Vanden Bosche Kelly, Mosleh Yasmine, Depreitere Bart, Vander Sloten Jos, Verpoest Ignaas, Ivens Jan
1 Scalint Section, Department of Materials Engineering, KU Leuven, Leuven, Belgium.
2 Department of Neurosurgery, University Hospital Gasthuisberg, KU Leuven, Leuven, Belgium.
Proc Inst Mech Eng H. 2017 Sep;231(9):851-861. doi: 10.1177/0954411917711201. Epub 2017 May 23.
Although current standard bicycle helmets protect cyclists against linear acceleration, they still lack sufficient protection against rotational acceleration during oblique impact events. Rotational acceleration is correlated with serious traumatic brain injuries such as acute subdural haematoma and thus should be minimized. This study proposes using highly anisotropic polyethersulfone foam for bicycle helmet liners in order to limit the rotational acceleration. Helmet prototypes, made of polyethersulfone foam with cell anisotropy direction perpendicular to the head, have been produced and compared to a standard commercial helmet. Standard helmets consist of expanded polystyrene foam. Oblique impact tests were performed to measure both linear and rotational accelerations and impact pulse duration. Results demonstrate that the peak rotational acceleration of the polyethersulfone prototype helmet showed a decrease of around 40% compared to the reference expanded polystyrene helmet. Moreover, the peak linear acceleration showed an average decrease of about 37%. Upon impact, the polyethersulfone helmet showed improved head injury protection when analysed based on global biomechanical head injury criteria such as HIC and HIC as well as generalized acceleration model for brain injury threshold, brain injury criterion and head impact power, with a predicted sixfold decrease in likelihood of concussion.
尽管当前的标准自行车头盔能保护骑行者免受线性加速度的伤害,但在斜向撞击事件中,它们仍缺乏足够的抗旋转加速度保护。旋转加速度与严重的创伤性脑损伤如急性硬膜下血肿相关,因此应将其降至最低。本研究建议使用高度各向异性的聚醚砜泡沫作为自行车头盔衬里,以限制旋转加速度。已经制作了由聚醚砜泡沫制成、泡孔各向异性方向垂直于头部的头盔原型,并与标准商用头盔进行了比较。标准头盔由发泡聚苯乙烯泡沫制成。进行了斜向撞击试验,以测量线性和旋转加速度以及撞击脉冲持续时间。结果表明,与参考发泡聚苯乙烯头盔相比,聚醚砜原型头盔的峰值旋转加速度降低了约40%。此外,峰值线性加速度平均降低了约37%。在撞击时,基于全球生物力学头部损伤标准如头部损伤标准(HIC)和头部损伤标准(HIC)以及脑损伤阈值的广义加速度模型、脑损伤标准和头部撞击功率进行分析时,聚醚砜头盔显示出更好的头部损伤保护效果,预测脑震荡可能性降低了六倍。