Tomach Paweł
AGH University of Krakow, Faculty of Mechanical Engineering and Robotics, Department of Machinery Engineering and Transport, 30-059 Kraków, Poland.
Materials (Basel). 2024 Jun 14;17(12):2924. doi: 10.3390/ma17122924.
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 μm.
研磨过程在工业中起着至关重要的作用,它能够将原材料和物质的颗粒尺寸减小到所需的细度——既可以作为成品,也可用于进一步的工艺流程。对微粉和纳米粉或悬浮液的高需求与研磨过程的高能耗相关。因此,优化研磨过程,包括正确选择研磨介质,对于降低能耗至关重要。本文介绍了在实验室振动磨中对模型材料(石英砂)研磨过程的实验研究。研究中使用了五组不同直径的研磨介质,并进行了不同时长的研磨。研究表明,振动研磨过程对于每组研磨介质和研磨时长都是有效的。研究表明,对磨机的正确选择进行研究是有益的,特别是对于各种材料的极细研磨。该研究证实,正确选择研磨介质组可以显著加速研磨过程。对于选定的工艺变体,结果表明,与使用12毫米研磨介质相比,使用15毫米研磨介质可使达到0-10μm特定粒度级别的研磨时间减少22.5%。