Title of article :
Gas-diffusion layerʹs structural anisotropy induced localized instability of nafion membrane in polymer electrolyte fuel cell
Author/Authors :
Poornesh، نويسنده , , K.K. and Sohn، نويسنده , , Young-Jun and Park، نويسنده , , Gu-Gon and Yang، نويسنده , , Tae-Hyun، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
11
From page :
15339
To page :
15349
Abstract :
The design of robust polymer electrolyte fuel cell requires a thorough understanding of the materialsʹ response of the cell components to the operational conditions such as temperature and hydration. As the electrolyte membraneʹs mechanical properties are temperature, hydration and rate dependent, its response under cyclic loading is of significant importance to predict the damage onset and thus the membrane lifetime. This article reports on the variation in stress levels in the membrane induced due to the gas-diffusion layerʹs (GDL) anisotropic mechanical properties while accurately capturing the membraneʹs mechanical response under time dependent hygrothermomechanical conditions. An observation is made on the evolution of negative strain in the membrane under the bipolar plate channel area, which is an indication of membrane thinning, and the magnitude of this strain found to depend upon the GDLʹs in-plane mechanical properties. In order to come up with a strategy that reduces the magnitude of tensile stresses evolved in the membrane during the hygrothermal unloading and to increase the membraneʹs lifetime, we numerically show that by employing a fast hygrothermal loading rate and unloading rate strategy, significant reduction (in this study, nearly 100%) in the magnitude of tensile stresses is achievable. The present study assists in understanding the relation between materials compatibility and durability of fuel cell components.
Keywords :
Loading and unloading rate , Compressive strain , Hygrothermal cycle , Gas-diffusion layer , In-plane anisotropy , Nafion membrane
Journal title :
International Journal of Hydrogen Energy
Serial Year :
2012
Journal title :
International Journal of Hydrogen Energy
Record number :
1673431
Link To Document :
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