Experimental study on vibration-induced clamping force reduction in fuel cell structures

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초록

When applied to transportation systems, fuel cell structures are exposed to external mechanical disturbance including shocks and harmonic excitations from operating components. To minimize performance degradation from machine operations, the fuel cell structure needs to be examined via vibration reliability tests. In this study, the reduction in the clamping force of the stack by random vibrations was investigated by experiments. The stack mass and gasket were clamped with bolts for vibration tests. The vibration induced shear movements between clamped stacks. To estimate the vibration input magnitudes, the Dirlik method was used. The reduction in the stack clamping force was estimated using the Basquin's power law. The clamping force decreased by the shear vibration input to the stack structure. The degree of clamping force reduction was larger for the heavier stack. When the stacks were separated by the gasket the reduction became smaller. Through the Dirlik method, the vibration reliability of the stack was evaluated. This information provides severity of the external vibration on the stack functionality.

키워드

Bolt looseningDirlik methodFuel cell stack structureProbability density functionReduction in clamping forceVibration fatigueClamping devicesFatigue of materialsFuel cellsGasketsVibrations (mechanical)% reductionsBolt looseningClamping ForceDirlik methodFuel cell stackFuel cell stack structureFuel cell structuresReduction in clamping forceStack structureVibration fatigueProbability density function
제목
Experimental study on vibration-induced clamping force reduction in fuel cell structures
저자
Kim, DeukhaSim, KihyunPark, Junhong
DOI
10.1016/j.ijhydene.2021.12.221
발행일
2022-10
유형
Article
저널명
International Journal of Hydrogen Energy
47
88
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1 ~ 8