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Comparison of spray freeze dried nanozirconia granules using ultrasonication and twin-fluid atomisation

机译:超声和双流体雾化喷雾冷冻干燥纳米氧化锆颗粒的比较

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摘要

Granulation of nanostructured 3 mol% yttria stabilised zirconia using spray freeze drying was investigated to achieve flowable and crushable granules for subsequent die pressing. Commercial nanosuspension consisting of ~16 nm particles was concentrated to ~55 wl% solids content via a patented technique, followed by spraying into liquid nitrogen using either a vibrating ultrasonic probe or a twin-fluid atomizer and freeze dried to yield spherical granules. Control of the granule size fractions was investigated by changing the amplitude and the feeding rate of the nanosuspension during ultrasonication, whilst the flow rate of compressed air used for spraying was varied during twin-fluid atomisation. Granules retaining good crushability for pressing were in a size range of 125-250 μm, which were achieved with ~60 wt% yields using the atomisation route, whilst a maximum of 35 wt% of granules in this size range were produced in previous research using ultrasonication.
机译:研究了使用喷雾冷冻干燥法制得的纳米结构的3 mol%氧化钇稳定的氧化锆的粒化工艺,以制备可流动和可压碎的颗粒,用于随后的模压。通过专利技术,将由〜16 nm颗粒组成的商用纳米悬浮液浓缩至〜55 wl%的固体含量,然后使用振动超声探头或双流体雾化器喷涂到液氮中,冷冻干燥,得到球形颗粒。通过在超声处理过程中改变纳米悬浮液的振幅和进料速度来研究颗粒尺寸分数的控制,而在双流体雾化过程中,用于喷雾的压缩空气的流量则发生了变化。保持良好压制性的颗粒尺寸在125-250μm范围内,使用雾化路线可达到〜60 wt%的收率,而在以前的研究中,使用该雾化路线最多可生产35 wt%的颗粒超声处理。

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