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Investigation of guided wave properties of anisotropic composite laminates using a semi-analytical finite element method

机译:各向异性复合材料层合板导波特性的半解析有限元分析

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摘要

Composite materials have been widely used in various applications, and guided waves are often used as a non-destructive testing tool to inspect defects or damage in composite laminates which are assemblies of multiple composite layers. These can have anisotropic material properties and arbitrary fibre orientation such that the guided wave properties of Lamb and shear-horizontal modes are direction-dependent. The group velocity of each wave mode is therefore to be considered with a component parallel to the wave propagation direction and a component perpendicular to the wave propagation direction. In this article, a semi-analytical finite element method is developed to model composite laminates with arbitrary fibre orientation and anisotropic material properties in each layer. Galerkin's principle is used to derive the weak forms of the governing equations, and an energy velocity formulation is used to calculate the parallel and perpendicular energy velocities. The finite element solutions are compared with available analytical and numerical solutions in the literature for forward waves, and excellent agreement is demonstrated. On this basis, the guided wave properties of backward waves have also been investigated. It is well understood that in an isotropic plate, the energy velocity of a backward wave is directed opposite to the phase velocity. However, in a composite laminate, the energy velocity of a backward wave is normally not exactly opposed to (180 out of phase with) the phase velocity but exhibits a skew angle. The angular dependences of wave properties of the forward and backward waves are investigated in this article.
机译:复合材料已被广泛用于各种应用中,并且导波经常被用作无损测试工具,以检查由多个复合层组成的复合层压板中的缺陷或损坏。它们可以具有各向异性的材料特性和任意的纤维取向,从而使得Lamb的导波特性和剪切水平模式与方向相关。因此,考虑每个波模式的群速度具有平行于波传播方向的分量和垂直于波传播方向的分量。在本文中,开发了一种半分析有限元方法来建模具有任意纤维取向和每一层各向异性材料特性的复合层压板。 Galerkin原理用于导出控制方程的弱形式,能量速度公式用于计算平行和垂直能量速度。将有限元解与文献中针对正向波的可用解析解和数值解进行了比较,并证明了极好的一致性。在此基础上,还研究了后向波的导波特性。众所周知,在各向同性板中,反向波的能量速度与相速度相反。然而,在复合层压板中,后向波的能量速度通常与相位速度并不完全相反(与相位速度成180度相反),而是呈现出偏斜角。本文研究了前向波和后向波的波特性与角度的关系。

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  • 来源
    《Composites》 |2019年第15期|106898.1-106898.10|共10页
  • 作者

    Duan Wenbo; Gan Tat-Hean;

  • 作者单位

    Brunel Univ London Brunel Innovat Ctr Uxbridge UB8 3PH Middx England;

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  • 原文格式 PDF
  • 正文语种 eng
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