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Steam Oxidation Behaviour of Ni-based Single Crystalline SuperaiSoy for the Advanced Gas Turbine

机译:先进燃气轮机镍基单晶SuperaiSoy的蒸汽氧化行为

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Steam oxidation behavior of a new Ni-based single crystalline superalloy (TMS-75) * developed as the high strength material for the advanced gas turbine which would be cooled by steam was studied in comparison with Inconel 625 alloy which is a representative Ni based superalloy and 12Cr ferritic steel which is conventionally used in boiler tubes and main steam pipes and steam turbines. TMS-75 alloy showed worse oxidation resistance in steam than Inconel 625 alloy, but it had much better oxidation resistance in steam than 12Cr steel. Also, the oxide scale of Tnconel 625 alloy is very thin and is mainly composed of C12O3. However, the outer scale of TMS-75 alloy was mainly composed of NiO with Co and a little Al and other elements. The Ni/Co ratio in the oxide scale was a little higher in the outer layer than in the inner layer.
机译:与代表镍基高温合金的Inconel 625合金相比,研究了一种新型的镍基单晶高温合金(TMS-75)*作为先进燃气轮机的高强度材料而开发的蒸汽氧化行为,该材料将被蒸汽冷却。和12Cr铁素体钢,通常用于锅炉管,主蒸汽管和蒸汽轮机。 TMS-75合金在蒸汽中的抗氧化性比Inconel 625合金差,但在蒸汽中的抗氧化性却比12Cr钢好。另外,Tnconel 625合金的氧化皮非常薄,主要由C12O3组成。但是,TMS-75合金的外皮主要由NiO和Co以及少量的Al等元素组成。氧化皮中的Ni / Co比在外层中比在内层中高一些。

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