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Assessment of the side thrust for off-road tracked vehicles based on the punching shear theory

机译:基于冲剪理论的越野履带车辆侧推力评估

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The track system is generally applied for heavy off-road vehicles. While moving on the off-road, the track system horizontally transmits an engine torque to the soil-track interface, resulting in slip displacement and an associated soil thrust acting as a traction force. As soil thrust is developed on the bottom and the side of the track system (hereinafter referred to as "bottom thrust" and "side thrust", respectively), it is imperative to evaluate both the bottom thrust and the side thrust to assess the off-road tracked vehicle's performance. Unlike the bottom thrust, however, the mechanisms of the side thrust have not been fully understood. To address this, this study aimed to evaluate the side thrust for off-road tracked vehicles. A new mechanism for the side thrust was theoretically investigated based on the punching shear theory. A series of model track experiments were conducted on a model track system with silty sand. From the experiment results, the shapes of the failure surface were observed, and the side thrust was measured for verification purposes. Particular attention was given to the development of a side thrust prediction model for the heavy off-road tracked vehicles based on the proposed mechanism. (C) 2018 ISTVS. Published by Elsevier Ltd. All rights reserved.
机译:履带系统通常用于重型越野车。在越野行驶时,履带系统将发动机扭矩水平传递到土壤-履带接口,从而导致滑移和相关的土壤推力作为牵引力。由于土壤推力在轨道系统的底部和侧面产生(以下分别称为“底部推力”和“侧面推力”),因此必须同时评估底部推力和侧面推力评估越野履带车辆的性能。然而,与底推力不同,侧推力的机理还没有被完全理解。为了解决这个问题,本研究旨在评估越野履带车辆的侧推力。基于冲剪理论,研究了一种新的侧推力机制。在含粉砂的模型轨道系统上进行了一系列模型轨道实验。根据实验结果,观察破坏面的形状,并测量侧推力以进行验证。基于提出的机制,特别重视重型越野履带车辆的侧向推力预测模型的开发。 (C)2018年ISTVS。由Elsevier Ltd.出版。保留所有权利。

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