Forming and springback prediction in press brake air bending combining finite element analysis and neural networks

Author:

Miranda Sara S1,Barbosa Manuel R2,Santos Abel D12,Pacheco J Bessa1,Amaral Rui L1

Affiliation:

1. Institute of Science and Innovation in Mechanical and Industrial Engineering (INEGI), Porto, Portugal

2. Faculty of Engineering (FEUP), University of Porto, Porto, Portugal

Abstract

Press brake air bending, a process of obtaining products by sheet metal forming, can be considered at first sight a simple geometric problem. However the accuracy of the obtained geometries involves the combination of multiple parameters directly associated with the tools and the processing parameters, as well as with the sheet metal materials and dimensions. The main topic herein presented deals with the capability of predicting the punch displacement process parameter that enables the product to be accurately shaped to a desired bending angle, in press brake air bending. In our approach, it is considered separately the forming process and the elastic recovery (i.e. the springback effect). Current solutions in press brake numerical control (computer numerical control) are normally configured by analytical models developed from geometrical analysis and including correcting factors. In our approach, it is proposed to combine the use of a learning tool, artificial neural networks, with a simulation and data generation tool (finite element analysis). This combination enables modeling the complex nonlinear behavior of the forming process and springback effect, including the validation of results obtained. A developed model taking into account different process parameters and tool geometries allow extending the range of applications with practical interest in industry. The final solution is compatible with its incorporation in a computer numerical control press brake controller. It was concluded that, using this methodology, it is possible to predict efficient and accurate final geometries after bending, being also a step forward to a “first time right” solution. In addition, the developed models, methodologies and obtained results were validated by comparison with experimental tests.

Funder

Fundação para a Ciência e a Tecnologia

European Regional Development Fund

Publisher

SAGE Publications

Subject

Applied Mathematics,Mechanical Engineering,Mechanics of Materials,Modelling and Simulation

Reference43 articles.

1. Rodrigues J, Martins P. Tecnologia Mecânica [Mechanical technology], vol I, II. Boston, MA: Addison-Wesley, 2005.

2. A Study on the Nose Radius Influence in Press Brake Bending Operations by Finite Element Analysis

3. Mathematical modeling of plane-strain bending of sheet and plate

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