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Optimization design of bonnet inner based on pedestrian head protection and stiffness requirements

机译:基于行人头部保护和刚度要求的发动机罩内部优化设计

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摘要

Head impact with bonnet is one of the major causes for pedestrian severe injury or fatality in car accidents. This paper proposes a multidisciplinary design optimization method for bonnet inner based on pedestrian head protection along with bonnet stiffness requirement. A finite element (FE) model of a child headform impactor is developed and verified via simulation according to Global Technical Regulation No. 9 (GTR No. 9). Static stiffness analysis and headform collision simulation against one impact point for a particular bonnet are implemented. Parametric design and optimization analysis are carried out. Optimization solution significantly achieves a better head protection effect, which clearly affirms the feasibility of the proposed multidisciplinary optimization method and provides a reference approach to optimal design of engine bonnet inner.
机译:发动机罩的头部碰撞是行人在车祸中受重伤或死亡的主要原因之一。提出了一种基于行人头部保护和发动机罩刚度要求的发动机罩内部多学科设计优化方法。根据全球技术法规第9号(GTR第9号),通过仿真开发并验证了儿童头型撞击器的有限元(FE)模型。针对特定引擎盖,针对一个撞击点进行了静态刚度分析和头部碰撞仿真。进行参数设计和优化分析。优化解决方案显着地达到了更好的头部保护效果,这清楚地证明了所提出的多学科优化方法的可行性,并为发动机罩内部的优化设计提供了参考方法。

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