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Online detection of crack damage in composite plates using embedded piezoelectric actuators/sensors and wavelet analysis

机译:使用嵌入式压电致动器/传感器和小波分析在线检测复合材料板中的裂纹损伤

摘要

The method for online detection of initial damage in composite structures proposed in this paper is based on energy variation of structural dynamic responses decomposed using wavelet analysis. It is much more sensitive than the existing methods, and it can detect extremely small cracks in composite plates. The results obtained in this study show that the smallest detectable crack may reach the dimension of width 0.1 mm and length 2.3 mm, and the area containing this crack is only 0.06% of the total area of the plate. In addition, the piezoelectric smart materials embedded in the laminated composite structures are used as both actuators and sensors. The in situ active damage detection of composite structures can be implemented using the embedded piezoelectric materials in combination with signal processing based on vibration analysis. This method is suitable for damage detection of inaccessible structures used in severe environments without using an additional excitation facility. It can make the in-service inspection of composite structures more safe, reliable and affordable.
机译:本文提出的复合结构初始损伤在线检测方法是基于小波分解的结构动力响应的能量变化。它比现有方法灵敏得多,并且可以检测复合板中的极小裂纹。在这项研究中获得的结果表明,最小的可检测裂纹可以达到宽度0.1 mm和长度2.3 mm的尺寸,并且包含该裂纹的面积仅为板总面积的0.06%。另外,嵌入在层压复合结构中的压电智能材料同时用作致动器和传感器。可以使用嵌入式压电材料结合基于振动分析的信号处理来实现复合结构的原位主动损伤检测。该方法适用于在恶劣环境下使用的不可触及结构的损坏检测,而无需使用额外的激励设施。它可以使复合结构的在役检查更加安全,可靠和负担得起。

著录项

  • 作者

    Yan YJ; Yam LH;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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