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Noncontact technique for measuring surface tension and viscosity of molten materials using high temperature electrostatic levitation

机译:使用高温静电悬浮法测量熔融材料的表面张力和粘度的非接触技术

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摘要

A new, noncontact technique is described which entails simultaneous measurements of the surface tension and the dynamic viscosity of molten materials. In this technique, four steps were performed to achieve the results: (1) a small sample of material was levitated and melted in a high vacuum using a high temperature electrostatic levitator, (2) the resonant oscillation of the drop was induced by applying a low level ac electric field pulse at the drop of resonance frequency, (3) the transient signals which followed the pulses were recorded, and (4) both the surface tension and the viscosity were extracted from the signal. The validity of this technique was demonstrated using a molten tin and a zirconium sample. In zirconium, the measurements could be extended to undercooled states by as much as 300 K. This technique may be used for both molten metallic alloys and semiconductors.
机译:描述了一种新的非接触技术,该技术需要同时测量熔融材料的表面张力和动态粘度。在该技术中,执行四个步骤以获取结果:(1)使用高温静电悬浮剂将少量材料悬浮并在高真空下熔化,(2)通过施加静电来诱导液滴的共振在谐振频率下降处产生一个低电平交流电场脉冲,(3)记录了跟随该脉冲的瞬态信号,(4)从该信号中提取了表面张力和粘度。使用熔融的锡和锆样品证明了该技术的有效性。在锆中,测量值可以扩展到过冷状态达300K。这种技术可用于熔融金属合金和半导体。

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