TY - JOUR
T1 - Hydrogen absorption and desorption by quasicrystalline and related approximant powders produced by mechanical alloying in the Mg-Al-Zn system
AU - Takasaki, Akito
AU - Kikuchi, Keigo
AU - Furuya, Yoshio
N1 - Copyright:
Copyright 2017 Elsevier B.V., All rights reserved.
PY - 2000/2
Y1 - 2000/2
N2 - Icosahedral quasicrystalline (i-phase) Mg44Al15Zn41 and related Frank-Kasper (cubic approximant) phase powders, which were produced by mechanical alloying from the elemental powder mixture and subsequent heat treatment, respectively, have been hydrogenated with hydrogen gas at a temperature of 573 K and a hydrogen pressure of 4.2 MPa. The hydrogen solubility limit for both powders is almost the same and was estimated to be about 16 at%, and no crystallographic structural dependence was found for the hydrogen solubility. The approximant phase powder was structurally stable after hydrogenation but the i-phase powder decomposed into the approximant and MgZn2 intermetallic phases. Hydrogen desorption occurred at temperatures above about 600 K for both powders and was accompanied by the evaporation of zinc. The kinetics of the hydrogen desorption as well as the zinc evaporation were slightly different in each powder because of the formation of the MgZn2 phase in the i-phase powder after hydrogenation.
AB - Icosahedral quasicrystalline (i-phase) Mg44Al15Zn41 and related Frank-Kasper (cubic approximant) phase powders, which were produced by mechanical alloying from the elemental powder mixture and subsequent heat treatment, respectively, have been hydrogenated with hydrogen gas at a temperature of 573 K and a hydrogen pressure of 4.2 MPa. The hydrogen solubility limit for both powders is almost the same and was estimated to be about 16 at%, and no crystallographic structural dependence was found for the hydrogen solubility. The approximant phase powder was structurally stable after hydrogenation but the i-phase powder decomposed into the approximant and MgZn2 intermetallic phases. Hydrogen desorption occurred at temperatures above about 600 K for both powders and was accompanied by the evaporation of zinc. The kinetics of the hydrogen desorption as well as the zinc evaporation were slightly different in each powder because of the formation of the MgZn2 phase in the i-phase powder after hydrogenation.
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U2 - 10.2320/matertrans1989.41.306
DO - 10.2320/matertrans1989.41.306
M3 - Article
AN - SCOPUS:0033886669
VL - 41
SP - 306
EP - 311
JO - Unknown Journal
JF - Unknown Journal
IS - 2
ER -