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  4. Identification of material properties for finite element simulation of the deep rolling process applied to welded joints
 
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2022
Journal Article
Titel

Identification of material properties for finite element simulation of the deep rolling process applied to welded joints

Abstract
During butt welding of structural steels, an inhomogeneous material state across the weld occurs that has a detrimental influence on fatigue strength. In the presented study, the identification of Lemaitre Chaboche elastoviscoplastic model parameters is shown. The identification was conducted for base material, heat affected zone and filler material of submerged arc butt welded 1.8813 (S355MLO) structural steel. The derived constitutive model was integrated into a finite element simulation of the deep rolling process, which has not been investigated before for the post treatment of welded joints. Mechanical process loads were derived, giving first explanations of the deformation behavior.
Author(s)
Heikebrügge, Steffen
Leibniz University of Hannover
Breidenstein, Bernd
Leibniz University of Hannover
Bergmann, Benjamin
Leibniz University of Hannover
Dänekas, Christian
Leibniz University of Hannover
Schaumann, Peter
Leibniz University of Hannover
Schubnell, Jan
Fraunhofer-Institut für Werkstoffmechanik IWM
Zeitschrift
Procedia CIRP
Project(s)
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Ermüdungsfestigkeit von Stumpfnahtstößen hochfester Offshore-Feinkornbaustähle mit und ohne Nachbehandlung für den Bau von Offshore-Windenergieanlagen
Funder
Bundesministerium für Wirtschaft und Klimaschutz -BMWK.
Bundesministerium für Wirtschaft und Klimaschutz -BMWK-
Konferenz
Global Web Conference "Material aspects of manufacturing processes" 2022
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DOI
10.1016/j.procir.2022.10.045
Language
English
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Fraunhofer-Institut für Werkstoffmechanik IWM
Tags
  • constitutive model

  • finite element simula...

  • deep rolling

  • welded joints

  • residual stress

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