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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Design and optimization of electric bus monocoque structure consisting of composite materials
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Design and optimization of electric bus monocoque structure consisting of composite materials

机译:由复合材料组成的电动总线单胶合结构的设计与优化

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摘要

This paper proposes a novel design methodology for electric-bus structures by implementing the finite element method via ABAQUS (TM) and linear programming via MATLAB (TM). A monocoque sandwich-structured fiber-reinforced composite bus with a maximum driving range of 300 km is conceived using the proposed methodology. The bus-body structure is designed based on safety criteria such as vehicle registration regulations, the strength of the bus structure under various driving conditions, bending- and torsion-stiffness requirements, and the rollover testing standard of UN ECE R66. A procedure developed to systematically conduct parametric studies by varying the core and face thicknesses of the sandwich structure of each component is presented. Multivariate functions are formulated to determine the correlations of structural responses with changes in geometric parameters. Linear programming is implemented to minimize the mass of the bus structure under design constraints. The proposed monocoque bus structure meets all requirements, and its body mass is 63.3% less than the benchmark value.
机译:本文通过ABAQUS(TM)和通过MATLAB(TM)的线性编程实现了电动总线结构的新颖设计方法。使用所提出的方法构思了最大驾驶范围300公里的单胶质夹层结构纤维增强母线。母线结构基于安全标准设计,例如车辆登记规范,在各种驾驶条件下的总线结构,弯曲和扭转刚度要求下的总线结构,以及UN ECE R66的翻转测试标准。提出了一种通过改变每个组分的夹层结构的芯和面厚度来系统地进行参数化研究的过程。配制多变量功能以确定结构响应与几何参数的变化的相关性。实施线性编程以最小化设计约束下总线结构的质量。拟议的单套管式总线结构符合所有要求,其体重比基准值低63.3%。

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