3A. A .Konieczny, 2003, Advanced High Strength Steels - Formability, U.S. Steel Automotive Center, MI, American Iron and Steel Institute. http://www.autosteel.org.
4D. K. Matlock, J.G. Speer, E. D. Moor, 2012, Recent AHSS Developments for Automotive Applications: Processing, Mi- crostructures, and Properties, Workshop ASPPRC.http://assp- prc.mines.edu.
5M. Takahash. Development of High Strength Steels for Au- tomobiles[J]. Nippon Steel Technical Report, 2003,88:2 ~ 7.
6E. Billur, M. S and T. Altan, Challenges informing Ad- vanced High Strength Steels.http://nsmwww.eng.ohio-state. edu/634.pdf.
7R. Cobo, M. Pla, R. Hernandez, J. A. Benito. Analysis of the Decrease of the Apparent Young' s Modulus of Advanced High Strength Steels and its Effect in Bending Simulations [J]. Michigan, Auto.Body Congress(IABC), 2009:1 ~ 18.
8小幡文雄,上原一刚Study on Anisotropy and Formabili-ties of High Strength Steel [J]. Japanese Soc.Tech. Plasticity, 2011,52(606): 761 ~ 765.
9P. Larour. Strain rate Sensitivity of Automotive Sheet Steels: Influence of Plastic Strain, Strain Rate, Temperature, Microstructure, Bake Hardening and Pre-strain, Ph.D thesis [D]. RWTH Aachen, 2010.
10J. H. Yoon, H. Huh, S. H. Kim, H. K. Kim, S. H. Park. Comparative Crashworthiness Assessment ofthe ULSAB- AVC Model with Advanced High Strength Steel and Conven- tional Steel [J]. Korean Soc.Auto. Engng. 2006,14(3):22 ~ 27.