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Preparation of nano-sized 6MgO–2Y2O3–ZrO2 powders by a combined co-precipitation and high energy ball milling process

机译:共沉淀-高能球磨工艺联合制备纳米6MgO–2Y2O3–ZrO2粉体

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? 2022 Elsevier Ltd and Techna Group S.r.l.Nanostructured ceramic materials doped with stabilizers have superior mechanical, chemical, and electrical properties. In this study, tetragonal zirconia stabilized by 6 mol MgO and 2 mol Y2O3 (t-6MgO–2Y2O3–ZrO2) nanopowders with quasi-spherical morphology, uniform particle size, and narrower grain size distributions were prepared by a combination process including two steps: namely co-precipitation and high-energy ball milling. The effect of ball milling time on ZrO2 crystal particles was investigated by characterizations including XRD, Raman, FT-IR, FEESM, BET, and TEM. With the increase of ball milling time, the average grain size of the powder showed a gradual decrease tendency, the particle size distribution changed from wide to narrow, the particle morphology tended to be spherical, and the specific surface area gradually increased. Under the optimized conditions (ball milling for 8 h, calcination temperature of 800 °C, and holding time of 2 h), the highly dispersed spherical nanopowders with a minimum particle size of 18.47 nm and an average particle size of 29.02 nm were obtained. These zirconium oxide nanopowders are suitable for the preparation of inorganic coatings, biomedical materials, catalyst materials, and other types of functional materials.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.掺杂稳定剂的纳米结构陶瓷材料具有优异的机械、化学和电气性能。本研究采用共沉淀法和高能球磨法两步,制备了6 mol% MgO和2 mol% Y2O3 (t-6MgO–2Y2O3–ZrO2)稳定、粒径均匀、粒度分布较窄的四方氧化锆纳米粉体。通过XRD、拉曼、傅里叶变换红外光谱、FEESM、BET和TEM等表征方法研究了球磨时间对ZrO2晶体颗粒的影响。随着球磨时间的增加,粉体平均晶粒尺寸呈逐渐减小的趋势,粒径分布由宽变窄,颗粒形貌趋于球形,比表面积逐渐增大。在球磨8 h、煅烧温度800 °C、保温时间2 h等条件下,获得了最小粒径为18.47 nm、平均粒径为29.02 nm的高分散球形纳米粉体。这些氧化锆纳米粉体适用于制备无机涂料、生物医用材料、催化剂材料和其他类型的功能材料。

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