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EFFECT OF STRUCTURAL VARIABLES ON AUTOMOTIVE BODY BUMPER IMPACT BEAM

机译:结构变量对汽车车身防撞梁的影响

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Increasing fuel economy has been a central issue in the development of new cars, and one of the important strategies to improve fuel economy is to decrease vehicle weight. In order to obtain this goal, researchers have sought to make bumpers lighter without sacrificing strength, ability to absorb impact, or passenger safety. In this study, the effects of structural variables on the torsional stiffness of a body bumper impact beam were analyzed for possible weight reduction. To this end, the effects of variation of section height, increase of impact beam thickness and the addition of stays in a bumper impact beam were carefully investigated and compared. Among these, the most effective way to increase the torsional stiffness of the bumper impact beam was found to be increasing the section height. In addition, the potential for overall weight reduction of the impact beam was examined by comparing the crash capability of a bumper using conventional steels with that of high-strength steel (boron steel) with a tensile strength of 1.5 GPa. This analysis could serve as a guide to design for optimal bumper impact beam development.
机译:提高燃油经济性一直是新车开发的核心问题,而减轻燃油重量是提高燃油经济性的重要策略之一。为了达到这个目标,研究人员试图在不牺牲强度,吸收冲击力或乘客安全的情况下减轻保险杠的重量。在这项研究中,分析了结构变量对车身保险杠冲击梁的扭转刚度的影响,以减轻重量。为此,仔细研究并比较了截面高度变化,冲击梁厚度增加以及在保险杠冲击梁上增加撑杆的影响。其中,增加保险杠防撞梁的扭转刚度的最有效方法是增加截面高度。此外,通过比较使用传统钢的保险杠的抗撞能力与抗拉强度为1.5 GPa的高强度钢(硼钢)的撞撞能力,来检验冲击梁总体重量的降低潜力。该分析可以作为设计最佳保险杠防撞梁的指导。

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