...
首页> 外文期刊>Production Engineering >Review on the development of a hybrid incremental sheet forming system for small batch sizes and individualized production
【24h】

Review on the development of a hybrid incremental sheet forming system for small batch sizes and individualized production

机译:审查用于小批量和个性化生产的混合增量板材成形系统的开发

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Asymmetric Incremental Sheet Forming (AISF) has been developed as a flexible process for low-volume production of sheet metal parts. In AISF, a part is obtained as the sum of localized plastic deformations produced by a simple forming tool that moves under CNC control. In spite of about 20 years of research and development, AISF has not had much industrial take-up yet. The main reason for this is that attempts to improve, among other limitations, the accuracy, speed and range of feasible geometries of the process by adapted process strategies has not brought about general solutions. This paper presents an overview of the current state of development of hybrid asymmetric incremental sheet forming processes at RWTH Aachen University. The goal of the development of hybrid ISF processes is to allow for a quantum leap of the capabilities of AISF in order to enable a broader industrial use of AISF. Two hybrid process variations of AISF are presented: stretch forming combined with ISF and laser-assisted AISF. It is shown that the combination of stretch forming and AISF can improve the time per part, sheet thickness distribution and accuracy of the final part. Laser-assisted AISF is shown to enable the flexible forming of non cold-workable materials such as magnesium and titanium alloys when the forming conditions are adapted to the temperature and strain rate dependent formability of the sheet metal. In addition, first results of the forming of hybrid aluminum-steel sheet metal are shown.
机译:非对称增量板料成形(AISF)是一种灵活的工艺,可用于小批量生产钣金零件。在AISF中,零件的获得是通过在CNC控制下移动的简单成型工具产生的局部塑性变形的总和。尽管进行了大约20年的研究和开发,AISF仍没有太多的工业应用。这样做的主要原因是,除其他限制外,通过采用适当的工艺策略来改善工艺的精度,速度和可行几何形状范围的尝试并未带来通用的解决方案。本文概述了亚琛工业大学混合非对称增量板材成形工艺的发展现状。混合ISF流程开发的目标是实现AISF功能的飞跃,从而实现AISF的更广泛的工业应用。提出了AISF的两种混合工艺变体:与ISF和激光辅助AISF相结合的拉伸成型。结果表明,拉伸成形和AISF的组合可以改善每个零件的时间,板材厚度分布和最终零件的精度。当成形条件适应于取决于温度和应变率的金属薄板成形性时,激光辅助AISF能够灵活地成形非冷加工材料,例如镁和钛合金。另外,示出了形成混合铝-钢薄板的第一结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号