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Lamb wave ultrasonic evaluation of welded AA2024 specimens at tensile static and fatigue testing

机译:焊接AA2024标本焊接AA2024试样的LAMB波浪超声波评价及疲劳试验

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The paper deals with the investigation of Lamb waves ultrasonic testing technique applied for evaluation of different stress-strain and damaged state of aluminum specimens at static and fatigue loading in order to develop a Structural Health Monitoring (SHM) approach. The experimental results of tensile testing of AA2024T3 specimens with welded joints are presented. Piezoelectric transducers used as actuators and sensors were adhesively bonded to the specimen's surface using two component epoxy. The set of static and cyclic tensile tests with two frequencies of acoustic testing (50 kHz and 335 kHz) were performed. The recorded signals were processed to calculate the maximum envelope in order to evaluate the changes of the stress-strain state of the specimen and its microstructure during static tension. The registered data are analyzed and discussed in terms of signal attenuation due to the formation of fatigue defects during cyclic loading. Understanding the relations between acoustic signal features and fatigue damages will provide us the ability to determine the damage state of the structure and its residual lifetime in order to design a robust SHM system.
机译:本文涉及兰姆波波浪超声检测技术,用于评估静态和疲劳负荷的不同应力 - 应变和铝样品损坏状态的评价,以开发结构健康监测(SHM)方法。提出了焊接接头的AA2024T3样品的拉伸试验的实验结果。用作致动器和传感器的压电传感器使用两个组分环氧树脂粘合到样品表面上。进行具有两个声学测试(50kHz和335kHz)的静态和环状拉伸试验的组。处理记录的信号以计算最大包络,以便在静张力期间评估样本的应力 - 应变状态的变化及其微观结构。通过在循环载荷期间形成疲劳缺陷而在信号衰减方面进行分析和讨论了注册数据。了解声学信号特征和疲劳损坏之间的关系将使我们能够确定结构的损坏状态及其剩余寿命,以设计强大的SHM系统。

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