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Application of a robust vibration-based non-destructive method for detection of fatigue cracks in structures

机译:鲁棒的基于振动的无损检测方法在结构疲劳裂纹检测中的应用

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摘要

This paper presents the application of a novel vibration-based technique for detecting fatigue cracks in structures. The method utilizes the empirical mode decomposition method (EMD) to establish an effective energy-based damage index. To investigate the feasibility of the method, fatigue cracks of different sizes were introduced in an aluminum beam subjected to a cyclic load under a three-point bending configuration. The vibration signals corresponding to the healthy and the damaged states of the beam were acquired via piezoceramic sensors. The signals were then processed by the proposed methodology to obtain the damage indices. In addition, for the sake of comparison, the frequency and damping analysis were performed on the test specimen. The results of this study concluded with two major observations. Firstly, the method was highly successful in not only predicting the presence of the fatigue crack, but also in quantifying its progression. Secondly, the proposed energy-based damage index was proved to be superior to the frequency-based methods in terms of sensitivity to the damage detection and quantification. As a result, this technique could be regarded as an efficient non-destructive tool, since it is simple, cost-effective and does not rely on analytical modeling of structures. In addition, the capability of the finite element method (FEM) in mimicking the experiments, and hence for consideration as an effective tool for conducting future parametric studies, was also investigated.
机译:本文介绍了一种新颖的基于振动的技术在检测结构疲劳裂纹中的应用。该方法利用经验模式分解方法(EMD)来建立有效的基于能量的损伤指数。为了研究该方法的可行性,将不同尺寸的疲劳裂纹引入三点弯曲配置下承受周期性载荷的铝梁中。通过压电陶瓷传感器获取与光束的健康状态和损坏状态相对应的振动信号。然后,通过建议的方法对信号进行处理,以获得损伤指数。另外,为了比较,对试样进行了频率和阻尼分析。这项研究的结果得出两个主要结论。首先,该方法不仅成功地预测了疲劳裂纹的存在,而且在量化其进展方面都非常成功。其次,在对损伤检测和量化的敏感性方面,所提出的基于能量的损伤指数被证明优于基于频率的方法。结果,由于该技术简单,经济高效并且不依赖于结构的解析模型,因此可以视为一种有效的无损工具。此外,还研究了有限元方法(FEM)模仿实验的能力,因此被认为是进行未来参数研究的有效工具。

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