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Corrosion and isothermal interdiffusion properties of Ni-Al coatings under simulated biomass combustion conditions 被引量:1

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摘要 The main issue with using biomass fuels in power plants is fireside corrosion.Applying corrosion-resistant coatings is one potential choice.The current study examines how a Ni-Al diffusion coating on austenitic stainless steel reacts to corrosion and interdiffusion(TP347H).Nickel was electrolytically deposited to create Ni-Al coatings,which were then pack aluminized at 650℃.With an internal layer of Ni and a Ni2Al3 outer layer,a homogenous and dense Ni-Al coating was created.Samples were heated to 560℃ for 168 h in an environment designed to simulate the combustion of biomass.A localized corrosion attack was the result.By using isothermal heat treatment in static air at 650℃ or 700℃ for up to 3000 h,interdiffusion was examined.In the course of the interdiffusion process,the Ni2Al3 eventually changed into NiAl and Ni3Al.At both temperatures,porosity formed at the intersection of the Ni-Al coating and the Ni layer and grew with time.
出处 《Surface Science and Technology》 2023年第1期301-310,共10页 表面科学技术(英文)
基金 funded by the National Natural Science Foundation of China(52101100) the General Project of Natural Science Research in Colleges and Universities of Jiangsu Province(21KJB430008) Yangzhou City-Yangzhou University Cooperation Foundation(YZ2023208) the Qing Lan Project of Yangzhou University(2022).
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