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A multibody approach applied to the study of driver injuries due to a narrow-track wheeled tractor rollover

机译:一种多体方法应用于研究窄轨轮式拖拉机侧翻造成的驾驶员伤害

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This paper proposes the use of the multibody approach to evaluate the severity of the injuries to the driver associated with rollover of an agricultural tractor. A simple rollover accident of a narrow-track wheeled tractor was simulated in the multibody-FEM Madymo environment and the biomechanical damage to the operator with and without 2-point pelvic restraint was analysed. The structure of the tractor was considered to be unbendable, whereas i) infinitely rigid, ii) clay-based and iii) sand-based soils have been studied. The obtained results highlight the important role played by the seat belt in confining the farm operator within the safety volume maintained by the rollover protective structure (ROPS) of the tractor so that the injuries are reduced. The deformation of the soil produces lower acceleration and velocity values than those obtained with a rigid soil. On the other hand, as soil plastic deformations increase, the penetration of ROPS into the soil also increases, thus reducing the safety volume of the tractor and increasing the probability of interactions between the operator and the soil.
机译:本文提出了使用多体方法来评估与农用拖拉机翻滚相关的驾驶员伤害的严重性。在多体FEM Madymo环境中模拟了一个窄轨轮式拖拉机的简单翻车事故,并分析了在有和没有两点骨盆约束的情况下对操作员的生物力学损伤。拖拉机的结构被认为是不可弯曲的,而i)无限刚性,ii)粘土基和iii)砂土已被研究。获得的结果凸显了安全带在将农场主操作员限制在拖拉机的防侧翻保护结构(ROPS)保持的安全范围内以减轻伤害方面所发挥的重要作用。与刚性土壤相比,土壤变形产生的加速度和速度值更低。另一方面,随着土壤塑性变形的增加,ROPS向土壤的渗透也增加,从而减小了拖拉机的安全容积,并增加了操作员与土壤之间相互作用的可能性。

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