Mirror Aided Ultrasonic Testing of the bonding interface of dual-alloy blisk through the bore

Zhengxiao Sha, T. Gang, Jing Liang, Bongju Han
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Abstract

Welded dual-alloy blisks have found more and more applications in aeroengines for their excellent high temperature performance. However, defects may develop within the bonding interface and threat the safety of the engine. In this paper, the ultrasonic testing of the bonding interface was investigated in the dual-alloy blisk with a small bore. Aided by a 90 degrees mirror, the longitudinal wave was introduced to the interface. Simulations and theoretical analyses were performed to explain the propagating behavior of the sound beam upon the strongly curved surface. It was observed when the focus of the probe approaches a certain point, the beam distortion was compensated under ‘acoustic lens effect'. The cylindrical focused probe was found to give better performance than flat probes and spherical focused probes in terms of sensitivity and resolution. The experiments on a mock-up sample showed that φ0.8mm FBH and Φ0.4mm SDH at the bonding interface were detectable with a 15MHz cylindrical focused probe.
双合金圆盘通孔粘接界面的镜面辅助超声检测
焊接双合金叶片以其优异的高温性能在航空发动机中得到越来越多的应用。然而,粘接界面内部可能产生缺陷,威胁发动机的安全。本文研究了小孔径双合金圆盘结合界面的超声检测方法。在90度反射镜的帮助下,纵波被引入界面。对声束在强曲面上的传播特性进行了仿真和理论分析。观察到当探头的焦点接近某一点时,光束畸变在“声透镜效应”下得到补偿。在灵敏度和分辨率方面,圆柱形聚焦探头优于平面聚焦探头和球形聚焦探头。在模拟样品上的实验表明,用15MHz的圆柱形聚焦探头可以检测到键合界面处φ0.8mm的FBH和Φ0.4mm SDH。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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