Mathematical model of electromagnetic elimination in tubule with high frequency magnetic field

被引:2
|
作者
郭庆涛 [1 ]
金俊泽 [1 ]
李廷举 [1 ]
王同敏 [2 ]
张琦 [1 ]
曹志强 [1 ]
机构
[1] State Key Laboratory of Materials Modification by Laser,Ion and Electron Beams,School of Materials Science and Engineering,Dalian University of Technology,Dalian 116024,China
[2] State Key Laboratory of Materials Modification by Laser,Ion and Electron Beams,School of Materials Science and Engineering,Dalia n University of Technology,Dalian 116024,China
基金
中国国家自然科学基金;
关键词
electromagnetic elimination; non-metallic inclusions; elimination time; elimination efficiency;
D O I
暂无
中图分类号
TG115 [金属的分析试验(金属材料试验)];
学科分类号
摘要
In order to find the ways to improve the elimination efficiency with high frequency magnetic field, a mathematical model of electromagnetic elimination (EME) in the tubule with high frequency magnetic field was set up. The calculated results show that by ignoring the flow of molten metal, when the surface magnetic induction intensity of the metal (B0) is 0.03 T and the diameter of the tubule is 8 mm, the non-metallic inclusions with 30 μm diameter can be wiped off in 7 s from the center of the molten aluminum, whereas the elimination time of the 5 μm non-metallic inclusions is more than 240 s. When B0 is 0.03 T, the diameter of the tubule is 8 mm and elimination time is more than 30 s, the elimination efficiency of 5μm, 10 μm and 30 μm non-metallic inclusions is about 60%, 90% and 100%, respectively, the elimination efficiency increases with the decreasing diameter of the tubule. It can be concluded that increasing the magnetic induction intensity or decreasing the diameter of the tubule can decrease the elimination time and improve the elimination efficiency in EME with high frequency magnetic field.
引用
收藏
页码:47 / 51
页数:5
相关论文
共 50 条
  • [1] Mathematical model of electromagnetic elimination in tubule with high frequency magnetic field
    Guo Qing-Tao
    Jin Jun-ze
    Li Ting-ju
    Wang Tong-min
    Zhang Qi
    Cao Zhi-qiang
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2006, 16 (SUPPL.): : S47 - S51
  • [2] Mathematical model of body force in electromagnetic purification at magnetic field of high frequency
    Dalian University of Technology, Dalian 116024, China
    Xiyou Jinshu Cailiao Yu Gongcheng, 2007, 5 (849-852):
  • [3] Mathematical model of body force in electromagnetic purification at magnetic field of high frequency
    Guo Qingtao
    Jin Junze
    Li Tingju
    RARE METAL MATERIALS AND ENGINEERING, 2007, 36 (05) : 849 - 852
  • [4] Effect of turbulent flow on electromagnetic elimination with high frequency magnetic field
    郭庆涛
    李廷举
    王同敏
    金俊泽
    曹志强
    张琦
    Transactions of Nonferrous Metals Society of China, 2006, (05) : 1141 - 1147
  • [5] Effect of turbulent flow on electromagnetic elimination with high frequency magnetic field
    Guo Qing-tao
    Li Ting-ju
    Wang Tong-min
    Jin Jun-ze
    Cao Zhi-qiang
    Zhang Qi
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2006, 16 (05) : 1141 - 1147
  • [6] A Mathematical Model of Magnetic Ring Based on High Frequency Characteristics
    Lv, Jiandang
    Liu, Bin
    Huang, Baoming
    Ma, Chi
    Wang, Shengli
    Li, Jiangtao
    PROCEEDINGS OF 2023 INTERNATIONAL CONFERENCE ON WIRELESS POWER TRANSFER, VOL 4, ICWPT 2023, 2024, 1161 : 90 - 98
  • [7] Mathematical Model of High-Frequency Wave Electromagnetic Processes in Power Transformers
    Seheda, Mykhailo
    Gogolyuk, Petro
    2019 IEEE 20TH INTERNATIONAL CONFERENCE ON COMPUTATIONAL PROBLEMS OF ELECTRICAL ENGINEERING (CPEE), 2019, : 186 - 189
  • [8] Electromagnetic control of the meniscus shape during casting in a high frequency magnetic field
    Negrini, F
    Fabbri, M
    Zuccarini, M
    Takeuchi, E
    Tani, M
    ENERGY CONVERSION AND MANAGEMENT, 2000, 41 (15) : 1687 - 1701
  • [9] A MATHEMATICAL MODEL FOR AN HOURGLASS MAGNETIC FIELD
    Ewertowski, Bartek
    Basu, Shantanu
    ASTROPHYSICAL JOURNAL, 2013, 767 (01):
  • [10] Electromagnetic Field Mathematical Model to Control the Magnetorheological Damper
    Gordeev, B. A.
    Okhulkov, S. N.
    Plekhov, A. S.
    Yu, Titov D.
    Chernov, E. A.
    2017 INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING, APPLICATIONS AND MANUFACTURING (ICIEAM), 2017,