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Performance of Automotive Composite Bumper Beams and Hood Subjected to Frontal Impacts

机译:汽车复合保险杠横梁和引擎盖在正面冲击下的性能

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Performance of automotive composite bumper beam subjected to frontal impact is presented and discussed in this paper. The aim of this study is to analyze the effect of steel and composite materials on internal energy of the automotive front bumper beam and with respect to pedestrian head injury at the hood. The front bumper beams and hood made of aluminum AA5182, e-glass/epoxy composite and carbon epoxy composite were studied and characterized by impact modeling using LS-DYNA V971, according to United States New Car Assessment Program (US-NCAP) defining the frontal impact velocity and based on European Enhanced Vehicle-Safety Committee. The most important variables of this structure were mass, material, internal energy, and the so-called Head Injury Criterion (HIC). The results are compared with a bumper beam and a hood made of mild steel. The in-plane failure behaviors of the composites were evaluated by using the Tsai Wu failure criterion. LS-DYNA Finite Element Analysis software was used. The results showed that a carbon fiber/epoxy composite bumper can reduce the bumper mass and has the highest value of internal energy followed by the glass fiber/epoxy composite. The FE model of a production hood was introduced and validated. In order to evaluate the protective performance of the baseline hood, the FE models for a 50 percentile of an adult pedestrian dummy were used to impact the hood. It was found that the aluminum AA5182 hood can obviously reduce the Head Injury Criterion (HIC) values compared to the baseline hood. The HIC values of the dummy model were further reduced too much lower than 1000.
机译:提出并讨论了汽车复合保险杠横梁在正面冲击下的性能。这项研究的目的是分析钢和复合材料对汽车前保险杠横梁内部能量以及引擎盖上行人头部受伤的影响。根据定义新车前部的美国新车评估计划(US-NCAP),使用LS-DYNA V971对铝制AA5182,电子玻璃/环氧树脂复合材料和碳环氧复合材料制成的前保险杠横梁和引擎盖进行了研究,并进行了建模。撞击速度,并基于欧洲增强型车辆安全委员会。这种结构最重要的变量是质量,材料,内部能量和所谓的头部伤害准则(HIC)。将结果与保险杠梁和低碳钢引擎盖进行比较。复合材料的面内破坏行为采用蔡武破坏准则进行评估。使用LS-DYNA有限元分析软件。结果表明,碳纤维/环氧树脂复合保险杠可以降低保险杠质量,并具有最高的内能,其次是玻璃纤维/环氧树脂复合保险杠。引入并验证了油烟机的有限元模型。为了评估基本引擎盖的防护性能,使用了50%的成年行人假人的有限元模型来冲击引擎盖。发现铝制AA5182头罩与基准头罩相比可以明显降低头部受伤标准(HIC)值。虚拟模型的HIC值进一步降低到远低于1000。

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