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Validation of a railway inline seating model for occupants injury biomechanics

机译:乘员受伤生物力学的铁路直排座椅模型的验证

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This paper presents the validation of a finite element model in LS-DYNA of the interior inline seating layout simulating a frontal rail impact event for which the experimental test results provide the reference for the injury biomechanics of the occupants. The representative layout consists in two rows of seats and its supporting structures modelled with nonlinear finite elements and the crash acceleration pulse that represents the impact of the railway vehicle structure is imposed in the floor of the coach. For the appropriate identification of the injury mechanisms to the occupant associated to the frontal crash analysis is used the Hybrid III 50th percentile Anthropomorphic Testing Device, being the interaction between the occupant model and the structure characterised via penalty contact force models. The validity of the numerical model is discussed to ensure the representativeness of the analysis procedure and to identify the most relevant injury indices of the occupants. In particular, the head injury criterion is the most critical injury index for the inline seating layout, with a relative deviation of 6.2% of the simulation result with respect to the experimental test.
机译:本文提出了在内部直排座椅布局的LS-DYNA中模拟前部轨道撞击事件的有限元模型的验证,为此,实验测试结果为乘员的伤害生物力学提供了参考。代表性布局包括两排座椅,其支撑结构采用非线性有限元建模,并且在火车车厢地板上施加了代表铁路车辆结构影响的碰撞加速脉冲。为了正确识别与正面碰撞分析相关的乘员伤害机制,使用了Hybrid III第50个百分数拟人测试设备,该乘员模型是乘员模型与通过惩罚接触力模型表征的结构之间的相互作用。讨论了数值模型的有效性,以确保分析程序的代表性并确定乘员最​​相关的伤害指标。特别地,头部受伤标准是直列式座椅布局的最关键伤害指标,相对于实验测试,相对偏差为模拟结果的6.2%。

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