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Simulation of Hot-Forging Processes with a Temperature−Dependent Viscoplasticity Model

  • Hot forging dies are subjected to high cyclic thermo-mechanical loads. In critical areas, the occurring stresses can exceed the material’s yield limit. Additionally, loading at high temperatures leads to thermal softening of the used martensitic materials. These effects can result in an early crack initiation and unexpected failure of the dies, usually described as thermo-mechanical fatigue (TMF).Hot forging dies are subjected to high cyclic thermo-mechanical loads. In critical areas, the occurring stresses can exceed the material’s yield limit. Additionally, loading at high temperatures leads to thermal softening of the used martensitic materials. These effects can result in an early crack initiation and unexpected failure of the dies, usually described as thermo-mechanical fatigue (TMF). In previous works, a temperature-dependent cyclic plasticity model for the martensitic hot forging tool steel 1.2367 (X38CrMoV5-3) was developed and implemented in the finite element (FE)-software Abaqus. However, in the forging industry, application-specific software is usually used to ensure cost-efficient numerical process design. Therefore, a new implementation for the FE-software Simufact Forming 16.0 is presented in this work. The results are compared and validated with the original implementation by means of a numerical compression test and a cyclic simulation is calculated with Simufact Forming.show moreshow less

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Metadaten
Document Type:Conference Proceeding
Conference Type:Konferenzartikel
Zitierlink: https://opus.hs-offenburg.de/6819
Bibliografische Angaben
Title (English):Simulation of Hot-Forging Processes with a Temperature−Dependent Viscoplasticity Model
Conference:Congress of the German Academic Association for Production Technology : WGP (12. : October 2022 : Stuttgart)
Author:Janina Siring, Markus SchlayerStaff MemberORCiD, Hendrik Wester, Thomas SeifertStaff MemberORCiDGND, Daniel Rosenbusch, Bernd-Arno Behrens
Edition:1.
Year of Publication:2023
Date of first Publication:2023/02/02
Publisher:Springer
First Page:81
Last Page:90
Parent Title (English):Production at the Leading Edge of Technology
Editor:Mathias Liewald, Alexander Verl, Thomas Bauernhansl, Hans-Christian Möhring
ISBN:978-3-031-18320-1 (Softcover)
ISBN:978-3-031-18318-8 (eBook)
ISSN:2194-0525
ISSN:2194-0533 (E-ISSN)
DOI:https://doi.org/10.1007/978-3-031-18318-8_9
URL:https://link.springer.com/chapter/10.1007/978-3-031-18318-8_9
Language:English
Inhaltliche Informationen
Institutes:Fakultät Maschinenbau und Verfahrenstechnik (M+V)
DDC classes:600 Technik, Medizin, angewandte Wissenschaften
GND Keyword:Plastizität
Tag:Hot forging; Martensitic die steel; Plasticity model
Funded by (selection):Deutsche Forschungsgemeinschaft
Formale Angaben
Relevance:Konferenzbeitrag: h5-Index < 30
Open Access: Closed 
Licence (German):License LogoUrheberrechtlich geschützt