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首页> 外文期刊>Surface & Coatings Technology >Formation of Al2O3 diffusion barrier in cold-sprayed NiCoCrAlY/Ni multi-layered coatings on 304SS substrate
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Formation of Al2O3 diffusion barrier in cold-sprayed NiCoCrAlY/Ni multi-layered coatings on 304SS substrate

机译:304SS基底冷喷涂NiCoCrAlY / Ni多层涂层中Al2O3扩散阻挡层的形成

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This work deals with a double-layer coating for the corrosion protection of stainless steel (SS) structures used in molten fluoride salt reactors for energy production. It aims to mitigate the dissolution of chromium from stainless steel structures into the molten salts. On 304SS substrates, three coating layers consisting of NiCoCrAlY, Ni(O), and the nickel layer on the top were deposited by cold spraying. The Ni(O) coating was made by using a powder containing active oxygen and prepared by mechanical-alloyed pure Ni powders in ambient atmosphere. The Al2O3 diffusion barrier was evolved by annealing the cold-sprayed coating system in argon at temperatures ranging from 800 to 1000 degrees C at the interface between NiCoCrAlY and Ni(O) layers. During the annealing, the Al2O3 layer formed with a growth following a parabolic law, resulting from the reaction of the oxygen in the Ni (O) layer with the aluminium in the NiCoCrAIY layer. The coating test conducted at 900 degrees C for 100 h in argon showed that the Al2O3 layer changed little during annealing and could effectively prevent the diffusion of Fe and Cr from the SS substrate to the upper Ni layer. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作涉及双层涂层,用于在熔融的氟化物盐反应堆中用于能源生产的不锈钢(SS)结构的腐蚀防护。其目的是减轻铬从不锈钢结构到熔融盐中的溶解。在304SS基板上,通过冷喷涂沉积由NiCoCrAlY,Ni(O)和顶部镍层组成的三个涂层。 Ni(O)涂层是通过使用含有活性氧的粉末制成的,并通过在环境气氛中机械合金化纯Ni粉末来制备。通过在NiCoCrAlY和Ni(O)层之间的界面上在800至1000摄氏度的温度下在氩气中对冷喷涂涂层系统进行退火来形成Al2O3扩散阻挡层。在退火期间,由于Ni(O)层中的氧与NiCoCrAlY层中的铝的反应,Al2O3层按照抛物线定律生长。在900摄氏度的氩气中进行100小时的涂层测试表明,Al2O3层在退火过程中变化不大,可以有效防止Fe和Cr从SS衬底扩散到上部Ni层。 (C)2016 Elsevier B.V.保留所有权利。

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