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Non-contact ultrasonic detection of angled surface defects

机译:非接触式超声检测倾斜表面缺陷

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Non-destructive testing is an important technique, and improvements are constantly needed. Surface defects in metals are not necessarily confined to orientations normal to the sample surface; however, much of the previous work investigating the interaction of ultrasonic surface waves with surface-breaking defects has assumed cracks inclined at 90° to the surface. This paper explores the interaction of Rayleigh waves with cracks which have a wide range of angles and depths relative to the surface, using a non-contact laser generation and detection system. Additional insight is acquired using a 3D model generated using finite element method software. A clear variation of the reflection and transmission coefficients with both crack angle and length is found, in both the out-of-plane and in-plane components. The 3D model is further used to understand the contributions of different wavemodes to B-Scans produced when scanning a sample, to enable understanding of the reflection and transmission behaviour, and help identify angled defects. Knowledge of these effects is essential to correctly gauge the severity of surface cracking.
机译:无损检测是一项重要技术,并且不断需要改进。金属中的表面缺陷并不一定限于垂直于样品表面的方向。但是,许多先前的研究超声波表面波与表面破裂缺陷相互作用的工作都假设裂缝相对于表面倾斜90°。本文使用非接触式激光生成和检测系统,探索了瑞利波与裂纹之间的相互作用,裂纹相对于表面具有多种角度和深度。使用有限元方法软件生成的3D模型可获取更多见解。在平面外和平面内组件中,反射系数和透射系数随裂纹角度和长度而变化明显。 3D模型还用于了解扫描样品时产生的B扫描的不同波模的贡献,从而能够了解反射和透射行为,并帮助识别倾斜的缺陷。了解这些影响对于正确评估表面裂纹的严重性至关重要。

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