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Spherical submicron-size copper powders coagulated from a vapor phase in RF induction thermal plasma

机译:在射频感应热等离子体中从气相凝结的球形亚微米级铜粉

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Spherical submicron-sized powder of copper was synthesized through condensation from a vapor phase with a significantly high degree of supersaturation in thermal plasma. The degree of supersaturation was increased by the relatively high feed rate of raw copper powder. A high concentration of metal vapor was attained by using copper powder in Ar-H_2 plasma, and relatively large particles of up to 0.1 μm in diameter were prepared. The powder feed rate, reactor pressure and gas flow rate of hydrogen were varied to examine their effects on the evaporation of the raw powder. Particle size and its distribution in the powder sample were evaluated by image analysis. The total amount of evaporated raw powder depended on the powder feed rate, the reactor pressure and hydrogen flow rate. The copper vapor concentration increased in proportion to the total amount of evaporation. Particle growth subsequently took place through heterogeneous condensation to form submicron-sized particles.
机译:球形亚微米尺寸的铜粉是通过在热等离子体中由具有很高过饱和度的气相冷凝而合成的。过饱和度由于原料铜粉的较高进料速度而增加。通过在Ar-H_2等离子体中使用铜粉获得高浓度的金属蒸气,并制备了直径最大为0.1μm的相对较大的颗粒。改变粉末的进料速率,反应器压力和氢气的气体流速以检查它们对原料粉末的蒸发的影响。通过图像分析评价粉末样品中的粒度及其分布。蒸发的原始粉末的总量取决于粉末进料速率,反应器压力和氢气流速。铜蒸气浓度与蒸发总量成比例地增加。随后,颗粒生长通过非均相冷凝形成亚微米级颗粒。

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