Study of the Relationships between Multi-Hole, Multi-Disc Mill Performance Parameters and Comminution Indicators

Author:

Kruszelnicka WeronikaORCID,Hlosta JakubORCID,Diviš JanORCID,Gierz ŁukaszORCID

Abstract

The knowledge of a grinder structure, its performance parameters and characteristics of biomaterials breakage are crucial for this research whose aim is to determine the dependencies between performance parameters and comminution indicators. The aim of this study is to investigate the relationships between multi-disc mill performance parameters such as discs angular speed, batch dosing speed and comminution characteristics: power consumption, specific energy consumption, throughput and size reduction ratio. To achieve these goals, an experiment was conducted on a five-disc mill with a special monitoring system. The research program was established, with disc angular speed at different configurations and different batch dosing speeds. The results show that power consumption, specific energy consumption and size reduction ratio depend on the total increase in angular speed of discs SΔω in such a way that an increase in SΔω causes an increase in the abovementioned comminution indicators. In turn, an increase in batch dosing speed W causes an increase in throughput. The fitting curves of comminution indicators in dependence of selected performance parameters are also presented in this study.

Funder

Ministerstwo Edukacji i Nauki

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference86 articles.

1. Energetyczno-Środowiskowe Problemy Rozdrabniania Biomateriałów;Kruszelnicka,2020

2. Wstęp Do Mechaniki Procesów Kruszenia;Zawada,1998

3. Impact of the Drying Temperature and Grinding Technique on Biomass Grindability

4. Wpływ rodzaju kruszarki oraz parametrów jej pracy na suchą granulację proszków

5. Empirical and scale-up modeling in stirred ball mills

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