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PARAMETRIC ANALYSIS OF ROLLOVER OCCUPANT PROTECTION USING A DEFORMABLE OCCUPANT COMPARTMENT TESTING DEVICE

机译:可变形乘员室检测装置的翻转乘员保护参数分析

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Occupant kinematics during rollover inverted impacts has been the subject of significant research. Controlled experiments have utilized complete vehicles, partial vehicles and seat/restraint systems attached to various platforms. The Deformable Occupant Compartment Impact Tester (DOCIT) was developed to incorporate functions similar to previous methods, but has added a roof capable of deforming under impact. These roof deformation characteristics can be reset without the destruction of a complete vehicle. The DOCIT simulates an occupant compartment (roof, seat, restraint system) in which an ATD is placed and subjected to a repeatable inverted dynamic impact environment. Several test series are reviewed, in which standard of value tests, based upon real-world rollover accidents, are compared with alternate design systems under the same impact environments. 5th and 50th percentile Hybrid III ATD's are utilized to assess neck and head injury criteria. Alternate designs for roof structures and restraint systems are tested to determine the effectiveness of each. The DOCIT accommodates rapid parametric analysis of occupant injury criteria relative to various occupant, restraint and roof configurations in a dynamic loading environment and enables evaluation of restraint system performance and injury potential under impacts with controlled initial/residual head clearance and repeatable pre-determined roof profiles. Test variations in restraint systems or roof performance can be correlated with other component and full vehicle tests without the need for the destruction of many vehicles. This research indicates that for reasonably restrained occupants, roof crush preceded head to roof contact and peak neck forces. Reducing roof crush also reduced neck injury measures and therefore neck injury potential. In many cases, reducing roof crush and optimizing restraint designs eliminated interaction with the roof and provided correspondingly negligible injury measures.
机译:翻转倒置影响期间的乘员运动学一直是重大研究的主题。控制实验已经利用了完整的车辆,部分车辆和附着在各种平台上的座位/克制系统。开发了可变形的乘员室冲击测试仪(Docit)以将类似于以前的方法的函数掺入,但是添加了能够在冲击下变形的屋顶。可以在不破坏完整车辆的情况下重置这些屋顶变形特性。 Docit模拟乘员室(屋顶,座椅,克制系统),其中放置ATD并经受可重复的倒置动态冲击环境。综述了几种测试系列,其中基于现实世界翻转事故的价值测试标准与同一冲击环境下的替代设计系统进行了比较。第5和第50百分位杂交III ATD用于评估颈部和头部损伤标准。测试用于屋顶结构和约束系统的替代设计,以确定每个的有效性。 Docit在动态加载环境中相对于各种乘员,克制和屋顶配置的乘员损伤标准的快速参数分析,并能够在受控初始/残余头部间隙和可重复的预定屋顶型材的影响下评估约束系统性能和损伤潜力。约束系统或屋顶性能的测试变化可以与其他部件和全车辆测试相关,而无需破坏许多车辆。该研究表明,对于合理抑制的居住者,屋顶挤压前面前往屋顶接触和峰颈部力。减少屋顶粉碎也减少了颈部损伤措施,因此颈部损伤潜力。在许多情况下,减少屋顶挤压和优化克制设计消除了与屋顶的相互作用,并提供了相应可忽略的伤害措施。

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