The Influence of the Grinding Media Diameter on Grinding Efficiency in a Vibratory Ball Mill

被引:4
作者
Tomach, Pawel [1 ]
机构
[1] AGH Univ Krakow, Fac Mech Engn & Robot, Dept Machinery Engn & Transport, PL-30059 Krakow, Poland
关键词
raw materials; grinding process; vibratory mill; grinding media; very fine grinding; micro powders; DEM; PARTICLES; PERFORMANCE; KINETICS; SHAPES; ENERGY;
D O I
10.3390/ma17122924
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The grinding process plays a crucial role in industry, allowing for the reduction of particle sizes of raw materials and substances to the required fineness-either as a finished product or for further technological processes. The high demand for micro- and nanopowders or suspensions is associated with the high energy consumption of the milling process. Therefore, optimizing the milling process, including correctly selecting grinding media, is essential to reduce energy consumption. This article presents experimental studies of the grinding process of a model material (quartz sand) in a laboratory vibratory mill. Five sets of grinding media with different diameters were used in the research, and grinding was conducted for various durations. The studies showed that the vibratory grinding process is efficient for each set of grinding media and grinding durations. The research has shown that conducting studies on the proper selection of mills is beneficial, especially regarding very fine grinding of various materials. The study confirmed that properly selecting grinding media sets can significantly accelerate the grinding process. For the selected technological variant, it was demonstrated that using 15 mm grinding media, compared to 12 mm, resulted in a 22.5% reduction in grinding time to achieve a specified particle size class of 0-10 mu m.
引用
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页数:19
相关论文
共 61 条
[1]   Comparison of Pin Mill and Hammer Mill in the Fine Grinding of Sphagnum Moss [J].
Ammala, Ari .
ENERGIES, 2023, 16 (05)
[2]  
Andres K, 2010, J S AFR I MIN METALL, V110, P125
[3]  
[Anonymous], 2020, ISO 13320:2020
[4]   The wear mechanism of mill beaters for coal grinding made-up from high manganese cast steel [J].
Bembenek, Michal ;
Krawczyk, Janusz ;
Pancikiewicz, Krzysztof .
ENGINEERING FAILURE ANALYSIS, 2022, 142
[5]   Performance Comparison of the Vertical and Horizontal Oriented Stirred Mill: Pilot Scale IsaMill vs. Full-Scale HIGMill [J].
Can, Metin ;
Altun, Okay .
MINERALS, 2023, 13 (03)
[6]   Optimization of some parameters of stirred mill for ultra-fine grinding of refractory Au/Ag ores [J].
Celep, Oktay ;
Aslan, Nevzat ;
Alp, Ibrahim ;
Tasdemir, Gokhan .
POWDER TECHNOLOGY, 2011, 208 (01) :121-127
[7]   DEM study of the influences of the geometric and operational factors on the mechanical responses of an underwater mixing process [J].
Chen, Jian ;
Nishiura, Daisuke ;
Furuichi, Mikito .
POWDER TECHNOLOGY, 2021, 392 :251-263
[8]   Optimum choice of the make-up ball sizes for maximum throughput in tumbling ball mills [J].
Cho, Heechan ;
Kwon, Jihoe ;
Kim, Kihong ;
Mun, Myoungwook .
POWDER TECHNOLOGY, 2013, 246 :625-634
[9]  
Customizable, 2024, Grinding Solutions to Fit Any Mining Application
[10]  
Danielle C., 2017, World Acad. Sci. Eng. Technol. Int. J. Mech. Aerosp. Ind. Mechatron. Manuf. Eng, V11, P1727