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采用溶胶-凝胶法制备了β″-Al2O3前驱体粉体,将该前驱体在850℃焙烧1h的产物作为水基流延浆料的陶瓷粉体,以去离子水为溶剂,加入适量的S464表面活性剂、WB4101粘结剂和PL005增塑剂,采用水基流延工艺成功制备了表面光滑、颗粒分布均匀的β″-Al2O3固体电解质前驱体薄膜.研究结果表明:β″-Al2O3前驱体水基流延薄膜经等静压成型并在1500℃高温烧结后,便可获得薄膜型β″-Al2O3固体电解质(JCPDS卡片号:19-1173).

参考文献

[1] EL-GENK M S;KING J C .Performance analyses of an Nb-lZr/ C-103 vapor anode multi-tube alkali-metal ther-mal-to-electric conversion cell[J].Energy Conversion and Management,2001,42(06):721739.
[2] TOURNIER J M;EL-GENK M S.Incipient dryout in the evapo rator of vapor anode,multi tube alkali-metal thermal-to-electric conversion cells[A].USA:AMER INST AERONAUTICS & ASTRONAUTICS,2000:931-939.
[3] EL-GENK M S;TOURNIER J M .Design optimization and inte gration of nickel/Haynes 25 AMTEC cells into radioisotope power systems[J].Energy Conversion and Management,2000,41(16):1703-1728.
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