Properties and Application of High-manganese TWIP-steels in Sheet Metal Forming

Within this work uniaxial tensile tests have been performed with high-manganese TWIP-steel and different dual-phase steels to determine mechanical properties. The transfer of the results form uniaxial tensile tests to multi-axial stresses has been made with deep drawing experiments to describe and a...

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Published inProcedia engineering Vol. 81; pp. 939 - 944
Main Authors Busch, Christian, Hatscher, Ansgar, Otto, Manuel, Huinink, Stefan, Vucetic, Milan, Bonk, Christian, Bouguecha, Anas, Behrens, Bernd-Arno
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 2014
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Abstract Within this work uniaxial tensile tests have been performed with high-manganese TWIP-steel and different dual-phase steels to determine mechanical properties. The transfer of the results form uniaxial tensile tests to multi-axial stresses has been made with deep drawing experiments to describe and assess deep and stretch formability of the analysed materials. Forming limits of materials are demonstrated by forming limit diagrams. FE-simulation systems have been applied to predict deep drawing and spring-back behaviour of high-manganese TWIP in comparison to dual-phase steels. The simulation results are discussed between the different materials.
AbstractList Within this work uniaxial tensile tests have been performed with high-manganese TWIP-steel and different dual-phase steels to determine mechanical properties. The transfer of the results form uniaxial tensile tests to multi-axial stresses has been made with deep drawing experiments to describe and assess deep and stretch formability of the analysed materials. Forming limits of materials are demonstrated by forming limit diagrams. FE-simulation systems have been applied to predict deep drawing and spring-back behaviour of high-manganese TWIP in comparison to dual-phase steels. The simulation results are discussed between the different materials.
Author Behrens, Bernd-Arno
Vucetic, Milan
Otto, Manuel
Busch, Christian
Bouguecha, Anas
Huinink, Stefan
Hatscher, Ansgar
Bonk, Christian
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  organization: Institute for Forming technology and Forming machines, University of Hanover, An der Universität 2, 30823 Garbsen, Germany
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CitedBy_id crossref_primary_10_1016_j_msea_2017_11_111
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crossref_primary_10_1088_1742_6596_896_1_012004
crossref_primary_10_3390_met11091497
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crossref_primary_10_1016_j_proeng_2017_10_1052
crossref_primary_10_3390_met7120519
crossref_primary_10_1016_j_jmatprotec_2023_118083
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Sheet metal forming
TWIP-Steel
FEM-Simulation
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References Kuntz,M., Lampenauer,K., 2007. Verformungsmechanismen hochmanganlegierter austenitischer TWIP-Stähle, Stahl und Eisen, S. 83-89, Stuttgart.
Chung,K; Ahn,K.; Yoo,D.-H.; Chung, K.-H.; Seo, M.-H.; Park,S.-H., 2009. Formability of TWIP automotive sheets, International Journal of Plasticity, elsevier, Seoul.
Peshekhodov, I., Vucetic, M., Bouguecha, A., Behrens, B.-A., 2012. Characterization of the quasi-static flow and fracture behavior of dual-phase steels in a wide range of plane stress states, Auto Met Form, S. 265-278, Wroclaw.
Grässel,O., 2000. High strength Fe-Mn-(Al, Si) TRIP/TWIP steels development – properties – application; International Journal of Plasticity, Pergamon, Düsseldorf.
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Snippet Within this work uniaxial tensile tests have been performed with high-manganese TWIP-steel and different dual-phase steels to determine mechanical properties....
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SubjectTerms FEM-Simulation
Formability
Sheet metal forming
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Title Properties and Application of High-manganese TWIP-steels in Sheet Metal Forming
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