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Medientyp: Sonstige Veröffentlichung; E-Artikel Titel: Applying membrane mode enhanced cohesive zone elements on tailored forming components Beteiligte: Töller, Felix [Verfasser:in]; Löhnert, Stefan [Verfasser:in]; Wriggers, Peter [Verfasser:in] Erschienen: Basel : MDPI AG, 2020 Erschienen in: Metals 10 (2020), Nr. 10 ; Metals Ausgabe: published Version Sprache: Englisch DOI: https://doi.org/10.15488/12628; https://doi.org/10.3390/met10101333 Schlagwörter: Joining zone ; Membrane mode enhanced cohesive zone elements ; Tailored forming ; Damage Entstehung: Anmerkungen: Diese Datenquelle enthält auch Bestandsnachweise, die nicht zu einem Volltext führen. Beschreibung: Forming of hybrid bulk metal components might include severe membrane mode deformation of the joining zone. This effect is not reflected by common Traction Separation Laws used within Cohesive Zone Elements that are usually applied for the simulation of joining zones. Thus, they cannot capture possible damage of the joining zone under these conditions. Membrane Mode Enhanced Cohesive Zone Elements fix this deficiency. This novel approach can be implemented in finite elements. It can be used within commercial codes where an implementation as a material model is beneficial as this simplifies model preparation with the existing GUIs. In this contribution, the implementation of Membrane Mode Enhanced Cohesive Zone Elements as a material model is presented within MSC Marc along with simulations showing the capabilities of this approach. ¬© 2020 by the authors. Licensee MDPI, Basel, Switzerland. Tarticle distributed under the terms and conditions of the Cre. Zugangsstatus: Freier Zugang Rechte-/Nutzungshinweise: Namensnennung (CC BY)