Home /Research /Springback effects during single point incremental forming: Optimization of the tool path
OTHER

Springback effects during single point incremental forming: Optimization of the tool path

Laurence Giraud-Moreau, Jérémy Belchior, Pascal Lafon, Lionel Lotoing, Abel Cherouat, Eric Courtielle, Dominique Guines, Patrick Maurine

Year
2018
Citations
5

Abstract

Incremental sheet forming is an emerging process to manufacture sheet metal parts. This process is more flexible than conventional one and well suited for small batch production or prototyping. During the process, the sheet metal blank is clamped by a blank-holder and a small-size smooth-end hemispherical tool moves along a user-specified path to deform the sheet incrementally. Classical three-axis CNC milling machines, dedicated structure or serial robots can be used to perform the forming operation. Whatever the considered machine, large deviations between the theoretical shape and the real shape can be observed after the part unclamping. These deviations are due to both the lack of stiffness of the machine and residual stresses in the part at the end of the forming stage. In this paper, an optimization strategy of the tool path is proposed in order to minimize the elastic springback induced by residual stresses after unclamping. A finite element model of the SPIF process allowing the shape prediction of the formed part with a good accuracy is defined. This model, based on appropriated assumptions, leads to calculation times which remain compatible with an optimization procedure. The proposed optimization method is based on an iterative correction of the tool path. The efficiency of the method is shown by an improvement of the final shape.

Keywords

Incremental sheet formingBlankSheet metalPath (computing)Process (computing)StiffnessFinite element methodForming processesComputer sciencePoint (geometry)

Related papers

Browse all OTHER papers