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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Assessment of Cyclic Lifetime of NiCoCrAIY/ZrO_2-Based EB-PVD TBC Systems via Reactive Element Enrichment in the Mixed Zone of the TGO Scale
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Assessment of Cyclic Lifetime of NiCoCrAIY/ZrO_2-Based EB-PVD TBC Systems via Reactive Element Enrichment in the Mixed Zone of the TGO Scale

机译:在TGO量表混合区中通过反应元素富集评估基于NiCoCrAIY / ZrO_2的EB-PVD TBC系统的循环寿命。

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摘要

The chemical composition of the alumina-zirconia mixed zone (MZ) of an electron beam physical vapor deposited thermal barrier coating (EB-PVD TBC) system is affected by service conditions and by the interdiffusion of elements from the substrate alloy below and the zirconia top coat. Three NiCoCrAlY bond-coated Ni-base substrates with YPSZ or CeSZ EB-PVD TBCs were subjected to a cyclic furnace oxidation test (FCT) at 1373 K (1100 °C) in order to provide experimental evidence of a link between chemistry of the MZ, the substrate alloy, the ceramic top coat, and the time in the FCT. Energy dispersive spectroscopy of the MZ revealed preferred accumulation of Cr, Zr, Y, and Ce. The concentration of the reactive elements (RE = Ce + Y + Zr) was related to the respective average lifetimes of the TBC systems at 1373 K (1100 °C). The RE content in the MZ turned out to be a life-limiting parameter for YPSZ and CeSZ TBC systems which can be utilized to predict their relative lifetimes on the individual substrates. Conversely, the TBC failure mechanisms of YPSZ and CeSZ TBC systems are dissimilar.
机译:电子束物理气相沉积热障涂层(EB-PVD TBC)系统的氧化铝-氧化锆混合区(MZ)的化学成分受使用条件以及下方基底合金和氧化锆顶部元素的相互扩散影响涂层。对三种带有YPSZ或CeSZ EB-PVD TBC的NiCoCrAlY键涂层的Ni基基材进行了1373 K(1100°C)的循环炉氧化试验(FCT),以提供MZ化学之间联系的实验证据。 ,基材合金,陶瓷面漆以及FCT中的时间。 MZ的能量色散光谱显示了Cr,Zr,Y和Ce的优选积累。反应元素的浓度(RE = Ce + Y + Zr)与TBC系统在1373 K(1100°C)下的平均寿命有关。事实证明,MZ中的RE含量是YPSZ和CeSZ TBC系统的寿命极限参数,可用于预测它们在各个基板上的相对寿命。相反,YPSZ和CeSZ TBC系统的TBC失效机制是不同的。

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