Home /Research /Stiffness-based Offline Toolpath Error Compensation for Robotized Incremental Forming
OTHER

Stiffness-based Offline Toolpath Error Compensation for Robotized Incremental Forming

Walid K. Shaker, Alexandr Klimchik

Year
2023
Citations
3

Abstract

This paper addresses the challenge of the poor accuracy and the toolpath deviation in Incremental Sheet Forming (ISF) caused by the forming forces applied to the workpiece. The paper proposes an offline toolpath error compensation approach based on stiffness analysis. A truncated cone was used as a test case and the numerical simulation of the ISF process was conducted on Abaqus CAE software to extract forming forces corresponding to toolpath points. The compensation algorithm is based on the Virtual Joint Method (VJM) and is implemented on a FANUC R-2000iC/165F robot using RoboDK API for MATLAB. The results show that the deviation of the robot tool due to the forming forces may reach up to 20 mm which can be handled by the compensated toolpath. Finally, the study proposes an overall process for the stiffness-based correction algorithm.

Keywords

Compensation (psychology)Process (computing)StiffnessMATLABIncremental sheet formingComputer scienceSoftwareForming processesRobotNumerical control

Related papers

Browse all OTHER papers