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Comparison between a rollover tractor dynamic model and actual lateral tests

机译:翻车拖拉机动态模型与实际横向试验的比较

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摘要

Despite the progress in tractor design with respect to safety, one of the most dangerous situations for the driver under operating conditions on agricultural machines is the lateral rollover. Several accidents involving tractor rollover have indeed been encountered, requiring the design of a robust Roll-Over Protective Structure (ROPS). A mathematical model representing the behaviour during a generic tractor lateral rollover, with the possibility of modifying the geometry, the inertia of the tractor and the environmental boundary conditions is herein proposed. The purpose was to define a method allowing the prediction of the elasto-plastic behaviour of the impacts occurring in the rollover phase. In particular, this paper proposes a tyre impact model capable of analysing the influence of the wheels on the energy to be absorbed by the ROPS. Different tractor design parameters that affect the rollover behaviour, such as mass and dimensions, were considered and their influence on the energy absorbed by the ROPS was determined. The model was designed and calibrated with respect to the results of actual tests carried out on a narrow-track tractor. The results of the model showed a good match with the dynamic behaviour and energy absorbed by the ROPS in experimental lateral rollover tests. This should permit good prediction of the amount of energy to be absorbed in some accident situations, and therefore assist in the design of protective structures. (C) 2014 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:尽管拖拉机设计在安全性方面取得了进步,但在农机上的操作条件下,驾驶员最危险的情况之一是侧翻。确实已经发生了几起涉及拖拉机翻车的事故,需要设计坚固的翻车保护结构(ROPS)。本文提出了一种数学模型,该模型代表了拖拉机横向侧翻过程中的行为,并可能修改几何形状,拖拉机的惯性和环境边界条件。目的是定义一种方法,该方法可以预测侧翻阶段中发生的碰撞的弹塑性行为。特别是,本文提出了一种轮胎冲击模型,该模型能够分析车轮对ROPS吸收能量的影响。考虑了影响翻滚性能的不同拖拉机设计参数,例如质量和尺寸,并确定了它们对ROPS吸收的能量的影响。该模型是针对在窄轨拖拉机上进行的实际测试结果而设计和校准的。模型的结果表明,在侧向翻滚试验中,ROPS的动态行为和吸收的能量非常匹配。这应该可以很好地预测某些事故情况下要吸收的能量,因此有助于保护结构的设计。 (C)2014年。由Elsevier Ltd.出版。保留所有权利。

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