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EPDM橡胶材料的高低温老化失效 被引量:3
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作者 邹微波 唐道平 吴春宇 《汽车工艺与材料》 2022年第9期55-58,共4页
为了考察EPDM的耐温性能,对EPDM进行温度老化试验,同时对其老化前后的材料性能和断口形貌进行分析。结果表明:在高温和高低温循环老化条件下,EPDM材料的拉伸强度随着老化时间的增加而下降,温度越高下降越快;拉伸断裂由韧性断裂转变为脆... 为了考察EPDM的耐温性能,对EPDM进行温度老化试验,同时对其老化前后的材料性能和断口形貌进行分析。结果表明:在高温和高低温循环老化条件下,EPDM材料的拉伸强度随着老化时间的增加而下降,温度越高下降越快;拉伸断裂由韧性断裂转变为脆性断裂。EPDM在低温老化条件下拉伸性能变化不明显。热重分析表明EPDM在高温和高低温老化条件下发生了材料氧化,导致化学键断裂,而低温老化对EPDM分子结构影响较小。 展开更多
关键词 EPDM 橡胶 高低温老化 氧化
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Alkaline polymer electrolyte fuel cells: Principle, challenges, and recent progress 被引量:9
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作者 tang daoping PAN Jing +2 位作者 LU ShanFu ZHUANG Lin LU JunTao 《Science China Chemistry》 SCIE EI CAS 2010年第2期357-364,共8页
Polymer electrolyte membrane fuel cells (PEMFC) have been recognized as a significant power source in future energy systems based on hydrogen. The current PEMFC technology features the employment of acidic polymer ele... Polymer electrolyte membrane fuel cells (PEMFC) have been recognized as a significant power source in future energy systems based on hydrogen. The current PEMFC technology features the employment of acidic polymer electrolytes which, albeit superior to electrolyte solutions, have intrinsically limited the catalysts to noble metals, fundamentally preventing PEMFC from widespread deployment. An effective solution to this problem is to develop fuel cells based on alkaline polymer electrolytes (APEFC), which not only enable the use of non-precious metal catalysts but also avoid the carbonate-precipitate issue which has been troubling the conventional alkaline fuel cells (AFC). This feature article introduces the principle of APEFC, the challenges, and our research progress, and focuses on strategies for developing key materials, including high-performance alkaline polyelectrolytes and stable non-precious metal catalysts. For alkaline polymer electrolytes, high ionic conductivity and satisfactory mechanical property are difficult to be balanced, therefore polymer cross-linking is an ultimate strategy. For non-precious metal catalysts, it is urgent to improve the catalytic activity and stability. New materials, such as transition-metal complexes, nitrogen-doped carbon nanotubes, and metal carbides, would become applicable in APEFC. 展开更多
关键词 fuel cells polymer electrolyte anion exchange membrane CATALYST non-precious metal
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