Electrically assisted tensile behavior of complex phase ultra-high strength steel

Author:

Thien Nguyen Trung,Jeong Yong-Ha,Hong Sung-Tae,Kim Moon-Jo,Han Heung Nam,Lee Myoung-Gyu

Publisher

Springer Science and Business Media LLC

Subject

Management of Technology and Innovation,Industrial and Manufacturing Engineering,Mechanical Engineering,General Materials Science,Renewable Energy, Sustainability and the Environment

Reference28 articles.

1. Matsuoka, S., Hasegawa, K., and Tanaka, Y., “Newly-Developed Ultra-High Tensile Strength Steels with Excellent Formability and Weldability,” JFE Technical Report, Vol. 12, pp. 13–18, 2007.

2. Salandro, W., Khalifa, A., and Roth, J., “Tensile Formability Enhancement of Magnesium AZ31B-O Alloy Using Electrical Pulsing,” North American Manufacturing Research Institution of SME, Vol. 37, pp. 387–394, 2009.

3. Hartl, C., “Research and Advances in Fundamentals and Industrial Applications of Hydroforming,” Journal of Materials Processing Technology, Vol. 167, No. 2, pp. 383–392, 2005.

4. Luo, M., Dunand, M., and Mohr, D., “Experiments and Modeling of Anisotropic Aluminum Extrusions under Multi-Axial Loading-Part II: Ductile Fracture,” International Journal of Plasticity, Vol. 32, pp. 36–58, 2012.

5. Golovashchenko, S. and Krause, A., “Improvement of Formability of 6xxx Aluminum Alloys Using Incremental Forming Technology,” Journal of Materials Engineering and Performance, Vol. 14, No. 4, pp. 503–507, 2005.

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