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Development of aluminide diffusion coatings on ODS ferritic-martensitic steel for corrosion resistance in high temperature super critical-carbon dioxide environment

机译:高温超临界二氧化碳环境下铝化物扩散涂层铝化散射涂层的研制

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摘要

Aluminide diffusion coatings were applied on an oxide dispersion strengthened ferritic-martensitic (ODS-FM) steel as surface modification methods. Either thin layer of Al or NiAl was deposited on the ODS-FM steels, which were subjected to inter-diffusion heat treatment (IDHT) to produce Al-IDHTed or NiAl-IDHTed specimens, respectively. After corrosion test in high temperature super-critical carbon dioxide (S-CO2), both Al-IDHTed and NiAl-IDHTed specimens showed significantly improved corrosion resistance with lower weight gains and effectively supressed carburization in the matrix. The improvement in corrosion resistance was attributed to the presence of continuous alumina layer on top of surface layer. For Al-IDHTed specimen, extensive diffusion of Al from surface layer and inter-diffusion zone to substrate was observed after the S-CO2 corrosion test. However, for NiAl-IDHTed specimen, an Al-rich surface layer was well-maintained after S-CO2 corrosion as Ni acted as a diffusion barrier.
机译:铝化物扩散涂层施加在氧化物分散体上强化铁素体 - 马氏体(ODS-FM)钢作为表面改性方法。将Al或Nial的薄层沉积在ODS-FM钢上,其经受扩散间热处理(IDHT)以分别产生Al-Idhted或Nial-Idhted样本。在高温超临界二氧化碳(S-CO2)中腐蚀试验后,Al-Idhted和Nial-Idhted样本均显示出显着提高的耐腐蚀性,重量较低,并有效地压制了基质中的渗碳。耐腐蚀性的改善归因于表面层顶部的连续氧化铝层。对于Al-IDHTED标本,在S-CO 2腐蚀试验后,观察到从表面层和扩散区到衬底的广泛扩散。然而,对于Nial-IDHTED样本,在S-CO 2腐蚀之后,富含富铝的表面层,因为Ni作用为扩散屏障。

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