TY - GEN
T1 - The high strain rate deformation behavior of high purity magnesium and AZ31B magnesium alloy
AU - Livescu, Veronica
AU - Cady, Carl Mcelhinney
AU - Cerreta, Ellen Kathleen
AU - Henrie, Benjamin L.
AU - Gray, George Thompson
PY - 2006/5/8
Y1 - 2006/5/8
N2 - The deformation in compression of pure magnesium and AZ31B magnesium alloy, both with a strong basal pole texture, has been investigated as a function of temperature, strain rate, and specimen orientation. The mechanical response of both metals is highly dependent upon the orientation of loading direction with respect to the basal pole. Specimens compressed along the basal pole direction have a high sensitivity to strain rate and temperature and display a concave down work hardening behavior. Specimens loaded perpendicularly to the basal pole have a yield stress that is relatively insensitive to strain rate and temperature and a work hardening behavior that is parabolic and then linearly upwards. Both specimen orientations display a mechanical response that is sensitive to temperature and strain rate. Post mortem characterization of the pure magnesium was conducted on a subset of specimens to determine the microstructural and textural evolution during deformation and these results are correlated with the observed work hardening behavior and strain rate sensitivities were calculated.
AB - The deformation in compression of pure magnesium and AZ31B magnesium alloy, both with a strong basal pole texture, has been investigated as a function of temperature, strain rate, and specimen orientation. The mechanical response of both metals is highly dependent upon the orientation of loading direction with respect to the basal pole. Specimens compressed along the basal pole direction have a high sensitivity to strain rate and temperature and display a concave down work hardening behavior. Specimens loaded perpendicularly to the basal pole have a yield stress that is relatively insensitive to strain rate and temperature and a work hardening behavior that is parabolic and then linearly upwards. Both specimen orientations display a mechanical response that is sensitive to temperature and strain rate. Post mortem characterization of the pure magnesium was conducted on a subset of specimens to determine the microstructural and textural evolution during deformation and these results are correlated with the observed work hardening behavior and strain rate sensitivities were calculated.
UR - https://www.scopus.com/pages/publications/33646192791
M3 - Conference contribution
SN - 0873396200
SN - 9780873396202
T3 - Magnesium Technology
SP - 153
EP - 158
BT - Magnesium Technology
T2 - 2006 TMS Annual Meeting
Y2 - 22 May 2006
ER -