首页> 外文期刊>Journal of Materials Science >Crystallization and microstructure of metastable water quenched nanostructured 8 mol% yttria-stabilized zirconia using the solution precursor plasma spray method
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Crystallization and microstructure of metastable water quenched nanostructured 8 mol% yttria-stabilized zirconia using the solution precursor plasma spray method

机译:溶液前驱体等离子喷涂法制备的亚稳态水淬纳米结构的8 mol%氧化钇稳定的氧化锆的结晶和微观结构

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摘要

A t′ tetragonally structured metastable 8 mol% yttria-stabilized zirconia (8 mol% YSZ) nanomaterial was synthesized by means of solution thermal plasma spray with water quenching of reacted species. Synthesis of the 8 mol% YSZ powder involved vaporization of a liquid precursor injected into a plasma jet where individual droplets, depending on their trajectory within the plasma, experienced varied thermal histories. Thus, not all the material produced underwent a complete gel → glass → nanocrystalline transformation sequence. Consequently, the collected powder contained a proportion of gel and glass (amorphous) state material. Additionally, the powder contained nano-scale and small micron-scale rapidly solidified 8 mol% YSZ particles. Following thermal treatment, the gel and the amorphous content transformed to produce (i) densely packed nanograin and (ii) chain-like nanograin aggregates. The nanograin aggregates are suggestive of a strong, yet short-range intergranular attraction, as predicted in computer simulation studies presented in the literature. Interestingly, this mixed morphology powder, after compaction and heat treatment at 1400 °C for 2 h, transformed into 98 % dense material with a homogeneous 200–500 nm grain size. For generating 8 mol% YSZ, the solution precursor plasma spray method offers a high synthesis rate using a low-cost precursor to produce powder that can be consolidated into morphologically homogeneous bulk nanomaterial.
机译:通过溶液热等离子体喷涂和水淬灭反应物种,合成了一种t'四方结构的亚稳态8 mol%氧化钇稳定的氧化锆(8 mol%YSZ)纳米材料。 8 mol%YSZ粉末的合成涉及喷射到等离子流中的液体前体的汽化,其中各个小滴(取决于它们在等离子内的轨迹)经历不同的热历史。因此,并非所有产生的材料都经历了完整的凝胶→玻璃→纳米晶转化顺序。因此,收集的粉末包含一定比例的凝胶和玻璃(非晶态)材料。另外,粉末包含纳米级和小微米级快速固化的8mol%的YSZ颗粒。热处理后,凝胶和无定形成分转变为产生(i)密集堆积的纳米颗粒和(ii)链状纳米颗粒聚集体。如文献中提出的计算机模拟研究所预测的,纳米颗粒聚集体暗示了强烈的但短程的晶间吸引力。有趣的是,这种混合形态粉末在压实并在1400°C下热处理2小时后,转变成98%的致密材料,具有200-500 nm的均匀晶粒尺寸。为了产生8 mol%的YSZ,溶液前驱体等离子喷涂方法使用低成本的前驱体来生产可固结成形态均匀的块状纳米材料的粉末,具有很高的合成速率。

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