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首页> 外文期刊>Journal of Thermal Spray Technology >Optimizing Compliance and Thermal Conductivity of Plasma Sprayed Thermal Barrier Coatings via Controlled Powders and Processing Strategies
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Optimizing Compliance and Thermal Conductivity of Plasma Sprayed Thermal Barrier Coatings via Controlled Powders and Processing Strategies

机译:通过控制粉末和加工策略优化等离子喷涂热障涂层的顺应性和导热性

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摘要

The properties and performance of plasma-sprayed thermal barrier coatings (TBCs) are strongly dependent on the microstructural defects, which are affected by starting powder morphology and processing conditions. Of particular interest is the use of hollow powders which not only allow for efficient melting of zirconia ceramics but also produce lower conductivity and more compliant coatings. Typical industrial hollow spray powders have an assortment of densities resulting in masking potential advantages of the hollow morphology. In this study, we have conducted process mapping strategies using a novel uniform shell thickness hollow powder to control the defect microstructure and properties. Correlations among coating properties, microstructure, and processing reveal feasibility to produce highly compliant and low conductivity TBC through a combination of optimized feedstock and processing conditions. The results are presented through the framework of process maps establishing correlations among process, microstructure, and properties and providing opportunities for optimization of TBCs.
机译:等离子喷涂热障涂层(TBC)的性能和性能在很大程度上取决于微观结构缺陷,这些缺陷会受到起始粉末形态和加工条件的影响。特别令人感兴趣的是使用中空粉末,其不仅允许氧化锆陶瓷的有效熔融,而且产生较低的电导率和更柔顺的涂层。典型的工业空心喷雾粉末具有各种密度,导致掩盖了空心形态的潜在优势。在这项研究中,我们已经进行了使用新型均匀壳厚空心粉末的工艺制图策略,以控制缺陷的微观结构和性能。涂层性能,微观结构和加工之间的相关性揭示了通过优化原料和加工条件来生产高柔顺性和低电导率TBC的可行性。结果通过过程图框架显示,建立了过程,微观结构和特性之间的相关性,并为优化TBC提供了机会。

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