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The effect of manganese and silicon additions on the corrosion resistance of a polycrystalline nickel-based superalloy

机译:锰和硅添加对多晶镍超合金耐腐蚀性的影响

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The service lives of nickel superalloys are often limited by environmental degradation. The present study compares oxidation, sulfidation and hot corrosion at 750 degrees C of three variants of a polycrystalline superalloy: a baseline alloy, a variant containing 1 wt% Mn and one containing 0.5 wt% Si. Mn reduced the oxidation rate without changing the scale morphology. The MnCr2O4 scale formed proved more protective against sulfidation and hot corrosion, but internal sulfides extended the damage depth. Si modified the oxide morphology to a continuous Cr2O3-Al2O3 dual layer. This provided improved protection, reducing the sulfidation depth by 2/3 and the hot corrosion depth by 1/2.
机译:镍高温合金的服务寿命通常受环境降解的限制。本研究将氧化,硫化和热腐蚀在多晶超合金的三个变体中进行比较:基线合金,含有1wt%Mn的变型,含有0.5wt%Si的变体。 Mn降低了氧化速率而不改变尺度形态。 MNCR2O4规模形成了硫化和热腐蚀的更具保护性,但内硫化物延长了损伤深度。 Si将氧化物形态修饰为连续Cr2O3-Al2O3双层。这提供了改进的保护,将硫化深度降低2/3和热腐蚀深度1/2。

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