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首页> 外文期刊>International journal of impact engineering >Design of an aluminium-based vehicle platform for front impact safety
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Design of an aluminium-based vehicle platform for front impact safety

机译:基于铝质车辆平台的正面碰撞安全性设计

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摘要

The current paper examines the design of an aluminium-intensive small car platform for desirable front impact safety performance. A space frame-type architecture comprised of extruded aluminium members with welded joints is considered for inherent structural rigidity, and low investment in terms of tooling. A finite element model of the vehicle is employed for crash analysis using the explicit code LS-DYNA. Confidence in analysis is established at the component level by benchmarking finite element models of welded joints against experimental data, and axial crushing of aluminium tubes against published numerical results and theoretical prediction. A numerical design of experiments is conducted for arriving at a front-end design that will yield desirable safety performance during impact against a rigid barrier at 30 mph (FMVSS 208 condition). For comparable new car assessment program performance at a higher speed of 35 mph, a lumped parameter idealization is used to identify the principal design changes that may be necessary. The current approach of component level testing combined with finite element and lumped parameter-based simulations can be regarded as an effective and time-saving procedure in the crash safety design of new vehicles.
机译:当前的论文研究了铝密集型小型汽车平台的设计,以获得理想的前撞安全性能。考虑到具有固有的结构刚度和在工具方面的投资少的空间框架型结构,该结构由具有焊接接头的挤压铝构件构成。使用显式代码LS-DYNA将车辆的有限元模型用于碰撞分析。通过根据实验数据对焊接接头的有限元模型进行基准测试,并根据已发布的数值结果和理论预测对铝管进行轴向挤压,从而在组件级别建立分析的信心。为了达到前端设计,进行了数值设计实验,该前端设计在以30 mph的速度(FMVSS 208条件)撞击刚性障碍物时会产生理想的安全性能。为了使新车评估程序在35 mph的较高速度下具有可比的性能,可使用集总参数理想化来确定可能需要的主要设计更改。在新车的碰撞安全设计中,当前的部件级测试方法与有限元和基于集总参数的模拟相结合可以被视为一种有效且省时的程序。

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