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IMPROVED DESIGN FOR FRONTAL PROTECTION

机译:正面保护的改进设计

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摘要

The requirements of frontal impact legislation and the comparative evaluations of consumer organisations have improved occupant crash protection. Passenger vehicle bodies have crumple zones developed through rigid flat barrier testing and improved passenger cell stability has resulted from consideration of offset deformable frontal impacts. Pressures to minimise cost and weight, whilst still maintaining satisfactory crash performance, could potentially lead to vehicle designs in which the crash behaviour of the structure has been optimised for barrier testing. TNO has undertaken a collaborative research project with Alcoa Reynolds Aluminium to investigate how the energy from a variety of different frontal impacts could be reliably managed within the structure of a medium sized passenger vehicle. The concept structural design developed within this project is intended to provide an acceptable amount of energy absorption independent of the precise orientation of objects with which vehicle collision may occur.
机译:额外影响立法的要求和消费者组织的比较评估改善了乘员碰撞保护。乘用车车身具有通过刚性平面屏障测试开发的褶皱区域,并且由于考虑了偏移可变形的正面影响而改善的乘客电池稳定性。最小化成本和重量的压力,同时仍然保持令人满意的碰撞性能,可能导致车辆设计,其中结构的碰撞行为已针对屏障测试进行了优化。 TNO已经开展了一项合作研究项目,铝合金铝合金铝可以在中型乘用车的结构内可靠地管理如何在中型乘用车的结构内可靠地管理。在该项目中开发的概念结构设计旨在提供可接受的能量吸收量,与可能发生车辆碰撞的物体的精确取向无关。

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