首页> 外文期刊>Journal of Thermal Spray Technology >Microstructure and Thermal Cycling Behavior of Air Plasma-Sprayed YSZ/LaMgAl_(11)O_(19) Composite Coatings
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Microstructure and Thermal Cycling Behavior of Air Plasma-Sprayed YSZ/LaMgAl_(11)O_(19) Composite Coatings

机译:空气喷涂YSZ / LaMgAl_(11)O_(19)复合涂层的组织和热循环行为

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摘要

Yttria-stabilized zirconia (YSZ) based composite coatings with the addition of LaMgAl_(11)O_(19) (LaMA) as the secondary phase, were prepared by air plasma spraying in order to improve the performances of the traditional YSZ coating. Results indicate that the newly developed composite coating shows increased vertical crack density with the enhancement of the LaMA content during thermal cycling process, which results in increased strain tolerance and service lifetime. However, such composite coatings about 200 μm thick, exhibit inferior thermal cycling lifetimes with respect to the typical YSZ coating for surface temperatures above 1400℃. The presence of amorphous LaMA phase in the composite coating results in increased thermal conductivity and a relative thin top coat leading to a reduced thermal insulation efficiency. These are believed to be responsible for the premature degradation of bond coat and final top coat spallation failure. Such an investigation gives useful guidelines to develop advanced composite coatings based on YSZ/LaMA systems.
机译:通过空气等离子喷涂制备了以氧化钇稳定的氧化锆(YSZ)为基础的复合涂层,并添加了LaMgAl_(11)O_(19)(LaMA)作为第二相,以改善传统YSZ涂层的性能。结果表明,新开发的复合涂层在热循环过程中随着LaMA含量的增加而显示出增加的垂直裂纹密度,从而提高了应变耐受性和使用寿命。然而,相对于表面温度高于1400℃的典型YSZ涂层,这种约200μm厚的复合涂层的热循环寿命较差。复合涂层中无定形LaMA相的存在会导致导热性增加,且相对较薄的面涂层会导致隔热效率降低。据信,这是造成粘结层过早降解和最终面层剥落破坏的原因。这样的调查为开发基于YSZ / LaMA系统的高级复合涂料提供了有用的指导。

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