Amanda Persdotter
Chalmers University of Technology
9 Papers
1 Citations
Amanda Persdotter is an academic researcher from Chalmers University of Technology. The author has contributed to research in topics: Corrosion & Oxide. The author has an hindex of 4, co-authored 8 publications.
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Papers
The influence of silicon on the corrosion properties of FeCrAl model alloys in oxidizing environments at 600 °C
TL;DR: In this article, the influence of Si on the high temperature corrosion behavior of FeCrAl model alloys in O2, O2+H2O and O2 + H2O + KCl at 600 °C for up to 168 h was investigated.
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Oxidation of Fe-2.25Cr-1Mo in presence of KCl(s) at 400 °C – Crack formation and its influence on oxidation kinetics
Amanda Persdotter,Mohammad Sattari,Erik Larsson,M.A. Olivas Ogaz,Jesper Liske,Torbjörn Jonsson +5 more
TL;DR: In this paper, the influence of KCl(s) on corrosion of Fe-2.25Cr-1Mo at 400 °C was investigated by well-controlled laboratory exposures and detailed microstructural investigation with ion and electron microscopy.
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Secondary corrosion protection of FeCr(Al) model alloys at 600 °C – The influence of Cr and Al after breakaway corrosion
TL;DR: In this paper, the influence of Cr and Al content on the oxidation behavior of FeCr(Al) model alloys after breakaway oxidation at 600°C was investigated in detail with thermogravimetrical analysis (TGA), thermodynamic calculations and advanced electron microscopy.
21
Minor element effect on high temperature corrosion of a low-alloyed steel: Insight into alkali- and chlorine induced corrosion by means of atom probe tomography
TL;DR: In this article, the presence of minor amounts of corrosive species in the iron oxide formed on a low-alloyed steel may impair the corrosion resistance by increasing the oxide growth rate and possibly also reducing the oxide integrity.
13
The Influence of KCl and HCl on the High-Temperature Oxidation of a Fe-2.25Cr-1Mo Steel at 400 °C
Erik Larsson,Jesper Liske,Amanda Persdotter,Torbjörn Jonsson,Jan-Erik Svensson,Lars-Gunnar Johansson +5 more
TL;DR: In this article, the corrosive effects of KCl and HCl under conditions relevant to waterwall conditions were investigated in a low-alloy (Fe-2.25Cr-1Mo) steel.