首页> 外文期刊>Journal of Thermal Spray Technology >Oxidation/carbonization/Nitridation and in-service mechanical property degradation of CoCrAlY coatings in land-based gas turbine blades
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Oxidation/carbonization/Nitridation and in-service mechanical property degradation of CoCrAlY coatings in land-based gas turbine blades

机译:陆基燃气涡轮叶片中的共和线涂层的氧化/碳化/氮化和在职力学性质降解

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This article describes variations in the microstructure/composition and mechanical properties in plasma sprayed CoCrAlY coatings and a modified Rene 80 substrate of gas turbine blades operated for 21,000 h under liquefied natural gas fuels.Substantial oxidation/carbonization occurred in the near surface region of concave coatings, but not in the convex coatings. Aluminum and nickel/titanium-rich nitrides formed in near interface coatings and substrates of concave side of blades,respectively. Small punch (SP) specimens were prepared from the different blade location to examine the variation of the mechanical properties in the coatings. In SP tests, brittle cracks in the near surface and interface coatings of the concave sideeasily initiated up to 950°C. The convex coatings exhibited higher ductility than the concave coatings and substrate and showed a rapid increase in the ductility above 800°C. Thus it is apparent that the oxidation/carbonization and nitridation in theconcave coatings produced a significant loss of the ductility. The in-service degradation mechanism of the CoCrAlY coatings is discussed in light of the operating temperature distribution and compared to that of CoNiCrAlY coatings induced by grainboundary sulfidation/oxidation.
机译:本文介绍了液化天然气燃料下的等离子体喷涂的环射线涂层中微结构/组合物和机械性能的变化,并且在液化天然气燃料下运行的燃气轮机叶片的改性RENE 80基板。在凹面涂层的近表面区域发生近似氧化/碳化,但不在凸涂层中。铝和镍/钛的氮化钛分别形成近叶片的近界面涂层和叶片凹面的基板中。从不同的刀片位置制备小冲孔(SP)样本,以检查涂层中的机械性能的变化。在SP试验中,近表面的脆性裂缝和凹入的界面涂层,最高可达950℃。凸涂层比凹涂层和基材具有更高的延展性,并且在800℃的延性中显示出快速增加。因此,显而易见的是,氧化涂层中的氧化/碳化和氮化产生了延展性的显着损失。根据操作温度分布讨论了可环型涂层的局部劣化机制,并与粒度硫化/氧化诱导的同色性涂层相比。

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