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Y2O3-MgO Nano-Composite Synthesized by Plasma Spraying and Thermal Decomposition of Solution Precursors.

机译:等离子喷涂和溶液前体的热分解合成Y2O3-MgO纳米复合材料。

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摘要

This research aims to identify the key feedstock characteristics and processing conditions to produce Y2O3-MgO composite coatings with high density and hardness using solution precursor plasma spray (SPPS) and suspension plasma spray (SPS) processes, and also, to explore the phenomena involved in the production of homogenized nano-composite powders of this material system by thermal decomposition of solution precursor mixtures. The material system would find potential application in the fabrication of components for optical applications such as transparent windows.;It was shown that a lack of major endothermic events during precursor decomposition and the resultant formation of highly dense particles upon pyrolysis are critical precursor characteristics for the deposition of dense and hard Y2O3-MgO coatings by SPPS. Using these principles, a new Y2O3-MgO precursor solution was developed, which yielded a coating with Vickers hardness of 560 Hv. This was a considerable improvement over the hardness of the coatings obtained using conventional solution precursors, which was as low as 110 Hv.;In the thermal decomposition synthesis process, binary solution precursor mixtures of: yttrium nitrate (Y[n]) or yttrium acetate (Y[a]), with magnesium nitrate (Mg[n]) or magnesium acetate (Mg[a]) were used in order to study the effects of precursor chemistry on the structural characteristics of the resultant Y2O3-MgO powders. The phase domains were coarse and distributed rather inhomogeneously in the materials obtained from the Y[n]Mg[n] and Y[a]Mg[a] mixtures; finer and more homogeneously-distributed phase domains were obtained for ceramics produced from the Y[a]Mg[n] and Y[n]Mg[a] mixtures. It was established that these phenomena were related to the thermal characteristics for the decomposition of the precursors and their effect on phase separation during oxide crystallization. Addition of ammonium acetate to the Y[n[Mg[n] mixture changed the endothermic process to exothermic and improved the dispersion of the component phases.;Two suspension types, made with powders synthesized from the Y[n]Mg[n] and Y[n]Mg[a] precursor mixtures were sprayed by SPS. The densities and hardnesses of the coatings deposited using the two powder types were similar. However, the microstructure of coatings deposited using the Y[n]Mg[a]-synthesized powder exhibited some eutectic configuration which was not observed in the coatings deposited using the Y[n]Mg[n]-synthesized powder.
机译:这项研究旨在确定关键的原料特性和加工条件,以使用溶液前驱体等离子喷涂(SPPS)和悬浮等离子喷涂(SPS)工艺生产具有高密度和硬度的Y2O3-MgO复合涂层,并探讨涉及到的现象。通过溶液前体混合物的热分解来生产该材料系统的均质纳米复合粉末。该材料系统将在制造光学应用组件(例如透明窗口)中找到潜在的应用。研究表明,前驱物分解过程中缺乏主要的吸热事件以及热解后形成的高密度颗粒是该装置的关键前驱物特性。 SPPS沉积致密且坚硬的Y2O3-MgO涂层。使用这些原理,开发了一种新的Y2O3-MgO前驱体溶液,产生的维氏硬度为560 Hv的涂层。这比使用常规溶液前体获得的涂层硬度低至110 Hv有了显着改善;在热分解合成过程中,硝酸钇(Y [n])或乙酸钇的二元溶液前体混合物(Y [a])与硝酸镁(Mg [n])或乙酸镁(Mg [a])被用于研究前体化学性质对所得Y2O3-MgO粉末结构特征的影响。在从Y [n] Mg [n]和Y [a] Mg [a]混合物获得的材料中,相域是粗糙的,并且分布不均匀。由Y [a] Mg [n]和Y [n] Mg [a]混合物制得的陶瓷获得了更细,更均匀分布的相域。已经确定这些现象与前体分解的热特性及其在氧化物结晶过程中对相分离的影响有关。在Y [n [Mg [n]]混合物中添加乙酸铵将吸热过程改变为放热过程,并改善了组分相的分散性。两种悬浮液类型,由Y [n] Mg [n]和Y [n] Mg [a]前体混合物通过SPS喷雾。使用两种粉末类型沉积的涂层的密度和硬度相似。然而,使用Y [n] Mg [a]合成的粉末沉积的涂层的微观结构表现出一些共晶构型,这在使用Y [n] Mg [n]合成的粉末沉积的涂层中没有观察到。

著录项

  • 作者

    Muoto, Chigozie Kenechukwu.;

  • 作者单位

    University of Connecticut.;

  • 授予单位 University of Connecticut.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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