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Investigations of the fatigue damage in 16Mn steels by wavelet-based acoustic emission technique

机译:小波基声发射技术研究16Mn钢的疲劳损伤

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16Mn steel is widely used in the large structural machines such as cranes. Fatigue is one of the most common failure modes in this material. Thus, monitoring of the fatigue damage in 16Mn steel is important for the health monitoring of these large engineering structures. In this paper, fatigue crack propagation tests were carried out for hot rolled and low temperature tempered 16Mn steels. Acoustic emission (AE) signals obtained from the fatigue tests were processed by wavelet packet transform (WPT) analysis. The energy distribution in each component of the AE signals was calculated for different specimens. Ratio of energy was extracted as a feature parameter. The results showed that the ratio of energy in each node was different in the hot rolled and low temperature tempered 16Mn steels respectively. The ratio of energy depended on the micro-structure. Based on the SEM fractography observations in this study, these results could be well explained by the different fatigue crack propagation mechanisms.
机译:16Mn钢广泛用于起重机等大型结构机械中。疲劳是这种材料中最常见的失效模式之一。因此,对16Mn钢的疲劳损伤的监测对于这些大型工程结构的健康监测非常重要。在本文中,对热轧和低温回火的16Mn钢进行了疲劳裂纹扩展测试。通过小波包变换(WPT)分析处理从疲劳测试获得的声发射(AE)信号。针对不同样本计算出AE信号各分量的能量分布。提取能量比作为特征参数。结果表明,在热轧和低温回火的16Mn钢中,每个节点的能量比都不同。能量比取决于微观结构。根据这项研究中的SEM断层扫描观察,这些结果可以用不同的疲劳裂纹扩展机制很好地解释。

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