Determining the motion resistance force to belt on load bearing structure of a tubular belt conveyor

R. Kiriia, A. Smirnov, L. Novikov
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Abstract

The purpose of the work is to investigation of the influence of the main parameters of a tubular belt conveyor on the resistance of the belt movement on the idler of conveyor. Research methods . To solve these problems, methods of thin elastic shell theory and loose material mechanics were use. The results. The analysis of the design features of industrial conveyors shows that the resistance force to belt movement on tube conveyor idlers is greater than that of a belt conveyor with a trough belt, due to the influence of the resistance force component caused by the deformation of the cargo. The mathematical model of resistance to the movement of the belt on idlers tubular belt conveyor has been developing. The analytical dependence of the belt resistance forces on the idlers on the conveyor parameters, belt and cargo properties, as well as on the degree of belt filling with cargo was obtained. Results for the calculation of the resistance coefficient to belt movement as a function of the degree of filling at different belt tensions, roller radii and the coefficient of internal friction of the cargo are given. It found that with increasing degree of filling of tubular belt conveyor, belt tension and radius of rollers, coefficient of resistance to belt movement decreases, and with increasing coefficient of internal friction of bulk cargo and cylindrical stiffness of the belt, on the contrary, increases. Scientific novelty. Based on the theory of thin elastic cylindrical shells and loose material mechanics, a mathematical model of the resistance to belt movement on the idlers of a tubular belt conveyor is develop for the first time. Analytical dependencies of resistance force to belt movement on tube conveyor idlers on main parameters of conveyor, belt and bulk cargo properties are established. The practical significance. The results of the investigations make it possible, depending on the basic parameters of the conveyor, the properties of the belt and the bulk material to be transporting, to determine the resistance to belt movement on the idlers of a tubular belt conveyor. This reduces drive power by selecting the parameters of idlers and belt.
管状带式输送机承载结构对输送带运动阻力的确定
研究了管状带式输送机的主要参数对输送带在托辊上运动阻力的影响。研究方法。为了解决这些问题,采用了薄弹性壳理论和松散材料力学的方法。结果。通过对工业输送机设计特点的分析表明,由于货物变形引起的阻力分量的影响,管状输送机托辊对输送带运动的阻力大于带槽带的带式输送机。托辊筒状带式输送机输送带运动阻力的数学模型一直在研究中。得到了托辊输送带阻力与输送机参数、输送带和货物性质以及输送带填充程度的解析关系。给出了不同输送带张力、滚筒半径和货物内摩擦系数下输送带运动阻力系数随填充程度的函数计算结果。研究发现,随着管状带式输送机填充程度、输送带张力和托辊半径的增大,输送带运动阻力系数减小,而随着散货内摩擦系数和输送带圆柱刚度的增大,输送带运动阻力系数增大。科学的新奇。基于弹性圆柱薄壳理论和松散材料力学,首次建立了管状带式输送机托辊对输送带运动阻力的数学模型。建立了管状输送机托辊输送带运动阻力与输送机主要参数、输送带和散货特性的解析关系。现实意义。研究结果使得根据输送机的基本参数、输送带的性质和要输送的散装物料,确定管状带式输送机托辊对输送带运动的阻力成为可能。这通过选择惰轮和皮带的参数来降低驱动功率。
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