Deformation Twinning (Update). Zhang, D., Jiang, L., Zheng, B., Schoenung, J. M., Mahajan, S., Lavernia, E. J., & Beyerlein, I. J. In Reference Module in Materials Science and Materials Engineering. Elsevier, 2016. Paper doi abstract bibtex Dislocation mechanisms for the formation of twins in b.c.c., f.c.c., and h.c.p. crystals have been briefly reviewed. An attempt has been made to understand in terms of these models the influence of temperature, composition, pre-strain, and microstructure on deformation twinning. Furthermore, accommodation processes occurring at twins terminating within a crystal, and twin–twin and grain boundary interactions are covered. Finally, recent advances in understanding twinning in h.c.p. materials using EBSD and HRTEM/in-situ TEM are briefly reviewed.
@incollection{zhang_deformation_2016,
title = {Deformation {Twinning} ({Update})},
isbn = {978-0-12-803581-8},
url = {https://www.sciencedirect.com/science/article/pii/B9780128035818028782},
abstract = {Dislocation mechanisms for the formation of twins in b.c.c., f.c.c., and h.c.p. crystals have been briefly reviewed. An attempt has been made to understand in terms of these models the influence of temperature, composition, pre-strain, and microstructure on deformation twinning. Furthermore, accommodation processes occurring at twins terminating within a crystal, and twin–twin and grain boundary interactions are covered. Finally, recent advances in understanding twinning in h.c.p. materials using EBSD and HRTEM/in-situ TEM are briefly reviewed.},
urldate = {2018-01-08},
booktitle = {Reference {Module} in {Materials} {Science} and {Materials} {Engineering}},
publisher = {Elsevier},
author = {Zhang, D. and Jiang, L. and Zheng, B. and Schoenung, J. M. and Mahajan, S. and Lavernia, E. J. and Beyerlein, I. J.},
year = {2016},
doi = {10.1016/B978-0-12-803581-8.02878-2},
keywords = {Deformation twinning, Dislocations, EBSD, Published, Reviewed, Transmission electron microscopy, b.c.c., f.c.c., h.c.p.},
}
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