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Head impact protection developments in the F1 cockpit with investigations to correlate head movement to brain injury

机译:F1驾驶舱的主管冲击保护开发,调查将头部运动与脑损伤相关联

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This paper presents the results of an extensive test program conducted on behalf of Stewart Grand Prix at Lear Corporation's Technology Division in Southfield, Michigan. This project was conducted in conjunction with Bell Sports, Impact Medical Technologies, and Kistler Instrumentation. The scope of this project was two-fold. The 1st goal was to evaluate alternative materials for the current head surround to improve head impact protection in the F1 cockpit. This involved 2 phases of testing. First was a series of headform drop tests to characterize material performance. A hyge sled test program was then conducted to evaluate the effects of the head surround on occupant head and neck loads during crash simulation. A correlation between these two types of tests is investigated in order to define criteria for future development. The 2nd part of this project involved the evaluation of head acceleration response during the hyge sled tests. The output of accelerometers which can mount in the driver's helmet have been evaluated in comparison to the data generated by the headform of the crash test dummy. The goal is to define a basis for measuring linear and rotational response of the head in actual racecar impacts. Results from such in-field measurements could further the development of a more comprehensive brain injury criteria based on the understanding of the diffuse axonal injury mechanism.
机译:本文介绍了在密歇根州Southfield的Lear Corporation技术部门代表斯图尔特大奖赛进行了广泛的考试计划的结果。该项目与贝尔运动,影响医疗技术和奇士仪器配合进行。这个项目的范围是两倍。第一个目标是评估当前头部环绕的替代材料,以改善F1驾驶舱内的主体冲击保护。这涉及2个测试阶段。首先是一系列头部滴滴测试,以表征材料性能。然后进行卫生橇测试程序以在碰撞模拟期间评估头部环绕在乘员头和颈部负荷的影响。研究了这两种测试之间的相关性,以便定义未来发展的标准。该项目的第二部分涉及在卫格橇测试期间对头部加速度响应的评估。与碰撞测试虚拟的头部的头部产生的数据相比,可以评估可以安装在驾驶员头盔中的加速度计的输出。目标是为实际的racecar影响定义测量头部的线性和旋转响应的基础。这种现场测量的结果可以进一步发展基于对弥漫性轴突损伤机制的理解的更全面的脑损伤标准。

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