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Fabrication of Bulk Nanocrystalline Ceramic Materials

机译:散装纳米晶陶瓷材料的制备

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An alternative method to produce bulk nanocrystalline materials is to produce amorphous material by rapid solidification followed by controlled solid state crystallization. Four different materials studied in this work are based on near-eutectic mixtures of alumina, zirconia, and silica. Powder feedstock materials have been plasma sprayed using a water stabilized plasma torch (WSP~R) and subsequently heat-treated to prepare materials with nanocrystallites of 12 nm diameter on average. The as-sprayed materials have very low porosity and are mostly amorphous. The as-sprayed amorphous materials crystallize at temperatures around 950 deg C. The resulting structure is best described as nanocomposite with the very small crystallites embedded in an amorphous matrix. The role of silica on phase composition, microstructure, and mechanical properties of the as-sprayed and annealed materials is discussed. The as-sprayed amorphous materials exhibit high hardness and high abrasion resistance. Both properties are significantly improved in the heat-treated nanocrystalline samples.
机译:制备块状纳米晶体材料的另一种方法是通过快速凝固制备无定形材料,然后通过受控固态结晶。在这项工作中研究的四种不同的材料基于氧化铝,氧化锆和二氧化硅的近共晶混合物。使用水稳定的等离子体炬(WSP〜R)并随后热处理粉末原料材料,以平均用12nm直径为12nm的纳米晶体的材料。喷涂材料具有非常低的孔隙率并且主要是无定形的。喷涂的非晶材料在950℃的温度下结晶。所得结构最好被描述为纳米复合材料,其中嵌入无定形基质中的非常小的微晶。讨论了二氧化硅在相 - 喷射和退火材料的相组合物,微观结构和机械性能上的作用。喷雾的无定形材料具有高硬度和高耐磨性。在热处理的纳米晶样品中,这两种性质都显着改善。

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