Журналы →  Obogashchenie Rud →  2017 →  №3 →  Назад

ORE PREPARATION
Название The industrial tests with grinding balls of increased hardness in ferruginous quartzite grinding
DOI 10.17580/or.2017.03.03
Автор Serov A. I., Smyrnov Y. N., Skliar V. A., Belevitin V. A.
Информация об авторе

PJSC Donetsk Metal Rolling Plant (Donetsk, Ukraine):

Serov A. I., Chief Engineer

 

Ugarov Stary Oskol Technological Institute, National University of Science and Technology «MISiS» (Stary Oskol, Russia):
Smyrnov Y. N., Professor, Doctor of Engineering Sciences, en_smirnov@i.ua
Skliar V. A., Associate Professor, Candidate of Engineering Sciences

 

South Ural State Humanitarian Pedagogical University (Chelyabinsk, Russia):
Belevitin V. A., Professor, Doctor of Engineering Sciences

Реферат

The full-scale tests results performed with a view to determine grinding balls hardness and diameter effect upon their specific consumption and ferrous quartzites grinding process efficiency are presented. The studies were conducted at the Processing Plants of the Yuzhny Ore Mining and Processing Complex in mills of drum type in accordance with the specifically developed methodology. 30-mm diameter grinding balls of hardness category 3, as well as 40-mm diameter grinding balls of hardness category 4, produced at the Donetsk Metalworks ball-rolling mill were used as the test samples. 40-mm diameter grinding balls of hardness category 3 from other producers were used as reference specimens. As a result of the check measurements, it was established that grinding balls are uniformly worn and retain spherical shape, which has a positive effect on grinding process efficiency and consumption of grinding balls. The obtained results indicate that the application of 30-mm diameter grinding balls of hardness category 3 increases grinding process efficiency by 1.37 %, but at the same time, consumption of balls per one ton of concentrate is increased by 1.5%. If 40-mm diameter grinding balls of hardness category 4 are used, grinding efficiency is increased by 3.1 % and balls consumption per ton of concentrate is decreased by 8.83 % in comparison with the reference case. With that, the key production indicators and the produced concentrate grade remained at the same level. Thus, the results of the conducted industrial tests corroborated the cost effectiveness of the application of grinding balls of higher hardness category, in particular, 40-mm diameter grinding balls of hardness category 4, produced at the Donetsk Metalworks.

Ключевые слова Grinding, grinding ball, drum mill, hardness category, diameter, ferruginous quartzites, specific consumption
Библиографический список

1. Overview of world market of iron ore raw materials. Metall-Kur'er. 2016. November–December. pp. 4–5.
2. Tavares L. M., Faria P., Rajamani R. Population balance model approach to ball mill optimization in iron ore grinding. 27th IMPC. Santiago, 2014. Chap. 10. pp. 1–6.
3. Vdovin K. N., Feoktistov N. A., Abenova M. B., Kulikov V. D., Kondratiev I. S. Quality of grinding balls produced by different methods. Teoriya i Tekhnologiya Metallurgicheskogo Proizvodstva. 2015. No. 1 (16). pp.78–81.
4. Zhu D.-Q., Wang H., Pan J., Yang C.-C. Influence of mechanical activation on acid leaching dephosphorization of high-phosphorus iron ore concentrates. Journal of Iron and Steel Research International. 2016. Vol. 23 (7). pp. 661–668.
5. Barani K., Balochi H. A. Comparative study on the effect of using conventional and high pressure grinding rolls crushing on the ball mill grinding kinetics of an iron ore. Physicochemical Problems of Mineral Processing. 2016. Vol. 52 (2). pp. 920–931.
6. Kalashnikov V. A., Golovko L. G., Afanasyev E. S. Ball drum mills rubber liner system. Obogashchenie Rud. 2016. No. 1. pp. 60–63.
7. Akbarinasab A., Sam A., Amani M., Bazmandeh M. Optimization of ball mill and magnetic separators at 4th Iron ore production plant in Golgohar mining and industrial company. 27th IMPC. Santiago, 2014. Chap. 18. pp. 40–46.
8. Kuzmin S. O. The influence of thermo-hardening mode on volumetric wear resistance of grinding balls made of low-alloyed steels. Vestnik Priazovskogo Gosudarstvennogo Tekhnicheskogo Universiteta. 2011. No. 23. pp. 117–126.
9. Artes A. E., Tretyukhin V. V. Grinding balls production improving. Quality and innovation. Kompetentnost. 2014. Vol. 3. pp. 50–53.
10. Redkin G. N., Dyatlova S. F., Igoshin G. I., Gavrilets M. G. Industrial testing of grinding balls of advanced heat treatment. Gornyi Zhurnal. 1983. No. 4. p. 61.
11. Savenko V. Ya., Gorbatov V. I., Varbarov V. L. et al. New technology of hardening heat treatment of grinding balls in the mill flow. Stal. 1986. No. 11. pp. 57–59.
12. Hebbar R. Investigation on grinding wear behaviour of austempered ductile iron as media material during comminution of iron ore in ball mills. Transactions of the Indian Institute of Metals. 2011. Vol. 64 (3). pp. 265–269.
13. Raghavendra H. Grinding wear behaviour of stepped austempered ductile iron as media material during comminution of iron ore in ball mills. AIP Conference Proceedings. Melville, 2010. pp. 1341–1346.
14. Balakhnina E. E. Choosing rational parameters of the drum mill in terms of energy consumption for grinding. Gornyy Informatsionno-analiticheskiy Byulleten. 2008. No. 1. pp. 347–352.
15. Videla Á., Schneider C. L., Mazzinghy D., Toro H., Cabello J. F. Evaluation of media size on the regrinding efficiency of an itabirite iron ore. 27th IMPC. Santiago, 2014. Chap. 9. pp. 206–212.
16. Kozlovskiy V. I., Vaytekhovich P. E., Kamlyuk T. V. Influence of grinding media size on the efficiency of material dispersion in a ball mill with agitator. Trudy BGTU. Ser. 3: Khimiya i Tekhnologiya Neorganicheskikh Veshchestv. 2016. No. 3 (185). pp.136–141.
17. Malyshev V. P., Turdukozhayeva A. M., Kaykenov D. A. Probabilistic model of wet grinding process in ball mill. Obogashchenie Rud. 2013. No. 1. pp. 27–30.
18. Lam M. M., Serov A. I., Smirnov E. N., Bazarova G. S. Mastering the production of 40- and 60-mm-diam. grinding balls in hardness classes III and IV at the Donetsk Metal-rolling Plant. Metallurgist. 2016. Vol. 60. pp. 1–7.

Language of full-text русский
Полный текст статьи Получить
Назад