1980
DOI: 10.21236/ada092277
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Analytical Model for the Turning of Tracked Vehicles in Soft Soils

Abstract: Approved by:Richard of uing•Director ofRsa ch FOREWORD Recent developments in defensive weapons systems make it imperative for the combat and support vehicles of the Army to move on the ground with utmost agility. In the case of tracked vehicles, the speed of turning required for evasive tactics to be successful is often limited hy the high turning resistances encountered in soft soils and by the ability of the vehicles to develop the slewing forces necessary to overcome these turning resistances.Simulation of… Show more

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“…The objective of the improvement is to support army to move on the ground with utmost agility. As reported in 1980 by Karafiath [6], for track vehicles, the speed of turning is required for evasive tactics to be successful is often limited by the high turning resistance encountered in soft soils and by the ability of the army vehicles to develop the slewing forces which is necessary to overcome these turning resistance. Thus, from the simulation, they developed a model with turning performance characteristics such as coefficient of turning resistance, time required to make 90o turns, maximum speed at constant radius and maximum speed along sinuous path.…”
Section: Fig 1 Tracked Suspension Diagrammentioning
confidence: 99%
“…The objective of the improvement is to support army to move on the ground with utmost agility. As reported in 1980 by Karafiath [6], for track vehicles, the speed of turning is required for evasive tactics to be successful is often limited by the high turning resistance encountered in soft soils and by the ability of the army vehicles to develop the slewing forces which is necessary to overcome these turning resistance. Thus, from the simulation, they developed a model with turning performance characteristics such as coefficient of turning resistance, time required to make 90o turns, maximum speed at constant radius and maximum speed along sinuous path.…”
Section: Fig 1 Tracked Suspension Diagrammentioning
confidence: 99%