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Hot Corrosion Behavior of Si-Y-Co-Modified Aluminide Coating Exposed to NaCl + Na2SO4 Salt at 1173 K

机译:NaCl + Na2SO4盐在1173 K下暴露的Si-Y-Co改性铝化物涂层的热腐蚀行为

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摘要

The microstructure and hot corrosion behavior of a Si-Y-Co-modified aluminide coating prepared on a nickel base superalloy DZ125 by the pack cementation process was studied. The Co-Al-Si-Y coated specimen had a mass gain of only 0.25 mg/cm(2) after being exposed to NaCl + Na2SO4 salt for 100 h at 1173 K. Thus the addition of Si to a Y-Co-modified aluminide coating increased its hot corrosion resistance by 40 %. The improved hot corrosion resistance of the Co-Al-Si-Y coating was mainly attributed to the formation of an Al2O3 scale with SiO2 on the surface of the coating during the hot corrosion test. SiO2 can prohibit the high fluxing rate of dissolution of the protective Al2O3 scale and prevent rapid corrosion attack owing to its low solubility over a wide range of salt acidity and its weak oxygen permeability.
机译:研究了通过填充胶结法在镍基高温合金DZ125上制备的Si-Y-Co改性铝化物涂层的组织和热腐蚀行为。在1173 K下暴露于NaCl + Na2SO4盐100 h后,涂覆Co-Al-Si-Y的试样的质量增加仅为0.25 mg / cm(2)。铝化物涂层将其抗热腐蚀性能提高了40%。 Co-Al-Si-Y涂层的改进的抗热腐蚀性能主要归因于在热腐蚀试验过程中在涂层表面形成了SiO2的Al2O3氧化皮。 SiO2可以抑制Al2O3氧化皮的高助熔剂溶解速率,并且由于在较大范围的盐酸中的溶解度低和弱的氧渗透性,因此可以防止快速腐蚀。

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