TY - JOUR
T1 - Coherent elastic energy calculation of ω particles in β matrix for Zr-Nb alloys
AU - Tang, Bin
AU - Kou, Hong Chao
AU - Chang, Hui
AU - Li, Jin Shan
AU - Zhou, Lian
PY - 2011/2
Y1 - 2011/2
N2 - The misfit and coherent elastic energy caused by ω particles in β matrix is quantitatively calculated in this study. First, the coherent strain matrixes for four ω variants are established including the misfit parameters based on Khachaturyan's theory. Then, the misfit and coherent elastic energy in athermal β → ω transition, and isothermal β → ω transition are calculated, respectively. The calculation results indicate that the coherent elastic energy gets maximum value when x Nb = 0.08 (Nb content) and gets minimum value when x Nb = 0.1518 in quenching Zr-Nb alloys, which are in fair agreement with experimental results. For isothermal β → ω transition, the misfit and coherent elastic energy depend on composition and aging temperature. The misfit caused by isothermal ω phase is much larger than the one caused by athermal ω phase. This results in larger coherent elastic energy in isothermal β → ω transition. In addition, the misfit is found as an approximate linear function of temperature and composition for Zr-Nb alloys, and the coherent elastic energy is revealed as an increasing function of |v F -v S | for the two kinds of transition.
AB - The misfit and coherent elastic energy caused by ω particles in β matrix is quantitatively calculated in this study. First, the coherent strain matrixes for four ω variants are established including the misfit parameters based on Khachaturyan's theory. Then, the misfit and coherent elastic energy in athermal β → ω transition, and isothermal β → ω transition are calculated, respectively. The calculation results indicate that the coherent elastic energy gets maximum value when x Nb = 0.08 (Nb content) and gets minimum value when x Nb = 0.1518 in quenching Zr-Nb alloys, which are in fair agreement with experimental results. For isothermal β → ω transition, the misfit and coherent elastic energy depend on composition and aging temperature. The misfit caused by isothermal ω phase is much larger than the one caused by athermal ω phase. This results in larger coherent elastic energy in isothermal β → ω transition. In addition, the misfit is found as an approximate linear function of temperature and composition for Zr-Nb alloys, and the coherent elastic energy is revealed as an increasing function of |v F -v S | for the two kinds of transition.
UR - http://www.scopus.com/inward/record.url?scp=79151477123&partnerID=8YFLogxK
U2 - 10.1007/s10853-010-4790-z
DO - 10.1007/s10853-010-4790-z
M3 - 文章
AN - SCOPUS:79151477123
SN - 0022-2461
VL - 46
SP - 675
EP - 680
JO - Journal of Materials Science
JF - Journal of Materials Science
IS - 3
ER -