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首页> 外文期刊>IEEE sensors journal >Eddy Current Pulsed Thermography for Noncontact Nondestructive Inspection of Motor Winding Defects
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Eddy Current Pulsed Thermography for Noncontact Nondestructive Inspection of Motor Winding Defects

机译:涡流脉冲热成像,用于电动机绕组缺陷的非接触式非破坏性检查

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摘要

Electrical rotating motor is one of kernel equipment of industrial applications. They are subjected to various thermal, environmental, load stresses that ultimately lead to failure and catastrophic accidents. Winding inter-turn fault is the most severe faults in the motors. Defects inspection is of great significance to ensure safety operation and reduce downtime. In this paper, eddy current pulsed thermography (ECPT) was firstly applied to defect four types of winding defects, namely, transverse crack, slot crack, insulation breakage and insulation thinning. The mechanisms of electromagnetic induction and heat conduction in the process of ECPT are introduced. The electromagnetic fields and temperature distributions of different types of defects are simulated and analyzed through multiphysics-based models. Experiments are conducted on a winding copper bar cracks sample covered by polyimide (PI) film. The validity of ECPT is verified with the analysis of IR images and thermal responses. In order to further improve the detection capability of ECPT, signal processing algorithms such as Fast Fourier Transform(FFT) and Principal Component Analysis (PCA) are applied to enhance cracks characteristics in the original IR images by eliminating the non-uniform heating effect. Obtained results demonstrated that ECPT is a feasible and effective approach for motor winding defects inspection.
机译:电动旋转电机是工业应用的内核设备之一。它们遭受各种热,环境,负荷应力,最终导致失败和灾难性的事故。绕组匝间故障是电机中最严重的故障。缺陷检查具有重要意义,以确保安全运行并减少停机时间。在本文中,首先应用涡流脉冲热成像(ECPT)以缺损四种类型的绕组缺陷,即横向裂纹,槽裂缝,绝缘破裂和绝缘稀疏。引入了ECPT过程中电磁感应和热传导的机制。模拟和分析了不同类型缺陷的电磁场和温度分布,并通过基于多体性的模型分析。实验在卷绕铜条裂缝样品上进行,由聚酰亚胺(PI)膜覆盖。通过对IR图像和热反应的分析来验证Ecpt的有效性。为了进一步提高ECPT的检测能力,应用诸如快速傅里叶变换(FFT)和主成分分析(PCA)的信号处理算法来通过消除不均匀的加热效果来增强原始IR图像中的裂缝特性。获得的结果表明,ECPT是电动机绕组缺陷检测的可行有效的方法。

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