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The structural failure of copper-freezing-point blackbodies for radiation thermometry: analysis and design improvements

机译:辐射测温用铜凝固点黑体的结构失效:分析和设计改进

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摘要

Copper-freezing-point blackbodies used in radiation thermometry should preferably provide sufficiently long service. A blackbody of this sort commonly comprises a highly pure copper sample surrounding a graphite cavity inside a graphite shell closed at both ends by graphite components. We have found that the linear expansion of the solid copper sample in heating from room temperature to the melting point marginally exceeds the linear contraction of the molten sample in cooling to room temperature, presumably due to the gravitational forces that tend to flatten the sample during solidification. The excess expansion causes various stresses in the graphite components. Some of them will eventually fail structurally after a number of cycles of melting and freezing of the sample. This paper presents experimental results of the excess expansion, delineates the various stresses and suggests design improvements for longer service.
机译:辐射测温法中使用的铜凝固点黑体最好应提供足够长的使用寿命。这种黑体通常包括高纯度的铜样品,该样品围绕着石墨壳内部的石墨腔,该石墨壳的两端被石墨成分封闭。我们发现,从室温加热到熔点时,固态铜样品的线性膨胀略微超过了冷却到室温时熔融样品的线性收缩,这大概是由于重力在凝固过程中趋于使样品扁平化的缘故。过度的膨胀在石墨部件中引起各种应力。在一些样品的融化和冷冻循环之后,其中一些最终会在结构上失效。本文介绍了过度膨胀的实验结果,描述了各种应力,并提出了改进设计以延长使用寿命的建议。

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