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A Study of Car Safety Performance in Side Impact Using Human Head FE Model

机译:使用人体头部FE模型对侧面影响汽车安全性能的研究

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This research investigated the safety performance of a passenger car in side collisions, using a side air-curtain protective device to minimize the risk of head-brain injuries. Traumatic brain injury in passenger vehicle side collisions is one of the common injury patterns with fatal consequences in traffic accidents. A dummy head has limited capability to evaluate vehicle safety performance with detailed injury related physical parameters. Continuous development of mathematical models has provided efficient tools for assessing the safety performance of a protective device. A validated head-brain FE model and air-curtain model was employed to simulate the impact responses of head-brain to B-pillar and further quantify the effect of the air-curtain on the protection of the human head in side collisions. A parametric study was conducted using the design of experiment approach. The kinematics of a head impacting the B-pillar and the air-curtain are presented. The calculated physical parameters from the head-brain FE model include the distribution of von Mises stress, shear stress, coup pressure, contrecoup pressure, and accelerations during vehicle side collision. Study outcomes suggested that using a side air-curtain protective device can reduce von Mises stress, shear stress, coup pressure, contrecoup pressure, and deceleration rate during vehicle side impact. The efficiency of the protective device for head-brain injuries is identified by reducing the HIC (Head Injury Criterion) to 80% of original values.
机译:本研究调查了侧面碰撞中乘用车的安全性能,使用侧面空气窗帘保护装置,以最大限度地减少头脑损伤的风险。乘用车侧碰撞的创伤性脑损伤是交通事故致命后果的常见伤害模式之一。虚拟头具有有限的能力,可利用详细的损伤相关物理参数来评估车辆安全性能。数学模型的持续发展提供了有效的工具,用于评估保护装置的安全性能。采用经过验证的头脑Fe模型和空调模型来模拟头脑对B柱的影响反应,并进一步量化了空气窗帘对侧面碰撞中人体的影响。使用实验方法设计进行参数研究。提出了影响B柱和空调的头部的运动学。来自头脑FE模型的计算的物理参数包括von误判应力,剪切应力,电力压力,对电动群压力和加速度的分布。研究结果表明,使用侧面空气窗帘保护装置可以减少车辆侧面冲击期间的von误胁迫,剪切应力,助长压力,对电速率和减速率。通过将HIC(头部损伤标准)降低到原始值的80%来鉴定头脑损伤的保护装置的效率。

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