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Effects of Heat Treatment on Microstructures and Properties of Cold Rolled Ti-0.3Ni Sheets as Bipolar Plates for PEMFC

  • Haifeng Zhu
  • , Xiaopeng Wang
  • , Wei Meng
  • , Fantao Kong*
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

As promising materials for bipolar plates substrate, as-cold rolled Ti-0.3Ni (wt.%) sheets were heat treated with three different processes in this work. As-cold rolled sheets consist of α matrix and dispersed Ti2 Ni intermetallic precipitates, and typical Widmanstatten microstructure can be observed after heat treatment. Lamellar Ti2 Ni precipitates inside the colonies. Elongation of as-cold rolled sheets equals less than 7% while this value rises up to around 20%, and tensile strength decreases by more than 47% after heat treatment. Open circuit potentials of as-cold rolled sheets treated at 950 C for 1 h followed by wind cooling (950 C/1 h/WC), sheets aged at 500 C for 3 h followed by air cooling (950 C/1 h/WC + 500 C/3 h/AC), and sheets treated at 950 C for 1 h followed by furnace cooling (950 C/1 h/FC) equals −0.536 V, −0.476 V, −0.486 V, −0.518 V, respectively. A potentiodynamic polarization test reveals that all of the specimens exhibit typical active–passive transition behavior. Sheets treated at 950 C/1 h/WC possess the lowest corrosion current density (155.4 µA·cm−2 ). Results of electrochemical impedance spectroscopy (EIS) show that 950 C/1 h/WC treated sheets possess the largest polarization resistance (Rpol ), 122.6 Ω·cm2 . Moreover, steady-state current densities (Iss ) increase in the order of 950 C/1 h/WC, 950 C/1 h/WC + 500 C/3 h/AC, 950 C/1 h/FC according to the results of potentiostatic polarization. This can be attributed to various amounts of Ti2 Ni precipitation caused by different cooling rates.

Original languageEnglish
Article number792
JournalMetals
Volume12
Issue number5
DOIs
StatePublished - May 2022

Keywords

  • bipolar plates
  • corrosion resistance
  • ductility
  • heat treatment
  • potentiostatic polarization
  • titanium alloy

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