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- W1984909512 abstract "Iron alloys with appreciable amounts of aluminium yield a corrosion resistant alumina surface film. The addition of Mn to these alloys makes them austenitic, significantly increasing ductility. Due to these factors, it is interesting to develop austenitic Fe–Mn–Al alloys that can substitute, in some applications, traditional stainless steels. This study aims to evaluate the wear and corrosion resistance of a Fe–32Mn–8Al–1C alloy after cold–rolling. Rolling was carried out with thickness reductions of 20%, 40% and 80%. Wear tests were performed using a micro–wear machine and corrosion tests performed in natural sea water. The results showed that Fe–Mn–Al–C alloy exhibits good cold–forming ability with a progressive increase of hardness with thickness reduction. The wear resistance increased as the reduction level was increased and corrosion resistance decreased with the increase of the strain–hardening, due to deformation. Such behaviour may be associated with stress corrosion, which is amplified by the degree of reduction." @default.
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- W1984909512 date "2012-01-01" @default.
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- W1984909512 title "Effect of the strain-hardening on the wear and corrosion behaviour of a Fe-Mn-Al-C alloy" @default.
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- W1984909512 doi "https://doi.org/10.1504/ijmmp.2012.047496" @default.
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