科技报告详细信息
Structural Dynamic Testing Results for Air-Independent Proton Exchange Membrane (PEM) Fuel Cell Technologies for Space Applications
Gilligan, Ryan P ; Jakupca, Ian J ; Smith, Phillip J ; Bennett, William R ; Guzik, Monica C ; Kacher, Henry F
关键词: AIR FLOW;    DYNAMIC TESTS;    FUEL CELLS;    LAUNCH VEHICLES;    LEAKAGE;    MEMBRANES;    METEOROLOGY;    MICROGRAVITY;    PERFORMANCE TESTS;    PROTONS;    RANDOM VIBRATION;    SENSITIVITY;    STACKS;    TECHNOLOGY UTILIZATION;    VIBRATION;   
RP-ID  :  GRC-E-DAA-TN68132
学科分类:工程和技术(综合)
美国|英语
来源: NASA Technical Reports Server
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【 摘 要 】
In 2016, the NASA Advanced Exploration Systems (AES) project office funded research at the NASA Glenn Research Center to evaluate the maturity of the Proton Exchange Membrane (PEM) fuel cell technology and its viability for supporting launch vehicle and space applications. This technology evaluation included vibration, reactant purity, and vacuum exposure sensitivity testing. The evaluation process did not include microgravity testing. This paper discusses the vibration sensitivity testing of two air-independent fuel cell stacks provided by different vendors to assess the ability of currently available fuel cell stack hardware to survive the projected random vibrational environment that would be encountered in an upper stage launch vehicle. Baseline performance testing was utilized to quantify stack performance and overboard leak rate at standard atmospheric conditions in order to provide a reference for post-test comparison. Both fuel cell stacks were tested at a random vibration qualification level of 10.4 grms for five minutes in each axis. Low-level sinusoidal sweeps were conducted before and after each random vibration level run to see if any significant change in resonances were detected. Following vibration facility testing, the baseline performance testing was repeated. Test results demonstrated no measurable change in fuel cell electrochemical or mechanical performance, indicating that the two evaluated PEM fuel cell stacks may be suitable for space applications pending microgravity testing.
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