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首页> 外文期刊>Journal of the European Ceramic Society >Aqueous suspension processing of multicomponent submicronic Y-TZP/Al2O3/SiC particles for suspension plasma spraying
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Aqueous suspension processing of multicomponent submicronic Y-TZP/Al2O3/SiC particles for suspension plasma spraying

机译:用于悬浮等离子体喷涂的多组分亚微型Y-TZP / Al2O3 / SiC颗粒的含水悬浮处理

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摘要

In order to obtain thermal barrier coatings by Suspension Plasma Spraying (SPS) process with potential new self-healing ability multicomponent submicronic Y-TZP/Al2O3/SiC suspensions were prepared. For this purpose, concentrated aqueous suspensions of individual components, as well as the multicomponent mixture were studied and characterised, in terms of colloidal stability and rheological behaviour to determine the best conditions for processing and preparation of the coatings. In the study, different dispersant contents and sonication times were tested. Subsequently, low concentrated suspensions were prepared to obtain preliminary thermal barrier coatings with the optimised feedstock. Thus, ceramic coatings were deposited by SPS and then characterised in order to assess the microstructure and phase distribution, in particular, the degree of preservation of the sealing agent, SiC, in the final coating as a previous indicator of its self-healing ability.
机译:为了通过悬浮等离子体喷涂(SPS)工艺获得具有潜在新的自我愈合能力的热阻挡涂层,制备多组分亚微ronic Y-TZP / Al2O3 / SiC悬浮液。 为此目的,在胶体稳定性和流变行为方面,研究了各个组分以及多组分混合物的浓缩含水悬浮液,并表征了用于测定涂料的加工和制备的最佳条件。 在研究中,测试了不同的分散含量和超声处理时间。 随后,制备低浓缩悬浮液以获得具有优化原料的初步热阻挡涂层。 因此,通过SPS沉积陶瓷涂层,然后表征以评估密封剂,SiC在最终涂层中作为其自我愈合能力的先前指示剂的保存程度的微观结构和相分布。

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