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Corrosion tests of multi-layer ceramic coatings in liquid lithium-lead

机译:液体锂引线多层陶瓷涂层的腐蚀试验

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Tritium permeation through structural materials in fusion reactor blanket systems is a critical issue from the viewpoints of fuel loss and radiological safety. Ceramic coatings have been investigated to prevent tritium permeation; however, corrosion of the coatings by blanket materials, especially corrosive liquid tritium breeders such as lithium-lead is serious. In our previous study, the improvement of permeation reduction performance using an erbium oxide (Er2O3)-zirconium oxide (ZrO2) two-layer coating was confirmed, but it did not show substantial corrosion resistance. In this study, various mull-layer coatings were fabricated by metal organic decomposition and then exposed to lithium-lead under static conditions to investigate precise corrosion behaviors of mull-layer coatings. After lithium-lead exposure for 1000 h at 600 degrees C, the outermost Er2O3 layer almost disappeared, while the outermost ZrO2 layer remained, indicating that ZrO2 is more suitable as the outermost layer. However, many cracks and peelings were observed on the outermost ZrO2 layer in the cases of the samples having four coating interfaces. The optimization of layer combination and the control of adhesion between the coatings are required to reduce the degradation of mull-layer coatings.
机译:从燃料损失和放射性安全的观点来看,通过融合反应堆毯子系统中的结构材料渗透氚渗透是一个关键问题。已经研究了陶瓷涂料以防止氚渗透;然而,通过橡皮布材料腐蚀涂层,尤其是锂铅如锂铅的腐蚀性液体氚育种者是严重的。在我们以前的研究中,确认了使用氧化铒(ER2O3) - 氧化锆(ZrO2)两层涂层的渗透还原性能的提高,但没有显示出显着的耐腐蚀性。在该研究中,通过金属有机分解制造各种Mull层涂层,然后在静态条件下暴露于锂铅,以研究Mull层涂层的精确腐蚀行为。在600℃下锂引线暴露1000小时后,最外面的ER2O3层几乎消失,而最外面的ZrO2层仍然存在,表明ZrO2更适合作为最外层。然而,在具有四个涂层界面的样品的情况下在最外面的Zro2层上观察到许多裂缝和剥离。层组合的优化和涂层之间的粘合性的控制是为了降低Mull层涂层的降解。

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