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Temperature compensation and scalability of hysteretic/anhysteretic magnetic-property sensors

机译:磁滞/非磁滞磁性传感器的温度补偿和可扩展性

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Non-destructiveoncontact stress sensors based on magnetoelastic principles have numerous applications for monitoring cable stress. However, their widespread use is hampered by problems related to temperature compensation and to scaling of calibration data to large cables, which is the domain of greatest interest. In this paper, experimental magnetic property and thermal response data are obtained and analyzed to address these problems. The magnetic property data include initial curves, major hysteresis loops, and anhysteresis curves, all obtained quasistatically. The thermal response data are presented in the form of a dimensionless correlation which is valid over a range of Reynolds numbers. Comparison of data indicates the feasibility of using absolute magnetic property measurements as the basis for direct calibration of large sensors.
机译:基于磁弹性原理的非破坏性/非接触式应力传感器在监控电缆应力方面具有众多应用。然而,它们的广泛使用受到与温度补偿以及将校准数据缩放到大电缆有关的问题的困扰,这是人们最感兴趣的领域。在本文中,获得并分析了实验磁性能和热响应数据以解决这些问题。磁性能数据包括初始曲线,主要磁滞回线和磁滞曲线,所有这些都是准静态获得的。热响应数据以无量纲相关性的形式呈现,在无雷诺数范围内有效。数据比较表明,使用绝对磁性能测量作为直接校准大型传感器的基础的可行性。

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