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Theoretical and experimental evaluation of the health status of a 1018 steel I-beam using nonlinear Rayleigh waves: Application to evaluating localized plastic damage due to impact loading

机译:一种使用非线性瑞利波的1018钢I光束健康状况的理论和实验评价:应用于评估局部塑性损伤因冲击载荷

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摘要

This study proposes a sensitive and baseline-free method to evaluate the health status of a 1018 steel I-beam by measuring its material nonlinearity using a new nonlinearity parameter defined for Rayleigh waves. This parameter yields a true value of material nonlinearity using the Rayleigh wave harmonics obtained from the experiments carried out at the intact and impacted states of the I-beam. Accordingly, the evaluated nonlinearities are inherent and damaged induced respectively. The results show that, for an intact state, the nonlinearity obtained using the new parameter and the experimental results for different propagation distances, consist of several peaks and the first peak reaches the true material nonlinearity. Whereas, in case of damaged state, the nonlinearity parameter at the impacted location shows a sudden increase and reaches a value higher than that of the nonlinearity evaluated at the same location for intact state. Thus, the health status can be easily tracked by comparing the nonlinearity obtained from the current state of the I-beam at its first peak with that of a physics based nonlinearity parameter evaluated at the intact state using the higher order elastic coefficients of the material. Therefore, this method is termed as baseline-free. Lastly, a novel concept of evaluating the population of dislocations formed in the material as a result of impact loading, using the new nonlinearity parameter is introduced and an equation for its estimation is given. The trend of the results given by this new equation are in accordance with those reported in the literature. In contrast, deviation between the linear parameter such as the wave velocity at the intact and impacted state remains marginal. Thus, by using the new nonlinearity parameter, it has been proven that the inspected steel specimen can be easily differentiated whether it is at the intact or damaged state.
机译:本研究提出了一种敏感的和基线的方法来评估1018钢I光束的健康状态,通过使用为瑞利波定义的新的非线性参数测量其材料非线性。该参数使用从I-梁的完整和撞击状态下进行的实验获得的瑞利波谐波产生材料非线性的真实值。因此,评估的非线性分别是固有的和损坏的诱导。结果表明,对于完整的状态,使用新参数获得的非线性和不同传播距离的实验结果包括几个峰,第一峰值达到真实的材料非线性。然而,在损坏状态的情况下,撞击位置处的非线性参数显示出突然增加并且达到高于在相同状态下评估的非线性的值。因此,通过将从I-梁的当前状态的第一峰值与使用更高阶的弹性系数评估的物理学的非线性参数比较,可以容易地跟踪健康状态。因此,该方法被称为基线。最后,引入了使用新的非线性参数的撞击负载产生的评估材料中形成的位错群的新概念,并给出了其估计的等式。这种新方程式给出的结果的趋势符合文献中报告的结果。相反,线性参数之间的偏差,例如完整和受冲击状态下的波速和受冲击状态的偏差保持边缘。因此,通过使用新的非线性参数,已经证明了被检查的钢标本可以容易地区分其是否处于完整或受损状态。

著录项

  • 来源
    《Ultrasonics》 |2020年第1期|共14页
  • 作者

    Masurkar Faeez; Tse Peter;

  • 作者单位

    City Univ Hong Kong Smart Engn Asset Management Lab SEAM Dept Syst Engn &

    Engn Management Hong Kong Peoples R China;

    City Univ Hong Kong Smart Engn Asset Management Lab SEAM Dept Syst Engn &

    Engn Management Hong Kong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 超声学;
  • 关键词

    I-Beam; Material nonlinearity; Impact; Plastic damage; Rayleigh waves;

    机译:i-beam;材料非线性;撞击;塑料损伤;瑞利波;
  • 入库时间 2022-08-20 06:51:45

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