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Influence of part orientation on the geometric accuracy in robot-based incremental sheet metal forming

Denis Daniel Störkle, Patrick Seim, Lars Thyssen, Bernd Kuhlenkötter

发表年份
2016
引用次数
5

摘要

This article describes new developments in an incremental, robot-based sheet metal forming process (‘Roboforming’) for the production of sheet metal components for small lot sizes and prototypes. The dieless kinematic-based generation of the shape is implemented by means of two industrial robots, which are interconnected to a cooperating robot system. Compared to other incremental sheet metal forming (ISF) machines, this system offers high geometrical form flexibility without the need of any part-dependent tools. The industrial application of ISF is still limited by certain constraints, e.g. the low geometrical accuracy. Responding to these constraints, the authors present the influence of the part orientation and the forming sequence on the geometric accuracy. Their influence is illustrated with the help of various experimental results shown and interpreted within this article.

关键词

Sheet metalIncremental sheet formingKinematicsFlexibility (engineering)RobotOrientation (vector space)Forming processesProcess (computing)Industrial robotComputer science

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