MAGNETIC FIELD DISTRIBUTION IN WORKING SPACE OF HIGH INTENSITY AND HIGH GRADIENT MAGNETIC SEPARATORS.

被引:0
|
作者
Nipl, Krystyna
Brozek, Marian
Nipl, Ryszard
机构
来源
Archiwum Gornictwa | 1981年 / 26卷 / 03期
关键词
D O I
暂无
中图分类号
学科分类号
摘要
This paper deals with the problems involved in finding the magnetic field and magnetic force distribution acting in the working spaces of high-intensity and high-gradient magnetic separators. The working space of these separators is formed by ferromagnetic variform inserts (balls, furrowed plates), depending on the design of the separator. Calculation of the magnetic field distribution for a large aggregation of balls is extremely difficult, owing to the stochastic nature of the arrangement. In cases where the working space is filled with furrowed plates it is possible to calculate the magnetic force distribution by means of conformal mappings. For two infinite and isolated wedge spaces the magnetic field distribution is calculated by means of the Schwarz-Christoffel formula for the complex potential. For a system of spatially bounded wedges, using an analogous mathematical formalism, a formula for the complex potential is obtained in terms of Jacobi elliptic functions.
引用
收藏
页码:421 / 434
相关论文
共 50 条
  • [21] High gradient magnetic separation in centrifugal field
    Chen, Luzheng
    Zeng, Jianwu
    Guan, Changping
    Zhang, Huifen
    Yang, Ruoyu
    MINERALS ENGINEERING, 2015, 78 : 122 - 127
  • [22] HIGH MAGNETIC FIELD GRADIENT FOR ELECTRON MICROSCOPY
    DIETRICH, I
    WEYL, R
    ZERBST, H
    CRYOGENICS, 1967, 7 (03) : 178 - &
  • [23] EVALUATION OF THE NEW HIGH EFFICIENT AIR SEPARATORS.
    Cleemann, J.O.
    Zement-Kalk-Gips, Edition B, 1986, 39 (06): : 295 - 304
  • [24] Retention of ions in a magnetic chromatograph using high-intensity and high-gradient magnetic fields
    Mitsuhashi, K
    Yoshizaki, R
    Ohara, T
    Matsumoto, F
    Nagai, H
    Wada, H
    SEPARATION SCIENCE AND TECHNOLOGY, 2002, 37 (16) : 3635 - 3645
  • [25] Developing high gradient magnetic separators for greener production: Principles, design, and optimization
    Lin, Hanyu
    Li, Xin
    Lei, Zhongyun
    Ku, Jiangang
    Wang, Zhaolian
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2023, 587
  • [26] Effect of magnetic field orientation on high gradient magnetic separation performance
    Chen, Luzheng
    MINERALS ENGINEERING, 2011, 24 (01) : 88 - 90
  • [27] Influence of process parameters of dry high intensity magnetic separators on separation of hematite
    Tripathy, Sunil Kumar
    Singh, Veerendra
    Murthy, Y. Rama
    Banerjee, P. K.
    Suresh, Nikkam
    INTERNATIONAL JOURNAL OF MINERAL PROCESSING, 2017, 160 : 16 - 31
  • [28] Improving the quality of Tirschenreuth pegmatite with the use of high-intensity magnetic separators
    Dorschner, U
    Plescher, C
    CFI-CERAMIC FORUM INTERNATIONAL, 2001, 78 (11-12): : E26 - +
  • [29] Simulation Study on Magnetic Field Characteristics of High Magnetic Field Intensity Permanent Magnet Magnetic Filter
    Jiao, Hongguang
    Liu, Peng
    Tie, Zhanxu
    MANUFACTURING SCIENCE AND ENGINEERING, PTS 1-5, 2010, 97-101 : 2622 - +
  • [30] Droplet Oscillations in High Gradient Static Magnetic Field
    Bojarevics, V.
    Pericleous, K.
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2009, 21 (1-2) : 119 - 122