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Correlation of fatigue life with potential NDE corrosion metrics

机译:疲劳寿命与潜在的NDE腐蚀指标的相关性

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Attempts are being made to move away from the 'Find-and-Fix' approach and to manage corrosion damage in aircraft so that it can be rectified during scheduled maintenance periods. This 'Identify-and-Manage' approach will only be possible if effective non-destructive evaluation (NDE) methods are available to detect, characterise and monitor the corrosion that is present within the airframe and suitable life-prediction models exist to predict the interaction of corrosion and fatigue from the characterised corrosion damage. In order to investigate potential NDE corrosion metrics, a set of dog-bone fatigue specimens was fabricated from unclad 2024-T3 aluminium alloy. The specimens were corroded in a salt-fog chamber for a range of time intervals to induce both pitting and crevice corrosion, which was then characterised using ultrasonic and eddy current inspection techniques. Ultrasonic inspection was carried out at three frequencies (10, 22 and 50 MHz) using focused immersion transducers. Amplitude and depth scans at each frequency were obtained. Eddy current inspection was carried out at a single frequency of 10 kHz. A number of parameters were calculated from the scans and correlated with the fatigue life.
机译:人们正在尝试摆脱“查找和修复”方法,并管理飞机中的腐蚀损坏,以便可以在计划的维护期内进行纠正。仅当有效的非破坏性评估(NDE)方法可用于检测,表征和监控机身内部的腐蚀并且存在合适的寿命预测模型以预测相互作用时,这种“识别和管理”方法才有可能腐蚀和疲劳的特性。为了研究潜在的NDE腐蚀指标,用未包覆的2024-T3铝合金制造了一组狗骨疲劳样品。将样品在盐雾室中腐蚀一段时间,以诱发点蚀和缝隙腐蚀,然后使用超声波和涡流检查技术对其进行表征。使用聚焦浸没换能器在三个频率(10、22和50 MHz)上进行超声波检查。获得了每个频率的振幅和深度扫描。涡流检查是在10 kHz的单个频率下进行的。从扫描中计算出许多参数,并将其与疲劳寿命相关联。

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