首页> 外文会议>International Conference on Sheet Metal; 20050405-08; Erlangen-Nuremberg(DE) >Incremental Sheet Forming with an Industrial Robot - Forming Limits and Their Effect on Component Design
【24h】

Incremental Sheet Forming with an Industrial Robot - Forming Limits and Their Effect on Component Design

机译:工业机器人的增量板材成形-成形极限及其对零件设计的影响

获取原文
获取原文并翻译 | 示例

摘要

Incremental sheet forming (ISF) has been a subject of research for many research groups before. However, all of the published results so far have been related to either commercial ISF machines or ISF forming with NC mills or similar. The research reported in this paper concentrates on incremental sheet forming with an industrial robot. The test equipment is based on a strong arm robot and a moving forming table, where a sheet metal blank is attached. The tool slides on the surface of the sheet and forms it incrementally to the desired shape. The robot is capable of 5-axis forming, which enables forming of inwards curved forms. In this paper the forming limit diagram (FLD) for ISF with the robot is presented and it is compared with conventional forming limit diagrams. It will be shown that the conventional FLD does not apply to incremental forming process. Geometrical accuracy of sample pieces is also studied. Cones of different shapes are formed with the robot equipment and their correspondence with the 3D CAD model is evaluated. The results are compared with other results of accuracy of incremental sheet forming, reported earlier by other researchers. The third issue covered in this article is a product development point of view to incremental sheet forming. In addition to fast prototyping and low volume production of sheet metal parts, ISF brings new possibilities to sheet metal component design and manufacturing. These possibilities can only be exploited if design rules, that will take the possibilities and limitations of the method into account are created for ISF.
机译:以前,增量板材成形(ISF)一直是许多研究小组的研究主题。但是,到目前为止,所有已发布的结果都与商用ISF机器或使用NC铣床或类似设备的ISF成型有关。本文报道的研究集中于利用工业机器人进行增量板材成形。测试设备基于一个强壮的手臂机器人和一个移动成型台,上面装有一块钣金毛坯。工具在薄板的表面上滑动并逐渐形成所需的形状。该机器人可以进行五轴成型,从而可以形成向内弯曲的形状。本文介绍了机器人的ISF成形极限图(FLD),并将其与常规成形极限图进行了比较。将会显示,传统的FLD不适用于增量成型工艺。还研究了样品的几何精度。用机器人设备形成不同形状的圆锥,并评估它们与3D CAD模型的对应关系。将这些结果与其他研究人员先前报道的增量板材成形精度的其他结果进行比较。本文讨论的第三个问题是产品开发的观点,以逐步形成板材。除了快速成型和少量生产钣金零件外,ISF还为钣金零件设计和制造带来了新的可能性。只有为ISF创建了将考虑方法可能性和局限性的设计规则,才能利用这些可能性。

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