PEMFC metallic bipolar plates- effect of manufacturing method on corrosion resistance

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info:eu-repo/semantics/closedAccess

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Estimated high production volumes of bipolar plate manufacturing, strict dimensional and surface quality requirements and nature of their designs with thousands of meters of micro-channels demand engineers and scientists from production, design, and fuel cell operations sides look into alternative manufacturing processes, and compare their outcomes in terms of certain metrics such as productivity (plate/second), dimensional tolerances (um/mm), surface quality (Ra),cost ($), corrosion and contact resistance, and durability. In this study, the effect of manufacturing processes, stamping and hydroforming, on the corrosion resistance of thin metallic plates was investigated. The effects of process speed (stamping speed, hydroforming pressure rate) were also considered in this study. The results showed that in general SS316L possesses better corrosion resistance than SS304, as expected and reported in many literatures. In addition, while the effect of manufacturing processes was expected to degrade the corrosion resistance of the formed plates when compared the a non-deformed plate, this hypothesis only held true in the case of stamping as the hydroformed plates revealed better corrosion resistance than a non-deformed plate. ©The Electrochemical Society. © 2010 Elsevier B.V., All rights reserved.

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9th Proton Exchange Membrane Fuel Cell Symposium (PEMFC 9) - 216th Meeting of the Electrochemical Society -- Vienna -- 79122

Anahtar Kelimeler

Alternative manufacturing process, Bipolar plates, Dimensional tolerance, Fuel cell operation, High production volumes, Manufacturing methods, Manufacturing process, Metallic bipolar plates, Metallic plate, Process speed, Surface qualities, Industrial engineering, Manufacture, Membranes, Production engineering, Proton exchange membrane fuel cells (PEMFC), Protons, Stamping, Corrosion resistance

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ECS Transactions

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25

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1 PART 2

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Onay

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