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Characterisation of aluminium diffusion coatings elaborated on austenitic stainless steels and on ferritic-martensitic steels

机译:奥氏体不锈钢和铁素体 - 马氏体钢制成的铝扩散涂层的表征

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Slurry aluminide coatings were elaborated on IN-800HT and HR3C austenitic stainless steels (ASS) and on P92 ferritic-martensitic steels. The thermal treatments conducted in Ar enabled the melting of Al and the high temperature synthesis with the substrate elements to result in an aluminium diffusion coating. Whether for the ferritic-martensitic or the austenitic stainless steels, the coatings were formed by the simultaneous Al inward diffusion into the steel matrix and the outward diffusion of Fe (and Ni for the ASS) on both steel substrates. As a result, the coatings exhibited a B2-(Fe, Ni)Al phase for the ASS and B2-FeAl phase for the P92 substrate. A reduction of the grain size after annealing was noticed for the ASS but their microstructures remained mostly austenitic. However, a significant increase of the grain size occurred in the P92 steel with a transformation from the initial tempered martensitic structure to an austenitic structure. The microhardness of the ASS did not change significantly whereas for P92, a large increase occurred.
机译:在800HT和HR3C奥氏体不锈钢(ASS)和P92铁素体 - 马氏体钢上阐述了浆液铝化涂料。在AR中进行的热处理使Al和高温合成的熔化与基板元件以导致铝扩散涂层。无论是用于铁素体 - 马氏体还是奥氏体不锈钢,涂层都是通过同时向内的扩散形成钢基质的钢基质和在两种钢基材上的Fe(和Ni)的向外扩散形成。结果,涂层为P92底物的AS和B2-Feal相表达了B2-(Fe,Ni)Al相。对退火后的晶粒尺寸的降低被注意到屁股,但它们的微观结构仍然大多是奥氏体。然而,在P92钢中发生晶粒尺寸的显着增加,其从初始升温马氏体结构转化为奥氏体结构。对于P92而言,屁股的微硬度没有显着变化,而P92则发生大幅增加。

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