首页> 外文会议>Annual rocky mountain bioengineering symposium;International ISA biomedical sciences instrumentation symposium >METHODOLOGY FOR MAPPING FOOTBALL HEAD IMPACT EXPOSURE TO HELMET PADS FOR REPEATED LOADING TESTING
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METHODOLOGY FOR MAPPING FOOTBALL HEAD IMPACT EXPOSURE TO HELMET PADS FOR REPEATED LOADING TESTING

机译:将足球头冲击暴露映射到头盔垫上以进行重复载荷测试的方法

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Football helmets have a lifespan of 10 years; however, no work has investigated how helmet padding properties change over time with use. The purpose of this study is to develop a methodology to control repeated pad loading and quantify changes in energy management. Head impact exposure data for 7-8 year old football players were used to find an average impact magnitude. NOCSAE-style drop tests were performed using an instrumented headform fitted with the same style helmet (Helmet A) used to collect population data to determine the compression depth and rate of the helmet padding during an average impact. Drops from the same height were then conducted for two other helmet types (Helmet B and Helmet C). For the average impact of ~15 g, the compression depth and rate of the pads from Helmet A were found to be 9.8 mm and 0.72 m/s respectively. The compression depths and rates for Helmets B and C were found to be 6.1 mm and 0.71 m/s and 10.7 mm and 0.69 m/s respectively. These parameters were utilized by a material testing system program to impact helmet padding. Repeated helmet pad loading can be tested using a material testing system for populations with known head impact exposure. The energy absorbing characteristics of the padding can be used to develop new safety regulations regarding the lifetime of helmets, affording better protection to athletes.
机译:橄榄球头盔的使用寿命为10年;但是,尚无研究调查头盔填充特性随使用时间的变化。这项研究的目的是开发一种方法来控制重复的垫片负载并量化能量管理中的变化。使用7-8岁足球运动员的头部撞击暴露数据来查找平均撞击幅度。使用装有用于收集人口数据的相同款式头盔(头盔A)的仪器仪表进行NOCSAE式跌落测试,以确定平均撞击过程中头盔深度的压缩深度和速率。然后对另外两种头盔(头盔B和头盔C)从同一高度跌落。对于平均约15 g的冲击,头盔A的垫板的压缩深度和压缩率分别为9.8 mm和0.72 m / s。发现头盔B和C的压缩深度和压缩率分别为6.1 mm和0.71 m / s,以及10.7 mm和0.69 m / s。材料测试系统程序利用这些参数来冲击头盔垫。可以使用材料测试系统对已知的头部撞击暴露的人群进行重复的头盔垫加载测试。填充物的能量吸收特性可用于制定有关头盔寿命的新安全规定,从而为运动员提供更好的保护。

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