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Production and characterization of metastable Al2O3-TiO2 ceramic materials

机译:亚稳Al2O3-TiO2陶瓷材料的生产与表征

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Producing nanostructured materials through metastable phases is interesting in the field of ceramic materials. Metastable phases can be obtained by the Atmospheric Plasma Spray (APS) technique which, is a well-known technique to produce coatings. The initial powders are melted during the spraying obtaining a homogenized phase due to their solubility in the liquid state. Afterwards, the molten droplets are quenched in a cooled medium, producing the sought metastable phases. Finally, during material consolidation, the metastable structure evolves due to a dual structure. A suppression of the grain growth is produced as a consequence of the immiscibility of both phases in the solid state. Due to their small grain size and uniform structure, these nanostructured materials exhibit very interesting properties such as higher hardness and toughness. The aim of this research has been to produce nanostructured Al2O3-TiO2 ceramic powders through APS + quenching route, starting from commercially available micron-sized powders. A complete characterization of the obtained structures using XRD, SEM, FESEM and EDS has been carried out in the Thermal Spray Center (CPT) of the University of Barcelona.
机译:通过亚稳态相生产纳米结构材料在陶瓷材料领域中是令人感兴趣的。可以通过大气等离子喷涂(APS)技术获得亚稳相,这是一种众所周知的生产涂层的技术。初始粉末由于在液体中的溶解性而在喷涂过程中熔化,从而获得均质相。然后,将熔融的液滴在冷却的介质中淬火,产生所需的亚稳态相。最后,在材料固结过程中,亚稳结构由于双重结构而演化。由于固态中两相的不溶混性,导致晶粒生长受到抑制。由于其较小的晶粒尺寸和均匀的结构,这些纳米结构材料表现出非常有趣的特性,例如更高的硬度和韧性。这项研究的目的是通过APS +淬火途径,从市售的微米级粉末开始生产纳米结构的Al2O3-TiO2陶瓷粉末。在巴塞罗那大学的热喷涂中心(CPT)中已使用XRD,SEM,FESEM和EDS对获得的结构进行了完整的表征。

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