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Evaluation of the Biofidelity of FMVSS No. 218 Injury Criteria

机译:FMVSS 218号损伤标准的生物保真度评估

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Objective: The biofidelity of the injury criteria used by Federal Motor Vehicle Safety Standards (FMVSS) No. 218 was examined against biomechanically based injury metrics. Methods: An experimental method was developed to measure the helmet contact pressure distribution on a headform during an impact attenuation test. The headform pressure data from eighty impact tests to the front, crown, and side of a helmet were used in finite element model simulations to predict skull fracture. Using headform acceleration data as inputs, the Simulated Injury Monitor software package (SIMon) was used to predict brain injuries for concussion, brain contusion, and subdural hematoma. Results: It was found that FMVSS No. 218 headform peak acceleration is the best correlate with injury metrics. Dwell times over 150 and 200 g both had poor correlation with injury metrics. The failure probability for skull fracture agrees with published results at similar linear accelerations. Concussion results were inconclusive. Conclusions: This research has shown that peak head acceleration can be an acceptable injury metric for the FMVSS No. 218 test method. However, the current 400 g allows for a high probability of head injury. An adjusted linear head acceleration limit of 210 g predicts a 15 percent skull fracture probability. The FMVSS No. 218 test method is adequate for predicting skull fracture based on peak head acceleration limits. However, due to the use of the rigid headeck assembly that restricts rotation, the test method is likely inadequate for predicting brain injuries.
机译:目的:针对基于生物力学的伤害指标,检查了联邦机动车辆安全标准(FMVSS)第218号使用的伤害标准的生物保真度。方法:开发了一种实验方法来测量冲击衰减测试过程中头盔在头模上的接触压力分布。在有限元模型仿真中使用了从八十次冲击测试到头盔的前部,冠部和侧面的头部压力数据,以预测头骨的骨折。使用头模加速度数据作为输入,模拟伤害监测器软件包(SIMon)用于预测脑震荡,脑挫伤和硬膜下血肿的损伤。结果:发现FMVSS 218号头形峰值加速度与伤害指标最相关。 150和200 g以上的停留时间与伤害指标之间的相关性很差。在类似的线性加速度下,颅骨骨折的失败概率与已发表的结果一致。脑震荡的结果尚无定论。结论:这项研究表明,对于FMVSS 218号测试方法,头部峰值加速度可以作为可接受的伤害指标。但是,当前的400 g可能会导致头部受伤。调整后的线性头部加速度极限为210 g,可以预测颅骨骨折的可能性为15%。 FMVSS 218号测试方法足以根据峰值头部加速度极限来预测颅骨骨折。但是,由于使用了限制旋转的刚性头部/颈部组件,因此该测试方法可能不足以预测脑损伤。

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