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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >An appraisal of the energy-size reduction relationships for mill scale-up design
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An appraisal of the energy-size reduction relationships for mill scale-up design

机译:用于轧机扩大设计的能量大小减少关系的评估

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In this paper, several well-known energy-size reduction relationships have been analyzed using Kapur's similarity solution to the integro-differential equation of batch grinding. It has been shown that: (i) relationships proposed in terms of the energy actually utilized for breakage of particles, E, cannot be used to develop a practical energy-size reduction relationship as E is neither measurable nor it is found to be proportional to the measurable net energy input, E-n, (ii) the exponent of the characteristic particle size, (x) over bar, in the relationship between E-n and (x) over bar is same as the exponent of particle size in the expression for the specific breakage rate function, alpha, which is not a function of (x) over bar in the case of ball mills, (iii) alpha values of 0, 0.5 and 1 cannot be associated with the laws of Kick, Bond and Rittinger, respectively. Based on the results of this analysis, the empirical scale-up models proposed by Bond and Morrell have been modified by replacing the exponents of 80% passing sizes by a. Further investigations have been recommended for resolution of large differences in the energy estimates obtained from these models for materials characterized by grindabilty values less than 1.0 and greater than 3.0 g/rev. (C) 2018 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在本文中,使用Kapur的相似解分析了几种众所周知的能量尺寸减小关系,以对批量磨削的积分微分方程进行分析。已经表明:(i)根据实际用于破坏粒子的能量,E的关系不能用于开发实际的能量大小的减少关系,因为e既不是可测量的,也没有发现其成比例可测量的净能量输入,zh,(ii)在Z族和(x)之间的特征粒度,(x)上的指数,在z和(x)之间的关系中与特定的表达式中的粒度的指数相同破损率函数,α,在球磨机的情况下不是(x)的函数,(iii)0,0.5和1的α值分别与踢腿,键和钻孔器的定律相关联。基于该分析的结果,债券和摩尔尔提出的经验扩大模型通过替换80%通过尺寸的指数来修改。建议对从这些模型获得的能量估计的能量估计分辨出具有小于1.0,大于1.0且大于3.0g / ref的材料的能量估计的大差异进行了进一步的调查。 (c)2018年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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