• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2025, Vol. 61 ›› Issue (18): 151-160.doi: 10.3901/JME.2025.18.151

• 材料科学与工程 • 上一篇    

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2A12铝合金板电脉冲辅助渐进成形极限研究

王大豪, 潘飞, 赵全光, 方进秀   

  1. 安徽工业大学冶金工程学院 马鞍山 243032
  • 收稿日期:2024-09-05 修回日期:2025-03-02 发布日期:2025-11-08
  • 作者简介:王大豪,男,1998年出生。主要研究方向为电脉冲辅助渐进成形工艺。E-mail:1356081995@qq.com;方进秀(通信作者),女,1988年出生,博士,讲师。主要研究方向为板料塑性成形、板材数字化成形工艺、电磁成形、模具结构数值仿真优化设计。E-mail:jinxiufang@ahut.edu.cn
  • 基金资助:
    安徽省教育厅重点(KJ2021A0356)、安徽省自然科学基金青年(1908085QE229)和冶金工程与资源综合利用安徽省重点实验室2020年度开放基金(SKF20-03)资助项目

Research on Electric Pulse Assisted Incremental Forming Limit of 2A12 Aluminum Alloy Sheet

WANG Dahao, PAN Fei, ZHAO Quanguang, FANG Jinxiu   

  1. School of Metallurgical Engineering, Anhui University of Technology, Ma'anshan 243032
  • Received:2024-09-05 Revised:2025-03-02 Published:2025-11-08

摘要: 渐进成形技术具有产品研发周期短、成本低及工艺柔性高的特点,可满足小批量定制零件生产需求。但其本身的特点使得室温下板材在成形过程中存在精度较差及成性性能有限等问题。鉴于电脉冲具有降低金属的变形抗力,提高塑性变形能力等效果。拟将电脉冲应用到2A12铝合金板材渐进成形,通过设计响应曲面法试验,探究电流参数和传统渐进成形工艺参数对铝合金材料成形极限的影响。结果表明电脉冲的引入提高了铝合金板材的成形极限,增强了其成形性能。且在一定范围内,随着电流的增大,板材成形性能越好。基于工艺参数优化值得的变角度圆锥台件成形高度达到27.80 mm,成形极限角达到88.04°。较传统渐进成形制件的高度提高7.90 mm,增幅39.70%;成形极限角提高13.11°,增幅17.50%。电脉冲与渐进成形技术的结合,能够显著提高铝合金材料的成形极限,推动铝合金成形工艺的发展,具有重要的理论意义与工程价值。

关键词: 渐进成形, 脉冲电源, 2A12铝合金板, 响应曲面法

Abstract: Incremental forming technology has the characteristics of short produce development cycle, low cast and high process flexibility, which can meet the production requirements of small batch customized parts. However, its own characteristics make the sheet have problems such as poor accuracy and limited forming performance during the forming process at room temperature. In view of the fact that the electric pulse has the effect of reducing the deformation resistance of the metal and improving the plastic deformation ability. Therefore, the electric pulse is applied to the incremental forming process of 2A12 aluminum alloy sheet. By designing the response surface method experiment, the influence of current parameter and traditional incremental forming process parameters on the forming limit of aluminum alloy plate is explored. The results show that the introduction of electric pulse improves the forming limit of aluminum alloy sheet and enhances its formability. And within a certain range, as the increase of current, the sheet forming performance is better. Based on the optimization of process parameters, the final forming height of the variable angle conical part reaches 27.80 mm, and the forming limit angle reaches 88.04°. Compared with the traditional incremental forming parts, the height of the parts is increased by 7.90 mm, an increase of 39.70%; the forming limit angle is increased by 13.11°, an increase of 17.50%. The combination of electric pulse and incremental forming technology can significantly improve the forming limit of aluminum alloy materials and promote the development of aluminum alloy forming process, which has important theoretical significance and engineering value.

Key words: incremental forming, pulse power supply, 2A12 aluminum alloy plate, response surface method

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