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Noncontact measurement of high-temperature surface tension and viscosity of bulk metallic glass-forming alloys using the drop oscillation technique

机译:使用液滴振荡技术非接触式测量块状金属玻璃形成合金的高温表面张力和粘度

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摘要

High-temperature surface tension and viscosities for five bulk metallic glass-forming alloys with widely different glass-forming abilities are measured. The measurements are carried out in a high-vacuum electrostatic levitator using the drop oscillation technique. The surface tension follows proportional mathematical addition of pure components' surface tension except when some of the constituent elements have much lower surface tension. In such cases, there is surface segregation of the low surface tension elements. These alloys are found to have orders of magnitude higher viscosity at their melting points compared to the constituent metals. Among the bulk glass-forming alloys, the better glass former has a higher melting-temperature viscosity, which demonstrates that high-temperature viscosity has a pronounced influence on glass-forming ability. Correlations between surface tension and viscosity are also investigated.
机译:测量了五种具有大不同玻璃形成能力的块状金属玻璃形成合金的高温表面张力和粘度。使用液滴振荡技术在高真空静电悬浮器中进行测量。表面张力遵循纯组分表面张力的比例数学加法,除非某些组成元素的表面张力低得多。在这种情况下,低表面张力元件存在表面偏析。发现这些合金在熔点时与组成金属相比具有更高数量级的粘度。在块状玻璃形成合金中,较好的玻璃形成剂具有较高的熔融温度粘度,这表明高温粘度对玻璃形成能力具有显着影响。还研究了表面张力和粘度之间的关系。

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