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Next Generation Thermal Barrier Coatings for the Gas Turbine Industry

机译:燃气轮机行业的下一代热障涂层

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摘要

The aim of this study is to develop the next generation of production ready air plasma sprayed thermal barrier coating with a low conductivity and long lifetime. A number of coating architectures were produced using commercially available plasma spray guns. Modifications were made to powder chemistry, including high purity powders, dysprosia stabilized zirconia powders, and powders containing porosity formers. Agglomerated & sintered and homogenized oven spheroidized powder morphologies were used to attain beneficial microstructures. Dual layer coatings were produced using the two powders. Laser flash technique was used to evaluate the thermal conductivity of the coating systems from room temperature to 1200 °C Tests were performed on as-sprayed samples and samples were heat treated for 100 h at 1150 °C. Thermal conductivity results were correlated to the coating microstructure using image analysis of porosity and cracks. The results show the influence of beneficial porosity on reducing the thermal conductivity of the produced coatings.
机译:这项研究的目的是开发具有低电导率和长寿命的下一代可生产的空气等离子喷涂热障涂层。使用可商购的等离子喷枪生产了许多涂层结构。对粉体化学进行了修改,包括高纯度粉体,非正常稳定的氧化锆粉体和含有成孔剂的粉体。使用团聚,烧结和均化的烤箱球化粉末形态来获得有益的微观结构。使用两种粉末生产双层涂层。激光闪光技术用于评估涂层系统从室温到1200°C的热导率。对喷涂样品进行测试,并将样品在1150°C热处理100小时。使用孔隙率和裂纹的图像分析,将热导率结果与涂层的微观结构相关联。结果表明有利的孔隙率对降低所产生的涂层的热导率的影响。

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