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Efficient hydrogen and deuterium permeation reduction in AI_2O_3 coatings with enhanced radiation tolerance and corrosion resistance

机译:有效降低AI_2O_3涂层中的氢和氘透过量,并具有更高的辐射耐受性和耐腐蚀性

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One of the major bottlenecks in the development of the breeding blanket of the DEMO fusion reactor is the suppression of tritium permeation through structural steels as well as their protection against dissolution-corrosion by interaction with high temperature heavy liquid metals. Reduction of tritium permeation and corrosion of structural steels are crucial issues in order to enhance reactor safety and avoid operational implications. As a solution to these two daunting challenges, we developed multifunctional alumina coatings capable to tackle, at the same time, tritium permeation and Pb-Li corrosion. The coatings are deposited by pulsed laser deposition and are essentially amorphous, with nanocrystalline inclusions. By optimizing the deposition process, we provide experimental evidence that PLD-grown alumina yields a permeation reduction factor for hydrogen and deuterium well above 10(4), even after electron irradiation, and a suitable protection against corrosion by the Pb-16Li eutectic. Given these results, the multifunctional, PLD-grown alumina coatings stand out as a viable solution to some of the long-lasting issues related to fusion technologies.
机译:DEMO聚变反应堆育种层发展的主要瓶颈之一是抑制structural通过结构钢的渗透以及通过与高温重金属的相互作用来防止dissolution的腐蚀。减少of的渗透和结构钢的腐蚀是至关重要的问题,以提高反应堆的安全性并避免对运行的影响。为了解决这两个艰巨的挑战,我们开发了多功能氧化铝涂料,能够同时解决tri渗透和Pb-Li腐蚀问题。涂层通过脉冲激光沉积来沉积,并且基本上是无定形的,具有纳米晶体夹杂物。通过优化沉积过程,我们提供了实验证据,即使在电子辐照后,PLD生长的氧化铝也能使氢和氘的渗透减少因子远高于10(4),并且可以防止Pb-16Li共晶腐蚀。鉴于这些结果,多功能,PLD生长的氧化铝涂层是解决与融合技术相关的一些长期问题的可行解决方案。

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