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Guided Lamb wave based 2-D spiral phased array for structural health monitoring of thin panel structures.

机译:基于Lamb波的二维螺旋相控阵,用于薄板结构的结构健康监测。

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摘要

In almost all industries of mechanical, aerospace, and civil engineering fields, structural health monitoring (SHM) technology is essentially required for providing the reliable information of structural integrity of safety-critical structures, which can help reduce the risk of unexpected and sometimes catastrophic failures, and also offer cost-effective inspection and maintenance of the structures. State of the art SHM research on structural damage diagnosis is focused on developing global and real-time technologies to identify the existence, location, extent, and type of damage.;In order to detect and monitor the structural damage in plate-like structures, SHM technology based on guided Lamb wave (GLW) interrogation is becoming more attractive due to its potential benefits such as large inspection area coverage in short time, simple inspection mechanism, and sensitivity to small damage. However, the GLW method has a few critical issues such as dispersion nature, mode conversion and separation, and multiple-mode existence.;Phased array technique widely used in all aspects of civil, military, science, and medical industry fields may be employed to resolve the drawbacks of the GLW method. The GLW-based phased array approach is able to effectively examine and analyze complicated structural vibration responses in thin plate structures. Because the phased sensor array operates as a spatial filter for the GLW signals, the array signal processing method can enhance a desired signal component at a specific direction while eliminating other signal components from other directions.;This dissertation presents the development, the experimental validation, and the damage detection applications of an innovative signal processing algorithm based on two-dimensional (2-D) spiral phased array in conjunction with the GLW interrogation technique. It starts with general backgrounds of SHM and the associated technology including the GLW interrogation method. Then, it is focused on the fundamentals of the GLW-based phased array approach and the development of an innovative signal processing algorithm associated with the 2-D spiral phased sensor array. The SHM approach based on array responses determined by the proposed phased array algorithm implementation is addressed. The experimental validation of the GLW-based 2-D spiral phased array technology and the associated damage detection applications to thin isotropic plate and anisotropic composite plate structures are presented.
机译:在机械,航空航天和土木工程领域的几乎所有行业中,本质上都需要结构健康监视(SHM)技术,以提供安全关键结构的结构完整性的可靠信息,这可以帮助降低意外故障(有时甚至是灾难性故障)的风险,并且还提供经济高效的结构检查和维护。 SHM对结构损伤诊断的最新研究专注于开发全局和实时技术,以识别损伤的存在,位置,程度和类型。为了检测和监控板状结构中的结构损伤,基于导引的兰姆波(GLW)询问的SHM技术具有潜在优势,例如在短时间内覆盖较大的检查区域,简单的检查机制以及对小损坏的敏感性等,因此变得越来越有吸引力。但是,GLW方法存在一些关键问题,例如色散性质,模式转换和分离以及多模式存在。可以采用在民用,军事,科学和医疗行业的各个方面广泛使用的相控阵技术解决GLW方法的缺点。基于GLW的相控阵方法能够有效地检查和分析薄板结构中复杂的结构振动响应。由于相控传感器阵列可以作为GLW信号的空间滤波器,因此该阵列信号处理方法可以在特定方向上增强期望的信号分量,同时消除其他方向上的其他信号分量。以及基于二维(2-D)螺旋相控阵结合GLW询问技术的创新信号处理算法的损伤检测应用。它从SHM和相关技术(包括GLW询问方法)的一般背景开始。然后,将重点放在基于GLW的相控阵方法的基础以及与2-D螺旋相控传感器阵列相关的创新信号处理算法的开发上。提出了一种基于阵列响应的SHM方法,该阵列响应由所提出的相控阵算法实现确定。提出了基于GLW的2-D螺旋相控阵技术的实验验证以及相关的损伤检测在薄各向同性板和各向异性复合板结构上的应用。

著录项

  • 作者

    Yoo, Byungseok.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 269 p.
  • 总页数 269
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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