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Production of nanopowders of oxides by means of fiber and pulse-periodical CO2 lasers

机译:通过纤维和脉冲周期CO2激光器生产氧化物纳米粉

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摘要

The results of investigation of YSZ, Nd:Y2O3, Al2O3 nanopowder production by laser evaporation of oxide targets in a gas current are reported in present paper. For this purpose we used the pulse-periodical CO2 laser and the continuous fiber ytterbium laser with 550 W and 600 W radiation mean power accordingly. The powders obtained by these lasers, consisted of weakly agglomerated spherical nanopartices (≥ 99 wt%), and ≤ 1 wt% of micron sized particles (drops and target fragments). Nanoparticles from various oxides produced by CO2 laser in atmospheric pressure air had close average sizes (10ч16 nm). The productivity of nanopowder synthesis by CO2 laser from YSZ 1%Nd:Y2O3, 1%Nd:Y2O3, Al2O3, and CeGdO was 23 g/hour, 29 g/hour, 24 g/hour and 80 g/hour, respectively. Unlike CO2 laser the deep melting mode is realized during evaporation of 1%Nd:Y2O3 and Al2O3 targets by fiber laser. The crater depth increases up to 300-1000 μm in this mode. As a result, the target surface became very irregular and productivity of nanopowder synthesis was less, than in the case of CO2 laser. To reduce the effect of deep melting the evaporation of a target has been investigated experimentally and theoretically. As a result of our investigations we have obtained 1%Nd:Y2O3 nanopowder with specific surface of 70 m2/g and productivity of 23 g/hour at air pressure 70 kPa. © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:本文报道了通过激光蒸发气体流中的氧化物靶制备YSZ,Nd:Y2O3,Al2O3纳米粉的研究结果。为此,我们分别使用了脉冲周期CO2激光器和具有550 W和600 W辐射平均功率的连续光纤激光器。通过这些激光获得的粉末由弱团聚的球形纳米颗粒(≥99 wt%)和≤1 wt%的微米级颗粒(液滴和目标碎片)组成。在大气压力的空气中,由CO2激光产生的各种氧化物制成的纳米粒子的平均粒径接近(10ч16nm)。由YSZ 1%Nd:Y2O3、1%Nd:Y2O3,Al2O3和CeGdO的CO2激光合成纳米粉的生产率分别为23 g /小时,29 g /小时,24 g /小时和80 g /小时。与CO2激光器不同,在光纤激光器蒸发1%Nd:Y2O3和Al2O3靶材时实现了深度熔化模式。在此模式下,坑深增加至300-1000μm。结果,与CO 2激光器的情况相比,目标表面变得非常不规则并且纳米粉体合成的生产率较低。为了减少深度熔化的影响,已经在实验和理论上研究了靶的蒸发。作为我们研究的结果,我们获得了1%Nd:Y2O3纳米粉,在空气压力70 kPa下的比表面积为70 m2 / g,生产率为23 g /小时。 ©2013 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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