Lightweight design approach of an LFT-metal multi-material vehicle door concept

Danshi Li, Xiangfan Fang
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Abstract

This work presents a new approach to design and validate an economical lightweight multi-material roof-integrated vehicle door concept made of long-fiber thermoplastics (LFT) and metals with the consideration of package constrain, critical static and crash loading cases. A novel “two-ring” door structure is introduced, which consists of a major load-bearing region and a minor load-bearing but highly function-integrated region. This concept design concentrates on using cost-efficient lightweight materials, such as aluminum, LFTs and uni-directional tapes (UD-Tapes), as well as corresponding mass-production methods. Using the topology and parameter optimization along with the load anisotropy analysis, the rib structure on the door concept is optimized and the effective usage of UD-Tapes is guaranteed. In comparison to the steel reference, the final LFT-metal multi-material door concept achieves 20% weight reduction with a comparable or improved mechanical performance.

LFT金属多材料车门概念的轻量化设计方法
这项工作提出了一种新的方法来设计和验证一种由长纤维热塑性塑料(LFT)和金属制成的经济的轻质多材料车顶集成车门概念,同时考虑了封装约束、临界静态和碰撞载荷情况。介绍了一种新型的“双环”门结构,它由一个主承载区和一个次承载但功能高度集成的区域组成。这种概念设计专注于使用经济高效的轻质材料,如铝、LFT和单向胶带(UD胶带),以及相应的大规模生产方法。通过拓扑结构和参数优化以及荷载各向异性分析,优化了门上的肋结构概念,保证了UD胶带的有效使用。与钢制参考相比,最终的LFT金属多材料门概念实现了20%的重量减轻,具有相当或改进的机械性能。
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