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Long-term stability of ceramics in liquid lithium

机译:陶瓷在液态锂中的长期稳定性

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摘要

Two candidate materials for insulating coatings in a lithium-cooled fusion reactor have been exposed to lithium in 1000 h isothermal tests from 400-800 degreesC to determine their maximum compatibility temperature. Bulk samples of AIN + 5 wt%Y2O3 showed significant mass loss at 600 degreesC and higher temperatures. The amount of attack was reduced when AIN + 0.04 wt%Y was tested. Characterization by Auger spectroscopy of a AIN + 0.04 wt%Y specimen exposed at 600 degreesC indicated the possibility of a lithium aluminate compound formation. Bulk, polycrystalline specimens of CaO (99.9% purity) showed mass losses above 500 degreesC indicating a possible dissolution problem that had not been observed in previous short-term screening tests and is not predicted based on thermodynamic calculations. Doping of the lithium with oxygen tin the case of CaO) did not appear effective in reducing the mass loss at 600 degreesC. (C) 2001 Published by Elsevier Science B.V. [References: 10]
机译:锂冷却聚变反应堆中用于绝缘涂层的两种候选材料已在400-800摄氏度的1000小时等温测试中暴露于锂,以确定其最高相容温度。 AIN + 5 wt%Y2O3的大量样品在600摄氏度和更高的温度下显示出明显的质量损失。当测试AIN + 0.04 wt%Y时,侵蚀量降低。通过Auger光谱对暴露于600℃的AIN + 0.04 wt%Y样品进行表征,表明可能形成铝酸锂化合物。 CaO(纯度为99.9%)的多晶多晶样品显示出500℃以上的质量损失,这表明可能存在溶解问题,这在以前的短期筛选测试中未曾观察到,并且也无法根据热力学计算进行预测。在CaO的情况下,用氧锡掺杂锂对于减少600℃下的质量损失似乎没有效果。 (C)2001年由Elsevier Science B.V.出版[参考文献:10]

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