Preparation of spherical tungsten and titanium powders by RF induction plasma processing
来源期刊:Rare Metals2015年第6期
论文作者:Jian-Jun Wang Jun-Jie Hao Zhi-Meng Guo Yu-Ming Wang
文章页码:431 - 435
摘 要:Spherical tungsten and titanium powders were prepared by radio frequency inductively coupled plasma torch with irregular shaped tungsten and titanium hydride(Ti H2) powders, respectively. The effect of the feed rate on spheroidization efficiency was investigated. The phase composition, oxygen content, morphology, and particle size distribution of the powders before and after spheroidization were characterized by X-ray diffraction(XRD),nitrogen/oxygen analyzer, scanning electron microscopy(SEM), and laser micron sizer(LMS). The results show that both kinds of plasma-processed powders have good dispersity, smooth surface, and single phase. A maximum of 100 % of spheroidization efficiency can be achieved at a lower feed rate. The spherical titanium powder obtained by the plasma treatment consists of particles with mean diameter of 33.34 lm, while the mean diameter of original Ti H2 powder is 136.56 lm. The apparent density and flowability of the spherical tungsten powder are 6.3 g·cm-3 and 0.16 s·g-1, respectively. The apparent density and flowability of the spherical titanium powder are 2.8 g·cm-3 and 0.52 s·g-1, respectively. With the increase of the feed rate, the spheroidization efficiency of raw powders drops gradually.
Jian-Jun Wang1,Jun-Jie Hao1,Zhi-Meng Guo1,Yu-Ming Wang2
1. Institute for Advanced Materials and Technology, University of Science and Technology Beijing2. Department for Quality Supervision and Test, Shougang Jingtang United Iron & Steel Co., Ltd
摘 要:Spherical tungsten and titanium powders were prepared by radio frequency inductively coupled plasma torch with irregular shaped tungsten and titanium hydride(Ti H2) powders, respectively. The effect of the feed rate on spheroidization efficiency was investigated. The phase composition, oxygen content, morphology, and particle size distribution of the powders before and after spheroidization were characterized by X-ray diffraction(XRD),nitrogen/oxygen analyzer, scanning electron microscopy(SEM), and laser micron sizer(LMS). The results show that both kinds of plasma-processed powders have good dispersity, smooth surface, and single phase. A maximum of 100 % of spheroidization efficiency can be achieved at a lower feed rate. The spherical titanium powder obtained by the plasma treatment consists of particles with mean diameter of 33.34 lm, while the mean diameter of original Ti H2 powder is 136.56 lm. The apparent density and flowability of the spherical tungsten powder are 6.3 g·cm-3 and 0.16 s·g-1, respectively. The apparent density and flowability of the spherical titanium powder are 2.8 g·cm-3 and 0.52 s·g-1, respectively. With the increase of the feed rate, the spheroidization efficiency of raw powders drops gradually.
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