Abstract
The relationship between the resulting grain size and the applied working strain rate and temperature for the friction stir processing in AZ31 Mg is systemically examined. The Zener-Holloman parameter is utilized in rationalizing the relationship. The grain orientation distribution is also studied using the X-ray diffraction.
Chang, C I;
[1]
Lee, C J;
[1]
Huang, J C
[1]
- Institute of Materials Science and Engineering, National Sun Yat-Sen University, Kaohisung, Taiwan 804 (China)
Citation Formats
Chang, C I, Lee, C J, and Huang, J C.
Relationship between grain size and Zener-Holloman parameter during friction stir processing in AZ31 Mg alloys.
United Kingdom: N. p.,
2004.
Web.
doi:10.1016/j.scriptamat.2004.05.043.
Chang, C I, Lee, C J, & Huang, J C.
Relationship between grain size and Zener-Holloman parameter during friction stir processing in AZ31 Mg alloys.
United Kingdom.
https://doi.org/10.1016/j.scriptamat.2004.05.043
Chang, C I, Lee, C J, and Huang, J C.
2004.
"Relationship between grain size and Zener-Holloman parameter during friction stir processing in AZ31 Mg alloys."
United Kingdom.
https://doi.org/10.1016/j.scriptamat.2004.05.043.
@misc{etde_20889106,
title = {Relationship between grain size and Zener-Holloman parameter during friction stir processing in AZ31 Mg alloys}
author = {Chang, C I, Lee, C J, and Huang, J C}
abstractNote = {The relationship between the resulting grain size and the applied working strain rate and temperature for the friction stir processing in AZ31 Mg is systemically examined. The Zener-Holloman parameter is utilized in rationalizing the relationship. The grain orientation distribution is also studied using the X-ray diffraction.}
doi = {10.1016/j.scriptamat.2004.05.043}
journal = []
issue = {6}
volume = {51}
place = {United Kingdom}
year = {2004}
month = {Sep}
}
title = {Relationship between grain size and Zener-Holloman parameter during friction stir processing in AZ31 Mg alloys}
author = {Chang, C I, Lee, C J, and Huang, J C}
abstractNote = {The relationship between the resulting grain size and the applied working strain rate and temperature for the friction stir processing in AZ31 Mg is systemically examined. The Zener-Holloman parameter is utilized in rationalizing the relationship. The grain orientation distribution is also studied using the X-ray diffraction.}
doi = {10.1016/j.scriptamat.2004.05.043}
journal = []
issue = {6}
volume = {51}
place = {United Kingdom}
year = {2004}
month = {Sep}
}