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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Excitation of Single-Mode Shear-Horizontal Guided Waves and Evaluation of Their Sensitivity to Very Shallow Crack-Like Defects
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Excitation of Single-Mode Shear-Horizontal Guided Waves and Evaluation of Their Sensitivity to Very Shallow Crack-Like Defects

机译:激励单模剪切水平导向波和对非常浅裂纹缺陷的敏感性的评估

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摘要

Inspection is a key part of the asset management process of industrial plants and there are numerous plate-like structures that require inspection. Ultrasonic guided waves have been extensively used to detect various types of defect by monitoring reflected and transmitted signals because they enable faster screening of large areas. However, ultrasonic guided wave testing becomes difficult for very shallow, sharp defects as current inspection techniques suffer from a lack of sensitivity to such features. Previous studies, obtained by comparing various inspection techniques, suggest that the SH1 mode in particular, at around 3 MHz . mm, would be suitable when testing for shallow defects; however, it is clear that both the SH0 and SH1 modes can exist at this frequency-thickness product. This can complicate the inspection process and, therefore, limit defect detectability. This article investigates the possibility of a single-mode excitation of the SH1 mode at around 3 MHz . mm. The ability of this method toward detecting very shallow defects (<10% cross-sectional thickness loss) has also been studied. By means of analytical predictions and finite element, it is shown that a signal dominated by the SH1 mode can be generated using a single permanent periodic magnet (PPM) electromagnetic acoustic transducer (EMAT) (PPM EMAT). All predictions are then backed up by experimental measurements. It is also shown that, by studying the reflection coefficient of the SH1 mode, the pure SH1 mode can be used to detect defects as shallow as 5% thickness loss from a 500-mm stand-off. These defects would otherwise be missed by standard, lower frequency guided wave testing.
机译:检查是工业设备资产管理过程的关键部分,并且有许多需要检查的板状结构。超声波引导波已经广泛地用于通过监视反射和传输信号来检测各种类型的缺陷,因为它们能够更快地筛选大区域。然而,随着电流检测技术缺乏对这些特征的缺乏敏感性,超声波引导波试验变得难以非常浅的尖锐缺陷。通过比较各种检查技术获得的先前研究表明SH1模式特别是在左右3MHz。 MM,在测试浅缺陷时会合适;然而,很明显,SH0和SH1模式都可以在该频率厚度产品中存在。这可以使检查过程复杂化,因此限制缺陷可检测性。本文调查了SH1模式的单模激励在3 MHz左右的可能性。毫米。还研究了这种方法检测非常浅的缺陷(<10%的横截面厚度损失)的能力。通过分析预测和有限元件,示出了可以使用单个永久周期磁体(PPM)电磁声换能器(EMAT)来生成由SH1模式支配的信号(PPM EMAT)。然后通过实验测量来备份所有预测。还示出,通过研究SH1模式的反射系数,纯SH1模式可用于检测从500mm支出脱落的5%厚度损耗的缺陷。否则这些缺陷将被标准,较低的频率导向波测试错过。

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