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Spectrally formulated one-dimensional element for analysis of wave propagation in pretwisted anisotropic strips

机译:频谱公式化的一维元素,用于分析预扭曲各向异性带中的波传播

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摘要

A spectrally formulated one-dimensional element is developed to study the wave propagation in pre-twisted anisotropic strips. The element is based on linear sectional analysis of pretwisted anisotropic strips with small pretwist. Firstly, the governing equations of the strip are obtained through dimensional reduction of laminated shell theory to a linear one dimensional (1-D) theory using the variational asymptotic method (VAM). Next, an exact dynamic stiffness matrix is derived in the frequency-wavenumber domain using spectral finite element (SFE) method. In SFE formulation the mass distribution is modeled exactly and as a result a single element is sufficient to capture the exact frequency response of a regular structure. For numerical validation of the proposed model, the natural frequencies of the strip are compared to the modal behavior of pretwisted composite strips available in literature. The model is used to predict wave responses due to modulated sinusoidal input. The different wave modes present, namely axial, flexural, and torsional modes are seen and their velocities are compared to that obtained from the dispersion plot. This proposed modeling strategy is a first step towards the development of a comprehensive model to do structural health monitoring of structures idealized as pretwisted strips. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种频谱公式化的一维单元,以研究预扭曲各向异性带中的波传播。该单元基于具有小预扭曲的预扭曲各向异性带的线性截面分析。首先,利用变分渐近方法(VAM),通过将叠层壳理论降维为线性一维(1-D)理论,得出带钢的控制方程。接下来,使用频谱有限元(SFE)方法在频率-波数域中导出精确的动态刚度矩阵。在SFE公式中,质量分布是精确建模的,因此单个元素足以捕获常规结构的精确频率响应。为了对提出的模型进行数值验证,将带材的固有频率与文献中可用的预绞复合带材的模态行为进行了比较。该模型用于预测由于调制正弦输入而产生的波响应。可以看到存在的不同波动模式,即轴向,弯曲和扭转模式,并将它们的速度与从色散图获得的速度进行比较。该拟议的建模策略是开发综合模型的第一步,该模型可以对理想化为预扭曲带的结构进行结构健康监测。 (C)2016 Elsevier Ltd.保留所有权利。

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