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载荷对导波传播的影响。

The effect of load on guided wave propagation.

作者信息

Chen Feng, Wilcox Paul D

机构信息

University of Bristol, Mechanical Engineering, Queen's Building, University Walk, Bristol BS8 1TR, United Kingdom.

出版信息

Ultrasonics. 2007 Dec;47(1-4):111-22. doi: 10.1016/j.ultras.2007.08.003. Epub 2007 Aug 28.

Abstract

The motivation for this work is the development of load measurement techniques based on the velocity of propagating guided waves in structural members such as cable and rail. A finite element technique for modelling the dispersion characteristics of guided waves in a waveguide of arbitrary cross section subjected to axial load is presented. The results from the FE model are compared to results obtained from a simple Euler-Bernoulli beam model. A dimensionless measure of the sensitivity of phase and group velocity to load is defined as the fractional change in velocity divided by the applied strain. At frequency waveguide-characteristic-dimension products (fd) of greater than around 1 for phase velocity and 5 for group velocity the sensitivity to strain levels likely to be encountered in engineering materials is strain independent (indicating that the change in velocity is proportional to strain) and decreases with increasing frequency. In this fd range, phase velocity increases under tensile loading and group velocity decreases. For waveguides with simple cross sections, such as plates and circular rods, it is shown that the Euler-Bernoulli beam model provides acceptable results over the majority of the fd range where there is measurable sensitivity to load. However, for waveguides with more complex cross sections such as rail, the Euler-Bernoulli beam model is less satisfactory. In particular, it does not predict the subtleties of the sensitivity of certain modes at high frequencies, nor any sensitivity for the torsional fundamental mode.

摘要

开展这项工作的动机是开发基于导波在诸如电缆和轨道等结构构件中的传播速度的载荷测量技术。本文提出了一种有限元技术,用于模拟轴向受载的任意横截面波导中导波的色散特性。将有限元模型的结果与简单的欧拉 - 伯努利梁模型得到的结果进行了比较。将相速度和群速度对载荷的灵敏度的无量纲度量定义为速度的分数变化除以施加的应变。对于相速度,当频率与波导特征尺寸的乘积(fd)大于约1,对于群速度大于约5时,对工程材料中可能遇到的应变水平的灵敏度与应变无关(表明速度变化与应变成正比),并且随着频率增加而降低。在此fd范围内,拉伸载荷下相速度增加,群速度降低。对于具有简单横截面的波导,如板和圆杆,结果表明,在对载荷有可测量灵敏度的大部分fd范围内,欧拉 - 伯努利梁模型能提供可接受的结果。然而,对于具有更复杂横截面的波导,如轨道,欧拉 - 伯努利梁模型不太令人满意。特别是,它无法预测某些模式在高频下灵敏度的细微差别,也无法预测扭转基模的任何灵敏度。

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