Impact by the operating and structural parameters of a screen on the technological parameters of vibratory basalt sieving

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2023-06-30 DOI:10.33271/mining17.02.035
Z. Malanchuk, V. Moshynskyi, Yevhenii Malanchuk, V. Korniyenko, O. Vasylchuk, V. Zaiets, M. Kucheruk
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Abstract

Purpose is to identify a dependence of basalt raw material fine screening upon the operating and structural parameters of sieving equipment. Methods. The research results have been obtained relying upon comparative analysis of basalt raw material fine screening upon the operating and structural parameters of sieving equipment. In this regard, the analyzed grading efficiency characteristics were defined for three densities of basalt rock mass mined in open pits. They are γ = 1.4 g/сm3 for tuff; γ = 2.2 g/сm3 for lava-breccia; and γ = 2.6 g/сm3 for basalt. The rock mass components are extracted selectively and processed separately. Findings. Expediency of complex mining and processing of three basalt rock mass components (being tuff, lava-breccia, and basalt) as well as their selective treatment has been identified. Mathematical modelling has helped generate regression models of fine basalt raw material sieving upon the operating and structural parameters of a screen. The regression models as well as the represented calculation results are indicative of strong correlation between the efficiency of fine basalt raw material screening and the factors involved by the regression models (i.e. rock mass density; inclination angle of a disturbance force of a vibration exciter of a screen; inclination angle of a screen effector; mesh size; specific load on a screen; disturbance frequency of a screen drive; and a screen length). Originality. For the first time, dependencies of fine basalt raw material sieving efficiency upon the operating and structural parameters of a screen have been modelled mathematically. Based upon the multifactor experiment, ideas have been developed concerning the fine grading process; selection of boundaries of each parameter control; and determination of the efficiency as well as a law of changes in technological parameters while controlling them. Practical implications. Use of the findings will help make adequate solutions while selecting instrumental conditions of an operation schedule to prepare basalt raw material for its integrated processing.
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筛的操作和结构参数对玄武岩振动筛分工艺参数的影响
目的是确定玄武岩原料精细筛分对筛分设备的操作和结构参数的依赖性。方法。通过对玄武岩原料细筛设备的操作参数和结构参数的对比分析,得出了研究结果。在这方面,定义了露天开采的三种密度玄武岩岩体的分析分级效率特征。凝灰岩的γ=1.4 g/cm3;对于熔岩角砾岩,γ=2.2 g/cm3;玄武岩的γ=2.6 g/cm3。岩体成分被选择性地提取并单独处理。调查结果。已经确定了三种玄武岩岩体成分(凝灰岩、熔岩角砾岩和玄武岩)的复杂开采和加工及其选择性处理的便利性。数学建模有助于根据筛网的操作和结构参数生成细玄武岩原料筛分的回归模型。回归模型和所代表的计算结果表明,细玄武岩原料筛选的效率与回归模型所涉及的因素之间存在很强的相关性(即岩体密度;筛网激振器扰动力的倾角;筛网效应器的倾角;筛目尺寸;筛网上的特定载荷;筛网驱动器的扰动频率;以及筛网长度)。独创性首次对细玄武岩原材料筛分效率与筛网操作和结构参数的相关性进行了数学建模。在多因素实验的基础上,对精细分级过程提出了一些想法;选择每个参数控制的边界;以及在控制技术参数的同时确定效率以及技术参数的变化规律。实际意义。利用这些发现将有助于在选择操作计划的仪器条件以制备玄武岩原材料进行综合加工时制定充分的解决方案。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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