• CN:11-2187/TH
  • ISSN:0577-6686

›› 2012, Vol. 48 ›› Issue (18): 55-59.

• 论文 • 上一篇    下一篇

重型车辆铝合金轮辋挤压成形技术及应用

张治民;王强;路光;于建民   

  1. 中北大学国防精密塑性成形技术研究应用中心;中北大学材料科学与工程学院
  • 发布日期:2012-09-20

Research on Extrusion Technology and Application for Aluminum Alloy Wheel Rim of Heavy Vehicles

ZHANG Zhimin;WANG Qiang;LU Guang;YU Jianmin   

  1. Research and Application Center for Precision Plastic Forming Technology, North University of China School of Material Science and Engineering, North University of China
  • Published:2012-09-20

摘要: 轻量化是重型车辆节约能源和减少排放的有效措施,是提高车辆性能的重要途径。针对重型车辆传统采用钢制轮辋质量大、难以有效减重的问题,为推进重载汽车轻量化进程,开展铝合金轮辋挤压成形技术及应用研究。系统研究变形温度、变形次数对7A04合金组织与性能影响的基础上,提出7A04合金逐次控制变形技术,在480 ℃下4次变形,可获得较好的综合力学性能,解决了高强铝合金常规成形塑性差的问题;开发的空心坯料反挤压成形技术,主应力分析表明可减小接触面上正应力,解决了铝合金轮辋成形力大的问题,在12.5 MN挤压液压机上实现10.0-20轮辋的整体成形。7A04合金轮辋替代传统钢制轮辋减重55%以上,已通过实车考核并批量应用,为装备的轻量化提供新的技术途径。

关键词: 挤压, 铝合金, 轮辋, 轻量化, Ni60A, Weibull分布, 工艺优化, 滚动接触疲劳, 疲劳寿命, 涂层

Abstract: Lightweight can not only save energy, reduce emissions, but also improve the performance of heavy vehicles. In order to promote lightweight process of heavy duty automobile, the forming technology of the aluminum alloy wheel rim originally made in steel are studied. Investigation on influence of deformation temperature and deformation passes on microstructures and mechanical properties of 7A04 alloy, multiple deformations technology to achieve strength-toughness controlling is developed. The good comprehensive mechanical properties are achieved after 4 passes deformation at 480 ℃ for 7A04 alloy. The anti-extrusion from hollow billet to reduce the forming force is developed. The analytical results by slab method show that the forming force decreases enormously with the decrease of contact area and normal stress on the interface. The 20 inch one-piece aluminium alloy wheel rim is manufactured on 12.5 MN vertical hydraulic press. Over 55% structure weight loss can be achieved by replacing steel. The aluminum alloy wheels have been applied in heavy vehicles and provided a new method for reducing weight of equipments.

Key words: Aluminum alloy, Extrusion, Lightweight, Wheel rim, coatings, fatigue life, Ni60A, optimization, rolling contact fatigue, Weibull distribution

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