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Acoustic emission for fatigue damage monitoring in cross-welded aluminum plates

机译:声发射,用于交叉焊接的铝板中的疲劳损伤监测

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Acoustic emission (AE) technique is commonly applied in different materials in order to evaluate their internal fracturing condition in real time. Apart from the number of acquired signals, which are correlated to the number of active cracking sources, qualitative features of the acoustic waveforms shed light in the dominant fracturing mode. This is due to the fact that the emitted waves depend on the relative motion of the crack sides at each incident. The fracture process of most engineering materials includes shift between modes and therefore, non-invasive and real time characterization of the dominant mode supplies information on the current condition as well as poses an early warning before final failure. Although a lot of work has been done on acoustic emission characterization of fatigue damage, the work on welded components is scarse. In the present study aluminum plates are cross-welded and loaded until fracture in tension-tension fatigue experiments at different load levels. Their full acoustic activity is recorded by four sensors along with all mechanical parameters. It is shown that study of the acoustic emission rate relatively to the applied load, and qualitative waveform parameters like the frequency content and duration can be used to study the evolution of the crack under the different modes.
机译:声发射(AE)技术通常以不同的材料应用,以实时评估其内部压裂条件。除了与主动开裂源的数量相关的获取信号的数量之外,声波形的定性特征在显性压裂模式下闪光。这是由于发出的波取决于每个事件的裂缝侧的相对运动。大多数工程材料的断裂过程包括模式之间的转变,因此,主导模式的非侵入性和实时表征提供了关于当前条件的信息,以及在最终失败之前提前预警。虽然对疲劳损坏的声发射表征进行了大量工作,但焊接部件的工作是稀缺的。在本研究中,铝板是交叉焊接和装载,直到不同载荷水平的张力疲劳疲劳实验中的断裂。它们的全声活动由四个传感器记录,以及所有机械参数。结果表明,对施加负荷的声发射速率以及频率内容和持续时间的定性波形参数可以用于研究不同模式下的裂缝的演变。

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