JUSTIFICATION OF TRANSPORT PARAMETERS AND MODELING OF THE PROCESS OF DESTRUCTION OF THE ELASTIC-PLASTIC ENVIRONMENT

R. Ignatyuk, O. Ryzhyi, L. Serilko, Oleksandr Stadnyk, D. Serilko
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Abstract

Purpose. The substantiation of the mathematical model of mechanical deformation of the elastic-plastic medium and the modeling of the transport process of the expansion assemblies. Methodology. Mathematical and theoretical studies were based on the fundamental theory of continuum mechanics and general positions of engineering mechanics. Analytical and graphical analysis of mathematical models carried out on a PC in a specialized software complex. Results. In the current conditions of economic development of the country, considerable attention should be paid to the development and modernization of certain sectors of the economy. Significant amounts of work, which are accompanied by the development of soil of different properties, which can be defined as an elastic-plastic material. These studies will solve a number of problems that are acute not only in agriculture but also in construction, in the open pit mining, reclamation, one of which is an imperfect process of loosening the soil during its cultivation. Therefore, the urgent problem is to establish rational parameters of the transport surface of the unit for loosening the elastic-plastic material. The developed mathematical model allows determining the emerging stress, which in turn determines the boundary of the destruction of the elastic-plastic material. In the design of lining assemblies, it is advisable to have a radius of the outlet section R = 0.18 m or more. Originality. The mathematical models for the process of destruction of elastic-plastic material and forecasting of optimal transport parameters for designing of expansion assemblies are obtained. Practical value. The developed mathematical model will provide an improvement in the process of loosening elastic-plastic material, and engineering calculations during the design of the rutter can prevent unwarranted increase in resistance, with displaced materials on the cutting surface. References 10, figures 8.
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输运参数的确定及弹塑性环境破坏过程的建模
目的。弹塑性介质力学变形数学模型的建立及膨胀件输运过程的建模。方法。数学和理论研究是基于连续介质力学的基本理论和工程力学的一般立场。在一个专门的软件复合体中,在PC上对数学模型进行分析和图形化分析。结果。在我国目前的经济发展条件下,应相当重视某些经济部门的发展和现代化。大量的工作,这是伴随着不同性质的土壤的发展,它可以被定义为弹塑性材料。这些研究将解决许多问题,不仅是在农业,而且在建设,露天开采,复垦,其中一个是不完善的过程中松动的土壤。因此,迫切需要解决的问题是建立合理的单元输送面参数,使弹塑性材料松动。所开发的数学模型可以确定出现的应力,从而确定弹塑性材料的破坏边界。在衬里组件的设计中,建议出口截面半径R = 0.18 m或更大。创意。建立了弹塑性材料破坏过程的数学模型和膨胀件设计中最优输运参数的预测。实用价值。所建立的数学模型将为弹塑性材料的松动过程提供改进,并且在车辙设计过程中的工程计算可以防止不必要的阻力增加,在切割表面上有位移的材料。参考文献10,图8。
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