首页> 外文会议>International Mechanical Engineering Congress and Exposition >(V013T14A040)OCCUPANT MODELING FOR INJURY RISK COMPUTATION IN VEHICLE FLEET FRONTAL CRASH SIMULATIONS
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(V013T14A040)OCCUPANT MODELING FOR INJURY RISK COMPUTATION IN VEHICLE FLEET FRONTAL CRASH SIMULATIONS

机译:(v013t14a040)车队前碰撞模拟中伤害风险计算占用风险计算

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Occupant model environments (MADYMO) are developed for four surrogate vehicles for injury risk computation in frontal crash fleet simulations: a small passenger car, a midsize passenger car, a midsize sport utility vehicle and a full size pickup truck. This research supports the initial implementation of a novel methodology for Evaluating Fleet, i.e., self and partner, Protection (EFP) of new vehicle designs through a systems modeling approach driven by structural and occupant modeling and real world crash and full scale test data. A two part general framework for development of occupant models for fleet vehicles is established: model development (Part I) and model verification and robustness evaluation (Part II). In Part I, current generic occupant models with seat belt and airbag restraints are obtained from restraint manufacturers and then modified to reflect the interior geometry and clearances of the desired vehicle. Data from finite element structural simulations, including the occupant compartment geometry, crash pulse, and toe pan intrusions, are utilized to drive the MADYMO models. Restraint system and dummy seating changes are incorporated to achieve a realistic match for both midsize male and small female driver dummy responses from available frontal crash tests. Part II involves comparing occupant responses from simulation and test data, and assessing trends in occupant responses in selected crash configurations for application in frontal crash fleet simulations.
机译:乘客模型环境(MADYMO)是为Frontal Crash舰队模拟中的四个替代车辆进行伤害风险计算的替代车辆:小型客车,中型客车,中型运动型多用途车和全尺寸皮卡。该研究支持通过由结构和乘员建模和现实世界崩溃和全面尺度测试数据驱动的系统建模方法来评估新车设计的新车设计的新型方法的新方法的初步实施。建立了两个部分乘坐车辆车辆乘员模型的一部分框架:模型开发(第一部分)和模型验证和鲁棒性评估(第二部分)。在I部分中,具有安全带和安全气囊约束的当前通用乘员模型是从约束制造商获得的,然后修改以反映所需车辆的内部几何形状和间隙。来自有限元结构模拟的数据,包括乘员室几何形状,崩溃脉冲和脚趾泛入侵,用于驱动MADYMO模型。克制系统和虚拟座位变更始终是从可用的正面碰撞试验中实现中型男性和小型女性驾驶员哑铃的现实匹配。第二部分涉及比较仿真和测试数据的乘员响应,并评估所选碰撞配置中的占用响应的趋势,以便在额外的崩溃舰队模拟中应用。

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