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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Damage identification in composite laminates using a hybrid method with wavelet transform and finite element model updating
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Damage identification in composite laminates using a hybrid method with wavelet transform and finite element model updating

机译:使用具有小波变换的混合方法和有限元模型更新的混合方法在复合层压板中损坏识别

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摘要

Delamination is a common defect in composite plates that may cause significant losses in commercial applications. In this study, a hybrid damage detection method was introduced, which raised both the damage identification sensitivity level and detected quantitative damage parameters. The primary damage location was pinpointed by the wavelet transform, and the damage parameters, including location, depth, and intensity, were then isolated by the model updating process. The wavelet transform was obtained according to the signal's nature, which leads to improvement in the wavelet transform's operation. Then, the lifting scheme algorithm process was performed to increase the wavelet efficiency in damage detection. In addition, a proper signal, based on strain energy, was used for damage detection by the wavelet transform. Finally, the genetic algorithm method was employed in the proposed model updating method to identify the damage parameters through employing a novel error function. The selected error function was based on strain energy, having the best operation among previously identified modal criteria. Consequently, the accuracy of identifying the damage parameters was improved upon utilizing the proposed method, particularly in the presence of noise. In addition, the solution performed faster than the previously available updating methods which utilized only the genetic algorithm-based on mode shapes and natural frequencies for detecting the damage.
机译:分层是复合板中的常见缺陷,可造成商业应用中的显着损失。在这项研究中,引入了一种混合损伤检测方法,从而提高了损伤识别灵敏度水平并检测到定量损伤参数。由小波变换定位初级损伤位置,然后通过模型更新过程分离损坏参数,包括位置,深度和强度,包括位置,深度和强度。根据信号的性质获得小波变换,这导致小波变换的操作的改进。然后,执行提升方案算法处理以增加损坏检测中的小波效率。另外,基于应变能量的适当信号用于通过小波变换损坏。最后,采用遗传算法方法在建议的模型更新方法中,通过采用新的误差函数来识别损坏参数。所选误差函数基于应变能量,在先前识别的模态标准中具有最佳操作。因此,在利用所提出的方法时,改善了识别损伤参数的准确性,特别是在噪声存在下。另外,该解决方案的执行比以前可用的更新方法更快地使用遗传算法 - 基于模式形状和自然频率来检测损坏。

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