基于磁弹性效应的差分结构索张力传感器研究

Dedong Tang, Shang-zun Yuan, Xin-ping Yan, Pengfei Li
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引用次数: 1

摘要

随着各种重要机械和建筑场所中大量使用钢索,对钢索张力的健康监测对于保证这些设备或场所的正常安全运行变得越来越重要。与振动频率法和应变法相比,基于磁弹性效应的钢丝绳张力测量方法具有动态响应频率高、寿命长、过载保护能力强等优点,满足了健康监测的要求。但传感器的结构为套管结构,被测钢丝绳作为主、次螺线管的核心。这种结构使固定和维护困难,温度的变化对测量结果影响较大,利用温度补偿曲线补偿温度误差的目的不理想。本文阐述了基于磁弹性效应的索张力传感器的工作原理;研究了温度影响理论;设计了单旁路励磁差动结构;对其磁路进行了分析;设计了实验系统;并进行了拉张力实验。实验结果表明,该传感器结构可行,重复误差小于0.15%,满足测量要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of cable tension sensor with difference structure based on magnetoelastic effect
With a great deal of steel cables used in the various important machines and architecture establishments, health monitoring the cable tension becomes more and more important to ensure those equipments or establishments' safety in normal working. Contrasted with the method of vibration frequency and strain gages, the method of measurement steel cables tension based on magnetoelastic effect has a lot of merits, such as its frequency of dynamic response is high, its life-span is long and its capacity of protecting over-loading is strong etc., It meets the requirement of the health monitoring. But the structure of sensor is sleeve structure that measured steel cable serves as the core of primary and secondary solenoids. This structure makes fixing and maintenance difficult, and the change of temperature strongly influences measurement results, the purpose of compensating temperature error by using the temperature compensation curve is not satisfactory. In this article, the principle of cable tension sensor based on magnetoelastic effect is expounded; the theory of temperature influence is researched; the difference structure by single bypass excitation is designed; its magnetic loop is analyzed; the system of experiment is designed; and the experiments of pulling tension are carried on. The experiment results indicate that the structure of sensor is feasible, its errors of repetition are less than 0.15%, which meets the requirement of measurement.
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