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Optimisation of the Half-Skip Total Focusing Method (HSTFM) parameters for sizing surface-breaking cracks

机译:优化半跳过总关注方法(HSTFM)参数,用于施胶表面破裂裂缝

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摘要

The Half-Skip Total Focusing Method (HSTFM) is an ultrasonic array post-processing (imaging) technique. The method allows surface-breaking cracks (SBCs) to be imaged and also sized using 6 dB drop rule. The HSTFM has previously been used to size SBCs initiating from flat and horizontal walls. However, there has been limited research to optimise the method in a rigours manner and quantitatively determine the performance of the HSTFM to size cracks accurately. In this paper, the SBCs characterization capability of the HSTFM was tested and applied on both numerically simulated and experimentally generated data. Under numerical simulation, considering the travel time of ultrasonic signals as per the ray theory, first, a mathematical framework was developed for the HSTFM imaging algorithm. Then, a quantitative parametric study, using the finite element method and point reflector model, was performed to evaluate the sizing capability of the HSTFM under different scenarios. These scenarios include the position of the ultrasonic array relative to the crack, the accuracy of the acoustic velocity, the height of the sample, the slope of the back wall, and the tilting angle of the defect. For each of the array configuration, the crack-sizing range (the smallest and largest Through Wall Extent (TWE) of a crack) that can be measured using the HSTFM was calculated. Thereafter, experimental validation was performed, where an excellent match with the numerical results was observed.
机译:半跳过总关注方法(HSTFM)是超声波阵列后处理(成像)技术。该方法允许将表面破裂裂缝(SBC)成像并使用6 dB跌落规则进行尺寸。 HSTFM先前已被用于从平坦和水平墙上发起的SBC。然而,研究了研究以严谨的方式优化方法,并定量地确定HSTFM精确地裂缝的性能。在本文中,测试了HSTFM的SBCS表征能力,并在数值模拟和实验生成的数据上应用。在数值模拟下,考虑到超声波信号的旅行时间根据光线理论,首先,为HSTFM成像算法开发了数学框架。然后,使用有限元方法和点反射器模型进行定量参数研究以评估HSTFM在不同场景下的尺寸。这些场景包括超声阵列相对于裂缝的位置,声速度的精度,样品的高度,后壁的斜率,以及缺陷的倾斜角度。对于每个阵列配置,计算可以使用HSTFM测量的裂缝尺寸范围(裂缝的最小和最大的贯穿墙面(TWE))。此后,进行实验验证,其中观察到与数值结果的优异匹配。

著录项

  • 来源
    《NDT & E international》 |2020年第12期|102365.1-102365.11|共11页
  • 作者单位

    School of Mechanical and Aerospace Engineering Nanyang Technological University 50 Nanyang Avenue Singapore;

    School of Mechanical and Aerospace Engineering Nanyang Technological University 50 Nanyang Avenue Singapore;

    School of Mechanical and Aerospace Engineering Nanyang Technological University 50 Nanyang Avenue Singapore;

    Advanced Remanufacturing and Technology Center (ARTC) 3 Clean Tech Loop CleanTech Two 637143 Singapore;

  • 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

    Surface-breaking cracks (SBCs); Defect sizing; HSTFM optimisation;

    机译:表面断裂裂缝(SBC);缺陷尺寸;HSTFM优化;

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