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首页> 外文期刊>Journal of Thermal Spray Technology >Investigation of CMAS Resistance of Sacrificial Suspension Sprayed Alumina Topcoats on EB-PVD 7YSZ Layers
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Investigation of CMAS Resistance of Sacrificial Suspension Sprayed Alumina Topcoats on EB-PVD 7YSZ Layers

机译:牺牲悬浮液的CMAS抗性对EB-PVD 7苏斯层的氧化铝面漆进行CAMMAS抗性

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摘要

Molten calcium-magnesium-aluminum-silicate (CMAS) mineral particles cause significant degradation of thermal barrier coatings (TBCs) in aero-engines. One approach to protect the TBC coating against the CMAS attack is the application of a sacrificial coating on top of the TBC coating. In this work, Al2O3 coatings were deposited on EB-PVD 7YSZ layers using suspension plasma spraying (SPS) and suspension high velocity oxy-fuel spraying (SHVOF), in order to produce sacrificial topcoats with two different microstructures and porosity levels. The coating systems were tested under CMAS attack with one natural volcanic ash and two artificial CMAS powders by conducting infiltration tests at 1250 degrees C in the time intervals between 5 min and 10 h. It was found that the porosity and morphology of suspension sprayed alumina topcoats, the chemical composition of the deposits and the infiltration conditions strongly influence the CMAS infiltration, reaction kinetics and formation of the reaction products. While the porous SPS coatings offer limited resistance against CMAS infiltration, the dense SHVOF coatings show promising CMAS sealing behavior. Among the formed reaction products, only (Fe, Mg) Al spinel acted as an efficient barrier against CMAS infiltration. However, the formation of uniform spinel layers strongly depends on the pore morphology of the sacrificial coating and the CMAS chemistry.
机译:熔融钙 - 镁 - 铝 - 硅酸铝(CMA)矿物颗粒在航空发动机中导致热阻挡涂层(TBC)的显着降解。保护TBC涂层对CMAS攻击的一种方法是在TBC涂层顶部施加牺牲涂层。在这项工作中,使用悬浮等离子体喷涂(SPS)和悬浮高速氧 - 燃料喷涂(Shvof)沉积Al2O3涂层在EB-PVD 7YSZ层上沉积在EB-PVD 7YSZ层上,以产生具有两种不同微结构和孔隙率水平的牺牲面涂层。通过在5分钟和10小时之间的时间间隔在1250℃下进行渗透测试,在CMAS攻击下测试涂层系统。发现悬浮液喷涂氧化铝面漆的孔隙率和形态,沉积物的化学成分和渗透条件强烈影响CMAS浸润,反应动力学和反应产物的形成。虽然多孔SPS涂层可提供有限的抗CMA渗透,但致密的Shvof涂层显示有希望的CMAS密封行为。在形成的反应产物中,仅(Fe,Mg)Al尖晶石作用为抵抗CMAS浸润的有效屏障。然而,均匀尖晶石层的形成强烈取决于牺牲涂层和CMA化学的孔形态。

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