首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Effects of surface compliance on the dynamic response and strains sustained by a player's helmeted head during ice hockey impacts
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Effects of surface compliance on the dynamic response and strains sustained by a player's helmeted head during ice hockey impacts

机译:表面依从性对球员头盔撞击在冰球影响期间的动态响应和菌株的影响

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摘要

In hockey, players experience different compliances during impacts to the head, from stiff ice to compliant collisions against other players. The objective of this study was to examine the effect of striking compliance in ice hockey impacts and its influence on dynamic response and brain tissue strain. Three striking caps of low, medium, and high compliances were used to impact a helmeted 50th-percentile Hybrid III headform. The headform was impacted at five locations at three velocities, representative of collision scenarios in hockey. The dependent variables, peak resultant linear and rotational acceleration as well as maximum principal strain were analyzed using a multivariate analysis of variance to determine significant differences between the compliances. The results indicated a significant effect of compliance on the responses of the headform. As expected, low-impact compliance resulted in higher linear and rotational accelerations when compared to the medium and high compliance conditions. However, while the linear and rotational acceleration responses of the medium and high compliance conditions would indicate a low chance of brain injury, the maximum principal strain magnitudes indicated a high likelihood of concussion. Medium- and high-impact compliances are a factor that has not been considered when designing and testing helmet technology in sport, with current methods reflective of low compliance surfaces, that is, those with high stiffness and rigidity. The results of this study demonstrate that an impact compliance is an important factor in producing brain injury and should be considered when certifying helmets through standard testing to mitigate the risk of brain injury.
机译:在曲棍球中,玩家在对头部的影响期间经历不同的合作,从僵硬的冰到符合其他球员的碰撞。本研究的目的是检测引人注目依从性抗冰球影响的影响及其对动态响应和脑组织应变的影响。使用了三个低,培养基和高度顺从的帽子来影响头盔的50百分位杂交III头部。在三个速度下,动力受到曲折的三个位置,代表曲棍球的碰撞情景。使用多变量分析方差分析来分析从属变量,峰值得到的线性和旋转加速度以及最大主要菌株,以确定均衡之间的显着差异。结果表明符合对头部响应的符合效果的显着效果。与培养基和高智能条件相比,低冲击顺应性导致低冲击顺应性导致较高的线性和旋转加速度。然而,虽然培养基和高智能条件的线性和旋转加速度响应将指示脑损伤的低机会,但是最大主应变大小表示震荡的可能性很高。中型和高影响者是在体育运动中设计和测试头盔技术时未考虑的因素,目前的方法反映了低合规表面,即具有高刚度和刚性的方法。该研究的结果表明,影响依从性是产生脑损伤的重要因素,并且应该在通过标准测试中认证头盔时考虑,以减轻脑损伤的风险。

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