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首页> 外文期刊>Journal of the European Ceramic Society >Erosion behavior of EB-PVD 7YSZ coatings under corrosion/erosion regime: Effect of TBC microstructure and the CMAS chemistry
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Erosion behavior of EB-PVD 7YSZ coatings under corrosion/erosion regime: Effect of TBC microstructure and the CMAS chemistry

机译:腐蚀/侵蚀制度下EB-PVD 7苏斯涂层的侵蚀行为:TBC微观结构与CMAS化学的影响

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摘要

Aero-engines operating in dust-laden environments often encounter a lot of dust/sand that causes a severe problem to the TBCs by means of erosion. As the turbine entry temperatures are rising, molten sand is also a big concern to the life-time of TBCs.This paper deals with the TBC behavior under the combined influence of erosion and corrosion attack. Variations in TBC morphology, CMAS infiltration time and CMAS composition and their influence on the erosion resistance at room temperature were investigated. Two different EB-PVD 7YSZ morphologies consisting of a different porosity arrangement were tested in the erosion/corrosion regime. The more ‘Feathery’ structure has a better resistance to erosion compared to a more columnar ‘Normal’ structure, which leads to less degradation of the TBC. However, under the influence of CMAS infiltration the effect was found to be reversed. In general, CMAS-infiltrated EB-PVD TBCs exhibit a higher erosion resistance than the non-infiltrated ones.
机译:在尘埃满载环境中运行的航空发动机经常遇到大量的灰尘/沙子,通过侵蚀对TBC进行严重问题。随着涡轮机进入温度上升,熔融沙对TBCS的生命时间来说也是一个重要的关注。本文在侵蚀和腐蚀攻击的综合影响下涉及TBC行为。研究了TBC形态,CMAS渗透时间和CMAS组成的变化及其对室温侵蚀抗性的影响。在侵蚀/腐蚀制度中测试了由不同孔隙率布置组成的两种不同的EB-PVD 7YSZ形态。与更多柱状的“正常”结构相比,“羽毛”结构越“羽毛”结构对侵蚀具有更好的抵抗力,这导致TBC的降低较少。然而,在CMAS浸润的影响下,发现效果被逆转。通常,CMAS-渗透的EB-PVD TBCs表现出比非渗透的耐腐蚀性更高。

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