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Application of common-path speckle interferometer with unlimited minimal shearing amount to characterization of irregularly shaped notch

机译:公共路径散斑干涉仪在不受约束的最小剪切量的应用于不规则形状凹口的表征

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摘要

Non-destructive evaluation (NDE) techniques are widely used to detect and characterize different defects in engineering structures. However, the highly sensitive real-time quantitative imaging of irregularly shaped defects in large-area metallic structures remains challenging if conventional NDE approaches are used. In this paper, a speckle interferometer with unlimited minimal shearing amount - based on a simple imaging setup without the need to tilt any optical components - is explored for the application of detection and characterization of complex-shaped defects in metallic plates. This technology is able to directly yield strain measurements, allowing the defects to be detected by identifying induced strain concentrations under stress loading. Acoustic waves are used as stress loading for this imaging system with the advantage of a deeper penetration depth and a larger area of inspection as compared to conventional loading methods, e.g. thermal loading. The spatial carrier technique is introduced to quantitatively reconstruct the phase distribution, which contains information of the strain measurement from a single recording. To achieve the near real-time imaging of defects with relative insensitivity against noise, the image pairs are continuously recorded and correlated using the sequential subtraction method. The performance of the imaging system was tested with experimental data. The results demonstrate that the imaging system can generate high-quality images to provide good detection and characterization properties regarding irregularly shaped notches as well as accurate sizing of different notch dimensions. This work introduces a promising practical NDE tool for the near real-time, non-contacting and quantitative detection of subsurface defects with complex geometries in large-area metallic structures.
机译:不破坏性评估(NDE)技术广泛用于检测和表征工程结构中的不同缺陷。然而,如果使用常规NDE方法,大面积金属结构中的大面积金属结构中的不规则形状缺陷的高敏感实时成像仍然具有挑战性。本文探索了一种具有无限最小剪切量的散斑干涉仪,其基于简单的成像装置而无需倾斜任何光学组件 - 用于在金属板中的复杂形状缺陷的检测和表征应用。该技术能够直接产生应变测量,从而通过识别应力负荷下的诱导应变浓度来检测缺陷。与传统的装载方法相比,声波用作该成像系统的应力负荷,其具有更深的渗透深度和更大的检查区域,例如,如常规的负载方法。热负荷。引入空间载波技术以定量地重建相位分布,其包含从单个记录的应变测量的信息。为了实现对噪声的相对不敏感性的缺陷的近实时成像,使用顺序减法方法连续地记录和相关图像对。用实验数据测试成像系统的性能。结果表明,成像系统可以产生高质量的图像,以提供关于不规则形状的凹口的良好检测和表征特性,以及不同缺口尺寸的精确尺寸。这项工作引入了一个有希望的实用NDE工具,用于近实时,非接触和定量检测在大面积金属结构中具有复杂几何形状的地下缺陷。

著录项

  • 来源
    《NDT & E international》 |2020年第12期|102326.1-102326.8|共8页
  • 作者单位

    Chair for Computation in Engineering Technical University of Munich Arcisstr 21 80333 Munich Germany;

    Institute for Measurement Systems and Sensor Technology Technical University of Munich Arcisstr. 21 80333 Munich Germany;

    Key Laboratory of High Efficiency and Clean Mechanical Manufacture of Ministry of Education School of Mechanical Engineering Shandong University Jinan Shandong 250061 China Shenzhen Research Institute of Shandong University Shenzhen 5180S7 China;

    Chair for Computation in Engineering Technical University of Munich Arcisstr 21 80333 Munich Germany Institute for Advanced Study Technical University of Munich Lichtenbergstr 2a 85748 Garching Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Non-destructive evaluation; Acoustic shearography; Unlimited shearing amount; Sequential subtraction; Irregularly shaped notch detection;

    机译:非破坏性评估;声学剪切;无限剪切金额;序贯减法;不规则形状的凹口检测;

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