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Information Journal Paper

Title

Fabrication and analysis of composite bipolar plates with expanded graphite to increase electrical conductivity of fuel cells

Pages

  465-472

Abstract

Bipolar plates are one of the most important components in a PEM Fuel cell. In this study, a Bipolar plate made of stamping method is developed to increase Electrical conductivity and mechanical behavior and manufacturing productivity of the Fuel cell and to decrease electrical resistance according to DOE. For fabrication these plates, phenolic resins were used as matrix and Expanded graphite to increase Electrical conductivity and graphite to filler and carbon fiber to increase flexural strength and optimize Electrical conductivity. The Electrical conductivity increased up to 40 percent respect to the DOE. The flexural strength and impact strength of the measured specimens were improved respect to the DOE about 11 and 170 percent, respectively. The experimental results are in accordance with DOE. According to SEM images and test curves, electric conductivity increases with Expanded graphite fillers.

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  • Cite

    APA: Copy

    Poostan, Poorya, Abdullah Mirzaie, Rasool, ASHENAI GHASEMI, FARAMARZ, & Abdullahi, Elghar. (2019). Fabrication and analysis of composite bipolar plates with expanded graphite to increase electrical conductivity of fuel cells. JOURNAL OF SCIENCE AND TECHNOLOGY OF COMPOSITES (JSTC), 6(3 ), 465-472. SID. https://sid.ir/paper/371933/en

    Vancouver: Copy

    Poostan Poorya, Abdullah Mirzaie Rasool, ASHENAI GHASEMI FARAMARZ, Abdullahi Elghar. Fabrication and analysis of composite bipolar plates with expanded graphite to increase electrical conductivity of fuel cells. JOURNAL OF SCIENCE AND TECHNOLOGY OF COMPOSITES (JSTC)[Internet]. 2019;6(3 ):465-472. Available from: https://sid.ir/paper/371933/en

    IEEE: Copy

    Poorya Poostan, Rasool Abdullah Mirzaie, FARAMARZ ASHENAI GHASEMI, and Elghar Abdullahi, “Fabrication and analysis of composite bipolar plates with expanded graphite to increase electrical conductivity of fuel cells,” JOURNAL OF SCIENCE AND TECHNOLOGY OF COMPOSITES (JSTC), vol. 6, no. 3 , pp. 465–472, 2019, [Online]. Available: https://sid.ir/paper/371933/en

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