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The Indentation Rolling Resistance in Belt Conveyors: A Model for the Viscoelastic Friction

机译:带式输送机的压痕滚动阻力:粘弹性摩擦模型

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In this paper, we study the steady-state rolling contact of a linear viscoelastic layer of finite thickness and a rigid indenter made of a periodic array of equally spaced rigid cylinders. The viscoelastic contact model is derived by means of Green’s function approach, which allows solving the contact problem with the sliding velocity as a control parameter. The contact problem is solved by means of an accurate numerical procedure developed for general two-dimensional contact geometries. The effect of geometrical quantities (layer thickness, cylinders radii, and cylinders spacing), material properties (viscoelastic moduli, relaxation time) and operative conditions (load, velocity) are all investigated. Physical quantities typical of contact problems (contact areas, deformed profiles, etc.) are calculated and discussed. Special emphasis is dedicated to the viscoelastic friction force coefficient and to the energy dissipated per unit time. The discussion is focused on the role played by the deformation localized at the contact spots and the one in the bulk of the thin layer, due to layer bending. The model is proposed as an accurate solution for engineering applications such as belt conveyors, in which the energy dissipated on the rolling contact of idle rollers can, in some cases, be by far the most important contribution to their energy consumption.
机译:在本文中,我们研究了有限厚度的线性粘弹性层和由周期性排列的等间隔的刚性圆柱体制成的刚性压头的稳态滚动接触。粘弹性接触模型是通过格林函数方法导出的,该方法可以解决以滑动速度为控制参数的接触问题。接触问题通过针对一般二维接触几何形状开发的精确数值程序解决。研究了几何量(层厚度,圆柱半径和圆柱间距),材料特性(粘弹性模量,松弛时间)和操作条件(载荷,速度)的影响。计算并讨论了接触问题的典型物理量(接触面积,变形轮廓等)。特别强调粘弹性摩擦力系数和每单位时间消耗的能量。讨论集中在局部接触变形和由于薄层弯曲而在整个薄层中的变形所起的作用。该模型被建议作为诸如皮带输送机之类的工程应用的精确解决方案,其中,在某些情况下,空转辊的滚动接触上耗散的能量在某些情况下可能是对其能耗最重要的贡献。

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