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Optimization of Bumper Beam Structure for Pedestrian Protection and Low Speed Bumper Impact

机译:用于行人保护和低速保险杠撞击梁结构的优化

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The biggest challenge in vehicle BIW design today is to make a light, cost effective and energy absorbing structure. With the increasing competition as well as increasing customer awareness, today’s vehicle has to satisfy several aesthetic and functional requirements besides the mandatory regulatory requirements. While working on global platform, it is challenging to comply with both pedestrian protection and low speed bumper impact (ECE-R42) and at the same time meeting the styling intent of reducing the front overhang. Pedestrian lower leg compliance demands space between bumper member and bumper, a condition that reduces the space available for energy absorption during low speed impact (ECE-R42). Therefore, reduction in front overhang poses a problem in meeting both the requirements with limited space. This paper outlines vehicle case study in order to optimize the design of Bumper Beam structure, for complying with regulatory requirements while satisfying the styling intent. Various combinations of sections have been checked in simulations for evaluating strength, weight and cost. Research has also been done on material and thickness variations to reach an optimized structure. The paper throws light on the various combinations of bumper beam structures such as pipes and sheet metal structures to prevent investment in costly process technology like hot forming or Advance high strength steels. The result showcases a balance of cost, weight and strength for Bumper Beam.
机译:车辆BIW设计的最大挑战是发光,成本效益和能量吸收结构。随着竞争日益增长的竞争以及越来越多的客户意识,除强制性监管要求外,今天的车辆必须满足几种美学和功能性要求。在全球平台上工作时,符合行人保护和低速保险杠影响(ECE-R42)并同时挑战,同时符合减少前端突出的造型意图。行人下腿顺应性要求保险杠构件和保险杠之间的空间,这是一种条件,减少了低速冲击期间能量吸收的空间(ECE-R42)。因此,前突出的减少在满足有限空间的要求时提出了问题。本文概述了车辆案例研究,以优化防撞梁结构的设计,符合法规要求,同时满足造型意图。已经在模拟中检查了各部分的各种组合,用于评估强度,重量和成本。还在材料和厚度变化中进行了研究,以达到优化的结构。纸张抛光在保险杠结构的各种组合,例如管道和金属板结构,以防止在昂贵的工艺技术中的投资,如热成型或提前高强度钢。结果展示了保险杠梁的成本,重量和强度的平衡。

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