首页> 外文会议>Stapp Car Crash Conference >Design Considerations for Occupant Protection in Side Impact - A Modeling Approach
【24h】

Design Considerations for Occupant Protection in Side Impact - A Modeling Approach

机译:侧面影响乘员保护的设计考虑 - 一种建模方法

获取原文

摘要

A previously developed car-to-car side impact model was further exercised in this study. This model consists of a vehicle with a deformable side structure representation, and an occupant simulating the SID dummy impact response. It has been demonstrated that the vehicle model correlates well with side impact test data. The occupant model has similar impact acceleration response as the SID dummy in the head, thorax and pelvis regions. In addition, good correlations were also found in the force-time histories of the thorax region when compared to cadaver drop tests. The model provided insights to the effects of various design parameters such as side structure stiffness and padding. Examining the side structure stiffness effect shows that there is a significant benefit for occupant protection by reducing the amount of intrusion until it is roughly equal to the initial distance between the occupant and the door inner panel. However, further stiffening the side structure would result in slight increase of occupant injury indices. The model predicted that the use of padding on the door inner panel would reduce the occupant acceleration response but increase its deformation response. This prediction has been verified by two test series: (1). MVMA side impact test using Ford LTD and SID dummy, and (2). GM side impact test using a full size passenger vehicle and a Hybrid II dummy with the right arm removed. This result implies that, if the deformation response is also an important consideration in injury assessment, the use of additive padding needs to be accompanied by other design changes such as spacing or structure stiffness in order to compensate for this effect.
机译:在本研究中进一步行使了先前开发的汽车侧面影响模型。该模型由具有可变形侧面结构表示的车辆组成,以及模拟SID虚拟影响响应的乘员。已经证明了车辆模型与侧面冲击试验数据相互作用。乘员模型具有类似的影响加速度响应作为头部,胸部和骨盆区中的SID虚拟。此外,与尸体下降试验相比,胸腔区域的力时间历史也发现了良好的相关性。该模型提供了对各种设计参数(如侧面结构刚度和填充)的影响的见解。检查侧面结构刚度效果表明,通过减少侵入量,直到大致等于乘员和门内板之间的初始距离,就会有显着的益处。然而,进一步加强侧面结构将导致乘员损伤指数的轻微增加。该模型预测,在门内板上使用填充将减少乘员加速度响应,但增加其变形响应。通过两个测试系列验证了该预测:(1)。 MVMA侧面冲击试验使用FORD LTD和SID假人,以及(2)。 GM侧面冲击试验使用全尺寸乘用车和一个带有右臂的混合II虚拟。该结果意味着,如果变形响应也是损伤评估中的重要考虑,则需要使用添加剂填充物,以伴随其他设计变化,例如间距或结构刚度,以补偿这种效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号