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首页> 外文期刊>Journal of Thermal Spray Technology >Evaluation of Cyclic Hot Corrosion Resistance of Plasma-Sprayed Composite Coating in Na2SO4-60%V2O5 Molten Salt Environment
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Evaluation of Cyclic Hot Corrosion Resistance of Plasma-Sprayed Composite Coating in Na2SO4-60%V2O5 Molten Salt Environment

机译:含Na2SO4-60%V2O5熔盐环境中等离子体喷涂复合涂层循环热耐腐蚀性的评价

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The hot corrosion resistance of air plasma-sprayed 8YSZ-Al2O3-multiwall carbon nanotubes (MWCNTs) has been analyzed and compared to that of 8YSZ coating. The feedstock constituents were blended to produce 8YSZ-20% alumina-0%MWCNT (type II), 8YSZ-19% alumina-1%MWCNT (type III), and 8YSZ-17% alumina-3%MWCNT (type IV) feedstock. After the cyclic hot corrosion (cHC) test in Na2SO4-60%V2O5 molten salt, the morphology of coatings was analyzed using EDS, SEM, and XRD while the coating cross-section properties were determined by a nanoindentation test and the infiltration resistance of the topcoats was estimated from the Weibull modulus (m) of the bond coat (BC) properties. The formation of YVO4 and phase transformation of zirconia from tetragonal to monoclinic were found as important degrading mechanisms of the coatings. The difference in coefficient of thermal expansion also proved to be detrimental to the performance of the coating. The zirconia monoclinic phase content for the 8YSZ(type I), type II, type III, and type IV coatings was around 86, 80, 92, and 89%, respectively, after the cyclic hot corrosion test. The Weibull analysis of the Young's modulus of the bond coat showed that the type IV coating exhibited the highest heterogeneity in Young's modulus. Finally, the addition of MWCNT was found to be detrimental in the cyclic hot corrosion test as it led to the cracking of the coatings.
机译:已经分析了空气等离子体喷涂的8倍氧化铝碳纳米管(MWCNT)的热腐蚀性,并与8苏斯涂层相比。将原料成分混合以产生8羟Z-20%氧化铝-0%MWCNT(II型),8×10型氧化铝-1%MWCNT(III型),8毫秒-17%氧化铝-3%MWCNT(IV型)原料。在Na 2 SO 4-60%V2O5熔盐中的环状热腐蚀(CHC)试验后,使用EDS,SEM和XRD分析涂料的形态,同时通过纳米凸起试验和渗透性测定涂层横截面性能。从粘合涂层(BC)性质的Weibull模量(M)估计面漆。从四边形到单斜替体的YVO4和相变的形成和相转化被发现是涂层的重要降解机制。热膨胀系数的差异也被证明对涂层的性能有害。在环循环热腐蚀试验后,氧化锆(I型),II型,III型,III型和型IV型和89%分别为86,80,92和89%。粘粘罩杨氏模量的威布尔分析表明,IV型涂层在杨氏模量中表现出最高的异质性。最后,发现MWCNT的添加在循环热腐蚀试验中是有害的,因为它导致涂层的开裂。

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