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COMPATIBILITY REQUIREMENTS FOR CARS IN FRONTAL AND SIDE IMPACT

机译:汽车正面和侧面碰撞的相容性要求

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In support of the European Enhanced Vehicle-safety Committee (EEVC) research programme and through it, the International Harmonisation of Research Activities work on compatibility, TRL is investigating the compatibility of cars in frontal and side impact scenarios. Initial research has focused on identifying the major factors which influence compatibility and determining the extent to which they might influence injury outcome. Experimental crash test research is backed with Finite Element simulation modelling. For frontal impacts, full scale testing has been used to examine the influence of vehicle mass, stiffness, structural interaction and geometry. The modelling work has studied how non contact, deceleration related injuries might be minimised by optimising the deceleration pulse. For side impact, full car finite element models have been used for parametric studies to aid our understanding of the effects of the bullet vehicle mass, geometry and stiffness and to help predict more compatible designs. This has been backed by full scale crash testing, aimed at determining the ideal characteristics of interacting car front and side structures. All of this work is aimed at developing crash test requirements that are capable of assessing a car's compatibility.
机译:为了支持欧洲增强型车辆安全委员会(EEVC)的研究计划,并通过该计划,国际研究活动的兼容性研究,TRL正在研究正面和侧面碰撞情况下汽车的兼容性。最初的研究集中在确定影响相容性的主要因素,并确定它们可能影响伤害结果的程度。有限元仿真建模为实验性碰撞测试研究提供了支持。对于正面碰撞,已经使用全面测试来检查车辆质量,刚度,结构相互作用和几何形状的影响。建模工作研究了如何通过优化减速脉冲来最大程度地减少与非接触,减速相关的伤害。对于侧面碰撞,全车有限元模型已用于参数研究,以帮助我们了解子弹车质量,几何形状和刚度的影响,并有助于预测更兼容的设计。这已经得到了全面碰撞测试的支持,旨在确定相互作用的汽车前部和侧部结构的理想特性。所有这些工作的目的是开发能够评估汽车兼容性的碰撞测试要求。

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