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Acoustic emission sensor effect and waveform evolution during fatigue crack growth in thin metallic plate

机译:薄金属板疲劳裂纹扩展过程中的声发射传感器效应和波形演化

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In this article, the effect of the acoustic emission sensor on the acoustic emission waveforms from fatigue crack growth in a thin aerospace specimen is presented. In situ acoustic emission fatigue experiments were performed on the test coupons made of aircraft grade aluminum plate. Commercial Mistras S9225 acoustic emission sensor and piezoelectric wafer active sensor were used to capture the acoustic emission waveforms from the fatigue crack. It has been shown that the piezoelectric wafer active sensor transducer successfully captured the fatigue crack-related acoustic emission waveforms in the thin plate. The piezoelectric wafer active sensor transducer seems to capture more frequency information of the acoustic emission waveform than the conventional acoustic emission sensor in this particular application. We have also shown the evolution of the acoustic emission waveforms as the fatigue crack grows. The signatures of the fatigue crack growth were captured by the evolution of the acoustic emission waveforms. This waveform evolution is highly related to the physical boundary conditions of the cracks as well as the fatigue crack growth mechanism. The fatigue loading and acoustic emission measurement were synchronized using the same acoustic emission instrumentation. This synchronization provided the exact load level when the acoustic emission signals had occurred during the fatigue crack growth.
机译:在本文中,提出了声发射传感器对薄航空航天样品中疲劳裂纹扩展引起的声发射波形的影响。在飞机级铝板制成的测试试样上进行了原位声发射疲劳实验。商业Mistras S9225声发射传感器和压电晶片有源传感器用于捕获疲劳裂纹中的声发射波形。已经表明,压电晶片有源传感器换能器成功地捕获了薄板中与疲劳裂纹相关的声发射波形。在该特定应用中,压电晶片有源传感器换能器似乎捕获了比常规声发射传感器更多的声发射波形的频率信息。我们还显示了随着疲劳裂纹的增长,声发射波形的演变。疲劳裂纹扩展的特征是通过声发射波形的演变而捕获的。这种波形的演变与裂纹的物理边界条件以及疲劳裂纹的增长机理高度相关。疲劳载荷和声发射测量使用相同的声发射仪器进行同步。当在疲劳裂纹扩展期间发生声发射信号时,这种同步提供了精确的负载水平。

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