灵敏度(控制系统)
弯曲分子几何
噪音(视频)
有限元法
声学
信号(编程语言)
光学
涡轮叶片
材料科学
计算机科学
差速器(机械装置)
平面(几何)
物理
工程类
电子工程
结构工程
涡轮机
几何学
人工智能
机械工程
数学
图像(数学)
程序设计语言
航空航天工程
作者
Chaofeng Ye,Na Zhang,Lei Peng,Yu Tao
标识
DOI:10.1109/tie.2021.3050376
摘要
It is critical for maintaining the safe operation of turbine blades to inspect the potential structural damages promptly. However, the industry still lacks efficient tools for inspection of the curved surface. In this respect, in this article, a new flexible probe with in-plane differential coils is proposed. With the sophisticated configuration, the probe has four channels, which complement each other in terms of sensitivity to defects of different orientations. The in-plane differential scheme nulls the background signal and reduces the noise resulting in high sensitivity to microdefects. The probe can be bent according to the curved surface due to its flexible configuration. A three-dimensional finite-element method model based on the cluster parallel computation is utilized to study the feasibility and performance of the probe, and a prototype probe is developed and tested by scanning defects on the curved surface of a turbine blade sample. Furthermore, a data fusion method is proposed to obtain a better signal-to-noise ratio so that defects with length*width*depth = 2.5 mm*0.1 mm*0.1 mm can be identified. Based on repeated experiments, it is observed that the probability of detection with the fusion of the multichannels is higher than that of every single channel demonstrating that the data fusion increases the reliability of the inspection.
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