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Influence of water vapour on isothermal and thermal cyclic oxidation conditions of a Nickel-based SY625 steel at 1100°C

机译:水蒸气对1100℃的镍基SY625钢等温和热环氧化条件的影响

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In isothermal oxidation condition, water vapour has little effect on the oxidation rate and scale composition of a nickel-based SY 625 alloy oxidized at 1100°C. The scale is composed of an outer Cr_2O_3 and an internal CrNbO_4 scale. The oxide scale morphology differs between dry and wet conditions. Under dry conditions the oxide scale appears to be compact and chromia pegs are observed at the internal interface. Under wet conditions, porosities are observed spread inside the scale and the chromia grain size is smaller. At this temperature some scale spallation is observed under dry and wet conditions. Under cyclic oxidation conditions the oxide scale adherence is slightly improved in wet environment. The chromia scale is adherent during the 4 first oxidation cycles. In dry air, spallation occured after the first cycle. In dry and wet conditions, after the chromia scale spallation has started, NiO and NiCr_2O_4 form first. NiMoO_4 forms later on the alloy surface during the cycling test. The best resistance of the alloy under thermal cycling conditions under wet conditions is related to the presence of a more plastic and adherent scale owing to a higher scale porosity and smaller chromia grain size compared to dry conditions.
机译:在等温条件下氧化,水蒸汽对基于镍的SY 625合金在1100氧化℃下的氧化速率和规模组合物几乎没有影响。该等级是由外Cr_2O_3和内部CrNbO_4规模。氧化皮形态干和湿条件之间不同。在干燥条件下的氧化皮似乎是紧凑和氧化铬钉在内部接口观察。在潮湿条件下,孔隙率是规模内观察到的扩散和氧化铬晶粒尺寸较小。在此温度下的一些氧化皮剥离被干和湿条件下观察到。下循环氧化条件下氧化皮粘附在湿环境略有改善。在4个第一氧化循环氧化铬规模贴壁。在干燥空气中,散裂的第一个周期之后发生。在干和湿的条件下,氧化铬氧化皮剥离开始后,NiO和NiCr_2O_4形成第一。 NiMoO_4的循环测试期间后的合金表面上形成。该合金的潮湿条件下的热循环条件下的最佳电阻涉及一种更多的塑料和粘附的规模由于较高的孔隙率规模和较小的氧化铬颗粒尺寸相比,干燥条件的存在。

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