FeCrAI (Ce) stainless steel was functionalized by a conversion treatment in order to allow alumina by diffusion coatings with strong interfacial bonding. The very porous conversion coating produced in a pack alumini...FeCrAI (Ce) stainless steel was functionalized by a conversion treatment in order to allow alumina by diffusion coatings with strong interfacial bonding. The very porous conversion coating produced in a pack aluminization technique had excellent adhesion and was conductive enough to permit conditions favorable for the precipitation of alumina oxyhydroxide during aluminum diffusion coatings. In this work, the bed was prepared as a mixture of A1, NH4C1 and A1203. In the high-activity bed were heat-treated at 1,173 K in an atmosphere made up of team with subsequent air-cooling. The effect of the bed content on the coating was examined. With the high-activity, the desired Fe2Al5 was formed as the outermost coating layer. The coating presented chemical composition gradients suitable for strong adhesion. The improvement of the thermal oxidation behaviour was studied at 1,373 K. Two different aqueous environments, which are (1) NaC1 and (2) H2SO4, are employed for using the technique of potentiodynamic polarization curve. The obtained experimental electrochemical parameters (Ecorr, Jcorr etc,) were used to compare the corrosion resistance of the tested steel state complemented by MEB (electronic scanning microscopy) in combination with dispersive analysis X in energy (EDS) or X ray diffraction indicated that the elements concentration maximum was located in the vicinity of the interface especially in the FeCrAI (Ce) coated by spherical A1203 powder. These results an discussed in terms of an addition effect on the development of the microstructure of oxide films.展开更多
文摘FeCrAI (Ce) stainless steel was functionalized by a conversion treatment in order to allow alumina by diffusion coatings with strong interfacial bonding. The very porous conversion coating produced in a pack aluminization technique had excellent adhesion and was conductive enough to permit conditions favorable for the precipitation of alumina oxyhydroxide during aluminum diffusion coatings. In this work, the bed was prepared as a mixture of A1, NH4C1 and A1203. In the high-activity bed were heat-treated at 1,173 K in an atmosphere made up of team with subsequent air-cooling. The effect of the bed content on the coating was examined. With the high-activity, the desired Fe2Al5 was formed as the outermost coating layer. The coating presented chemical composition gradients suitable for strong adhesion. The improvement of the thermal oxidation behaviour was studied at 1,373 K. Two different aqueous environments, which are (1) NaC1 and (2) H2SO4, are employed for using the technique of potentiodynamic polarization curve. The obtained experimental electrochemical parameters (Ecorr, Jcorr etc,) were used to compare the corrosion resistance of the tested steel state complemented by MEB (electronic scanning microscopy) in combination with dispersive analysis X in energy (EDS) or X ray diffraction indicated that the elements concentration maximum was located in the vicinity of the interface especially in the FeCrAI (Ce) coated by spherical A1203 powder. These results an discussed in terms of an addition effect on the development of the microstructure of oxide films.