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Ritz analysis of vibrating rectangular and skew multilayered plates based on advanced variable-kinematic models

机译:基于先进的运动学模型的矩形和斜交多层振动板的Ritz分析

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A variable-kinematic Ritz formulation based on two-dimensional higher-order layerwise and equivalent single-layer theories is described in this paper to accurately predict free vibration of thick and thin, rectangular and skew multilayered plates with clamped, free and simply-supported boundary conditions. The main result is the derivation at a layer level of so-called Ritz fundamental nuclei for the stiffness and mass matrices which are invariant with respect to both the assumed kinematic model and the type of Ritz functions. In this work, products of Chebyshev polynomials and boundary-compliant functions are chosen as admissible trial set. After studying the convergence of the method, its accuracy is evaluated, in terms of frequency parameters and through-the-thickness distribution of modal displacements, by comparison with some reference results available in the literature. Results for sandwich plates with soft core are given for the first time, which may serve as benchmark values for future research.
机译:本文描述了基于二维高阶分层和等效单层理论的可变运动Ritz公式,以精确地预测厚,薄,矩形和倾斜的多层板的自由振动,该多层板具有夹紧,自由且简单支撑的边界条件。主要结果是针对刚度和质量矩阵在所谓的Ritz基本核的层级上进行推导,这些刚度和质量矩阵相对于假定的运动学模型和Ritz函数的类型均不变。在这项工作中,选择契比雪夫多项式和边界兼容函数的乘积作为可接受的试用集。在研究了该方法的收敛性之后,通过与频率参考值和模态位移的整个厚度分布进行比较,并与文献中的一些参考结果进行比较,评估了该方法的准确性。首次给出了具有软芯的夹心板的结果,可作为将来研究的基准值。

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