首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >DEVELOPMENT OF MATHEMATICAL MODELS FOR EVALUATING CHILD OCCUPANT IMPACT DYNAMICS AND INTRUSIONS OF THE VEHICLE STRUCTURE
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DEVELOPMENT OF MATHEMATICAL MODELS FOR EVALUATING CHILD OCCUPANT IMPACT DYNAMICS AND INTRUSIONS OF THE VEHICLE STRUCTURE

机译:评估儿童乘员碰撞动力学和车辆结构侵入的数学模型的开发

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Two mathematical models are developed and analyzed in this paper to predict the dynamic response in vehicle crashes. The first model is developed to capture the front-end inlrusion of the vehicle structure in frontal collision. The second model is proposed to define the interaction between the child occupant and vehicle passenger compartment and to predict the acceleration injuries during a sudden impulse load. In these mathematical models, the bumper and vehicle body are defined by lumped masses and longitudinal rails of the front-end structure are defined by plastic springs. Moreover, the child occupants are considered as lumped masses, connected to the child seat and vehicle body masses by means of restraint systems. The occupant restraint characteristics of seat belt are represented by stiffness and damping elements. To obtain the dynamic response of the occupant, the equations of motion of the vehicle impact system in both full and offset scenarios are developed and analytically solved using Incremental Harmonic Balance Method (IHBM). The injury criteria, child's acceleration and vehicle's font-end deformation, are used to interpret the results. It is demonstrated from the simulations that the dynamic response and injury criteria are easily captured and analyzed. It is also shown that the mathematical models are flexible, useful in optimization studies and it can be used at initial design stage.
机译:本文开发并分析了两个数学模型来预测车辆碰撞中的动态响应。开发了第一个模型来捕获正面碰撞中车辆结构的前端侵入。建议使用第二种模型来定义儿童乘员与车辆乘客车厢之间的相互作用,并预测突然的脉冲负载下的加速伤害。在这些数学模型中,保险杠和车身由集总质量定义,前端结构的纵向导轨由塑料弹簧定义。此外,儿童乘员被认为是集总质量,其通过约束系统连接到儿童座椅和车身质量。安全带的乘员约束特性由刚度和阻尼元件表示。为了获得乘员的动态响应,使用增量谐波平衡法(IHBM)开发了车辆冲击系统在完全和偏移情况下的运动方程,并对其进行了解析求解。伤害标准,儿童的加速度和车辆的字形变形用于解释结果。从仿真中可以看出,动态响应和损伤准则很容易捕获和分析。还显示了数学模型是灵活的,可用于优化研究,并且可以在初始设计阶段使用。

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