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基于激光技术的球形燃料颗粒SiC包覆材料热冲击试验研究 被引量:2
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作者 王金宇 周慧辉 +2 位作者 昝元锋 闫晓 谭曙时 《载人航天》 CSCD 北大核心 2018年第4期436-441,共6页
为了研究SiC包覆材料球形燃料颗粒在核热推进系统中应用的可行性,对球形燃料颗粒SiC包覆材料进行了高温热冲击试验研究。利用激光加热方法实现包覆颗粒的快速升温,利用红外测温仪测量了包覆颗粒温度,通过观察热冲击试验前后SiC包覆材料... 为了研究SiC包覆材料球形燃料颗粒在核热推进系统中应用的可行性,对球形燃料颗粒SiC包覆材料进行了高温热冲击试验研究。利用激光加热方法实现包覆颗粒的快速升温,利用红外测温仪测量了包覆颗粒温度,通过观察热冲击试验前后SiC包覆材料的完整性判断其耐热冲击性能,试验峰值温度范围为1800~2800 K。研究结果表明,SiC包覆材料球形燃料颗粒能够承受30 s内升至1800 K的热冲击,不能满足核热推进系统在30 s内升温至3000 K的需求,需要进一步改进SiC包覆材料耐热冲击性能,或者选用耐热冲击性能更好的碳化锆等材料。 展开更多
关键词 球形燃料颗粒 包覆材料 高温热冲击试验 SIC
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Reconstruction of solid oxide fuel cell electrode microstructure and analysis of its effective conductivity 被引量:4
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作者 Keqing Zheng Meng Ni 《Science Bulletin》 SCIE EI CAS CSCD 2016年第1期78-85,共8页
The effective conductivity (aeff) of solid oxide fuel cell (SOFC) electrode is an important parameter for predicting the ohmic loss in SOFC. This paper investigates the effective conductivity of SOFC electrodes re... The effective conductivity (aeff) of solid oxide fuel cell (SOFC) electrode is an important parameter for predicting the ohmic loss in SOFC. This paper investigates the effective conductivity of SOFC electrodes recon- structed numerically by packing spherical particles in a computational domain, followed by a dilation process to simulate the sintering procedure. The effects of various parameters on the effective conductivity of the electrodes are investigated, including material composition, porosity, particle size and contact angle. Results show that the effective conductivity ratio (aeff/ao) of the computed con- ducting phase is mainly affected by its total volume frac- tion (VF) in electrode (including the porosity). The effective conductivity can be improved by increasing the VF, electrode particle size or the contact angle between electrode particles. Based on the numerical results, the conventional percolation model for the calculation of O'eft is improved by adjusting the Bruggeman factor from 1.5 to 2.7. The results are useful for understanding the microstructure properties of SOFC composite electrode and for subsequent electrode optimization. 展开更多
关键词 Fuel cell ELECTRODE CONDUCTIVITY Modeling Random particle packing
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