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Material behavior of rubber sealing for proton exchange membrane fuel cells

机译:质子交换膜燃料电池橡胶密封的材料性能

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Reliable sealing is necessary for the stable operation of proton exchange membrane fuel cell (PEMFC). In practical application, various materials have been tried in PEMFC sealing. However, the mechanical properties of these sealing materials, which play a key role in the sealing stability, have not been fully understood in PEMFC environment, especially after long-term operation. In this paper, according to the operating environment of PEMFC, sealing material experiments are carried out to explore the differences in mechanical behaviors of sealing materials, including silicone rubber (SR), fluororubber (FR), nitrile rubber (NBR) and ethylene-propylene-diene-terpolymer rubber (EPDM) and the variation of mechanical properties of these sealing materials is predicted as time goes on. The results indicate that compression rate has a great influence on sealing contact stress. SR and EPDM, with the variation of 0.15 MPa and 0.45 MPa in stress, show the best and worst mechanical stability at different compression rates, respectively. In terms of temperature, it is found that SR can adapt to different operating temperature of PEMFC and only 18% variation is found from 20 °C to 100 °C. Finally, based on Time-Temperature Superposition (TTS), high temperature experiments are conducted to predict long-term relaxation stress under PEMFC working condition. The analysis results are beneficial for choosing suitable sealing material, and it can also be applied to predict sealing ability in PEMFC.
机译:可靠的密封对于质子交换膜燃料电池(PEMFC)的稳定运行必不可少。在实际应用中,已经在PEMFC密封中尝试了各种材料。但是,在PEMFC环境中,尤其是在长期运行后,尚未充分了解这些对密封稳定性起关键作用的密封材料的机械性能。本文针对PEMFC的使用环境,进行了密封材料实验,探讨了硅橡胶(SR),氟橡胶(FR),丁腈橡胶(NBR)和乙丙橡胶等密封材料的力学性能差异。预测随着时间的流逝,这些材料会发生变化,并预测这些密封材料的机械性能会发生变化。结果表明,压缩率对密封接触应力有很大的影响。 SR和EPDM的应力变化分别为0.15 MPa和0.45 MPa,分别在不同的压缩率下表现出最佳和最差的机械稳定性。在温度方面,发现SR可以适应PEMFC的不同工作温度,并且从20°C到100°C仅发现18%的变化。最后,基于时间-温度叠加(TTS),进行了高温实验,以预测PEMFC工作条件下的长期松弛应力。分析结果有利于选择合适的密封材料,也可用于预测PEMFC的密封性能。

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