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A method for predicting the internal motion resistance of rubber-tracked undercarriages, Pt. 3. A research on bending resistance of rubber tracks

机译:一种预测橡胶跟踪底层载体的内部运动阻力的方法,Pt。 3.橡胶轨道弯曲性的研究

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Optimizing the efficiency of rubber-tracked undercarriages requires models for calculating external and internal motion resistance, including the resistance resulting from bending of rubber tracks. The experiments on the bending resistance of rubber tracks and a new model of this phenomenon are discussed in this article. An empirical model of friction in bearings typically implemented in driving and idler wheels of rubber-tracked undercarriages is also presented. According to the sample computations carried out on the basis of these models, the efficiency of rubber-tracked undercarriages might be improved by minimizing the number and maximizing the diameter of idler wheels. Furthermore, it has been shown that increase in the initial tension and driving force transmitted by rubber tracks does not significantly affect bending resistance of these tracks; however, it results in increased friction in the driving and idler wheels' bearings. Nevertheless, the higher the driving force transmitted by the rubber tracks, the higher the efficiency of rubber-tracked undercarriages. Consequently, since track systems of vehicles operating at relatively small drawbar pull will manifest exceptionally low efficiency, there is a serious need for optimizing them in terms of energy consumption. (c) 2021 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:优化橡胶跟踪的底线载体的效率需要用于计算外部和内部运动电阻的模型,包括由橡胶轨道弯曲产生的电阻。本文讨论了橡胶轨道弯曲抗性的实验和这种现象的新模型。还介绍了通常在橡胶跟踪底座的驱动和惰轮轮上实施的轴承中摩擦的经验模型。根据基于这些模型进行的样品计算,通过最小化数量并最大化惰轮轮的直径,可以提高橡胶跟踪底座的效率。此外,已经表明,橡胶轨道传递的初始张力和驱动力的增加不会显着影响这些轨道的弯曲电阻;然而,它导致驾驶和惰轮轮轴承中的摩擦力增加。然而,由橡胶轨道传递的驱动力越高,橡胶跟踪底层的效率越高。因此,由于在相对小的牵引杆拉动的车辆的轨道系统表现出极低的效率,因此在能量消耗方面存在严重需要优化它们。 (c)2021 istvs。 elsevier有限公司出版。保留所有权利。

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