首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >A study of indentation rolling resistance to motion of conveyor belts using a generalized Maxwell model of the backing material
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A study of indentation rolling resistance to motion of conveyor belts using a generalized Maxwell model of the backing material

机译:使用广义Maxwell背衬材料模型研究压痕对传送带运动的滚动阻力

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摘要

A formula based on Winkler foundation and generalized viscoelastic Maxwell model of belt backing material has been given by Thomas J Rudolphi to determine the indentation rolling resistance. However, this formula must be solved by the iteration. As a result, the influence of some common working conditions can be reflected indirectly on this formula that results in the formula not being useful practically. On the other hand, the formula which is developed by Jonkers can reflect firstly the effect of working condition directly except for belt speed, but this formula has an inherent deficiency where Jonkers assumes that the indentation depth is independent of the belt speed. However, if the vertical load is assumed to be constant then the indentation depth and the contact will decrease with increasing belt speed in nature. Therefore, it offers an advantageous reference for simplifying the Rudolphi's formula to get an analytic formula which can exhibit the influence of working condition on the rolling resistance. In this paper, author analyzes the effect of common working conditions on rolling resistance with the help of Rudolphi's formula firstly. Then, in the premise of satisfying the suitable precision, author simplifies the Rudolphi's formula to get an analytic formula. Finally, a verification example based on experiment is given to validate the rationality of analytic formula which may be of interest to belt-conveyor designers.
机译:托马斯·J·鲁道夫(Thomas J Rudolphi)给出了基于Winkler基础和皮带背衬材料的广义粘弹性Maxwell模型的公式,以确定压痕滚动阻力。但是,此公式必须通过迭代求解。结果,一些共同的工作条件的影响可以间接地反映在该公式上,导致该公式在实际中不可用。另一方面,Jonkers提出的公式可以首先直接反映工作条件对皮带速度的影响,但该公式有一个固有的缺陷,即Jonkers假定压痕深度与皮带速度无关。但是,如果假定垂直载荷恒定,则压痕深度和接触将随着皮带速度的增加而减小。因此,为简化鲁道夫公式以得到可以反映工作条件对滚动阻力的影响的解析公式提供了有益的参考。在本文中,作者首先借助鲁道夫公式分析了常见工作条件对滚动阻力的影响。然后,在满足适当精度的前提下,作者简化了鲁道夫公式,得到了解析公式。最后,给出了一个基于实验的验证实例来验证解析公式的合理性,这对皮带输送机设计者可能会感兴趣。

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