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  4. Micromechanical fatigue experiments for validation of microstructure-sensitive fatigue simulation models
 
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2022
Journal Article
Title

Micromechanical fatigue experiments for validation of microstructure-sensitive fatigue simulation models

Abstract
Crack initiation governs high cycle fatigue life and is sensitive to microstructural details. While corresponding microstructure-sensitive models are available, their validation is difficult. We propose a validation framework where a fatigue test is mimicked in a sub-modeling simulation by embedding the measured microstructure into the specimen geometry and adopting an approximation of the experimental boundary conditions. Exemplary, a phenomenological crystal plasticity model was applied to predict deformation in ferritic steel (EN1.4003). Hotspots in commonly used fatigue indicator parameter maps are compared with damage segmented from micrographs. Along with the data, the framework is published for benchmarking future micromechanical fatigue models.
Author(s)
Durmaz, Ali Riza  
Fraunhofer-Institut für Werkstoffmechanik IWM  
Natkowski, Erik
Robert Bosch GmbH, Center for Research and Advance Engineering, Renningen; Steel Institute, RWTH Aachen University
Arnaudov, Nikolai
Robert Bosch GmbH, Center for Research and Advance Engineering, Renningen; Material Testing Institute, University of Stuttgart
Sonnweber-Ribic, Petra
Robert Bosch GmbH, Center for Research and Advance Engineering, Renningen
Weihe, Stefan
Department of Microsystems Engineering, University of Freiburg
Münstermann, Sebastian
Steel Institute, RWTH Aachen University
Eberl, Christoph  
Fraunhofer-Institut für Werkstoffmechanik IWM  
Gumbsch, Peter  
Fraunhofer-Institut für Werkstoffmechanik IWM  
Journal
International journal of fatigue  
Open Access
DOI
10.1016/j.ijfatigue.2022.106824
Additional full text version
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Language
English
Fraunhofer-Institut für Werkstoffmechanik IWM  
Keyword(s)
  • fatigue damage

  • crystal plasticity

  • ferritic steel

  • micromechanical testing

  • validation

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