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Characterisation of small defects using miniaturised EMAT system

机译:使用小型EMAT系统表征小缺陷

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Many surface breaking defects, such as those caused by thermal fatigue or stress corrosion, have finite lateral dimensions. However, much of the research considers significantly larger simulated defects. This paper considers defects with mm-dimensions, and presents a method for characterisation of their length and depth. This is done using non-contact ultrasonic techniques, including a pair of electromagnetic acoustic transducers (EMATs) with significantly reduced size compared to standard industrial EMATs. Defects with dimensions of 1-11 mm length and 0.5-2 mm depth are measured. All information is obtained from a single raster scan of a sample, considering transmission and enhancement of Rayleigh waves, and introducing the defect cross-section. The lateral size resolution for the scan steps chosen is +/- 1 mm, and depth resolution is 0.5 mm. The method, being non contact, is also demonstrated on a sample with a 110 m thick coating.
机译:许多表面断裂缺陷(例如由热疲劳或应力腐蚀引起的缺陷)具有有限的横向尺寸。但是,许多研究认为模拟缺陷要大得多。本文考虑了毫米尺寸的缺陷,并提出了表征其长度和深度的方法。这是使用非接触超声技术完成的,包括一对与标准工业EMAT相比尺寸大大减小的电磁声换能器(EMAT)。测量出长度为1-11毫米,深度为0.5-2毫米的缺陷。所有信息都是从样品的单次光栅扫描中获得的,其中考虑了瑞利波的传输和增强,并引入了缺陷截面。所选扫描步骤的横向尺寸分辨率为+/- 1 mm,深度分辨率为0.5 mm。该非接触式方法也已在具有110 m厚涂层的样品上得到证明。

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