• CN:11-2187/TH
  • ISSN:0577-6686

›› 2008, Vol. 44 ›› Issue (6): 27-35.

• 论文 • 上一篇    下一篇

车身轻量化与钢铝一体化结构新技术的研究进展

龙江启;兰凤崇;陈吉清   

  1. 华南理工大学汽车工程学院
  • 发布日期:2008-06-15

New Technology of Lightweight and Steel-aluminum Hybrid Structure Car Body

LONG Jiangqi;LAN Fengchong;CHEN Jiqing   

  1. School of Automotive Engineering, South China University of Technology
  • Published:2008-06-15

摘要: 综述现代车身轻量化技术的研究进展,包括新型钢板与铝合金的应用、采用框架结构车身、零部件整合与结构优化及新的制造工艺与成形技术等。基于先进的车身骨架结构与轻质材料相结合的思想,提出钢铝一体化车身框架结构车身。在现有钢制车身骨架结构上,应用部分铝材替代钢材,通过合理的结构组合实现一体化承载,充分发挥铝合金板材在减重及强度刚度方面的优势,实现车身结构的整体优化。提出这种车身结构的研究内容、关键技术及建立精确计算机辅助工程(Computer aided engineering, CAE)分析模型的技术路线。研究内容包括如何确定钢铝的比例、铝合金替代钢的部位、钢与铝合金结构的形状和尺寸以及零件的合理布局,钢与铝的连接机理及铝合金成形理论的研究,不同钢铝比例与不同替代部位框架结构车身对整车强度、刚度、振动、噪声、可靠性、平顺性及操纵稳定性等性能的影响规律以及整车开发规范。关键技术包括新的成形工艺技术、拓扑结构优化、连接技术、电化学腐蚀问题及基于安全的轻量化车身技术。

关键词: 车身, 钢铝一体化, 轻量化

Abstract: The research and technology evolution of lightweight car body are reviewed, including the application of various new type steel and aluminum alloys, aluminum space frame in car body structure, components arrangement & integration, structural optimization, and new manufacturing process and forming techniques. Based on the incorporation of the advanced framework structure and the light material substitution, the steel-aluminum hybrid structure is presented. The substituting aluminum alloys for some steel in the traditional steel framework structure and optimizing the structural combination will implement the integrated load-supporting with the hybrid structure. It can develop the advantages of aluminum alloy sheets in weight reduction and increased strength and rigidity and result in the whole body structural optimization. The research contents, the key technologies, and the feasible schemes, approaches and precise computer aided engineering (CAE) modeling for self-development of the hybrid structure body are expressed. The research contents mainly include determining the ratio of steel and aluminum, the substitution position of aluminum to steel, the structural members dimension, the optimal components layout, and research on the joining mechanism of steel and aluminum and forming theory of aluminum alloy, and analyzing the influences of these factors on the whole car performances such as the joining strength, rigidity, vibration, noise, reliability, ride performance and handling stability. As a result, the whole car development criterion of the steel-aluminum hybrid structure is proposed. The key technologies include the new forming technology, topological structure optimization, joining technology, electrochemical corrosion and lightweight car body based on required safety.

Key words: Car body, Lightweight, Steel-aluminum

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