首页> 外文期刊>Fusion Engineering and Design >Surface oxidation effect on deuterium permeation in reduced activation ferritic/martensitic steel F82H for DEMO application
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Surface oxidation effect on deuterium permeation in reduced activation ferritic/martensitic steel F82H for DEMO application

机译:表面氧化对还原活化铁素体/马氏体钢F82H中氘渗透的影响

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摘要

Fuel loss and environmental contamination by tritium permeation through structural materials are critical issues for the establishment of a fusion DEMO reactor. In this study, the effectivity of a chromium oxide layer formed on reduced activation ferritic/martensitic steel F82H as a tritium permeation barrier and its stability under simulated solid/liquid breeder blanket conditions have been investigated. A uniform 100-nm-thick chromium oxide layer was formed by heat treatment at 710 degrees C for 5 min in 50% argon-50% hydrogen mixed gas with the flow rate of 200 standard cubic centimeter per minute. After exposure to simulated solid breeder blanket conditions, an iron oxide layer and a spinel-type iron-chromium oxide layer formed. In the case of a liquid breeder blanket condition, the chromium oxide layer partly lost at 500 degrees C for 100 h. The chromium oxide-formed sample decreased deuterium permeation flux by a factor of up to 150. The permeation reduction efficiency deteriorated after exposure to a solid breeder blanket condition due to a change of the chromium oxide layer. However, the chromium oxide formation would play a role to reduce hydrogen isotope permeation even after reduction of the oxide layers.
机译:structural通过结构材料的渗透会导致燃料损失和环境污染,这对于建立聚变DEMO反应堆至关重要。在这项研究中,研究了在还原活化铁素体/马氏体钢F82H上形成的氧化铬层作为tri渗透阻挡层的有效性及其在模拟固/液育种层条件下的稳定性。通过在710%的温度下,以200标准立方厘米/分钟的流量在50%的氩气和50%的氢气混合气体中进行5分钟的热处理,形成均匀的100 nm厚的氧化铬层。暴露于模拟的固体育种层条件后,形成氧化铁层和尖晶石型铁铬氧化物层。在液态饲养层条件下,氧化铬层在500摄氏度下损失100小时。形成氧化铬的样品将氘的渗透通量降低了150倍。在暴露于固态种床条件下后,由于氧化铬层的变化,降低了渗透率。然而,即使在氧化层还原之后,氧化铬的形成也将起到减少氢同位素渗透的作用。

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