复合材料科学与工程 ›› 2026, Vol. 0 ›› Issue (5): 121-129.DOI: 10.19936/j.cnki.2096-8000.20260528.016

• 工程应用 • 上一篇    下一篇

碳纤维发动机罩多目标优化设计

康元春1,2, 李盈莉1   

  1. 1.湖北汽车工业学院 汽车工程学院,十堰 442002;
    2.汽车动力传动与电子控制湖北省重点实验室,十堰 442002
  • 收稿日期:2025-04-02 出版日期:2026-05-28 发布日期:2026-07-01
  • 作者简介:康元春(1981—),女,硕士,副教授,主要从事结构及材料轻量化方面的研究,20060028@huat.edu.cn。
  • 基金资助:
    汽车动力传动与电子控制湖北省重点实验室创新基金(2015xtzx0407)

Optimization design of carbon fiber engine hood

KANG Yuanchun1,2, LI Yingli1   

  1. 1. School of Automotive Engineering, Hubei University of Automotive Technology, Shiyan 442002, China;
    2. Key Laboratory of Automotive Power Train and Electronics, Shiyan 442002, China
  • Received:2025-04-02 Online:2026-05-28 Published:2026-07-01

摘要: 为实现发动机罩的轻量化并保证其刚度和强度等性能,采用了多变量耦合多目标优化的方法。设计了碳纤维外板与金属内板的发动机罩。基于等刚度原理确定发动机罩碳纤维外板的初始厚度,并基于拓扑优化对金属板进行重构,得到三种内板结构方案。综合考虑内板材料、内板结构、内板厚度和碳纤维外板铺层厚度对发动机罩性能的影响,利用拉丁超立方抽样,并在此基础上构建径向基函数(Radial Basis Function,RBF)神经网络代理模型,进行多变量耦合的多目标优化;为得到最佳的碳纤维铺层顺序,在OptiStruct中对外板铺层顺序进行优化。优化结果表明,所设计的发动机罩系统静态性能符合设计要求,且较原发动机罩质量减轻了51.27%。

关键词: 发动机罩, 拓扑优化, 轻量化, 复合材料

Abstract: To achieve the lightweight of the engine hood while ensuring its stiffness and strength and other performance, a multi-variable coupling multi-objective optimization method was adopted. The engine hood with carbon fiber outer panel and metal inner panel was designed. Based on the principle of equal stiffness, the initial thickness of the carbon fiber outer panel of the engine hood was determined. The metal plate was restructured based on topology optimization, and three inner panel structure schemes were obtained. Considering the influence of inner panel material, inner panel structure, inner panel thickness and carbon fiber outer panel ply thickness on the performance of the engine hood, Latin hypercube sampling was used, and on this basis, a radial basis function (RBF) neural network surrogate model was constructed for multi-variable coupling multi-objective optimization. To obtain the best carbon fiber ply sequence, the ply sequence of the outer panel was optimized in OptiStruct. The optimization results show that the static performance of the designed engine hood system meets the design requirements, and the mass is reduced by 51.27% compared with the original engine hood.

Key words: engine hood, topology optimization, lightweight design, composite materials

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