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Damage Assessment Using Information Entropy of Individual Acoustic Emission Waveforms during Cyclic Fatigue Loading

机译:在循环疲劳加载过程中使用各个声发射波形的信息熵进行损伤评估

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Information entropy measured from acoustic emission (AE) waveforms is shown to be an indicator of fatigue damage in a high-strength aluminum alloy. Three methods of measuring the AE information entropy, regarded as a direct measure of microstructural disorder, are proposed and compared with traditional damage-related AE features. Several tension–tension fatigue experiments were performed with dogbone samples of aluminum 7075-T6, a commonly used material in aerospace structures. Unlike previous studies in which fatigue damage is measured based on visible crack growth, this work investigated fatigue damage both prior to and after crack initiation through the use of instantaneous elastic modulus degradation. Results show that one of the three entropy measurement methods appears to better assess the damage than the traditional AE features, whereas the other two entropies have unique trends that can differentiate between small and large cracks.
机译:从声发射(AE)波形测量的信息熵显示为高强度铝合金中疲劳损伤的指标。提出了三种测量AE信息熵的方法,这些方法被视为微观结构失调的直接量度,并与传统的损伤相关AE特征进行了比较。对航空结构中常用的铝制7075-T6的狗骨头样品进行了数次拉力-拉力疲劳实验。与以前的研究基于可见的裂纹扩展来测量疲劳损伤的方法不同,这项工作通过使用瞬时弹性模量退化研究了裂纹产生之前和之后的疲劳损伤。结果表明,三种熵测量方法之一似乎比传统的声发射特征更好地评估了损伤,而另两种熵则具有可以区分大裂缝和大裂缝的独特趋势。

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