质子交换膜燃料电池密封系统综述

Yi Wei, Yanfeng Xing, Xiaobing Zhang, Ying Wang, Juyong Cao, Fuyong Yang
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引用次数: 0

摘要

质子交换膜燃料电池(PEMFC)的密封技术是确保其性能的关键因素,影响着驾驶安全性和续航效率。为了保证质子交换膜燃料电池在复杂环境下的安全运行,必须开展相关的密封研究。燃料电池密封系统结构复杂,各部件接触紧密,找出影响其密封性能的因素对于燃料电池的开发和应用至关重要。本文简要介绍了 PEMFC 的密封机理,并介绍了四种典型的密封结构。它同时考虑了装配和运行过程,总结了装配误差、密封垫片、密封泄漏以及振动、循环温湿度和循环装配等问题。详细回顾了密封系统在模拟和实验中的研究状况。强调了影响燃料电池密封性能的关键因素,突出了密封垫状态动态检测、累积误差下堆栈性能改善以及结合接触压力和堆栈组件特性的多目标优化模型的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Sealing Systems for Proton Exchange Membrane Fuel Cells
The sealing technology of proton exchange membrane fuel cells (PEMFCs) is a critical factor in ensuring their performance, impacting driving safety and range efficiency. To guarantee the safe operation of PEMFCs in complex environments, it is essential to conduct related sealing research. The structure of the fuel cell sealing system is complex, with components in close contact, and identifying factors that affect its sealing performance is crucial for the development and application of the cells. This paper briefly describes the sealing mechanism of PEMFCs and introduces four typical sealing structures. It considers both the assembly and operation processes, summarizing assembly errors, sealing gaskets, and sealing leaks as well as vibration, cyclic temperature and humidity, and cyclic assembly. The research status of the sealing system in simulations and experiments is reviewed in detail. The key factors affecting the sealing performance of fuel cells are emphasized, highlighting the significance of dynamic detection of the gasket status, stack performance improvement under cumulative errors, and multi-objective optimization models combining contact pressure with the characteristics of stack components.
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