电涡流传感器性能优化关键技术
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TH73TP212.1

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国家重点研发计划(2017YFB1302504)资助项目


Key technologies for eddy current sensor performance optimization
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    摘要:

    电涡流传感器因具备无损检测、非接触测量等优异特性,广泛应用于工业生产等各领域中的微量位移测量、导电介质缺陷检测以及设备运行状态监测。然而,受限于线圈结构参数优化、检测电路创新设计和测量误差动态补偿等技术瓶颈,现有电涡流传感器普遍存在灵敏度欠佳、线性度不足、突变温度场下检测精度亟待提升等突出局限,直接制约着其在各类极限环境下高精度检测领域的推广应用。为此,在深入剖析和系统总结国内外电涡流传感器研究与应用现状的基础上,聚焦线圈结构、检测电路以及误差补偿方法,重点探讨了优化其核心性能的基本原理与关键技术,并对相关研究的发展趋势进行了初步构想与展望,以期为多维度提升传感器性能、根源促进其发展应用提供有效借鉴。

    Abstract:

    Having excellent characteristics of nondestructive testing, noncontact measurement and etc., eddy current sensor is widely used in microdisplacement measurement, conducting medium defect detection and equipment operation condition monitoring in various industrial production fields. However, limited by the technical bottlenecks such as coil structure parameter optimization, detection circuit innovative design and measurement error dynamic compensation, the existing eddy current sensor generally has prominent limitations such as poor sensitivity, low linearity and being urgently improved detection precision under abrupt change temperature field, which directly restricts its popularization and application in the fields of highprecision detection under various extreme environments. Therefore, based on deeply analyzing and summarizing the research and application status of eddy current sensor both at home and abroad, this paper concentrates on the coil structure, detection circuit and error compensation method. The paper emphasizingly discusses the basic principles and key technologies for eddy current sensor core performance optimization, preliminarily outlines and forecasts the development trend of the related research, and hopefully provide effective reference for improving sensor performance in multiple dimensions and promoting its development and application.

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李满宏,王经天,吴玉,陈嘉杰,张明路.电涡流传感器性能优化关键技术[J].仪器仪表学报,2019,40(7):233-243

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  • 在线发布日期: 2022-02-17
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