TY - JOUR
T1 - Diffusion research in HCP Mg–Al–Sn ternary alloys
AU - Zhou, Zhengfei
AU - Gu, Yuanyu
AU - Xu, Guanglong
AU - Guo, Yanhua
AU - Cui, Yuwen
N1 - Publisher Copyright:
© 2019 Elsevier Ltd
PY - 2020/3
Y1 - 2020/3
N2 - Diffusion behavior in the HCP Mg–Al–Sn ternary alloys was experimentally investigated at 673 K and 723 K by analyzing solid-state diffusion couples. From the composition profiles analytically represented by error function expansion, the inter- and impurity diffusion coefficients were extracted by the Whittle-Green and generalized Hall methods respectively, which enable to establish the diffusion properties of the HCP Mg–Al–Sn alloys. The present results, together with the binary diffusion data of Mg–Al and Mg–Sn binaries, reveal that the average value of the main interdiffusion coefficient D˜SnSn Mg over the investigated compositions is 1.39 times larger than D˜AlAl Mg at 673 K and 1.36 times at 723 K, respectively, implying Sn diffuses comparably faster than Al in the HCP Mg–Al–Sn alloys. The main interdiffusion coefficients D˜AlAl Mg and D˜SnSn Mg and the impurity diffusion coefficient DSn(Mg−Al) * increases with increasing the content of diffusing element, either Al or Sn, however, DAl(Mg−Sn) * increases first and then decreases as the Sn composition increases. The cross interdiffusion coefficients are scattering, their composition dependences are not very conclusive, however, a trend that D˜AlSn Mg and D˜SnAl Mg become negligibly small or even negative was evidenced as the content of Al or Sn approaches 0.
AB - Diffusion behavior in the HCP Mg–Al–Sn ternary alloys was experimentally investigated at 673 K and 723 K by analyzing solid-state diffusion couples. From the composition profiles analytically represented by error function expansion, the inter- and impurity diffusion coefficients were extracted by the Whittle-Green and generalized Hall methods respectively, which enable to establish the diffusion properties of the HCP Mg–Al–Sn alloys. The present results, together with the binary diffusion data of Mg–Al and Mg–Sn binaries, reveal that the average value of the main interdiffusion coefficient D˜SnSn Mg over the investigated compositions is 1.39 times larger than D˜AlAl Mg at 673 K and 1.36 times at 723 K, respectively, implying Sn diffuses comparably faster than Al in the HCP Mg–Al–Sn alloys. The main interdiffusion coefficients D˜AlAl Mg and D˜SnSn Mg and the impurity diffusion coefficient DSn(Mg−Al) * increases with increasing the content of diffusing element, either Al or Sn, however, DAl(Mg−Sn) * increases first and then decreases as the Sn composition increases. The cross interdiffusion coefficients are scattering, their composition dependences are not very conclusive, however, a trend that D˜AlSn Mg and D˜SnAl Mg become negligibly small or even negative was evidenced as the content of Al or Sn approaches 0.
KW - Generalized Hall method
KW - Impurity diffusion
KW - Interdiffusion
KW - Mg–Al–Sn
KW - Whittle-green
UR - http://www.scopus.com/inward/record.url?scp=85075192950&partnerID=8YFLogxK
U2 - 10.1016/j.calphad.2019.101710
DO - 10.1016/j.calphad.2019.101710
M3 - 文章
AN - SCOPUS:85075192950
SN - 0364-5916
VL - 68
JO - Calphad: Computer Coupling of Phase Diagrams and Thermochemistry
JF - Calphad: Computer Coupling of Phase Diagrams and Thermochemistry
M1 - 101710
ER -