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首页> 外文期刊>Journal of Sound and Vibration >Vibration-based damage identification using reconstructed FRFS in composite structures
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Vibration-based damage identification using reconstructed FRFS in composite structures

机译:复合结构中基于FRFS的基于振动的损伤识别

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摘要

This work aims to establish a vibration-based damage identification method for fiber-reinforced laminated composites and their sandwich construction. This new on-line structural damage identification technique uses the structural dynamic system reconstruction method exploiting the frequency response functions (FRFs) of a damaged structure. To verify the effectiveness of this damage identification method, the frequency responses obtained by vibration testing of fatigue-damaged laminated composites and honeycomb sandwich beams with debonding are examined according to the extent of the damage via the fatigue-damage load cycle for laminated composites, and via the debonding extent for honeycomb sandwich beams. The changes of the peaks and valley of the FRFs according to the debonding extent and the fatigue load cycles are examined, and the area changes in the FRFs are also discussed as the damage index. The residual FRFs or the difference between intact and damaged FRFs are newly defined for application of the on-line damage identification method. Finally, the delamination extent for the sandwich beams and the fatigue damage level for the laminated composites can be easily identified in terms of the changes in natural frequencies and damping ratios of the reconstructed FRFs for these damaged composite structures. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 34]
机译:这项工作旨在建立一种基于振动的纤维增强层压复合材料及其夹心结构损伤识别方法。这种新的在线结构损伤识别技术使用结构动态系统重构方法,该方法利用了损伤结构的频率响应函数(FRF)。为了验证这种损伤识别方法的有效性,根据通过疲劳破坏载荷循环对层压复合材料造成的破坏程度,研究了疲劳破坏的层压复合材料和蜂窝夹层梁通过脱粘振动测试得到的频率响应,以及通过蜂窝夹层梁的脱粘程度。研究了FRFs的峰和谷随脱粘程度和疲劳载荷循环的变化,并讨论了FRFs的面积变化作为损伤指标。重新定义了残余FRF或完整FRF与损坏FRF之间的差异,以应用在线损伤识别方法。最后,可以根据固有频率的变化以及这些受损复合材料结构的重建FRF的阻尼比,轻松确定夹层梁的分层程度和复合材料的疲劳损伤水平。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:34]

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