首页> 外文期刊>Journal of Thermal Spray Technology >Microstructure and Thermophysical Properties of SrZrO3 Thermal Barrier Coating Prepared by Solution Precursor Plasma Spray
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Microstructure and Thermophysical Properties of SrZrO3 Thermal Barrier Coating Prepared by Solution Precursor Plasma Spray

机译:溶液前体等离子喷雾制备的SrzRO3热阻挡涂层的微观结构和热物理性质

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Strontium zirconate (SrZrO3) thermal barrier coatings were deposited by solution precursor plasma spray (SPPS) using an aqueous precursor solution. The phase transition of the SrZrO3 coating and the influence of the aging time at 1400 degrees C on the microstructure, phase stability, thermal expansion coefficient, and thermal conductivity of the coating were investigated. The unique features of SPPS coatings, such as interpass boundary (IPB) structures, nano- and micrometer porosity, and through-thickness vertical cracks, were clearly observed evidently in the coatings. The vertical cracks of the coatings remained substantially unchanged while the IPB structures gradually diminished with prolonged heat treatment time. t-ZrO2 developed in the coatings transformed completely to m-ZrO2 phase after heat treatment for 100h. Meanwhile, the SrZrO3 phase in the coatings exhibited good phase stability upon heat treatment. Three phase transitions in the SrZrO3 coatings were revealed by thermal expansion measurements. The thermal conductivity of the as-sprayed SrZrO3 coating was 1.25Wm(-1)K(-1) at 1000 degrees C and remained stable after heat treatment at 1400 degrees C for 360h, revealing good sintering resistance.
机译:使用含水前体溶液,通过溶液前体等离子体喷雾(SPP)沉积锆锶(SRZRO3)热阻挡涂层。研究了SRZRO3涂层的相转变和老化时间在1400℃下进行微观结构,相位稳定性,热膨胀系数和涂层的导热率。 SPPS涂层的独特特征,例如接口边界(IPB)结构,纳米和微米孔隙度和贯穿厚度垂直裂缝,在涂料中显然观察到。涂层的垂直裂缝保持基本不变,而IPB结构随着延长的热处理时间逐渐减少。在热处理100小时后,在涂层中开发的T-ZrO2完全转化为M-ZrO2相。同时,在热处理时,涂层中的Srzro3相表现出良好的相位稳定性。通过热膨胀测量显示SRZRO3涂层中的三相转变。在1000℃下,当喷涂的SrzRO3涂层的导热率为1.25WM(-1)k(-1),在1400℃下热处理360H后保持稳定,露出良好的烧结抗性。

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