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A method for predicting the internal motion resistance of rubber-tracked undercarriages, Pt. 2. A research on the motion resistance of road wheels

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。 道路车轮运动阻力研究

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In spite of an increasing number of rubber-tracked crawlers, the literature provides few guidelines and calculation models suitable for minimizing their internal motion resistance. This article presents a model where the internal resistance of double-flanged road wheels for rubber-tracked vehicles is calculated as a sum of the losses resulting from the indentation of the wheels into the track surface and friction of the wheels against the track guide lugs. The model allows for vertical and lateral load of the wheels, the non-uniform distribution of the wheel pressure on the track, and the relationship between the friction coefficient and normal reaction force in the interface between the wheel and track guide lugs. The model has been verified by experiments. According to the results of model computations and experiments discussed in the article, the internal losses of a given rubber-tracked undercarriage might be reduced if: the road wheels are covered with a material that exhibits low friction coefficient and mechanical hysteresis, the vehicle suspension system features oscillating bogie wheels, the undercarriage is fitted with the largest possible number of road wheels, and the vehicle weight is evenly distributed to all of the road wheels.(c) 2021 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:尽管较数越来越多的橡胶履带式爬行器,但该文献提供了很少的准则和计算模型,适用于最小化其内部运动阻力。本文介绍了一种模型,其中橡胶跟踪车辆的双凸轮路的内部电阻被计算为由车轮压痕进入轨道表面和轨道导向凸耳的轮子的摩擦产生的损耗之和。该模型允许车轮的垂直和横向载荷,车轮压力的不均匀分布在轨道上,以及在轮和轨道导向凸耳之间的界面中的摩擦系数和正常反作用力之间的关系。该模型已通过实验验证。根据制品中讨论的模型计算和实验的结果,如果:道路车轮覆盖具有低摩擦系数和机械磁滞的材料,则可以减少给定的橡胶跟踪底盘的内部损失,车辆悬架系统特点振荡转向架轮,底盘配有最大数量的道路车轮,车辆重量均匀地分布在所有道路车轮上。(c)2021 istvs。 elsevier有限公司出版。保留所有权利。

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