DETERMINATION OF THE CHANGE OF THE DESIGN POSITION OF THE PROFILE OF THE BELT CONVEYOR ON THE LOAD OF THE ROLLER BEARINGS

O. Danilin, S. Zaichenko, S. Shevchuk, N. Jukova, Ivan Pasichniuk
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Abstract

The article attempts to establish the basic patterns in the formation of loads in the structure of the conveyor frame due to changes in the design position of the constituent elements based on analytical calculations. The amortization replacement of rollers and the establishment of a change in the projected resource caused the change in the design position.The aim of the work is to study the interaction of the elements of the belt conveyor on the convex region of the profile when the design position changes and to determine the change in the resource of the roller support elements. The purpose of the work is formulated from the analysis of unplanned stops and premature replacement of conveyor elements, in particular conveyor rollers, on the convex region of the profile.To achieve this goal the influence of the geometric parameters of the convex section of the belt conveyor profile on the force interaction of the belt and roller supports was considered, and the change in the resource of the roller bearings was determined.To characterize the geometric parameters of the convex section of the belt conveyor, the following were selected: the number of roller supports, the distance between the roller supports, the radius of curvature of the conveyor profile, the angle of the curved section. The mathematical model is based on the belt equilibrium equation, which contains the tension forces of the conveyor belt and the forces from the action of roller supports. Particular attention is paid to establishing the effect of changing the geometric parameters of the convex section on the roller bearing life. It has been established that a decrease in the radius of the transitional convex section as a result of a change in the initial design position by 2.4 times leads to an increase in the force acting on the roller support by 161%. It was found that the increase in force is the reason for the rapid exit from the operational state of the rolling bearings of the roller bearings, as evidenced by the intensive drop in the resource of the rollers (18 times).The proposed algorithm for determining the main parameters of the force interaction of the elements of the belt conveyor on the convex region of the profile will make it possible to predict the resource and prevent the conveyor from leaving the premature operational state.
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确定带式输送机外形设计位置的变化对滚子轴承载荷的影响
本文试图在解析计算的基础上,建立由于组成单元的设计位置变化而导致的输送机框架结构中载荷形成的基本规律。滚子的摊销更换和投影资源变更的建立引起了设计位置的变更。研究了当设计位置发生变化时,带式输送机各单元在型材凸区上的相互作用,确定托辊支撑单元资源的变化情况。这项工作的目的是从分析非计划停止和过早更换输送机元件,特别是输送机滚筒,在轮廓的凸区域制定的。为实现这一目标,考虑了带式输送机轮廓凸截面几何参数对带式输送机与托辊支承力相互作用的影响,确定了托辊支承资源的变化。为了表征带式输送机凸截面的几何参数,选择了以下参数:托辊支承的个数、托辊支承之间的距离、输送机轮廓的曲率半径、弯曲截面的角度。该数学模型基于输送带平衡方程,该方程包含输送带的张力和托辊支承作用的力。特别注意建立改变凸截面几何参数对滚子轴承寿命的影响。结果表明,当初始设计位置改变2.4倍时,过渡凸截面半径减小,作用在滚子支座上的力增加161%。结果发现,力的增加是滚子轴承滚动轴承快速退出运行状态的原因,滚子资源的密集下降(18倍)证明了这一点。本文提出的算法确定带式输送机各部件在型材凸区受力相互作用的主要参数,使资源预测成为可能,防止输送机过早离开运行状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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