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基于优化涡流技术探头设计的用于管道缺陷检测的涡流检测平台系统

An Eddy Current Testing Platform System for Pipe Defect Inspection Based on an Optimized Eddy Current Technique Probe Design.

作者信息

Rifai Damhuji, Abdalla Ahmed N, Razali Ramdan, Ali Kharudin, Faraj Moneer A

机构信息

Faculty of Engineering Technology, Universiti Malaysia Pahang, Gambang, Pahang 26300, Malaysia.

Faculty of Electrical & Automation Engineering Technology, TATI University College, Kemaman 26000, Malaysia.

出版信息

Sensors (Basel). 2017 Mar 13;17(3):579. doi: 10.3390/s17030579.

Abstract

The use of the eddy current technique (ECT) for the non-destructive testing of conducting materials has become increasingly important in the past few years. The use of the non-destructive ECT plays a key role in the ensuring the safety and integrity of the large industrial structures such as oil and gas pipelines. This paper introduce a novel ECT probe design integrated with the distributed ECT inspection system (DSECT) use for crack inspection on inner ferromagnetic pipes. The system consists of an array of giant magneto-resistive (GMR) sensors, a pneumatic system, a rotating magnetic field excitation source and a host PC acting as the data analysis center. Probe design parameters, namely probe diameter, an excitation coil and the number of GMR sensors in the array sensor is optimized using numerical optimization based on the desirability approach. The main benefits of DSECT can be seen in terms of its modularity and flexibility for the use of different types of magnetic transducers/sensors, and signals of a different nature with either digital or analog outputs, making it suited for the ECT probe design using an array of GMR magnetic sensors. A real-time application of the DSECT distributed system for ECT inspection can be exploited for the inspection of 70 mm carbon steel pipe. In order to predict the axial and circumference defect detection, a mathematical model is developed based on the technique known as response surface methodology (RSM). The inspection results of a carbon steel pipe sample with artificial defects indicate that the system design is highly efficient.

摘要

在过去几年中,涡流技术(ECT)用于导电材料的无损检测变得越来越重要。无损ECT的应用在确保大型工业结构(如石油和天然气管道)的安全性和完整性方面发挥着关键作用。本文介绍了一种与分布式ECT检测系统(DSECT)集成的新型ECT探头设计,用于内表面铁磁管道的裂纹检测。该系统由一系列巨磁阻(GMR)传感器、一个气动系统、一个旋转磁场激励源和一台作为数据分析中心的主机PC组成。基于合意性方法,利用数值优化对探头设计参数,即探头直径、激励线圈和阵列传感器中GMR传感器的数量进行了优化。DSECT的主要优点体现在其模块化和灵活性上,可用于使用不同类型的磁换能器/传感器,以及具有数字或模拟输出的不同性质的信号,这使其适用于使用GMR磁传感器阵列的ECT探头设计。DSECT分布式系统用于ECT检测的实时应用可用于70毫米碳钢管道的检测。为了预测轴向和周向缺陷检测,基于响应面方法(RSM)开发了一个数学模型。对带有人工缺陷的碳钢管道样本的检测结果表明,该系统设计效率很高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fb0/5375865/8ce271a0d158/sensors-17-00579-g001.jpg

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