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Thermal and mechanical properties of crack-designed thick lanthanum zirconate coatings

机译:裂纹设计的厚镧锆酸盐涂层的热性能和力学性能

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摘要

Vertical cracks are beneficial in thermal barrier coatings due to enhanced thermo-mechanical compliance. Accordingly, an aqueous nitrate based precursor solution was atomized on stainless steel substrates by spray pyrolysis to deposit thick crack-designed lanthanum zirconate coatings. Coatings with designed crack patterns were deposited and characterized by electron microscopy, tribology, Vickers indentation, and thermal diffusivity. The crystallization of the coatings was investigated by in situ high temperature X-ray diffraction. The green coatings crystallized from 600 °C and the pyrochlore structure was formed after heat treatment at 1000 °C. Crystalline lanthanum zirconate multilayered coatings with small crack spacing and crack opening exhibited a higher density, a higher hardness, lower thermal diffusivities, and higher thermal conductivities compared to crystalline monolayered coatings of similar thickness with large crack spacing and crack opening. The thermal diffusivity of the coatings, ∼28 mm2/s at room temperature, was similar to the values reported for yttria-stabilized zirconia plasma sprayed coatings.
机译:由于提高了热机械顺应性,垂直裂纹在隔热涂层中是有益的。因此,通过喷雾热解法将基于硝酸盐的前体水溶液雾化在不锈钢基底上,以沉积裂纹设计的厚锆酸镧涂层。沉积具有设计裂纹图案的涂层,并通过电子显微镜,摩擦学,维氏压痕和热扩散率进行表征。通过原位高温X射线衍射研究了涂层的结晶。绿色涂层从600°C结晶,并在1000°C热处理后形成烧绿石结构。与具有较大裂纹间距和裂纹开口的类似厚度的晶体单层涂层相比,具有较小裂纹间距和裂纹开口的晶体锆酸镧多层涂层表现出更高的密度,更高的硬度,更低的热扩散率和更高的导热率。室温下涂层的热扩散率约为28 mm2 / s,与氧化钇稳定的氧化锆等离子喷涂涂层的报道值相似。

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