Inspection of the undulation structure with an in-plane differential flexible array probe

Lei Peng, C. Ye, Yu Tao, Cai Long, Ming Li
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引用次数: 2

Abstract

Blade is a crucial part in steam turbine that chronically exposes to an atmosphere of high temperature, humidity, and pressure, which prone to cause fatigues in the structure. The root of a turbine blade is in undulation shape giving rise to the difficulties for inspection with conventional probes. This work proposes a novel flexible array eddy current testing (ECT) probe for the turbine blade root inspection. The proposed probe employs an in-plane differential scheme to reduce the common mode noise and increase the sensitivity to small defects. It works with three modes to improve the reliability of detecting defects in different orientations. It keeps the lift-off almost constant when scans the undulation shape structure, as the shape of the sensor array is flexible and is bended according to the sample surface. A prototype probe has been developed and tested by inspecting of a blade sample with artificial and nature defects. The probe can identify defect with dimensions length×wldth×depth=z.u mmxu.z mm×0.2 mm with various orientations and locations. The experiment results demonstrate that the probe has high sensitivity for defects at the root of turbine.
面内差分柔性阵列探头对波动结构的检测
汽轮机叶片是汽轮机的关键部件,长期暴露在高温、高湿、高压环境中,容易引起结构疲劳。涡轮叶片根部呈波动状,给常规探头的检测带来了困难。本文提出了一种用于涡轮叶片根部检测的柔性阵列涡流检测探头。该探头采用平面内差分方案,降低了共模噪声,提高了对小缺陷的灵敏度。它采用三种模式,提高了不同方向缺陷检测的可靠性。当扫描波动形状结构时,由于传感器阵列的形状是灵活的,并且根据样品表面弯曲,因此可以保持升力几乎恒定。通过对叶片人工缺陷和自然缺陷的检测,研制了一种探针样机,并对其进行了测试。探头可以识别尺寸为length×wldth×depth=z的缺陷。u mmxu。Z mm×0.2 mm具有不同的方向和位置。实验结果表明,该探头对涡轮根部缺陷具有较高的灵敏度。
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