Control of the size and compositional distributions in a milling process by using a reverse breakage matrix approach

Nemanja Bojanić, Aleksandar Fišteš, T. Došenović, A. Takaci, M. Brdar, K. Yoneda, D. Rakic
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Abstract

A method based on the reverse breakage matrix approach is proposed for controlling the effects that milling has on the particle size distribution and composition of the comminuted material. Applicability, possibilities, and limitations of the proposed method are tested on examples related to the process of wheat flour milling. It has been shown that the reverse matrix approach can be successfully used for defining the particle size distribution of the input material leading to the desired, predetermined particle size and compositional distribution in the output material. Moreover, we have illustrated that it is possible to simultaneously control both, input and output particle size distribution, together with the composition of the output material.
用反向破碎矩阵法控制铣削过程中尺寸和成分的分布
提出了一种基于反向破碎矩阵的方法来控制磨矿对粉碎物料粒度分布和组成的影响。通过与小麦粉制粉过程有关的实例,对所提出方法的适用性、可能性和局限性进行了测试。结果表明,逆矩阵法可以成功地用于确定输入材料的粒度分布,从而得到所需的、预定的输出材料的粒度和成分分布。此外,我们已经说明,可以同时控制两者,输入和输出粒度分布,以及输出材料的组成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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