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March 14, 2026Fuel Cells0 citations

Integrated Experimental–Analytical Approach for ICR Minimization and Clamping Force Prediction in PEM Fuel Cells

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ABAkshay BhoirPGPrakash C. Ghosh

Key Points

  • This research aims to reduce interfacial contact resistance and predict clamping force in PEM fuel cells.
  • Evaluated ICR and clamping forces for three coatings (C01, C02, C03).
  • Analyzed electrical response linked to interfacial pressure and bipolar plate properties.
  • Optimized rib-to-pitch ratio for maximum performance.
  • C01 showed the lowest ICR (<10 mΩ-cm²) at 1.90 ± 0.12 MPa.
  • The optimal rib-to-pitch ratio was 0.1667, with predicted clamping forces of 1716 N (C01), 2154 N (C02), and 2738 N (C03).
  • C01-coated BPP achieved a peak power density of 0.425 W/cm² at 0.4 V.

Abstract

ABSTRACT Interfacial contact resistance (ICR) critically affects the performance of proton exchange membrane (PEM) fuel cells, being governed by interfacial pressure, surface morphology, and bipolar plate (BPP) properties. This study presents a coating‐specific, data‐driven approach to predict clamping force by linking electrical response with contact pressure and BPP structural integrity. ICR, rib‐to‐pitch ratio, and contact pressure were systematically evaluated for three coatings (C01, C02, C03) and multiple rib‐to‐pitch configurations. C01 achieved the lowest ICR (<10 mΩ‐cm 2 ) at 1.90 ± 0.12 MPa, outperforming C02 (2.24 ± 0.62 MPa) and C03 (2.98 ± 0.11 MPa). The optimal rib‐to‐pitch ratio was 0.1667, with predicted clamping forces of 1716 N (C01), 2154 N (C02), and 2738 N (C03). The C01‐coated BPP delivered the highest peak power density of 0.425 W/cm 2 at 0.4 V. This integrated experimental–analytical framework provides a robust methodology for BPP structural optimization and precise cell clamping force prediction, supporting improved PEM fuel cell performance and efficiency.

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Cite This Study

Bhoir et al. (2026) studied this question.

synapsesocial.com/papers/69b4ba2618185d8a39802c6chttps://doi.org/10.1002/fuce.70070
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