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High-frequency ultrasonic methods for determining corrosion layer thickness of hollow metallic components

机译:用于确定中空金属部件腐蚀层厚度的高频超声波方法

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Corrosion in internal cavity is one of the most common problems occurs in many hollow metallic components, such as pipes containing corrosive fluids and high temperature turbines in aircraft. It is highly demanded to non-destructively detect the corrosion inside hollow components and determine the corrosion extent from the external side. In this work, we present two high-frequency ultrasonic non-destructive testing (NDT) technologies, including piezoelectric pulse-echo and laser-ultrasonic methods, for detecting corrosion of Ni superalloy from the opposite side. The determination of corrosion layer thickness below similar to 100 mu m has been demonstrated by both methods, in comparison with X-CT and SEM. With electron microscopic examination, it is found that with multilayer corrosion structure formed over a prolonged corrosion time, the ultrasonic NDT methods can only reliably reveal outer corrosion layer thickness because of the resulting acoustic contrast among the multiple layers due to their respective different mechanical parameters. A time-frequency signal analysis algorithm is employed to effectively enhance the high frequency ultrasonic signal contrast for the piezoelectric pulse-echo method. Finally, a blind test on a Ni superalloy turbine blade with internal corrosion is conducted with the high frequency piezoelectric pulser-receiver method.
机译:内腔的腐蚀是许多中空金属部件中出现的最常见问题之一,例如含有腐蚀性流体和飞机的高温涡轮机的管子。非常需要非破坏性地检测中空组件内的腐蚀,并确定与外侧的腐蚀程度。在这项工作中,我们提出了两个高频超声波非破坏性测试(NDT)技术,包括压电脉冲回波和激光超声方法,用于检测Ni高温合金的腐蚀。与X-CT和SEM相比,两种方法证明了以下两种方法的腐蚀层厚度的腐蚀层厚度。通过电子显微镜检查,发现在延长腐蚀时间上形成的多层腐蚀结构,超声波NDT方法只能可靠地揭示外腐蚀层厚度,因为由于它们各自的不同机械参数,多层之间的声学​​对比度。采用时频信号分析算法来有效提高压电脉冲回波方法的高频超声信号对比度。最后,利用高频压电脉冲 - 接收器方法对具有内腐蚀的Ni超合金涡轮叶片进行盲试验。

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