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REALIZING FIXED POINTS ABOVE THE COPPER POINT UP TO 2500°C USING METAL-CARBON EUTECTICS

机译:利用金属 - 碳的光学液实现铜点高达2500℃的固定点

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In the ITS-90, the defining fixed point with the highest temperature is the copper point. Above this, no fixed point is available that can be widely used as a practical calibration device. High-temperature fixed points using metal-carbon eutectics may change this situation. Nine metal-carbon eutectics have melting temperatures in the range from the copper point to 2500°C, and melting plateaus have shown repeatability better than 70 mK. The eutectics can be held in graphite crucibles, which makes the cells practical devices for use in ultra-high temperature. The fixed points can benefit the future high temperature standards in various ways. They may play the role of transfer standards replacing standard lamps while extending the temperature range. The temperature scale may be realized with much smaller uncertainty by interpolation at a selected number of these fixed points. Extension of this technique to above 3000 K is also demonstrated with metal carbide-carbon eutectic.
机译:在其-90中,具有最高温度的定义固定点是铜点。在此之上,没有可用的固定点,可广泛用作实用校准装置。使用金属 - 碳共析出科的高温固定点可能会改变这种情况。九个金属 - 碳共霉在铜点至2500℃的范围内具有熔化温度,并且熔化的平坦物质显示出优于70 mk的重复性。共晶可以保持在石墨坩埚中,这使得细胞的实用装置用于超高温。固定点可以通过各种方式使未来的高温标准有益。它们可能在延长温度范围的同时扮演转移标准的转移标准的作用。通过在所选数量的这些固定点的内插可以实现温度尺度的不确定性。还使用金属碳化物 - 碳共晶来证明该技术的延伸至3000K以上。

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