Lifetime prediction through accelerated degradation testing of membrane electrode assemblies in direct methanol fuel cells

  • Bae, Suk Joo
  • Kim, Seong-Joon
  • Park, Jong In
  • Lee, Jin-Hwa
  • Cho, Hyejung
  • 외 1명
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초록

To expand the applications of direct methanol fuel cells (DMFCs), the testing time required to evaluate their durability must be shortened. In this article, we present a step-by-step, accelerated degradation test (ADT) procedure for simple application by fuel cell engineers to the membrane electrode assembly (MEA) in DMFCs. Using MEA degradation data obtained under high stress conditions, we provide a method to estimate the lifetime distribution for normal use conditions and derive optimal testing plans for further degradation tests. A bi-exponential model with random coefficients is introduced to represent the nonlinear deterioration path of the MEAs. Based on the lifetimes estimated from the bi-exponential model at higher temperatures, the lifetime distribution at normal use temperature is extrapolated using the Weibull-Arrhenius model as the lifetime-temperature relationship.

키워드

Accelerated degradation test (ADT)Degradation modelDirect methanol fuel cell (DMFC)Membrane electrode assembly (MEA)ReliabilityWeibull distributionPERFORMANCE DEGRADATIONDEPENDENCEDMFC
제목
Lifetime prediction through accelerated degradation testing of membrane electrode assemblies in direct methanol fuel cells
저자
Bae, Suk JooKim, Seong-JoonPark, Jong InLee, Jin-HwaCho, HyejungPark, Jun-Young
DOI
10.1016/j.ijhydene.2010.06.045
발행일
2010-09
유형
Article
저널명
International Journal of Hydrogen Energy
35
17
페이지
9166 ~ 9176