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RECENT PROGRESS IN THERMAL DIFFUSIVITY MEASUREMENT OF MOLTEN OXIDES BY THE LASER FLASH METHOD

机译:激光闪光法测量熔融氧化物热扩散率的最新进展

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摘要

Precise thermal properties of molten materials are essentially required for analyzing the metal production process. These properties are also important as a clue to consider the dynamic structure of liquid materials. However, it is difficult to obtain the precise thermal diffusivity values of molten oxides at high temperature because of the experimental uncertainties arising from the bubble formation or the severe separation of radiative and conductive heat components. Recently a novel laser flash method has also developed for measuring thermal diffusivity of molten oxides at high temperature. In this new technique, the sample is melted in a metal crucible and heated to the desired temperature. A single laser pulse is flashed on the bottom of the metal crucible and the infrared ray irradiated from the same bottom surface is measured for obtaining the temperature decay, from which the thermal diffusivity of the liquid sample can be estimated. The usefulness and validity of this new laser flash technique have-been confirmed by obtaining the thermal diffusivity values of silicate melts in the wide temperature range between 773 and 1673 K.
机译:分析金属生产过程基本需要熔融材料的精确热性能。这些特性对于考虑液体材料的动态结构也很重要。但是,由于气泡的形成或辐射热与传导热成分的严重分离而引起的实验不确定性,因此很难在高温下获得精确的熔融氧化物热扩散率值。最近,还开发了一种新颖的激光闪光方法,用于测量高温下熔融氧化物的热扩散率。在这种新技术中,样品在金属坩埚中熔化并加热到所需温度。单个激光脉冲在金属坩埚的底部闪烁,并测量从同一底面照射的红外线以获得温度衰减,由此可以估算液体样品的热扩散率。通过在773至1673 K的宽温度范围内获得硅酸盐熔体的热扩散率值,已证实了这种新的激光闪光技术的有用性和有效性。

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