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Measurements of Density of Liquid Oxides with an Aero-Acoustic Levitator

机译:空气声悬浮液液体氧化物密度测量

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摘要

Densities of liquid oxide melts with melting temperatures above 2000 °C are required to establish mixing models in the liquid state for thermodynamic modeling and advanced additive manufacturing and laser welding of ceramics. Accurate measurements of molten rare earth oxide density were recently reported from experiments with an electrostatic levitator on board the International Space Station. In this work, we present an approach to terrestrial measurements of density and thermal expansion of liquid oxides from high-speed videography using an aero-acoustic levitator with laser heating and machine vision algorithms. The following density values for liquid oxides at melting temperature were obtained: Y2O3 4.6 ± 0.15; Yb2O3 8.4 ± 0.2; Zr0.9Y0.1O1.95 4.7 ± 0.2; Zr0.95Y0.05O1.975 4.9 ± 0.2; HfO2 8.2 ± 0.3 g/cm3. The accuracy of density and thermal expansion measurements can be improved by employing backlight illumination, spectropyrometry and a multi-emitter acoustic levitator.
机译:需要高于2000°C的熔融温度熔融熔融温度,以建立热力学建模和先进的添加剂制造和激光焊接陶瓷中的液态中的混合模型。最近从国际空间站的静电悬浮仪的实验报告了熔融稀土氧化物密度的精确测量。在这项工作中,我们使用带激光加热和机器视觉算法的高速摄像机,从高速摄像机呈现陆地测量的陆地测量方法和热膨胀。得到熔融温度下液体氧化物的以下密度值:Y2O3 4.6±0.15; YB2O3 8.4±0.2; Zr0.9y0.1o1.95 4.7±0.2; ZR0.95Y0.05​​O1.975 4.9±0.2; HFO2 8.2±0.3g / cm3。通过使用背光照明,光谱测量和多发射极理悬浮器,可以提高密度和热膨胀测量的准确性。

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