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'Brush model' for the analysis of flat belt transmissions in steady-state conditions

机译:稳态条件下平带传动分析的“刷模型”

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In the present work a novel mathematical model for the analysis of the contact actions between belt and pulleys, particularly suited for flat reinforced rubber belt, is presented. The model considers the tension member, composed of the reinforcement fibers, inextensible, and the rubber matrix, which is subjected to tangential stress, as a continuum bed of elastically deformable bristles, fixed to the tension member on one side and in contact with the pulley on the other side. The deformation of the matrix is inversely proportional to the bending stiffness of the bristles, while friction conditions determine the local adhesion/sliding behavior between belt and pulleys. The proposed model can give a detailed description of the contact conditions along the whole contact arc and is able to describe the stick-slip phenomenon which has been experimentally observed by some authors. The model assesses also the power losses due to the contact stresses and to the elastic deformation of the matrix. The results of the model are discussed in comparison with results from classical models, Grashof and Firbank models, available in the technical literature. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本工作中,提出了一种用于分析皮带和滑轮之间接触动作的新数学模型,特别适用于扁平增强橡胶带。该模型认为张力构件,由加强纤维,不可伸展的纤维和橡胶基质组成,其经受切向应力,作为可弹性变形刷毛的连续床,固定到一侧的张紧构件并与滑轮接触另一方面。基质的变形与刷毛的弯曲刚度成反比,而摩擦条件决定皮带和滑轮之间的局部粘附/滑动行为。所提出的模型可以沿整个接触电弧提供对接触条件的详细描述,并且能够描述一些作者已经通过实验观察的粘滑现象。由于接触应力和基质的弹性变形,该模型也评估功率损耗。与技术文献中可用的经典模型,格列索夫和FIRBANK模型的结果相比,讨论了该模型的结果。 (c)2019年elestvier有限公司保留所有权利。

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