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Reliability assessment of manual ultrasonic time of flight diffraction (TOFD) inspection for complex geometry components

机译:手动超声飞行时间衍射(TOFD)检查复杂几何形状组件的可靠性评估

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摘要

Experimental probability of detection (POD) and probability of sizing (POS) curves are developed for the detection and sizing of surface-breaking cracks in components having complex geometry. A manual ultrasonic time of flight diffraction (TOFD) inspection system has been used to develop these POD and POS curves. Initially, it was assumed and subsequently verified that signal responses have a normal distribution. The effects of probe angle and probe center-to-center spacing on both POD and POS were observed. Unlike the PODs previously reported for conventional ultrasonic amplitude based flaw sizing techniques, the PODs associated with TOFD in the range of defect sizes considered here, exhibit a decreasing trend for a fixed set of experimental parameters. It is important to emphasize that the curves obtained in this work are specific to the geometry, specimen dimensions, set of notches and the specific probes used in the experiment. However, when using a manual TOFD inspection system, these curves can be useful for planning the risk-based inspection of components having complex geometry (such as a steam turbine rotor shaft).
机译:为了检测和确定具有复杂几何形状的部件中的表面裂纹的尺寸,开发了实验检测概率(POD)和尺寸确定概率(POS)曲线。手动超声飞行时间衍射(TOFD)检查系统已用于开发这些POD和POS曲线。最初假定并随后验证了信号响应具有正态分布。观察到探头角度和探头中心距对POD和POS的影响。与以前报道的基于常规超声振幅的缺陷大小确定技术的POD不同,此处考虑的缺陷大小范围内与TOFD相关的POD对于一组固定的实验参数表现出下降的趋势。需要强调的是,这项工作中获得的曲线是特定于几何形状,样本尺寸,槽口组以及实验中使用的特定探针的。但是,当使用手动TOFD检查系统时,这些曲线对于规划具有复杂几何形状的组件(例如汽轮机转子轴)的基于风险的检查非常有用。

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