Effects of low-temperature nitridation on the electrical conductivity and corrosion resistance of 446M stainless steel as bipolar plates for proton exchange membrane fuel cell
Low-temperature nitridation was used to form a protective and conductive layer on stainless steel. The surface characterization reveals that a continuous and protective Cr-nitride/oxide layer (CrN and Cr 2O 3) forms on the 446M stainless steel surface after low-temperature nitridation. The electrica...
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Veröffentlicht in: | International journal of hydrogen energy 2010, Vol.35 (2), p.725-730 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Low-temperature nitridation was used to form a protective and conductive layer on stainless steel. The surface characterization reveals that a continuous and protective Cr-nitride/oxide layer (CrN and Cr
2O
3) forms on the 446M stainless steel surface after low-temperature nitridation. The electrical conductivity of the sample is investigated in terms of the interfacial contact resistance. This value for nitrided 446M at low temperature is 6
mΩ
cm
2, which is much lower than that of the bare 446M stainless steel (about 77
mΩ
cm
2) at a compaction force of 140
N/cm
2. The corrosion resistance of low-temperature nitrided 446M stainless steel is examined in potentiodynamic and potentiostatic tests under simulated polymer electrolyte membrane fuel cell (PEMFC) conditions with pH 3 H
2SO
4 at 80
°C. In a simulated anode condition, the current density is −1
×
10
−6
A/cm
2. In a simulated cathode condition, the current density is 1
×
10
−7
A/cm
2. Low-temperature nitrided 446M stainless steel shows superior electrical conductivity and corrosion resistance than bare 446M stainless steel. |
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ISSN: | 0360-3199 1879-3487 |
DOI: | 10.1016/j.ijhydene.2009.10.107 |