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A Study on Ultrasonic Testing for Nondestructive Evaluation of Thermal Fatigue Crack in Pipelines

机译:管道中热疲劳裂纹无损评价超声波检测研究

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Pipelines of nuclear power plants undergo high pressure and temperature. Thermal stratification typically occurs in the surge line and the main feed water lines by flow and this stratification will initiate and propagate thermal fatigue cracks. This may cause rupture and leakage and it is a serious problem to nuclear power plants operation. Therefore it is very important to detect and measure thermal fatigue cracks. In this study, thermal fatigue cracks were generated in austenitic stainless steel specimens by a thermal cycle in notched pipes and weld jointed pipes. Ultrasonic techniques were used to evaluate the thermal fatigue crack depth. When ultrasonic waves propagate from an angle beam probe to thermal fatigue cracks, waves are reflected and diffracted. Crack depth was evaluated by the reflected signals from back wall and diffracted signals from the crack tip, but diffracted signals were too weak to detect so the reflected signals were more useful. The TOFD and dB drop methods were used in this study. The TOFD method is uses a time delay of diffracted signal from the crack tip. The dB drop method is an application of an amplitude decreasing rate by a probe moving distance.
机译:核电站管道经过高压和温度。热分层通常发生在喘振管中,并通过流动发生主进料水线,并且该分层将引发和繁殖热疲劳裂缝。这可能导致破裂和泄漏,对核电站运行是一个严重的问题。因此,检测和测量热疲劳裂缝非常重要。在该研究中,通过在缺口管和焊接连接管中的热循环在奥氏体不锈钢标本中产生热疲劳裂缝。超声波技术用于评估热疲劳裂纹深度。当超声波从角度梁探针传播到热疲劳裂缝时,波浪被反射和衍射。通过来自后壁的反射信号和来自裂缝尖端的衍射信号的反射信号评估裂纹深度,但衍射信号太弱而无法检测,因此反射信号更有用。本研究使用TOFD和DB滴剂方法。 TOFD方法使用来自裂缝尖端的衍射信号的时间延迟。 DB DROP方法是探针移动距离的幅度降低速率的应用。

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