The repassivation kinetics of iron aluminide having a composition of Fe-16Al-0.14C (wt.%) were investigated in 0.25 M H2SO4 along with pure Al and Fe using a rapid scratched electrode technique. The repassivation behaviour of iron aluminide demonstrated was faster compared with Al, whereas the repassivation behaviour of Fe was slower than Al despite having a lower passive current density than Al. The repassivation behaviour was analyzed in terms of current density [i/t] as a function of charge density [q/t] that flowed from the scratched surface based on high-field ion conduction model and surface chemistry of the passive film. A mechanistic model is presented to explain the passivation/repassivation behaviour of iron aluminide based on the...
The high-temperature corrosion behavior of monolithic Fe-Al alloys, with 0 to 20 wt pct Al, was inve...
Passivity-inducing elements have been added to iron aluminide, FeaAI, to tackle their poor room-temp...
Iron aluminide intermetallics are being developed for use as structural materials and/or as cladding...
A channel flow double electrode was coupled with the pulsed laser depassivation technique to investi...
The objective of this review is to outline the aqueous corrosion research activities being undertake...
The passivity and passivity breakdown of Fe3Al-Si and Fe3Al-Ge iron aluminides were studied in borat...
The passivity and passivity breakdown of Fe3Al–Si and Fe3Al–Ge iron aluminides were studied in borat...
In this study, the corrosion behaviour of two different iron aluminides based on FeAl, with two diff...
The passivity and passivity breakdown of Fe3Al\u2013Si and Fe3Al\u2013Ge iron aluminides were studie...
The passivity of iron in borate buffer solutions and its breakdown in presence of sulfide ions was s...
This work provides a broad overview of systematic experimental studies carried out to understand the...
Studies were conducted to determine the effects of high-temperature surface oxides, produced during ...
Passivation of corroding surfaces in aluminum etch pits and tunnels was investigated by step reducti...
Repassivasion is important property of Fe-Cr alloys, since their high corrosion resistance are susta...
This work provides a broad overview of the systematic experimental studies conducted in our group to...
The high-temperature corrosion behavior of monolithic Fe-Al alloys, with 0 to 20 wt pct Al, was inve...
Passivity-inducing elements have been added to iron aluminide, FeaAI, to tackle their poor room-temp...
Iron aluminide intermetallics are being developed for use as structural materials and/or as cladding...
A channel flow double electrode was coupled with the pulsed laser depassivation technique to investi...
The objective of this review is to outline the aqueous corrosion research activities being undertake...
The passivity and passivity breakdown of Fe3Al-Si and Fe3Al-Ge iron aluminides were studied in borat...
The passivity and passivity breakdown of Fe3Al–Si and Fe3Al–Ge iron aluminides were studied in borat...
In this study, the corrosion behaviour of two different iron aluminides based on FeAl, with two diff...
The passivity and passivity breakdown of Fe3Al\u2013Si and Fe3Al\u2013Ge iron aluminides were studie...
The passivity of iron in borate buffer solutions and its breakdown in presence of sulfide ions was s...
This work provides a broad overview of systematic experimental studies carried out to understand the...
Studies were conducted to determine the effects of high-temperature surface oxides, produced during ...
Passivation of corroding surfaces in aluminum etch pits and tunnels was investigated by step reducti...
Repassivasion is important property of Fe-Cr alloys, since their high corrosion resistance are susta...
This work provides a broad overview of the systematic experimental studies conducted in our group to...
The high-temperature corrosion behavior of monolithic Fe-Al alloys, with 0 to 20 wt pct Al, was inve...
Passivity-inducing elements have been added to iron aluminide, FeaAI, to tackle their poor room-temp...
Iron aluminide intermetallics are being developed for use as structural materials and/or as cladding...