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INVESTIGATION OF CRASHWORTHINESS OF STRUCTURAL COMPOSITE COMPONENTS IN VEHICLE CRASH TEST SIMULATIONS

机译:车辆碰撞试验模拟中的结构复合成分的碰撞价值调查

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A finite element (FE) model of a baseline and a light-weighted 2007 Chevrolet Silverado, which is a body-on-frame pickup truck, was utilized to evaluate the safety performance of a plastics and composite intensive vehicle (PCIV). By light-weighting steel components in the Silverado using advanced plastics and composites, the original vehicle weight, 2,307 kg, was reduced to 1,874 kg, which is about a 19.0% decrease. As a result, the light-weighted vehicle contains about 442 kg of plastic and composites, which represents about 23.6% of the total weight of the light-weight vehicle. These light-weighted components includes not only non-structural components, but also structural and semi-structural components, such as the bumpers, front-end modules, fenders, door impact beams, A-and B- pillar reinforcements, and ladder frame. The crash performance of these structural components was evaluated by the simulations of four vehicle crash tests: (1) frontal New Car Assessment Program (NCAP) test, (2) frontal Insurance Institute for Highway Safety (IIHS) offset test, (3) side NCAP test, and (4) Federal Motor Vehicle Safety Standards (FMVSS) 216 roof test. The results show that structural composite components in a vehicle are able to provide equivalent crashworthiness performance to the steel components in frontal and side crash and roof testing configurations.
机译:利用基线的有限元(Fe)型号的基线和光加权2007年雪佛兰Silverado,它是框架上拾取卡车,以评估塑料和复合电气(PCIV)的安全性能。通过使用先进的塑料和复合材料的Silverado中的钢铁组分,原始车辆重量为2,307千克,减少到1,874千克,下降约为19.0%。结果,光加权车辆含有约442kg塑料和复合材料,其占重量载体总重量的约23.6%。这些光加权部件不仅包括非结构部件,而且包括结构和半结构部件,例如保险杠,前端模块,挡泥板,门冲击梁,A和B柱增强剂和梯形框架。这些结构组件的碰撞性能通过仿真进行了四种车辆碰撞试验的模拟:(1)正版新车评估计划(NCAP)测试,(2)公路安全(IIHS)额外保险研究所抵消测试,(3)侧NCAP测试,(4)联邦机动车安全标准(FMVS)216屋顶试验。结果表明,车辆中的结构复合部件能够为正面和侧碰撞和屋顶测试配置中的钢结构提供等效的耐火性能。

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