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The Corrosion Behavior of Multiphase Ceramic Protective Coatings on China Low Activation Martensitic Steel Surface in Flowing Liquid Lead-Bismuth Eutectic

机译:多相陶瓷保护涂层对流动液体铅 - 铋铋中低活化马氏体钢表面的腐蚀行为

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摘要

China low activation martensitic (CLAM) steel is the preferred candidate structural material for the Chinese international thermonuclear experimental reactor test blanket module (ITER TBM). Surface coating technology is often adopted to alter or improve the performance of materials. In CLAM steel, surface treatment plays a key role in rendering them appropriate for application in accelerator driven sub-critical system (ADS). Here, the authors prepare multiphase ceramic coatings on CLAM steel via laser in-situ reaction technology. The prepared multiphase ceramic coatings exhibit optimal corrosion resistance. The liquid lead-bismuth eutectic (LEB) corrosion resistance can be attributed to inferior wettability of interface between the LEB and multiphase ceramic coatings, faint shear force produced by LEB, and stable chemical and physical property of the coatings. Moreover, the irradiated specimens also display excellent corrosion resistance against helium ions irradiation. The CLAM steel is found to suffer significant corrosion in the flowing LEB. Such multiphase ceramic coatings as a protective layer on the ADS candidate structural materials CLAM steel surface exhibit the strongest LEB corrosion resistance, which can be applied to handle nuclear waste under extreme conditions.
机译:中国低激活马氏体(蛤蜊)钢是中国国际热核实验反应堆试验毯模块(磨料TBM)的首选候选结构材料。通常采用表面涂层技术来改变或改善材料的性能。在蛤蜊钢中,表面处理在使适合于加速器驱动的亚临界系统(广告)中的应用程序来发挥关键作用。这里,作者通过激光原位反应技术在蛤钢上制备多相陶瓷涂层。制备的多相陶瓷涂层表现出最佳的耐腐蚀性。液体铅 - 铋共晶(LEB)耐腐蚀性可归因于LEB和多相陶瓷涂层之间的界面的较差润湿性,用LEB产生的微弱的剪切力,以及涂层的稳定化学和物质。此外,辐照样品还显示出对氦离子辐射的优异耐腐蚀性。发现蛤钢在流动的LEB中遭受显着腐蚀。这种多相陶瓷涂层作为ADS候选结构材料蛤钢表面上的保护层表现出最强的腐蚀性耐腐蚀性,其可用于在极端条件下处理核废料。

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