首页> 外文会议>International Conference of Computer Science and Renewable Energies >Numerical investigation of stresses distribution in a multi-channel PEMFC fuel cell under clamping pressure
【24h】

Numerical investigation of stresses distribution in a multi-channel PEMFC fuel cell under clamping pressure

机译:夹紧压力下多通道PEMFC燃料电池中应力分布的数值研究

获取原文

摘要

As PEMFC technology becomes progressively mature for large-scale commercialization, research and innovation in the mechanical field becomes important. To meet the different requirements in terms of durability and reliability, the mechanical strains must be taken into account when designing the multi-cells PEMFC. A three-dimensional finite element model of a PEMFC has been developed to analyze the behavior of the deformations and corresponding stresses of fuel cell component. The effect of clamping force on the cell performances has been investigated. We show, through the obtained results, the importance of the clamping force on the intrusion of the GDL and the stress generated in the cell components: when the clamping pressure was increased from 0.2 MPa to 0.8 MPa, the GDL intrusion increase from 0.01 mm to 0,038 mm. The results also showed that the strain is important at the ends and decreases when moving towards the middle of the multi-cell PEMFC fuel cell. Finally, the increase in the number of channels affects the distribution of the stresses and the value of the intrusion noticed on the external channel and that of the central channel becomes more important. Consequently, a good management of the clamping force is indispensable to avoid obstruction of fuels and to keep a sufficient seal between the channels.
机译:由于PEMFC技术在大规模商业化方面变得逐渐成熟,因此机械领域的研究和创新变得重要。为了满足耐用性和可靠性方面的不同要求,在设计多电池PEMFC时必须考虑机械菌株。已经开发了一种PEMFC的三维有限元模型以分析燃料电池组件的变形的行为和相应的应力。研究了夹紧力对细胞性能的影响。我们展示了所获得的结果,夹紧力对GDL侵入的夹紧力和在细胞组分中产生的应力的重要性:当夹紧压力从0.2MPa增加到0.8MPa时,GDL入侵增加到0.01mm至0,038 mm。结果还表明,当朝向多细胞PEMFC燃料电池的中间移动时,应变在末端是重要的。最后,通道数量的增加会影响应力的分布,并且在外部通道上注意到的入侵的值以及中央频道的入侵变得更加重要。因此,对夹紧力的良好管理是必不可少的,以避免阻塞燃料并保持足够的密封件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号