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Noncontact technique for measuring the electrical resistivity and magnetic susceptibility of electrostatically levitated materials

机译:非接触技术,用于测量静电悬浮材料的电阻率和磁化率

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We describe the development of a new method for measuring the electrical resistivity and magnetic susceptibility of high temperature liquids and solids. The technique combines a tunnel diode oscillator with an electrostatic levitation furnace to perform noncontact measurements on spherical samples 2-3 mm in diameter. The tank circuit of the oscillator is inductively coupled to the sample, and measurements of the oscillator frequency as a function of sample temperature can be translated into changes in the sample's electrical resistivity and magnetic susceptibility. Particular emphasis is given on the need to improve the positional stability of the levitated samples, as well as the need to stabilize the temperature of the measurement coil. To demonstrate the validity of the technique, measurements have been performed on solid spheres of pure zirconium and low-carbon steel. In the case of zirconium, while absolute values of the resistivity were not determined, the temperature dependence of the resistivity was measured over the range of 640–1770 K and found to be in good agreement with literature data. In the case of low-carbon steel, the ferromagnetic-paramagnetic transition was clearly observable and, when combined with thermal data, appears to occur simultaneously with the solid-solid structural transition.
机译:我们描述了一种用于测量高温液体和固体的电阻率和磁化率的新方法的开发。该技术将隧道二极管振荡器与静电悬浮炉结合在一起,可以对直径为2-3 mm的球形样品进行非接触式测量。振荡器的振荡电路感应耦合到样品,并且根据样品温度对振荡器频率的测量可以转换为样品的电阻率和磁化率的变化。特别强调需要改善悬浮样品的位置稳定性,以及稳定测量线圈温度的需要。为了证明该技术的有效性,已经对纯锆和低碳钢的实心球体进行了测量。在锆的情况下,虽然没有确定电阻率的绝对值,但在640-1770 K的范围内测量了电阻率的温度依赖性,并与文献数据非常吻合。在低碳钢的情况下,铁磁-顺磁转变是明显可观察到的,当与热数据结合时,似乎与固-固结构转变同时发生。

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