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首页> 外文期刊>Journal of Sound and Vibration >Modeling wave propagation in damped waveguides of arbitrary cross-section
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Modeling wave propagation in damped waveguides of arbitrary cross-section

机译:建模任意截面阻尼波导中的波传播

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摘要

This paper deals with a semi-analytical finite element (SAFE) method for modeling wave propagation in waveguides of arbitrary cross-section. The method simply requires the finite element discretization of the cross-section of the waveguide, and assumes harmonic motion along the wave propagation direction. The general SAFE technique is extended to account for viscoelastic material damping by allowing for complex stiffness matrices for the material. The dispersive solutions are obtained in terms of phase velocity, group velocity (for undamped media), energy velocity (for damped media), attenuation, and cross-sectional mode shapes. Knowledge of these properties is important in any structural health monitoring attempt that uses ultrasonic guided waves. The proposed SAFE formulation is applied to several examples, including anisotropic viscoelastic layered plates, composite-to-composite adhesive joints and railroad tracks. (c) 2006 Elsevier Ltd. All rights reserved.
机译:本文研究了一种半解析有限元(SAFE)方法,用于建模波在任意截面的波导中的传播。该方法仅要求波导横截面的有限元离散化,并假设沿波传播方向的谐波运动。通用SAFE技术已扩展到通过考虑材料的复杂刚度矩阵来解决粘弹性材料的阻尼问题。根据相速度,组速度(对于无阻尼介质),能量速度(对于阻尼介质),衰减和截面模式形状获得色散解。这些特性的知识在使用超声波导波的任何结构健康监测尝试中都很重要。拟议中的SAFE配方可用于几个示例,包括各向异性粘弹性层状板,复合材料到复合材料的粘结缝和铁轨。 (c)2006 Elsevier Ltd.保留所有权利。

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