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Locating and Quantifying Damage in Beam-like Structures Using Modal Flexibility-based Deflection Changes

机译:使用模态灵活性的偏转变化定位和量化光束状结构的损坏

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摘要

This paper presents an enhanced method to locate and quantify damage in beam-like structures using changes in deflections estimated from modal flexibility (MF) matrices. The method is developed from explicit relationship between a series of MF-based deflection change vectors and the damage characteristics. Based on this, three damage locating criteria are defined and used to detect and locate damage. Once the damage is located, its severity is estimated conveniently from a closed-form function. The capability of the proposed method is examined through numerical and experimental verifications on a steel beam model. The result shows that the method accurately locates and quantifies damage under various scenarios using a few modes of vibration, with satisfactory or even better results compared to those obtained from traditional static deflection-based method. The performance of the proposed method is also compared with three well-known vibration-based damage detection methods using changes in MF and modal strain energy. It is found that the proposed method outperformed the other three methods, especially for multiple damage cases. As beams can represent various structural components, the proposed method provides a promising damage identification tool targeting the application to real-life structures.
机译:本文介绍了使用从模态灵活性(MF)矩阵估计的偏转的变化来定位和量化光束状结构损坏的方法。该方法是从一系列基于MF的偏转变化向量和损坏特性之间的显式关系开发的。基于此,定义了三个损坏定位标准,并用于检测和定位损坏。损坏定位后,其严重程度从闭合形式函数方便地估算。通过在钢束模型上的数值和实验验证来检查所提出的方法的能力。结果表明,使用几种振动模式,该方法准确地定位并定量了各种场景的损坏,与由传统的静态偏转的方法获得的那些,令人满意的甚至更好的结果。该方法的性能也与使用MF和模态应变能量的变化的三种众所周知的振动损伤检测方法进行了比较。发现该方法的表现优于其他三种方法,特别是对于多种损伤病例。由于光束可以代表各种结构部件,所提出的方法提供了旨在应用于现实生活结构的有希望的损害识别工具。

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