Experimental shock Hugoniot and melt boundary temperatures of aluminum
Abstract
Aluminum is a ubiquitous component in dynamic compression, pulsed power, and other high energy density physics studies. Its high-pressure behavior and phase diagram are extensively studied standards in shockwave physics. While theoretical calculations and multiphase equations of state have been benchmarked to velocity measurements of loading and unloading waves, pressure and density under shock, and other mechanical data, experimental temperature data under these conditions have not been reported. We conducted a series of experiments shocking and releasing aluminum 6061 and 1100 samples into lithium fluoride windows. We measured temperature at the sample–window interface under steady compression and subsequent isentropic release. These results allow us to constrain the temperature of the solid Hugoniot and the boundary between the liquid and face-centered cubic solid phases.
Article Details
Journal Info
Journal of Applied Physics
American Institute of Physics
Authors (5)
T. M. Hartsfield
Sandia National Laboratories 1 , Albuquerque, New Mexico 87185,
K. M. Amodeo
Sandia National Laboratories 1 , Albuquerque, New Mexico 87185,
B. M. La Lone
Nevada National Security Site, Special Technologies Laboratory 2 , Santa Barbara, California 93111,
G. D. Stevens
Nevada National Security Site, Special Technologies Laboratory 2 , Santa Barbara, California 93111,
D. H. Dolan
Sandia National Laboratories 1 , Albuquerque, New Mexico 87185,