Energy-size relationship of ore comminution in iron mine

被引:0
|
作者
Gan D. [1 ]
Gao F. [1 ]
Sun J. [2 ]
Zhao H. [1 ]
Gong L. [2 ]
机构
[1] College of Mining Engineering, North China University of Science and Technology, Tangshan, 063210, Hebei
[2] Mining Corporation of Shougang Group Co., Ltd., Qian'an, 064400, Hebei
关键词
Comminution stage; Comminution system; Iron ore; Model of comminution energy; Particle size; Specific energy;
D O I
10.11918/j.issn.0367-6234.201803071
中图分类号
学科分类号
摘要
All the comminution stages of iron ore from raw ore size to the concentrate size were taken as one comminution system to research the theoretical relationship between comminution energy and particle size. Firstly, the basic theories of relationship between comminution energy and particle size of ore were analyzed to establish a theoretical model of comminution energy of iron ore. Secondly, the change patterns of comminution energy were analyzed in site investigation, and particle size distribution characteristics in each comminution stage were analyzed in indoor experiments. Lastly, the change patterns of specific energy of the comminution system were analyzed with the method of numerical fitting, and the reliability of the theoretical model of comminution energy was verified with the data of the specific energy, characteristic size, and medium size of the iron ore in each comminution stage. Results showed that the comminution energy of iron ore increased exponentially, the distribution of comminution energy was unreasonable, and the product granularity was characterized by exponential distribution, polynomial function distribution, and Langmuir power function distribution in turn along with the alteration of comminution stage in the system. There was a negative correlation function between the specific energy of the comminution system and the particle size of ore. The change rate of specific energy of the comminution system turned into a turning point when the medium size was 12 mm or the characteristic size was 25 mm. The established theoretical model of comminution energy has larger range of particle size in energy calculation compared with classical models. It can be used to fit the function formulas between specific energy of stage comminution and the size of feed and product and provides theoretical basis for the calculation of comminution energy in iron mine. © 2019, Editorial Board of Journal of Harbin Institute of Technology. All right reserved.
引用
收藏
页码:163 / 170
页数:7
相关论文
共 23 条
  • [1] Zhang W., Shi B., Mu C., Experimental research on failure and energy dissipation law of coal under impact load, Journal of Mining & Safety Engineering, 33, 2, (2016)
  • [2] Guo L., Yang Y., Zhang D., Et al., Analysis on the fragmentation energy consumption of magnetite quartzite under impact loads, Metal Mine, 8, (2014)
  • [3] Tavares L.M., Energy absorbed in breakage of single particles in drop weight testing, Minerals Engineering, 12, 1, (1999)
  • [4] Hu Z., Zhuang Y., Cai T., Et al., Experimental study on energy consumption and particle size distribution of single particle coal under impact crushing, Journal of China Coal Society, 40, (2015)
  • [5] Buhl E., Sommer F., Poelchau M.H., Et al., Ejecta from experimental impact craters: particle size distribution and fragmentation energy, Icarus, 237, (2014)
  • [6] Saeidi F., Tavares L.M., Yahyaei M., Et al., A phenomenological model of single particle breakage as a multi-stage process, Minerals Engineering, 98, (2016)
  • [7] Stamboliadis T.H., A contribution to the relationship of energy and particle size in the comminution of brittle particulate materials, Minerals Engineering, 15, 10, (2002)
  • [8] Tsiboukis S.J., Study on the crushing and grinding of brittle materials, (1995)
  • [9] Liu X., Zhang M., Hu N., Calculation model of coal comminution energy consumption, Minerals Engineering, 92, (2016)
  • [10] Weerasekara N.S., Liu L.X., Powell M.S., Estimating energy in grinding using DEM modeling, Minerals Engineering, 85, (2016)