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Studies on the hot corrosion of a nickel-base superalloy, Udimet 700

机译:镍基高温合金Udimet 700的热腐蚀研究

摘要

The hot corrosion of a nickel-base superalloy, Udimet 700, was studied in the temperature range of 884 to 965 C and with different amounts of Na2SO4. Two different modes of degradation were identified: (1) formation of Na2MoO4 - MoO3 melt and fluxing by this melt, and (2) formation of large interconnected sulfides. The dissolution of Cr2O3, TiO2 in the Na2SO4 melt does not play a significant role in the overall corrosion process. The conditions for the formation of massive interconnected sulfides were identified and a mechanism of degradation due to sulfide formation is described. The formation of Ns2MoO4 - MoO3 melt requires an induction period and various physiochemical processes during the induction period were identified. The factors affecting the length of the induction period were also examined. The melt penetration through the oxide appears to be the prime mode of degradation whether the degradation is due to the formation of sulfides or the formation of the Na2MoO4 - MoO3 melt.
机译:研究了镍基高温合金Udimet 700在884至965 C的温度范围内以及使用不同量的Na2SO4的热腐蚀。确定了两种不同的降解方式:(1)Na2MoO4-MoO3熔体的形成和熔体的助熔作用,以及(2)大的互连硫化物的形成。 Cr2O3,TiO2在Na2SO4熔体中的溶解在整个腐蚀过程中不起重要作用。确定了形成大量相互连接的硫化物的条件,并描述了由于硫化物形成而引起的降解机理。 Ns2MoO4-MoO3熔体的形成需要一个诱导期,并确定了诱导期的各种理化过程。还检查了影响诱导期长度的因素。无论降解是由于硫化物的形成还是由于Na2MoO4-MoO3熔体的形成,熔体穿过氧化物的渗透似乎是降解的主要方式。

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    Misra A. K.;

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  • 年度 1984
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