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Evaluation of Fatigue Damage in a Solid Plate Using Ultrasonic Lamb Waves

机译:超声羔羊波的固体板疲劳损伤评价

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Changes in the mechanical properties of a solid plate induced by fatigue damage will influence the features of Lamb wave propagation such as dispersion, attenuation and mode conversion. The feasibility of using the amplitude-frequency characteristics and the stress wave factors of Lamb wave propagation to evaluate fatigue damage of a solid plate has been analyzed in this paper. Wedge transducers located on the surface of a solid plate are used to generate and detect the Lamb wave signals. Based on the Ritec-SNAP ultrasonic measurement system, the experimental setup for evaluating fatigue damage of solid plates using a Lamb wave approach has been established. For several specimens, the relationships between the amplitude-frequency characteristics of Lamb wave propagation and the cyclic numbers of fatigue loading (denoted by N), as well as the ones between the stress wave factors of Lamb waves and N, have been experimentally studied. The experimental results show that the stress wave factors of Lamb waves decrease obviously and monotonously with the increment of cycles of fatigue loading. Based on the relationships between the stress wave factors of Lamb waves and N, it can be concluded that the stress wave factors of Lamb waves may be used to effectively evaluate fatigue damage in solid plates.
机译:通过疲劳损伤引起的固体板的机械性能的变化将影响羔羊波传播的特征,例如分散,衰减和模式转换。本文已经分析了使用λ频率特性和羊波传播的应力波因子来评估固体板的疲劳损伤的可行性。位于固体板的表面上的楔形换能器用于产生并检测羊波信号。基于Ritec-Snap超声测量系统,已经建立了使用羊波方法评估固体板疲劳损坏的实验装置。对于几个标本,实验研究了羊振波传播的幅度频率特性与抗疲劳负载(由N表示)的循环数量之间的关系,以及羔羊波和N的应力波因子之间的关系。实验结果表明,随着疲劳负荷循环的增量,羊波的应力波因素明显降低,并单调。基于羊波和N的应力波因子之间的关系,可以得出结论,羊波的应力波因子可用于有效地评估固体板中的疲劳损伤。

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