Oxidation behavior of ternary Fe-15Cu-5A1 and Fe-85Cu-5A1 alloys in pure oxygen at 900 deg C

The oxidation of two two-phase ternary Fe-Cu-Al alloys containing about 5%(mole fraction) aluminium, one Fe-rich and one Cu-rich, has been studied at 900 deg C in 1 x105 Pa pure oxygen. The Fe-rich Fe-15Cu-5A1 alloy presents two quasi-parabolic stages, with a large decrease of the parabolic rate con...

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Published in:Transactions of Nonferrous Metals Society of China Vol. 16; no. Special 3; pp. s2038 - s2041
Main Authors: Xiang, Jun-Huai, Niu, Yan, Duan, Xian-Zhi
Format: Journal Article
Language:English
Published: 01-12-2006
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Abstract The oxidation of two two-phase ternary Fe-Cu-Al alloys containing about 5%(mole fraction) aluminium, one Fe-rich and one Cu-rich, has been studied at 900 deg C in 1 x105 Pa pure oxygen. The Fe-rich Fe-15Cu-5A1 alloy presents two quasi-parabolic stages, with a large decrease of the parabolic rate constant after about 50 min. The presence of 5% Al greatly reduces the oxidation rate of this alloy with respect to a binary Fe-Cu alloy of similar composition by forming an external protective Al2O3 layer, which is present near the scale/alloy interface. Due to the high stress-growth effect, this thin Al2O3 layer cannot completely prevent further oxidation of the alloy underneath. On the contrary, the Cu-rich Fe-8501-5A1 alloy presents a single parabolic stage and forms a thick and porous external scale, coupled to the internal oxidation of Fe and Al. As a result, the oxidation of Cu-rich alloy at 900 deg C is much faster than that of the Fe-rich alloy.
AbstractList The oxidation of two two-phase ternary Fe-Cu-Al alloys containing about 5%(mole fraction) aluminium, one Fe-rich and one Cu-rich, has been studied at 900 deg C in 1 x105 Pa pure oxygen. The Fe-rich Fe-15Cu-5A1 alloy presents two quasi-parabolic stages, with a large decrease of the parabolic rate constant after about 50 min. The presence of 5% Al greatly reduces the oxidation rate of this alloy with respect to a binary Fe-Cu alloy of similar composition by forming an external protective Al2O3 layer, which is present near the scale/alloy interface. Due to the high stress-growth effect, this thin Al2O3 layer cannot completely prevent further oxidation of the alloy underneath. On the contrary, the Cu-rich Fe-8501-5A1 alloy presents a single parabolic stage and forms a thick and porous external scale, coupled to the internal oxidation of Fe and Al. As a result, the oxidation of Cu-rich alloy at 900 deg C is much faster than that of the Fe-rich alloy.
Author Duan, Xian-Zhi
Niu, Yan
Xiang, Jun-Huai
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Snippet The oxidation of two two-phase ternary Fe-Cu-Al alloys containing about 5%(mole fraction) aluminium, one Fe-rich and one Cu-rich, has been studied at 900 deg C...
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Title Oxidation behavior of ternary Fe-15Cu-5A1 and Fe-85Cu-5A1 alloys in pure oxygen at 900 deg C
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