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A unified formulation for predictive modeling of guided-ultrasonic wave dispersion curves in metallic and composite materials

机译:金属和复合材料中超声-超声波频散曲线预测模型的统一公式

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To predict dispersion curves it is common to use different solution approaches depending on the material type, isotropic or composite, of the medium in which the wave propagates. The two different solution methods are defined in different domains, frequency-wavespeed domain for isotropic materials, and wavenumber-wavespeed domain for composites which can lead to difficulties, and unsatisfying results when predicting the dispersion curves for hybrid laminates which contain both isotropic and composite materials. This article, therefore, proposes a unified formulation defined in the wavenumber-wavespeed domain for both isotropic and composite materials. The unified formulation, simple, and mathematically straightforward formulation, utilizes Christoffel's equation for a lamina to obtain the eigenvalues and eigenvectors. The eigenvalues and eigenvectors are then used to set up the field matrix from which the dispersion curves could be retrieved. Once the dispersion curves were obtained the waves are grouped using a modeshape analysis. A spline algorithm is applied to obtain a continuous solution from a rough domain which was used to reduce computational time. In addition, this article highlights the challenges faced in the numerical process, and provides a discussions of the methods used to overcome these obstacles.
机译:为了预测色散曲线,通常根据波传播介质的材料类型(各向同性或复合材料)使用不同的求解方法。在不同的域中定义了两种不同的求解方法,即各向同性材料的频率-波速域和复合材料的波数-波速域,这可能会导致困难,并且在预测同时包含各向同性和复合材料的混合层压板的色散曲线时,结果令人不满意。因此,本文提出了一种在各向同性和复合材料的波数-波速域中定义的统一公式。统一公式,简单且数学上简单的公式,利用Christoffel方程的层数来获得特征值和特征向量。然后使用特征值和特征向量来建立可从中检索出色散曲线的场矩阵。一旦获得了色散曲线,就使用模形分析对波进行分组。应用样条算法从粗糙域中获取连续解,以减少计算时间。此外,本文重点介绍了数值过程中面临的挑战,并讨论了用于克服这些障碍的方法。

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