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Evaluation of the Fatigue Life in Aluminum Alloy Welded Joint by Nonlinear Ultrasonic Testing

机译:非线性超声检测评价铝合金焊接接头疲劳寿命

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Fatigue is a common phenomenon in welded structures. Prediction of fatigue life of welded joints in-service is still an unsolved puzzle by the conventional linear ultrasonic testing method. However, the nonlinear ultrasonic waves or the acoustic nonlinear signal can provide clear signs of the accumulative fatigue damage in materials, as reported by a number of researchers. Hence, the nonlinear ultrasonic testing method has revealed a tremendous potential for fatigue damage evaluation. This paper presents a study to characterize the fatigue damage using the analysis of the signal characteristics and a new nonlinear parameter. Based on the very high-cycle fatigue testing results for a 6N01 aluminum alloy welded joint, the relationship between the amplitude of the second-order harmonic and fatigue cycling has been established. The nonlinear ultrasonic system test results show that the amplitude of the second-order harmonic increases at the early fatigue stage, with further increase in cyclic loading until reaching a peak. Metallographic examinations show that a fatigue crack will nucleate in the weld joint in the stage as the amplitude reaches the peak value. Finally, theoretical and experimental results confirm that the amplitude of the second-order harmonic is useful for assessing the fatigue life of a 6N01 aluminum alloy welded joint.
机译:疲劳是焊接结构中的常见现象。通过传统的线性超声检测方法预测焊接接头的疲劳寿命仍然是一个未解决的拼图。然而,非线性超声波或声学非线性信号可以提供材料的累积疲劳损坏的清晰迹象,这是由许多研究人员报道的。因此,非线性超声检测方法揭示了疲劳损伤评估的巨大潜力。本文介绍了使用信号特性分析和新的非线性参数来表征疲劳损坏的研究。基于6n01铝合金焊接接头的非常高循环疲劳检测结果,已经建立了二阶谐波和疲劳循环的幅度之间的关系。非线性超声波系统测试结果表明,在早期疲劳阶段的二阶谐波增加的幅度,循环载荷进一步增加,直至达到峰。金相检查表明,由于幅度达到峰值,疲劳裂纹将在阶段的焊接接头中核心。最后,理论和实验结果证实二阶谐波的幅度可用于评估6n01铝合金焊接接头的疲劳寿命。

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