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Spectral finite element for wave propagation analysis of laminated composite curved beams using classical and first order shear deformation theories

机译:基于经典和一阶剪切变形理论的层合复合弯曲梁波传播分析的谱有限元

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摘要

A frequency domain spectral finite element formulation is presented for the wave propagation analysis of laminated composite curved beams using the first order shear deformation theory (FSDT) and the classical laminate theory (CLT). The elements are derived from the exact solution of the governing equation of motion in frequency domain, obtained through Fourier transformation of the time domain equation. The formulation is validated by comparing the results for natural frequencies with the published results. The new elements are then employed to perform dispersion and wave propagation analyses of curved composite beams. The numerical results reveal that the wavenumbers predicted by the CLT show large deviation from those of the FSDT even for thin beams, and the deviation increases and occurs at lower frequencies with the increase in the thickness to radius ratio. The orthotropy ratio of the composite has a significant effect on the wavenumbers for tangential and mid-surface rotation modes. The wave propagation response predicted by the CLT differs widely from the FSDT prediction, for thin and thick, and shallow and deeply curved beams at both low and high frequencies. Thus, the CLT should not be used for wave propagation analysis of even thin curved laminated beams. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用一阶剪切变形理论(FSDT)和经典层压理论(CLT),提出了一种用于层合复合弯曲梁波传播分析的频域频谱有限元公式。这些元素是从时域方程的傅立叶变换获得的频域运动控制方程的精确解中得出的。通过将固有频率的结果与已发布的结果进行比较来验证该公式。然后,将这些新元素用于执行弯曲复合梁的色散和波传播分析。数值结果表明,即使对于细光束,CLT预测的波数与FSDT的波数也显示出较大的偏差,并且随着厚度与半径比的增加,该偏差会增加并出现在较低的频率下。复合材料的正交各向异性比对切向和中表面旋转模式的波数有很大影响。 CLT预测的波传播响应与FSDT预测有很大不同,在低频和高频下,对于薄,厚,浅,深弯曲的波束,都是如此。因此,即使是薄的弯曲叠层梁,也不应将CLT用于波传播分析。 (C)2015 Elsevier Ltd.保留所有权利。

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