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Adhesion of YSZ nano-structured coating on Haynes 230 substrate

机译:YSZ纳米结构涂层对Haynes 230底物的粘附性

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The gas-cooled fast reactor is a 4th generation nuclear reactor currently under development. Its design concept requires protective coatings able to operate at 850°C and protect the underlying structure in case of extreme cases, where the functional temperature can increase up to 1250°C and there is depressurization from 70 bars to atmospheric pressure. The parts to be covered are made in 1-mm thick materials resistant to heat and erosion with high mechanical properties at high temperatures, such as the Haynes 230 nickel-based alloy. In this study, the potential of the suspension plasma spraying technique for forming the first layers of a ceramic coating on smooth 1-mm thick Haynes substrate was explored. In order to meet these specifications, the coating material selected was partially stabilized zirconia of standard composition (8 mol.% Y_2O_3-ZrO_2).
机译:气体冷却的快速反应器是目前正在开发的第4代核反应堆。其设计概念需要能够在850°C下操作的保护涂层,并在极端情况下保护潜在的结构,其中功能温度可以增加到1250°C,并且从70巴到大气压减压。将待盖的零件耐热,耐热和腐蚀,高温下的高机械性能,例如Haynes 230镍基合金。在该研究中,探讨了用于在光滑的1-mm厚的Haynes基质上形成第一层陶瓷涂层的悬浮等离子体喷涂技术的电位。为了满足这些规格,选择的涂层材料是部分稳定的标准组合物(8摩尔%Y_2O_3-ZRO_2)的氧化锆。

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