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Monitoring fatigue crack growth using nonlinear ultrasonic phased array imaging

机译:使用非线性超声相控阵成像监测疲劳裂纹扩展

摘要

Nonlinear imaging techniques have recently emerged which have the potential to detect material degradation and challenging defects, such as closed cracks. This paper describes an investigation into the performance of Nonlinear Ultrasonic Imaging (NUI) for the monitoring of the early stages of fatigue crack growth. This technique, in conjunction with conventional array imaging, is applied to the periodic monitoring of steel compact tension specimens subjected to high cycle fatigue loading. The detection limits of these techniques are investigated. Their abilities to localize and detect small cracks are further quantified with the aid of micrography. The results suggest that NUI is more sensitive than conventional ultrasonic imaging to the microscale changes occurring at the early stages of failure, i.e. detectability starts c. 15% of fatigue life. In addition to early detection, the potential for NUI to deliver accurate sizing of fatigue cracks and monitor crack propagation is also presented.
机译:最近出现了非线性成像技术,该技术具有检测材料降解和挑战性缺陷(如闭合裂纹)的潜力。本文介绍了对非线性超声成像(NUI)的性能进行的研究,以监测疲劳裂纹扩展的早期阶段。该技术与常规阵列成像相结合,可用于对承受高周疲劳负荷的紧凑型钢拉伸试样进行定期监测。研究了这些技术的检测限。借助显微镜进一步量化了它们定位和检测小裂纹的能力。结果表明,NUI比常规超声成像对失效早期发生的微​​观变化更敏感,即可检测性开始c。疲劳寿命的15%。除了早期检测之外,还介绍了NUI准确确定疲劳裂纹大小并监视裂纹扩展的潜力。

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