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Fatigue Crack Detection in AISI 304 Austenitic Stainless Steel Using Nonlinear and Linear Ultrasonic Testing Methods

机译:非线性和线性超声检测方法AISI 304奥氏体不锈钢疲劳裂纹检测

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摘要

Fatigue cracks are often underestimated by traditional linear ultrasonic techniques due to the poor direction as well as narrow gaps within the cracks. The nonlinear ultrasonic testing technique is a promising method that may be used to solve this problem. In this study, the effects of traditional C scan imaging in measuring fatigue cracks are analyzed by comparing their results with that of metallography. Then, the finite amplitude method of nonlinear ultrasonic testing is used to detect micro-damages, and the influences of excitation voltage on the nonlinear coefficient are investigated. The results indicated that the accuracy in C scan imaging becomes worse when the crack's surface is not perpendicular to the incident wave or if the crack's gap is very small. In contrast, relative nonlinear coefficients under an optimum voltage increase according to the degree of micro-damage, which was found to not be affected by the status of macro-cracks but was particularly sensitive to the accumulation of micro-damage. This study suggests that nonlinear ultrasonic techniques be implemented to achieve beneficial effects in testing fatigue damage.
机译:由于方向差以及裂缝内的狭窄间隙,疲劳裂缝通常被传统的线性超声技术低估。非线性超声检测技术是一种有希望的方法,可用于解决这个问题。在这项研究中,通过将它们的结果与金相的结果进行比较来分析传统C扫描成像在测量疲劳裂缝中的影响。然后,使用非线性超声检测的有限幅度方法来检测微损伤,并研究了激励电压对非线性系数的影响。结果表明,当裂缝表面不垂直于入射波时,C扫描成像的精度变得更糟,或者裂缝的间隙非常小。相反,在最佳电压下的相对非线性系数根据微损害的程度而增加,这被发现不受宏观裂缝状态的影响,但对微损伤的积累特别敏感。该研究表明,实施非线性超声技术以实现测试疲劳损伤的有益效果。

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