Prediction of forming limit diagrams of DP590 steel based on the M-K model with experimental verification
Version 2 2024-06-06, 11:37Version 2 2024-06-06, 11:37
Version 1 2017-04-05, 11:51Version 1 2017-04-05, 11:51
conference contribution
posted on 2024-06-06, 11:37authored byY Lou, S Kim, C Lee, H Huh
This paper analytically investigates forming limit diagrams (FLDs) of advanced high strength steel DP590 using the Marciniak-Kuczynski model (M-K model) with the strain rate effect. Tensile tests at various strain rates were conducted to obtain the strain hardening and strain rate hardening properties of DP590. The Johnson-Cook model was used to interpolate the experimental data with the strain rate effect. The FLDs of DP590 were then predicted with the M-K model. The material was assumed to be rigid-plastic and subjected to the flow rule based on the Hosford79 yield criterion. Punch stretching tests were conducted to verify the analytical results with different punch velocities to investigate the effect of the forming speed on formability. The analytical model without the strain rate effect underestimated the forming limits of DP590. The computed FLDs with the strain rate effect show good agreement with the experimental result especially when the exponent in the Hosford79 yield criterion is 8 for static forming and 10 for dynamic forming.
History
Pagination
61-65
Location
Wuhan, China
Start date
2010-11-15
End date
2010-11-17
ISBN-13
9789814324045
ISBN-10
9814324043
Language
eng
Publication classification
EN.1 Other conference paper
Title of proceedings
AEPA 2010 : Engineering plasticity and its applications - proceedings of the 10th Asia-Pacific Conference
Event
Engineering plasticity and its applications. Asia-Pacific conference (10th : 2010 : Wuhan, China)