Corrosion Behavior of Coated Low Carbon Steel in a Simulated PEMFC Environment

Author:

Avram Diana Nicoleta1,Davidescu Corneliu Mircea12ORCID,Hulka Iosif2ORCID,Dan Mircea Laurentiu1ORCID,Stanciu Elena Manuela3ORCID,Pascu Alexandru3ORCID,Mirza-Rosca Julia Claudia4ORCID

Affiliation:

1. Faculty of Industrial Chemistry and Environmental Engineering, Politehnica University Timisoara, 2 Piata Victoriei, 300006 Timisoara, Romania

2. Renewable Energy Research Institute—ICER, Politehnica University Timisoara, 138 Gavril Musicescu Street, 300774 Timisoara, Romania

3. Materials Engineering and Welding Department, Transilvania University of Brasov, 29 Eroilor Blvd., 500036 Brasov, Romania

4. Department of Mechanical Engineering, Las Palmas de Gran Canaria University, 35017 Las Palmas de Gran Canaria, Spain

Abstract

Here, potential metallic bipolar plate (BP) materials were manufactured by laser coating NiCr-based alloys with different Ti additions on low carbon steel substrates. The titanium content within the coating varied between 1.5 and 12.5 wt%. Our present study focussed on electrochemically testing the laser cladded samples in a milder solution. The electrolyte used for all of the electrochemical tests consisted of a 0.1 M Na2SO4 solution (acidulated with H2SO4 at pH = 5) with the addition of 0.1 ppm F−. The corrosion resistance properties of the laser-cladded samples was evaluated using an electrochemical protocol, which consisted of the open circuit potential (OCP), electrochemical impedance spectroscopy (EIS) measurements, and potentiodynamic polarization, followed by potentiostatic polarization under simulated proton exchange membrane fuel cell (PEMFC) anodic and cathodic environments for 6 h each. After the samples were subjected to potentiostatic polarization, the EIS measurements and potentiodynamic polarization were repeated. The microstructure and chemical composition of the laser cladded samples were investigated by scanning electron microscopy (SEM) combined with energy-dispersive X-ray spectroscopy (EDX) analysis.

Publisher

MDPI AG

Subject

General Materials Science

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