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Evaluation of the effects of design features on tracked vehicle mobility using an advanced computer simulation model

机译:使用高级计算机仿真模型评估设计特征对履带车辆机动性的影响

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摘要

On soft terrain, such as deep snow, track sinkage often exceeds vehicle ground clearance and the vehicle belly comes into contact with the terrain surface. This paper describes the results of a detailed investigation into the effects of design features, particularly the combined effects of initial track tension (i.e., the tension in the track system when the vehicle is stationary on a level, hard surface) and vehicle belly attitude (nose-up or nose-down), on soft ground mobility of tracked vehicles. The investigation was carried out using the latest version of an advanced computer simulation model, known as NTVPM, developed under the auspices of Vehicle Systems Development Corporation. The results show that the initial track tension has a significant effect on soft ground mobility, particularly when track sinkage is greater than vehicle ground clearance. When the vehicle belly is in contact with terrain surface, its attitude also has a notable effect on vehicle performance at low initial track tensions. However, its effect on mobility decreases with the increase in initial track tension. It is demonstrated that NTVPM is a useful and effective tool for design and performance evaluation of tracked vehicles from a traction perspective.
机译:在较软的地形(例如深雪)上,轨道下沉通常会超过车辆离地间隙,并且车辆腹部会与地形表面接触。本文描述了对设计特征的影响进行详细研究的结果,特别是初始履带张力(即,当车辆停在水平,坚硬的地面上时,履带系统中的张力)和车腹姿态(向上或向下),在履带车辆的柔软地面上行驶。该调查是使用由车辆系统开发公司(Vehicle Systems Development Corporation)主持开发的最新版本的先进计算机仿真模型NTVPM进行的。结果表明,初始履带张紧力对软土地基流动性有显着影响,特别是当履带下沉大于车辆离地间隙时。当汽车腹部与地形表面接触时,其姿态在初始履带张力较低时也会对汽车性能产生显着影响。但是,它对迁移率的影响随初始轨道张力的增加而减小。从牵引的角度证明,NTVPM是用于履带车辆的设计和性能评估的有用和有效的工具。

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