An experimental investigation of three-dimensional mechanical characteristics of gas diffusion layers in proton electrolyte membrane fuel cells

Citations

WEB OF SCIENCE

5
Citations

SCOPUS

6

초록

In this study, three-dimensional (3D) orthotropic mechanical properties of a commercial gas diffusion layer (GDL) are experimentally investigated. Although GDL is an important 3D structural membrane in proton electrolyte membrane fuel cells (PEMFCs), most papers have merely considered its in-plane linear isotropic characteristics due to the lack of 3D anisotropic mechanical performance investigation. In real operating PEMFCs, GDL is nonlinear orthotropic composite and its mechanical characteristics affect the overall performance of PEMFCs, seriously and directly. In this research, as considering GDL's valid configuration in PEMFCs, mechanical tests such as compression test, tension test, and shear test are conducted to study its 3D mechanical behavior. Test results present that the GDL behaves in an orthotropic and nonlinear manner. In addition, microstructures of the GDL are observed through scanning electron microscope (SEM) images, to explain its different kinds of mechanical failure performance.

키워드

Gas diffusion layersProton electrolyte membrane fuel cellsNonlinear orthotropic composite3D mechanical characteristicsMechanical failureSEM imagesELECTRICAL CONTACT RESISTANCECLAMPING PRESSUREBIPOLAR PLATECOMPRESSIONPERFORMANCEPEMFCFORCE
제목
An experimental investigation of three-dimensional mechanical characteristics of gas diffusion layers in proton electrolyte membrane fuel cells
저자
Chen, YanqinJiang, ChaoCho, Chongdu
DOI
10.1007/s10008-019-04273-x
발행일
2019-07
유형
Article
저널명
Journal of Solid State Electrochemistry
23
7
페이지
2021 ~ 2030