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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >Measurement of shallow defects in metal plates using inter-digital transducer-based laser-scanning vibrometer
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Measurement of shallow defects in metal plates using inter-digital transducer-based laser-scanning vibrometer

机译:使用基于数字传感器的激光扫描振动计测量金属板浅缺陷

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摘要

Scanning laser Doppler vibrometry (SLDV) is a promising method for visualizing defects in plate-like structures. The Lamb wave-based SLDV method using continuous excitations has been recently developed in nondestructive evaluation (NDE). In addition, various signal processing techniques have been developed to enhance damage detection capability for the method. To visualize defects, the A(0) mode is commonly used because of its sensitivity to the thickness variations, i.e. the wave speed changes according to the thickness of a plate. The A(0) mode is easily generated by lead zirconate titanate (PZT) transducers. However, for thick plates, the A(0) mode is found to be less sensitive to thickness variations compared to thin structures. To address this issue, a mode-tuned inter digital transducer (IDT) is adopted to efficiently generate and utilize the symmetric modes for damage detection and visualization of thick plates. Based on the wavelength of the So mode using the dispersion curve of the plate, the IDT is designed and fabricated for efficient symmetric mode generation. To evaluate the capability of the mode-tuned IDT-based SLDV, a 6-mm-thick plate (40 mm x 40 mm) with defects of 0.3 mm, 0.6 mm, 0.9 mm, and 1.2 mm depths is used. The S-0 mode is selected for its wavenumber sensitivity and the degree of separation between modes. It is demonstrated that the detectability of shallow defects in a thick plate is improved compared to that when using the A(0) mode.
机译:扫描激光多普勒振动器(SLDV)是用于在板状结构中可视化缺陷的有希望的方法。最近在非破坏性评估(NDE)中开发了使用连续激发的基于羊浪的SLDV方法。此外,已经开发了各种信号处理技术以提高该方法的损伤检测能力。为了可视化缺陷,通常使用A(0)模式,因为其对厚度变化的敏感性,即波速根据板的厚度而变化。通过引线锆钛酸盐(PZT)换能器容易产生A(0)模式。然而,对于厚板,与薄结构相比,发现A(0)模式对厚度变化不太敏感。为了解决这个问题,采用了一种模式调谐的帧间数换能器(IDT)来有效地生成并利用对称模式来损坏厚板的损坏和可视化。基于使用板的色散曲线的SO模式的波长,设计和制造了高效的对称模式生成。为了评估模式调谐的IDT基SLDV,使用缺陷0.3mm,0.6mm,0.9mm和1.2mm深度的缺陷的6mm厚的板(40mm×40mm)。选择S-0模式,用于其波数灵敏度和模式之间的分离程度。结果证明,与使用A(0)模式时,将厚板中的浅缺陷的可检测性得到改善。

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