Affiliation:
1. Department of Industrial Engineering (DII), University of Trento, Italy
2. Department of Civil and Industrial Engineering (DICI), University of Pisa, Italy
3. CRF, Trento Branch, Trento, Italy
Abstract
In this article, the single-point incremental forming of sheet metals made of micro-alloyed steel and Al alloy is investigated by combining the results of numerical simulation and experimental characterization, performed during the process, as well as on the final product. A finite element model was developed to perform the process simulation, based on an explicit dynamic time integration scheme. The finite element outcomes were validated by comparison with experimental results. In particular, forming forces during the process, as well as the final shape and strain distribution on the finished component, were measured. The obtained results showed the capability of the finite element modelling to predict the material deformation process. This can be considered as a starting point for the reliable definition of the single-point incremental forming process parameters, thus avoiding expensive trial-and-error approaches, based on extensive experimental campaigns, with beneficial effects on production time.
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Cited by
22 articles.
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