Crystal plasticity simulation of macroscopic yielding behavior of ultrafine-grained aluminum
Author:
Affiliation:
1. Department of Nanomechanics, Tohoku University
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/82/834/82_15-00396/_pdf
Reference21 articles.
1. Abdul-Latif, A., Dirras, G. F., Ramtani, S. and Hocini, A., A new concept for producing ultrafine-grained metallic structures via an intermediated strain rate: Experiments and modeling, International Journal of Mechanical Sciences, Vol. 51 (2009), pp. 797-806.
2. Adams, B. L., Orientation imaging microscopy: application to the measurement of grain boundary structure, Materials Science and Engineering A, Vol. 166, Nos. 1-2 (1993) pp. 59-66.
3. Adams, B. L., Wright, S. I. and Kunze, K., Orientation imaging: the emergence of a new microscopy, Metallugical Transactions A, Vol. 24, No. 4 (1993), pp. 819-831.
4. Aoyagi, Y., Kobayashi, R., Kaji, Y. and Shizawa, K., Modeling and simulation on ultrafine-graining based on multiscale crystal plasticity considering dislocation patterning, International Journal of Plasticity, Vol. 47 (2013), pp. 13-28.
5. Aoyagi, Y., Tsuru, T. and Shimokawa, T., Crystal plasticity modeling and simulation considering the behavior of the dislocation source of ultrafine-grained metal, International Journal of Plasticity, Vol. 55 (2014), pp. 43-57.
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