首页> 外文期刊>Journal of Failure Analysis and Prevention >Cyclic Oxidation and Hot Corrosion Behavior of Plasma-Sprayed CoCrAlY?+?WC-Co Coating on Turbine Alloys
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Cyclic Oxidation and Hot Corrosion Behavior of Plasma-Sprayed CoCrAlY?+?WC-Co Coating on Turbine Alloys

机译:血浆喷涂和旋转式氧化和热腐蚀行为在涡轮机合金上的血浆喷涂的环r?+ + + WC-CO涂层

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摘要

Components in energy-producing systems suffer a variety of degradation processes such as oxidation and molten salt-induced corrosion as a consequence of complex multi-component gaseous environment. Coatings provide a composition that will grow the protective scale at high temperatures having long-term stability. Plasma spraying was used to deposit CoCrAlY?+?WC-Co composite coatings on turbine alloys of Hastelloy X and AISI 321. The thermocyclic oxidation behavior of coated alloys was investigated in static air and in molten salt (Na~(2)SO~(4)-60%V~(2)O~(5)) environment at 700?°C. The thermogravimetric technique was used to approximate the kinetics of oxidation in 50 cycles, each cycle consisting of heating and cooling. X-ray diffraction and SEM/EDAX techniques are used to characterize the oxide scale formed. Coated alloys showed a lower corrosion rate as compared to uncoated alloys. The coatings subjected to oxidation and hot corrosion showed slow scale growth kinetics. Preferential oxidation of Co, Cr, W and its spinel blocks the transport of oxygen and corrosive species into the coating by providing a barrier, thereby making the oxidation rate to reach steady state. As compared to the substrate alloys, coatings show better hot corrosion resistance.
机译:能量产生系统中的组分由于复杂的多组分气态环境而导致氧化和熔融盐致腐蚀等各种降解方法。涂层提供了一种组合物,其将在具有长期稳定性的高温下生长保护尺度。等离子体喷涂用于沉积在Hastelloy X和AISI 321的涡轮机合金上沉积可环rβ的+ + + +αWC-CO复合涂层。在静态空气和熔盐中研究涂覆合金的热环氧化行为(Na〜(2)SO〜( 4)-60%V〜(2)O〜(5))环境700°C。热重度技术用于近似50个循环中氧化的动力学,每个循环包括加热和冷却。 X射线衍射和SEM / EDAX技术用于表征形成的氧化物尺度。与未涂覆的合金相比,涂覆的合金显示出耐腐蚀性较低。经过氧化和热腐蚀的涂层显示出慢速增长动力学。通过提供屏障,CO,Cr,W及其尖晶石的优先氧化通过提供屏障将氧气和腐蚀性物质传输到涂层中,从而使氧化率达到稳定状态。与基材合金相比,涂层显示出更好的热腐蚀性。

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