TY - GEN
T1 - Influence of temperature, strain rate and thermal aging on the structure/property behavior of uranium 6 wt% Nb
AU - Cady, Carl Mcelhinney
AU - Gray, George Thompson
AU - Chen, Shuh-Rong
AU - Field, R. D.
AU - Korzekwa, Deniece Rochelle
AU - Hixson, R. S.
AU - Lopez, M. F.
PY - 2006/8/1
Y1 - 2006/8/1
N2 - A rigorous experimentation and validation program is being undertaken to create constitutive models that elucidate the fundamental mechanisms controlling plasticity in uranium-6 wt.% niobium alloys (U-6Nb), These models should accurately predict high-strain-rate large-strain plasticity, damage evolution and failure, The goal is a physically-based constitutive model that captures 1) an understanding of how strain rate, temperature, and aging affects the mechanical response of a material, and 2) an understanding of the operative deformation mechanisms. The stress-strain response of U-6Nb has been studied as a function of temperature, strain-rate, and thermal aging. U-6Nb specimens in a solution-treated and quenched condition (ST/Q) and after subsequent aging at 473K for 2 hours were studied. The constitutive behavior was evaluated over the range of strain rates from quasi-static (0.001 sec-1) to dynamic (∼2000 sec-1) and temperatures ranging from 77 to 773K. The yield stress of U-6Nb was exhibited pronounced temperature sensitivity. The strain hardening rate is seen to be less sensitive to strain rate and temperature beyond plastic strains of 0.10. The yield strength of the aged material is less significantly affected by temperature and the work hardening rate shows adiabatic heating at lower strain rates (1/s).
AB - A rigorous experimentation and validation program is being undertaken to create constitutive models that elucidate the fundamental mechanisms controlling plasticity in uranium-6 wt.% niobium alloys (U-6Nb), These models should accurately predict high-strain-rate large-strain plasticity, damage evolution and failure, The goal is a physically-based constitutive model that captures 1) an understanding of how strain rate, temperature, and aging affects the mechanical response of a material, and 2) an understanding of the operative deformation mechanisms. The stress-strain response of U-6Nb has been studied as a function of temperature, strain-rate, and thermal aging. U-6Nb specimens in a solution-treated and quenched condition (ST/Q) and after subsequent aging at 473K for 2 hours were studied. The constitutive behavior was evaluated over the range of strain rates from quasi-static (0.001 sec-1) to dynamic (∼2000 sec-1) and temperatures ranging from 77 to 773K. The yield stress of U-6Nb was exhibited pronounced temperature sensitivity. The strain hardening rate is seen to be less sensitive to strain rate and temperature beyond plastic strains of 0.10. The yield strength of the aged material is less significantly affected by temperature and the work hardening rate shows adiabatic heating at lower strain rates (1/s).
UR - https://www.scopus.com/pages/publications/33750598382
U2 - 10.1051/jp4:2006134031
DO - 10.1051/jp4:2006134031
M3 - Conference contribution
SN - 2868839444
SN - 9782868839442
T3 - Journal De Physique. IV : JP
SP - 203
EP - 208
BT - Proceedings - 8th International Conference on Mechanical and Physical Behaviour of Materials under Dyanmic Loading, EURODYMAT 2006
T2 - 8th International Conference on Mechanical and Physical Behaviour of Materials under Dyanmic Loading
Y2 - 1 August 2006
ER -