AI Chat Paper
Note: Please note that the following content is generated by AMiner AI. SciOpen does not take any responsibility related to this content.
{{lang === 'zh_CN' ? '文章概述' : 'Summary'}}
{{lang === 'en_US' ? '中' : 'Eng'}}
Chat more with AI
PDF (4.4 MB)
Collect
AI Chat Paper
Show Outline
Outline
Show full outline
Hide outline
Outline
Show full outline
Hide outline
Publishing Language: Chinese

Mechanical properties and microstructural response of the microporous layer in PEMFCs

Xuanyu SHAO1aZhiping HUANG1aJie XU1bHeng ZHANG1a,2( )Zhigang ZHAN1a,2
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, P. R. China
School of Automotive Engineering, Wuhan University of Technology, Wuhan 430070, P. R. China
Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory, Foshan, Guangdong 528200, P. R. China
Show Author Information

Abstract

The microporous layer (MPL) of proton exchange membrane fuel cells (PEMFCs) plays an important role in the transport of water, gas, heat and charge. Mechanical deformation and microstructural damage can significantly impair these transport processes. In this study, the stress-strain relationship of the MPL was experimentally determined after material fabrication and microstructural characterization. A numerical reconstruction of the MPL was then developed based on the extracted microstructural parameters, and finite element simulations were conducted to evaluate the displacement-stress distributions of carbon particles and polytetrafluoroethylene (PTFE) under different mechanical strains. Results show that mechanical loading induces substantial strain within the MPL, with the highest stress occurring at the surface, where stress concentration is most likely to form. Stress was found to increase exponentially with applied strain. At 10% strain, the maximum stress on carbon particles and PTFE was about 31.385 MPa and 14.873 MPa, respectively; when strain increased to 40%, the corresponding stresses rose to 160.03 MPa and 96.165 MPa, accompanied by a pronounced intensification of stress concentration regions.

CLC number: TM911.4 Document code: A Article ID: 1000-582X(2026)01-040-11

References

【1】
【1】
 
 
Journal of Chongqing University
Pages 40-50

{{item.num}}

Comments on this article

Go to comment

< Back to all reports

Review Status: {{reviewData.commendedNum}} Commended , {{reviewData.revisionRequiredNum}} Revision Required , {{reviewData.notCommendedNum}} Not Commended Under Peer Review

Review Comment

Close
Close
Cite this article:
SHAO X, HUANG Z, XU J, et al. Mechanical properties and microstructural response of the microporous layer in PEMFCs. Journal of Chongqing University, 2026, 49(1): 40-50. https://doi.org/10.11835/j.issn.1000-582X.2024.229

328

Views

2

Downloads

0

Crossref

0

Scopus

Received: 28 August 2023
Published: 25 April 2024
© Journal of Chongqing University