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A spectrally formulated plate element for wave propagation analysis in anisotropic material

机译:用于各向异性材料中波传播分析的光谱公式化板单元

摘要

A new spectrally formulated plate element is developed to study wave propagation in composite structures. The element is based on the classical lamination plate theory. Recently developed method based on singular value decomposition (SVD) is used in the element formulation.Along with this, a new strategy based on the method of solving polynomial eigenvalue problem (PEP) is proposed in this paper, which significantly reduces human intervention (and thus human error), in the element formulation. The developed element has an exact dynamic stiffness matrix, as it uses the exact solution of the governing elastodynamic equation of plate in frequency-wave number domain as the interpolating functions. Due to this, the mass distribution is modeled exactly, and as a result, a single element captures the exact frequency response of a regular structure, and it suffices to model a plate of any dimension. Thus, the cost of computation is dramatically reduced compared to the cost of conventional finite element analysis. The fast Fourier transform (FFT) and Fourier series are used for inversion to time-space domain. This element is used to model plate with ply drops and to capture the propagation of Lamb waves.
机译:开发了一种新的频谱公式化的板单元,以研究复合结构中的波传播。该元素基于经典的层压板理论。在元素公式中使用了最近开发的基于奇异值分解(SVD)的方法。与此同时,本文提出了一种基于解决多项式特征值问题(PEP)方法的新策略,该策略可显着减少人工干预(并且从而导致人为错误)。所开发的单元具有精确的动态刚度矩阵,因为它使用了频率-波数域中板的控制弹性动力学方程的精确解作为内插函数。因此,可以对质量分布进行精确建模,结果,单个元素可以捕获规则结构的精确频率响应,并且可以对任何尺寸的板进行建模。因此,与传统的有限元分析相比,计算成本大大降低。快速傅立叶变换(FFT)和傅立叶级数用于逆时空域。该元素用于模拟带层板滴的板并捕获兰姆波的传播。

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