Gas diffusion layer (GDL) is one of the critical components in proton exchange membrane fuel cells (PEMFCs) and plays several important roles, such as structural support, reactants permeation, water removal, electrons, and heat conduction. The assembly pressure on bipolar plate is an important factor that affects the performance of PEMFC stack. Not enough assembly pressure leads to leakage of fuels and high contact resistance. Too much pressure, on the other hand, results in damage to the GDL, which increases the GDL Ohmic resistance and interfacial contact resistance, and in turn influences the reactant transport and water removal. The objective of the present study is to develop a numerical model to predict the onset of GDL failure and obtain the maximum assembly pressure on bipolar plate. Composite micromechanical model is applied to calculate the effective elastic properties of GDL; strength failure criterion is established to judge GDL damage with the stress distribution; finite element method model is developed to show the failure zone and the failure propagation in GDL combining the estimated elastic properties and strength failure criterion. Toray TGP-H-060 carbon paper is introduced as a numerical example and the numerical results show good agreements with experimental results. This numerical prediction model is beneficial to understand the basic mechanism of GDL failure and helpful to guide the assembling of PEMFC stack.
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February 2011
This article was originally published in
Journal of Fuel Cell Science and Technology
Research Papers
A Numerical Model for Predicting Gas Diffusion Layer Failure in Proton Exchange Membrane Fuel Cells
Peiyun Yi,
Peiyun Yi
State Key Laboratory of Mechanical System and Vibration,
yipeiyun@sjtu.edu.cn
Shanghai Jiao Tong University
, Shanghai 200240, China
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Linfa Peng,
Linfa Peng
State Key Laboratory of Mechanical System and Vibration,
penglinfa@sjtu.edu.cn
Shanghai Jiao Tong University
, Shanghai 200240, China
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Xinmin Lai,
Xinmin Lai
State Key Laboratory of Mechanical System and Vibration,
Shanghai Jiao Tong University
, Shanghai 200240, China
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Jun Ni
Jun Ni
Department of Mechanical Engineering,
University of Michigan
, Ann Arbor, MI 48109
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Peiyun Yi
State Key Laboratory of Mechanical System and Vibration,
Shanghai Jiao Tong University
, Shanghai 200240, Chinayipeiyun@sjtu.edu.cn
Linfa Peng
State Key Laboratory of Mechanical System and Vibration,
Shanghai Jiao Tong University
, Shanghai 200240, Chinapenglinfa@sjtu.edu.cn
Xinmin Lai
State Key Laboratory of Mechanical System and Vibration,
Shanghai Jiao Tong University
, Shanghai 200240, China
Jun Ni
Department of Mechanical Engineering,
University of Michigan
, Ann Arbor, MI 48109J. Fuel Cell Sci. Technol. Feb 2011, 8(1): 011011 (10 pages)
Published Online: November 4, 2010
Article history
Received:
September 1, 2009
Revised:
July 24, 2010
Online:
November 4, 2010
Published:
November 4, 2010
Citation
Yi, P., Peng, L., Lai, X., and Ni, J. (November 4, 2010). "A Numerical Model for Predicting Gas Diffusion Layer Failure in Proton Exchange Membrane Fuel Cells." ASME. J. Fuel Cell Sci. Technol. February 2011; 8(1): 011011. https://doi.org/10.1115/1.4002312
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