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Crack Identification in CFRP Laminated Beams Using Multi-Resolution Modal Teager–Kaiser Energy under Noisy Environments

机译:嘈杂环境下使用多分辨率模态Teager-Kaiser能量识别CFRP叠合梁中的裂纹

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摘要

Carbon fiber reinforced polymer laminates are increasingly used in the aerospace and civil engineering fields. Identifying cracks in carbon fiber reinforced polymer laminated beam components is of considerable significance for ensuring the integrity and safety of the whole structures. With the development of high-resolution measurement technologies, mode-shape-based crack identification in such laminated beam components has become an active research focus. Despite its sensitivity to cracks, however, this method is susceptible to noise. To address this deficiency, this study proposes a new concept of multi-resolution modal Teager–Kaiser energy, which is the Teager–Kaiser energy of a mode shape represented in multi-resolution, for identifying cracks in carbon fiber reinforced polymer laminated beams. The efficacy of this concept is analytically demonstrated by identifying cracks in Timoshenko beams with general boundary conditions; and its applicability is validated by diagnosing cracks in a carbon fiber reinforced polymer laminated beam, whose mode shapes are precisely acquired via non-contact measurement using a scanning laser vibrometer. The analytical and experimental results show that multi-resolution modal Teager–Kaiser energy is capable of designating the presence and location of cracks in these beams under noisy environments. This proposed method holds promise for developing crack identification systems for carbon fiber reinforced polymer laminates.
机译:碳纤维增强的聚合物层压板越来越多地用于航空航天和土木工程领域。识别碳纤维增强聚合物叠层梁组件中的裂纹对于确保整个结构的完整性和安全性具有重要意义。随着高分辨率测量技术的发展,在这种层压梁组件中基于模式形状的裂纹识别已成为活跃的研究重点。尽管它对裂纹敏感,但是该方法容易受到噪声的影响。为了解决这一不足,本研究提出了一种多分辨率模态Teager-Kaiser能量的新概念,该模式是一种以多分辨率表示的模态形状的Teager-Kaiser能量,用于识别碳纤维增强聚合物层压梁中的裂缝。通过识别具有一般边界条件的Timoshenko梁中的裂纹,可以通过分析证明这一概念的有效性。通过诊断碳纤维增强聚合物层压梁中的裂纹来验证其适用性,该层压梁的模态形状是通过使用扫描激光振动计的非接触式测量精确获得的。分析和实验结果表明,多分辨率模态Teager-Kaiser能量能够确定嘈杂环境下这些光束中裂纹的存在和位置。该提出的方法为开发碳纤维增强聚合物层压板的裂纹识别系统提供了希望。

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