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Correlating Strain and Acoustic Emission Signals of Metallic Component Using Global Signal Statistical Approach

机译:使用全局信号统计方法将金属部件的应变和声发射信号相关

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This study clarifies the fatigue properties using global signal statistical approach during the crack initiation stage for metallic component. Strain loading and acoustic emission (AE) signatures are captured simultaneously in the form of signal waves recorded by strain gauge and AE transducer. An initial study was carried out in the laboratory on medium carbon AISI 1045 steel specimens at constant amplitude cyclic loading condition, which lead to the fatigue failure characteristics. This study was carried out to investigate the relationship between strain and AE signals in order to make sure that AE technique also can be used as a detecting and monitoring crack initiation in metallic specimens. To achieve the goal, three different loads were applied on three specimens to capture the differences of the signals. The specific data acquisition systems were used to collect strain and AE signatures. For the purpose of analysis, the method of root mean square (r.m.s) and the kurtosis were used. The r.m.s value was used to quantify the overall vibrational energy content whereas the kurtosis was then used because of its sensitivity to high amplitude events. Based on these statistical approaches, the correlation patterns between both signals are expected to give a meaningful baseline to predict and monitor crack initiation of a metallic specimen.
机译:本研究在金属组分的裂纹启动阶段期间使用全局信号统计方法阐明疲劳性能。应变加载和声学发射(AE)签名以由应变计和AE换能器记录的信号波的形式同时捕获。在恒振循环负载条件下在培养基碳AISI 1045钢试样上进行初步研究,导致疲劳失效特性。进行该研究以研究应变和AE信号之间的关系,以确保AE技术也可以用作金属样品中的检测和监测裂纹启动。为实现目标,在三个标本上施加三种不同的载荷,以捕获信号的差异。特定数据采集系统用于收集应变和AE签名。为了分析目的,使用均方根平均方形(r.m.S)和峰度的方法。 R.M.S值用于量化整体振动能量含量,而刚性病于其对高振幅事件的敏感性。基于这些统计方法,预计两个信号之间的相关模式将提供有意义的基线,以预测和监测金属样本的裂纹启动。

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