期刊文献+

磁筛应用于八台铁矿选矿厂的试验研究 被引量:3

Experimental Research of Magnetic Field Screening for Concentration Plant of Batai Iron Mine
下载PDF
导出
摘要 分别采取舞阳矿业有限责任公司八台铁矿选矿厂弱磁粗选精矿、高频细筛筛下产物及最终精矿样品进行实验室磁筛精选试验,结果显示:弱磁选粗精矿或高频细筛筛下产物隔除+0.3 mm粗颗粒后用磁筛进行1次精选,可直接获得铁品位、作业产率、铁作业回收率分别在66%、82%、94%以上的合格铁精矿;原最终精矿隔除+0.3 mm粗颗粒后用磁筛进行1次精选,铁品位可由65.5%左右提高到近68%。这说明磁筛若应用于八台铁矿选矿厂,将在简化流程、增产节能、提高铁精矿质量等方面取得显著成效。 Samples of the rough concentrate of low intensity magnetic separation, the products under high frequency fine sieve and the final concentrate from Concentration Plant of Batai Iron Mine of Wuyang Mining Company are taken to make laboratory experiment on magnetic field screening. The results showed that qualified iron concentrate with iron grade, productivity and iron recovery of above 66% , 82% and 94% was directly obtained by the process of one cleaning separa- tion with magnetic field screening after removing + 0. 3 mm rough particles of rough concentrate and the products under high frequency fine sieve. For the primary final concentrate, iron grade can be improved from 65.5% to about 68% through the method above. This indicated that the application of the magnetic field screening into Concentration Plant of Batai Iron Mine can reach remarkable effects on simplifying the process, increasing output and saving consumption, and improving the iron concentrate quality.
出处 《金属矿山》 CAS 北大核心 2013年第2期115-117,共3页 Metal Mine
关键词 八台铁矿选矿厂 磁筛 流程简化 增产节能 精矿提质 Concentration Plant of Batai Iron Mine, Magnetic field screening, Processing simplification, Output increasing and consumption saving, Quality increase of the concentrate
  • 相关文献

参考文献3

二级参考文献6

共引文献22

同被引文献29

  • 1李国强,孔亚男,张进秋,张建.基于偶极子理论的磁流变液流变特性模拟分析[J].装甲兵工程学院学报,2010,24(3):77-81. 被引量:3
  • 2Senkawa K,Nakai Y,Mishima F,et al.Measurement of the adhesion force between particles for high gradient magnetic separation of pneumatic conveyed powder products[J].Physica C,2011,471(21/22):1525-1529.
  • 3Smolkin M R,Smolkin R D.Calculation and analysis of the magnetic force acting on a particle in the magnetic field of separator:Analysis of the equations used in the magnetic methods of separation[J].Transactions on Magnetics,2006,42(11):3682-3693.
  • 4Bagster D F.The calculation of force on a weak magnetic particle in a magnetic field[J].International Journal of Mineral Processing,1987,20(1/2):1-15.
  • 5库建刚,陈辉煌,何逵.基于磁偶极子的强磁性矿粒在磁场中的动力学初步分析[J].金属矿山,2013(12):115-121.
  • 6Abraham F F.Functional dependence of drag coefficient of a sphere on Reynolds number[J].Physics of Fluids,1970,13(8):2194-2195.
  • 7Concha F,Almendra E R.Settling velocities of particulate systems,I.Settling velocities of individual spherical particles[J]. International Journal of Mineral Processing,1979,5(4):349-367.
  • 8Jolly M R,Carlson J D,Munoz B C,et al.The magnetic viscoelastic response of elastomer composites consisting of ferrous particles embedded in a polymer matrix[J].Journal of Intelligent Material Systems and Structures,1996(6):613-622.
  • 9陈炳炎,闫武.超声复合力场磁选机的研制[J].矿产综合利用,2008(1):47-49. 被引量:8
  • 10李海涛,彭向和,黄尚廉.基于偶极子理论的磁流变液链化机理模拟研究[J].功能材料,2008,39(6):902-904. 被引量:17

引证文献3

二级引证文献21

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部