
doi: 10.2172/833842 , 10.2172/833633
This report summarizes the interconnect work being performed at Delphi. Materials were chosen for this interconnect project were chosen from ferritic and austenitic stainless steels, and nickel-based superalloys. The alloys are thermally cycled in air and a wet hydrogen atmosphere. The oxide scale adherence, electrical resistance and oxidation resistance are determined after long-term oxidation of each alloy. The oxide scale adherence will be observed using a scanning electron microscope. The electrical resistance of the oxidized alloys will be determined using an electrical resistance measurement apparatus which has been designed and is currently being built. Data from the electrical resistance measurement is expected to be provided in the second quarter.
Chromium, Thermal Cycling, Cathodes, Substrates, Air, 36 Materials Science, Evaporation, Solid Oxide Fuel Cells, Electric Conductivity, Oxides, Stainless Steels, Heat Resisting Alloys, 08 Hydrogen, Oxidation, Alloys, 30 Direct Energy Conversion, Fuel Cells, Thermal Gravimetric Analysis, Electron Microscopes, Lifetime, Hydrogen, Platinum
Chromium, Thermal Cycling, Cathodes, Substrates, Air, 36 Materials Science, Evaporation, Solid Oxide Fuel Cells, Electric Conductivity, Oxides, Stainless Steels, Heat Resisting Alloys, 08 Hydrogen, Oxidation, Alloys, 30 Direct Energy Conversion, Fuel Cells, Thermal Gravimetric Analysis, Electron Microscopes, Lifetime, Hydrogen, Platinum
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