[1] 陈熙. 热等离子体传热与流动 [M]. 北京: 科学出版社, 2009. 353-378.
[2] Boulos M I, Fauchais P, Pfender E. Thermal plasmas: fundamentals and applications [M]. New York, USA: Plenum Publishing Corporation.1994.
[3] Jiang X L, Boulous M. Induction plasma spheroidization of tungsten and molybdenum powders [J]. Trans. Noferrous Met. Soc. China, 2006, 16(1): 13-17.
[4] Maher Y, Boulos I. The role of transport phenomena and modeling in the development of thermal plasma technology [J]. Plasma Chem Plasma Process, 2016, 36: 3–28.
[5] Sangsun Yang, Ji-Na Gwak, Tae-Soo Lim, et al. Prepara- tion of spherical titanium powders from polygonal titanium hydride powders by radio frequency plasma treatment [J]. Materials Transactions, 2013, 54(12): 2313-2316.
[6] Colombo V, Ghedini E, Gherardi M, et al. A two- dimensional nodal model with turbulent effects for the synthesis of Si nano-particles by inductively coupled thermal plasmas [J]. Plasma Sources Science & Technology, 2012, 21(21): 025001.
[7] Sang Min Ko, Sang Man Koo, Woo S C, et al. Synthesis of SiC nano-powder from organic precursors using RF inductively coupled thermal plasma [J]. Ceramics International, 2012, 38(3): 1959-1963.
[8] Laha T, Balani K, Agrwal A, et al. Synthesis of nanostruc-tured spherical aluminum oxide powders by plasma engineering [J]. Metallurgical and Materials Tran- sactions A, 36(2): 301-309.
[9] Guo J Y, Fan X B, Richard D, et al. Development of nanopowder synthesis using induction plasma [J]. Plasma Science and Technology, 2010, 12(2): 188-199.
[10] 古忠涛, 叶高英, 刘川东, 等. 射频等离子体制备球形钨粉研究 [J]. 核聚变与等离子体物理, 2010, 30(2): 178-182.
[11] 古忠涛, 叶高英, 刘川东, 等. 射频感应等离子体制备球形Ti粉的工艺 [J]. 核动力工程, 2010, 31(1): 13-17.
[12] 古忠涛, 叶高英, 刘川东, 等. 射频等离子体球化钛粉的工艺研究 [J]. 粉末冶金技术, 2010, 28(2): 120-123.
[13] 白柳杨, 金化成, 袁方利, 等. 高频感应热等离子体在微细球形粉体材料制备中的应用 [J]. 高电压技术, 2013, 39(7): 1577-1583.
[14] Jiang X L, Boulous M. Induction plasma spheroidization of tungsten and molybdenum powders [J]. Trans. Noferrous Met. Soc. China, 2006, 16(1): 13-17.
[15] 梁栋, 侯击波, 殷涛, 等. 感应等离子工艺参数对制备电容器级钽粉性能的影响 [J]. 兵器材料科学与工程, 2010, 33(3): 46-50. |