000 01737nab a2200181 4500
005 20260520001103.0
008 260224s2012 xxu
245 0 0 _aAqueous corrosion of mg-al binary alloys
_bRoles of Al and Mg
260 _a
_b
_cjun. 2012
270 _a06/09/2012 ; 06/09/2012
300 _a14 p. ; 557-570
520 _aThe mutual effect of Al and Mg on the corrosion of model binary Mg-Al alloys (Mg from 0 to 100 wt%) in 3 wt% sodium chloride (NaCl) aqueous solutions was studied by atomic emission spectroelectrochemistry (AESEC). Mg2+ ions retard the formation of passive oxide on Al and alloys during spontaneous reaction but inhibit the cathodic dissolution of Al from Mg-Al alloys. The ratio between cathodically generated OH- and dissolved Al increases significantly with Mg2+ in the solution, suggesting the formation of an insoluble product. Al3+ in the solution does not influence the anodic current evolution on Mg but decreases the Mg dissolution rate, indicating that oxidized Mg stays in the insoluble form. The titration experiments and the x-ray diffraction (XRD) analysis confirm the co-precipitation of Al3+ and Mg2+. The rapidly formed semiconducting spinel is supposed to be responsible for the reduced concentrations of soluble Al and Mg and delayed in comparison to Mg-free solution passivation of Al surface. The interpretation is made that the key factor for the reactivity of Al-Mg binary alloys is the modified solution composition near the surface, which is controlled by the chemical composition of the alloy via the selective dissolution processes.
581 _a6
773 0 _tCorrosion
_g68
942 _cARTICULO
100 1 _aVolovitch, P.
_952639
999 _c187305
_d187305