Mathematical model for ore particles movement along the vibrating table of a separator

V. Lapshin, N. Nemchinova, V. Myazin
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Abstract

Introduction. One of the vibration methods for processing loose finely dispersed mineral raw materials is the separation method on a vibrating surface. Separation occurs according to size, shape of particles, coefficient of friction, elasticity and other mechanical parameters of particles. The efficiency of the separation process depends on the correct choice of technological characteristics of the working equipment. To solve such problems, mechano-rheological models are widely used. The issues of rational construction of research models, based on the specific conditions of the considered dynamic processes, are important and relevant. Materials and methods of research. Identification of rational parameters and modes of operation of vibration equipment is carried out experimentally or by mathematical modeling of the vibration process of the interaction of particles of mineral raw materials with the vibrating body of the separator. Mathematical models are developed for the separated components of the original ore material, which allow studying the dynamics of the movement of particles of the material along the vibrating body of the separator, and as a result of the research, the most rational operating modes of the equipment are determined. Research results and discussion. The presented mechano-rheological system as a model of a material particle is designed to study the processes of interaction with the working body of the separator, a mathematical description of the model is given. The model makes it possible to study the influence of the mechanical properties of the material (elastic, dissipative, plastic) on the dynamics of the process of movement of a material particle along the working body of the separator. For different stages of particle motion, models of different levels of complexity are recommended, which greatly facilitates the solution of problems for the development of algorithms and software for the vibration process under study. This increases the efficiency of the practical application of mathematical models in determining the rational operating modes of the equipment and evaluating the effectiveness of the vibration separation process. Conclusion. To study the process of vibrational separation at various stages of the movement of particles of ore material, it is recommended to use mathematical models of different levels of complexity. A mathematical description of research models for various stages of the vibrational process is presented, the conditions for the transition between the stages of particle motion are given. Resume. Thus, the presented mathematical model makes it possible to study the dynamics of the movement of ore material along the working body of the separator, taking into account the main mechanical properties of the material. The use of the developed recommendations increases the efficiency of the practical application of mechanorheological models for research purposes.
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矿石颗粒沿分离器振动台运动的数学模型
介绍用于处理松散的精细分散的矿物原料的振动方法之一是在振动表面上的分离方法。分离根据颗粒的大小、形状、摩擦系数、弹性和其他机械参数而发生。分离过程的效率取决于工作设备的技术特性的正确选择。为了解决这些问题,机械流变模型被广泛使用。基于所考虑的动态过程的具体条件,合理构建研究模型的问题是重要和相关的。研究材料和方法。振动设备的合理参数和操作模式的识别是通过实验或通过对矿物原料颗粒与分离器振动体相互作用的振动过程进行数学建模来进行的。建立了原始矿石材料分离成分的数学模型,可以研究材料颗粒沿分离器振动体的运动动力学,并通过研究确定了设备最合理的操作模式。研究结果和讨论。设计了作为材料颗粒模型的机械流变系统,以研究与分离器工作体的相互作用过程,并对该模型进行了数学描述。该模型使研究材料的机械性能(弹性、耗散、塑性)对材料颗粒沿分离器工作体运动过程动力学的影响成为可能。对于粒子运动的不同阶段,建议使用不同复杂度的模型,这大大有助于解决所研究振动过程的算法和软件开发问题。这提高了数学模型在确定设备合理运行模式和评估振动分离过程有效性方面的实际应用效率。结论为了研究矿石颗粒运动各个阶段的振动分离过程,建议使用不同复杂程度的数学模型。给出了振动过程各个阶段研究模型的数学描述,给出了粒子运动阶段之间转换的条件。简历因此,所提出的数学模型使研究矿石材料沿分离器工作体的运动动力学成为可能,同时考虑了材料的主要力学性能。所制定的建议的使用提高了用于研究目的的机械流变模型的实际应用效率。
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来源期刊
Sustainable Development of Mountain Territories
Sustainable Development of Mountain Territories Social Sciences-Sociology and Political Science
CiteScore
2.40
自引率
0.00%
发文量
36
期刊介绍: International scientific journal "Sustainable development of mountain territories" covers fundamental and applied regional, national and international research and provides a platform to publish original full papers and related reviews in the following areas: engineering science and Earth science in the field of sustainable development of mountain territories. Main objectives of international scientific journal "Sustainable development of mountain territories" are: raising the level of professional scientific workers, teachers of higher educational institutions and scientific organizations; presentation of research results in the field of sustainable development of mountain areas on the technical aspects and Earth sciences, informing readers about the results of Russian and international scientific forums; improved review and editing of the articles submitted for publication; ensuring wide dissemination for the published articles in the international academic environment; encouraging dissemination and indexing of scientific works in various foreign key citation databases.
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