Development of an analytical 3D-simulation model of the levelling process

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OriginalspracheEnglisch
Seiten (von - bis)1060-1068
Seitenumfang9
FachzeitschriftJournal of Materials Processing Technology
Jahrgang211
Ausgabenummer6
PublikationsstatusVeröffentlicht - 18 Jan. 2011

Abstract

Sheet metal often shows shape defects, which is not complying with the increasing requirements for the quality of the products needed to satisfy the highest demands on finer tolerances. Due to the market's high requirements on the quality of products, new high-technology levelling machines were developed. The adjustment of these levellers is very complicated and a successful adjustment depends mainly on the experience of the line operator. As the computational power has developed over the past years, simulation becomes more important in the production process and is used in analysing the effects of leveller adjustments on the unflattened sheet metal. In this study, edge- and centre waves are investigated. In order to find a suitable adjustment of the leveller to reach a flat sheet metal, an analytical 3D simulation model has been developed using the Matlab programming environment. The sheet metal will be firstly analyzed and visualized before and after deformation. A user-friendly interface has been developed to enter the required parameters before starting the simulation. Different methods have been used to investigate the effect of the levelling process on the sheet metal and to calculate the remaining shape defects after levelling. The simulation results were validated by experiments and are represented in this paper.

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Development of an analytical 3D-simulation model of the levelling process. / Behrens, B. A.; El Nadi, T.; Krimm, R.
in: Journal of Materials Processing Technology, Jahrgang 211, Nr. 6, 18.01.2011, S. 1060-1068.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Behrens BA, El Nadi T, Krimm R. Development of an analytical 3D-simulation model of the levelling process. Journal of Materials Processing Technology. 2011 Jan 18;211(6):1060-1068. doi: 10.1016/j.jmatprotec.2011.01.007
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