Asymmetric Hardening Behavior of AZ31B Magnesium Alloy Sheet with Large Strain at Various Strain Rates
Author:
Publisher
Springer Science and Business Media LLC
Subject
Automotive Engineering
Link
http://link.springer.com/content/pdf/10.1007/s12239-019-0061-4.pdf
Reference24 articles.
1. Bae, G. and Huh, H. (2011). Tension/compression test of auto-body steel sheets with the variation of the pre-strain and the strain rate. Trans. Engineering Sciences, 72, 213–225.
2. Boger, R., Wagoner, R., Barlat, F., Lee, M. and Chung, K. (2005). Continuous, large strain, tension/compression testing of sheet material. Int. J. Plasticity 21, 12, 2319–2343.
3. Choi, S.-H., Kim, D., Lee, H., Seong, B., Piao, K. and Wagoner, R. (2009). Evolution of the deformation texture and yield locus shape in an AZ31 Mg alloy sheet under uniaxial loading. Materials Science and Engineering: A 526, 1–2, 38–49.
4. Huh, H., Kim, S.-B., Song, J.-H. and Lim, J.-H. (2008). Dynamic tensile characteristics of TRIP-type and DP-type steel sheets for an auto-body. Int. J. Mechanical Sciences 50, 5, 918–931.
5. Huh, H., Lim, J. and Park, S. (2009). High speed tensile test of steel sheets for the stress-strain curve at the intermediate strain rate. Int. J. Automotive Technology 10, 2, 195–204.
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