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Stress and plastic deformation of MEA in fuel cells: Stresses generated during cell assembly
Authors:Daniil Bograchev  Mikael Gueguen  Jean-Claude Grandidier  Serguei Martemianov
Affiliation:1. Frumkin Institute of Physical Chemistry and Elecrtrochemistry RAN, Leninski prospekt 31, Moscow 117071, Russia;2. Laboratoire de Physique et Mécanique des Matériaux, LMPM UMR CNRS 6617, ENSMA, Téléport 2, 1 av. Clément Ader, BP 40109 86962 Futuroscope Cédex, France;3. Laboratoire d’Etudes Thermiques, LET UMR CNRS 6608, ESIP-University of Poitiers, 40 av. du Recteur Pineau, 86022 Poitiers, France
Abstract:A linear elastic–plastic 2D model of fuel cell with hardening is developed for analysis of mechanical stresses in MEA arising in cell assembly procedure. The model includes the main components of real fuel cell (membrane, gas diffusion layers, graphite plates, and seal joints) and clamping elements (steel plates, bolts, nuts). The stress and plastic deformation in MEA are simulated with ABAQUS code taking into account the realistic clamping conditions. The stress distributions are obtained on the local and the global scales. The first one corresponds to the single tooth/channel structure. The global scale deals with features of the entire cell (the seal joint and the bolts). Experimental measurements of the residual membrane deformations have been provided at different bolts torques. The experimental data are in a good agreement with numerical predictions concerning the beginning of the plastic deformation.
Keywords:Fuel cell design   Proton exchange membrane (PEM)   Nafion   Mechanical response   ABAQUS
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