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多盘磨的能量相关粒度分布模型

Energy-Dependent Particle Size Distribution Models for Multi-Disc Mill.

作者信息

Kruszelnicka Weronika, Opielak Marek, Ambrose Kingsly, Pukalskas Saugirdas, Tomporowski Andrzej, Walichnowska Patrycja

机构信息

Department of Machines and Technical Systems, Faculty of Mechanical Engineering, Bydgoszcz University of Science and Technology, Al. Prof. S. Kaliskiego 7, 85-796 Bydgoszcz, Poland.

Department of Agricultural & Biological Engineering, Purdue University, 225 S. University St., West Lafayette, IN 47907, USA.

出版信息

Materials (Basel). 2022 Sep 1;15(17):6067. doi: 10.3390/ma15176067.

Abstract

Comminution is important in the processing of biological materials, such as cereal grains, wood biomass, and food waste. The most popular biomaterial grinders are hammer and roller mills. However, the grinders with great potential in the processing of biomass are mills that use cutting, e.g., disc mills. When it comes to single-disc and multi-disc grinders, there are not many studies describing the relationships between energy, motion, material, and processing or describing the effect of grinding, meaning the size distribution of a product. The relationship between the energy and size reduction ratio of disc-type grinder designs has also not been sufficiently explored. The purpose of this paper was to develop models for the particle size distribution of the ground product in multi-disc mills depending on the variable process parameters, i.e., disc rotational velocity and, consequently, power consumption, and the relationship between the grinding energy and the shape of graining curves, which would help predict the product size reduction ratio for these machines. The experiment was performed using a five-disc mill, assuming the angular velocity of the grinder discs was variable. Power consumption, product particle size, and specific comminution energy were recorded during the tests. The Rosin-Rammler-Sperling-Bennet (RRSB) distribution curves were established for the ground samples, and the relationships between distribution coefficients and the average angular velocity of grinder discs, power consumption, and specific comminution energy were determined. The tests showed that the specific comminution energy increases as the size reduction ratio increases. It was also demonstrated that the RRSB distribution coefficients could be represented by the functions of angular velocities, power consumption, and specific comminution energy. The developed models will be a source of information for numerical modelling of comminution processes.

摘要

粉碎在生物材料加工中很重要,如谷物、木质生物质和食物垃圾。最常见的生物材料研磨机是锤磨机和辊磨机。然而,在生物质加工中具有巨大潜力的研磨机是采用切割方式的磨机,如盘磨机。对于单盘和多盘研磨机,描述能量、运动、物料与加工之间关系或描述研磨效果(即产品粒度分布)的研究并不多。盘式研磨机设计中能量与粒度减小率之间的关系也尚未得到充分探索。本文的目的是根据可变工艺参数,即盘的转速以及由此产生的功耗,建立多盘磨机中研磨产品粒度分布的模型,以及研磨能量与粒度曲线形状之间的关系,这将有助于预测这些机器的产品粒度减小率。实验使用了一台五盘磨机,假设研磨盘的角速度是可变的。在测试过程中记录了功耗、产品粒度和比粉碎能量。为研磨后的样品建立了罗辛 - 拉姆勒 - 斯珀林 - 贝内特(RRSB)分布曲线,并确定了分布系数与研磨盘平均角速度、功耗和比粉碎能量之间的关系。测试表明,比粉碎能量随着粒度减小率的增加而增加。还证明了RRSB分布系数可以用角速度、功耗和比粉碎能量的函数来表示。所开发的模型将为粉碎过程的数值模拟提供信息来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65cf/9457795/66d856ee4fc8/materials-15-06067-g0A1.jpg

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