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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Effects of active muscle forces on driver's lower-limb injuries due to emergency brake in various frontal impacts
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Effects of active muscle forces on driver's lower-limb injuries due to emergency brake in various frontal impacts

机译:在各种正面冲击中,活跃肌肉力量对驾驶员低肢损伤的影响

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Accident data shows that driver's kinematics response in real accidents can be significantly different from that in dummy or cadaver tests because of driver's muscle contraction. In this study, a finite element human-body model consisting of an upper body of a dummy model and a lower limb-pelvis biomechanical model with three-dimensional active muscles was developed to investigate in depth the lower-limb injuries. Driver's emergency reaction during frontal impact was simulated by modelling muscle active contraction based on a series of volunteer experimental tests. Besides, a realistic impact environment with the response of the restraint system and the invasion of the driver's compartment was established in this study. The results show that muscle contraction can cause extra loads on lower limbs during the impact, which can increase the injury risk of lower limbs. As for the femur injury, muscle contraction caused an additional 1 kN axial load on the femur, and the femur resultant bending moment of active models was also higher by about 10-40 N m. Besides, the tibial index of the model with muscle activation was about 0.1 higher. In addition, the results indicate that the femur injury is strongly related to the combined action of both axial force and bending moment. The variation of the injury tolerance along the tibia shaft should be considered when evaluating the tibia injury. Overall, the current lower-limb injury criteria can be still the lack of robustness.
机译:事故数据显示,由于驾驶员的肌肉收缩,实际事故中的驾驶员的运动学响应可能与虚拟或尸体测试中的真实情况有显着不同。在该研究中,开发了一种由虚设模型的上部主体和具有三维活性肌肉的下肢 - 骨盆生物力学模型组成的有限元人体模型,以研究深度肢体损伤。通过基于一系列志愿者实验测试,通过建模肌肉活跃收缩来模拟驾驶员的应急反应。此外,在本研究中建立了克制系统的反应和驾驶室的侵犯的逼真影响环境。结果表明,肌肉收缩会在撞击过程中引起额外的载荷,这可以增加下肢的伤害风险。至于股骨损伤,肌肉收缩引起股骨上的额外1 kN轴向载荷,活性模型的股骨产生的弯矩也较高约10-40米。此外,具有肌肉激活的模型的胫骨指数高约0.1。此外,结果表明股骨损伤与轴力和弯矩的组合作用强烈相关。在评估胫骨损伤时,应考虑沿胫骨轴的损伤耐受性的变化。总的来说,目前的较低肢体损伤标准仍然是缺乏稳健性。

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