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首页> 外文期刊>Sensors and Actuators, A. Physical >Circumferential current field testing system with TMR sensor array for non-contact detection and estimation of cracks on power plant piping
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Circumferential current field testing system with TMR sensor array for non-contact detection and estimation of cracks on power plant piping

机译:具有TMR传感器阵列的周向电流现场测试系统,用于非接触检测和电厂管道上裂缝估计

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摘要

Piping is a critical component in power plant, which is subject to surface thermal fatigue cracks. Due to the high temperature and the presence of coatings, conventional non-destructive testing methods are unsuitable to detect the thermal fatigue cracks on power plant piping. This paper presents a novel circumferential current field testing system for the non-contact detection and estimation of cracks on power plant piping. A 3D dynamic finite element method model is developed to obtain the characteristic signals and optimize the inducing frequency. The circumferential uniform current field testing system with tunnel magneto resistance (TMR) sensor array is set up and the crack detection experiments are carried out. The results show that the circumferential current field testing system with TMR, sensor array can achieve non-contact, visual and efficient detection of cracks on power plant piping in a one pass scan. The depth and length of cracks can be estimated by the proposed calibration method. (C) 2017 Elsevier B.V. All rights reserved.
机译:管道是发电厂的关键部件,其受到表面热疲劳裂缝的影响。由于高温和涂层的存在,常规的非破坏性测试方法不合适地检测电厂管道上的热疲劳裂缝。本文介绍了一种新的圆周电流现场测试系统,用于电厂管道上的非接触检测和裂缝估计。开发了3D动态有限元方法模型以获得特征信号并优化诱导频率。建立具有隧道磁阻(TMR)传感器阵列的周向均匀电流场测试系统,并进行裂缝检测实验。结果表明,具有TMR的圆周电流现场测试系统,传感器阵列可以在一个通道扫描中实现电厂管道上的裂缝的非接触,视觉和有效检测。可以通过所提出的校准方法估算裂缝的深度和长度。 (c)2017年Elsevier B.V.保留所有权利。

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