首页> 外文期刊>International journal of applied electromagnetics and mechanics >Flow measurement in metal melts using a non-contact surface velocity sensor based on time-of-flight Lorentz force velocimetry
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Flow measurement in metal melts using a non-contact surface velocity sensor based on time-of-flight Lorentz force velocimetry

机译:使用非接触表面速度传感器基于飞行时间洛伦兹力测速法测量金属熔体中的流量

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摘要

This paper attempts to present a novel development of an electromagnetic non-contact surface velocity measurement technique in electrically conducting liquids which could be applied in high-temperature metallurgical processes involving metal melts. The technique is based on Lorentz force velocimetry, i.e. on measuring the force which is generated by the interactions of the melt flow and an externally applied magnetic field that is spanned by permanent magnet system. The electromagnetically induced force pushes the magnet system into the direction of the flow and can be measured using a force sensor that is attached to the magnet system. As the measured force linearly depends on melt velocity, a non-contact evaluation of the velocity can be achieved. However, the recorded force also depends on the electrical conductivity of the melt. In application this material property is a priori unknown as it strongly depends on both temperature and composition of the melt. Hence, calibration of such a measuring device becomes a cumbersome task. Our development aims to circumvent this deficit by applying a time-of-flight technique. According to this principle we design and test a prototype of sensor for measuring free-surface velocity. In the model experiments we use both solid bodies and the liquid metal GaInSn as test liquids.
机译:本文试图提出一种在导电液体中的电磁非接触表面速度测量技术的新进展,该技术可以应用于涉及金属熔体的高温冶金工艺。该技术基于洛伦兹力测速法,即基于测量由熔体流和永磁系统所跨越的外部施加磁场的相互作用而产生的力。电磁感应力将磁体系统推向流动方向,可以使用安装在磁体系统上的力传感器进行测量。由于测得的力与熔体速度成线性关系,因此可以实现非接触式速度评估。但是,记录的力还取决于熔体的电导率。在应用中,该材料性质是先验未知的,因为它强烈取决于温度和熔体组成。因此,这种测量设备的校准变得繁琐。我们的发展旨在通过应用飞行时间技术来避免这一缺陷。根据这一原理,我们设计并测试了用于测量自由表面速度的传感器原型。在模型实验中,我们同时使用固体和液态金属GaInSn作为测试液体。

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