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Design and analysis of an automotive bumper beam in low-speed frontal crashes

机译:低速正面碰撞中汽车保险杠的设计与分析

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摘要

In this paper, the most important parameters including material, thickness, shape and impact condition are studied for design and analysis of an automotive front bumper beam to improve the crashworthiness design in low-velocity impact. The simulation of original bumper under condition impact is according to the low-speed standard of automotives stated in E.C.E. United Nations Agreement, Regulation no. 42, 1994. The bumper beam analysis is accomplished for composite and aluminum material to compare the weight and impact behavior. The strength in elastic mode is investigated with energy absorption and impact force in maximum deflection situation.rnA good design of this part of automotives must prepare for the safety of passengers; meanwhile, should have low weight. Beside the role of safety, fuel efficiency and emission gas regulations are being more important in recent years that encourage manufacturer to reduce the weight of passenger cars.rnIn this research, a front bumper beam made of three materials: aluminum, glass mat thermoplastic (GMT) and high-strength sheet molding compound (SMC) is studied by impact modelling to determine the deflection, impact force, stress distribution and energy-absorption behavior. The mentioned characteristics are compared to each other to find best choice of material, shape and thickness. The results show that a modified SMC bumper beam can minimize the bumper beam deflection, impact force and stress distribution and also maximize the elastic strain energy. In addition, the effect of passengers in the impact behavior is examined. The time history of the calculated parameters is showed in graphs for comparison. Furthermore, beside the above-mentioned benefits, some more advantages like easy manufacturing due to simple shape without-ribs, economical aspects by utilizing low-cost composite material and reducing weight with respect to others can be achieved by SMC material.
机译:本文研究了最重要的参数,包括材料,厚度,形状和冲击条件,用于汽车前保险杠横梁的设计和分析,以改善低速冲击时的耐撞性设计。在条件冲击下对原始保险杠的模拟是根据E.C.E.中规定的汽车低速标准进行的。联合国协定,条例编号42,1994。完成了对复合材料和铝材料的保险杠梁分析,以比较重量和冲击性能。在最大挠度情况下,通过吸收能量和冲击力来研究弹性模式下的强度。rn这部分汽车的良好设计必须为乘客的安全做准备;同时,应减轻体重。除了安全性的作用外,近年来,燃油效率和废气法规也越来越重要,以鼓励制造商减轻乘用车的重量。在这项研究中,前保险杠横梁由三种材料制成:铝,玻璃毡热塑性塑料(GMT) ),然后通过冲击建模研究高强度片状模塑料(SMC),以确定挠度,冲击力,应力分布和能量吸收行为。将上述特性相互比较,以找到材料,形状和厚度的最佳选择。结果表明,改进的SMC保险杠梁可以最大程度地减小保险杠梁的挠度,冲击力和应力分布,并使弹性应变能最大化。另外,检查了乘客在撞击行为中的影响。计算出的参数的时间历程显示在图表中以进行比较。此外,除了上述优点之外,SMC材料还可以实现一些其他优点,例如由于没有肋的简单形状而易于制造,利用低成本复合材料的经济方面以及相对于其他材料的减轻重量。

著录项

  • 来源
    《Thin-Walled Structures》 |2009年第9期|902-911|共10页
  • 作者单位

    School of Automotive Engineering, Iran University of Science & Technology, 16846-13114 Narmak, Tehran, Iran;

    School of Automotive Engineering, Iran University of Science & Technology, 16846-13114 Narmak, Tehran, Iran;

    Department of Marine Technology, Amirkabir University of Technology, 15914 Tehran, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bumper beam; impact; low velocity;

    机译:保险杠影响;低速;

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