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Application of Plasma-Sprayed Complex Perovskites as Thermal Barrier Coatings

机译:等离子喷涂复合钙钛矿在热障涂层中的应用

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摘要

In an effort to improve the performance of heat engines at high temperatures, advanced surface coatings have been developed from complex perovskites. Materials of Ba(Mg{sub}(1/3)Ta{sub}(2/3))O{sub}3 and La(Al{sub}(1/4)Mg{sub}(1/2) Ta{sub}(1/4))O{sub}3 composition were synthesized and applied as ceramic topcoats of thermal barrier coating (TBC) systems by atmospheric plasma spraying (APS) in single layer and in double-layer combination with conventional yttria stabilized zirconia (YSZ). Microstructural and phase analyses reveal that plasma spraying of complex perovskites is accompanied with the formation of vertical crack networks and secondary oxide phases which influence the failure mechanism of the TBCs. The low value of fracture toughness for the complex perovskites and the thermally grown oxide at the topcoat-bondcoat interface of the TBCs are, however, the major factors which lead to the coating failure on thermal cycling at about 1250℃.
机译:为了改善高温下的热机性能,已经从复杂的钙钛矿中开发出先进的表面涂层。 Ba(Mg {sub}(1/3)Ta {sub}(2/3))O {sub} 3和La(Al {sub}(1/4)Mg {sub}(1/2)Ta的材料合成{sub}(1/4))O {sub} 3组合物,并通过大气等离子喷涂(APS)将其涂成热障涂层(TBC)系统的陶瓷面漆,并将其与传统的氧化钇稳定化成单层和双层组合使用氧化锆(YSZ)。微观结构和相分析表明,复杂钙钛矿的等离子喷涂伴随着垂直裂纹网络和次生氧化物相的形成,从而影响了TBC的破坏机理。复合钙钛矿的断裂韧度较低,而在三氯乙烯的面漆-胶层界面处热生长的氧化物是导致在约1250℃热循环中涂层失效的主要因素。

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