振动的交易。板的不均匀性的特征在于,沿着厚度方向的材料的杨氏模量和质量密度的幂律变化,而泊松比被假设为恒定的。理论模型是使用可容许贝塞尔函数的基础,得到经典板理论的基础上的圆板的固定边界条件下的频率根据Hamilton原理和光谱分析。大振幅的问题,减少到一组非线性代数方程,进行数值求解。非线性到线性频率比被呈现。然后,明确的解析解,提出了基于先前由EL卡迪里等人开发的半解析模型。 [1-2]为梁和矩形板,其允许第一非线性轴对称模式形状直接和简单地计算,用FG圆板的其相关联的非线性频率和预期在工程应用和在进一步的是非常有用的分析发展。一个优秀的协议发现迭代方法得到的结果。

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