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Fatigue Crack Detection and Localization using Reference-free Method

机译:基于无参​​考方法的疲劳裂纹检测与定位

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This work focuses on fatigue crack detection, crack tip localization and quantification in plate like structures using a reference-free method. In many practical applications the environmental conditions in which a structure is operated do not remain same over time. Sensor signals, thus, collected for the damaged state cannot be compared directly with the baseline because a change in the signal can be caused by several factors other than a structural damage. Therefore, reference-free methods are needed for damage detection. Two methods have been discussed in this paper, one with collocated sensors and the other using matching pursuit decomposition (MPD) to detect waves undergoing mode conversion from fatigue crack tip. The time of flight (TOF) of these mode converted waves along with their respective velocities are further used to localize the crack tip and ultimately find the extent of crack. Both these approaches were used to detect fatigue cracks in aluminum plates made of 6061 alloy. These samples were instrumented with collocated piezoelectric sensors and tested under constant amplitude fatigue loading. Crack tip localization was done from the TOF information extracted for mode converted waves using MPD. The crack lengths obtained using this reference-free technique were validated with experimental crack lengths and were found to be in good agreement.
机译:这项工作的重点是使用无参考方法在板状结构中进行疲劳裂纹检测,裂纹尖端定位和量化。在许多实际应用中,操作结构的环境条件不会随着时间的流逝而保持不变。因此,针对损坏状态收集的传感器信号无法直接与基线进行比较,因为信号的变化可能是由结构性损坏以外的其他多种因素引起的。因此,需要使用无参考方法进行损伤检测。本文讨论了两种方法,一种是并置传感器,另一种是使用匹配追踪分解(MPD)来检测从疲劳裂纹尖端进行模式转换的波。这些模式转换波的飞行时间(TOF)及其各自的速度还用于定位裂纹尖端并最终找到裂纹的程度。这两种方法均用于检测由6061合金制成的铝板的疲劳裂纹。这些样品装有并置的压电传感器,并在恒定振幅疲劳载荷下进行测试。裂纹尖端定位是使用MPD从为模式转换波提取的TOF信息中完成的。使用该无参考技术获得的裂纹长度已通过实验裂纹长度进行了验证,并且发现吻合良好。

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