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    • 1. 发明授权
    • Electric elements
    • 电气元件
    • US06288322B1
    • 2001-09-11
    • US09504586
    • 2000-02-15
    • Shinji KawasakiKiyoshi OkumuraShigenori Ito
    • Shinji KawasakiKiyoshi OkumuraShigenori Ito
    • H01L3530
    • H01L35/32
    • A honeycomb-shaped electric element includes a honeycomb-shaped structural body, the honeycomb-shaped structural body including crossing partition walls defining a number of through-holes arranged thereamong, the through-holes being arranged in at least three lines extending laterally substantially in the same direction, wherein partition wall portions of the through-boles in the at least three lines are made of at least an electrically conductive material and an insulating material such that the partition wall portions of the through-holes made of the electrically conductive material and those of the insulating material are so arranged that a current flow passage may be continuously formed in the same direction as the continuous lines extend.
    • 蜂窝状电气元件包括蜂窝状结构体,所述蜂窝状结构体包括交叉隔壁,所述交替隔壁限定了之前布置的多个通孔,所述通孔布置在至少三条线中,所述至少三条线基本上在 其中至少三条线中的通孔的分隔壁部分由至少导电材料和绝缘材料制成,使得由导电材料制成的通孔的分隔壁部分和那些 绝缘材料的布置使得电流流动通道可以沿与连续线延伸的相同方向连续地形成。
    • 4. 发明授权
    • Method for manufacturing solid oxide film and method for manufacturing
solid oxide fuel cell using the solid oxide film
    • 固体氧化物膜的制造方法以及使用固体氧化物膜制造固体氧化物型燃料电池的方法
    • US5358735A
    • 1994-10-25
    • US857965
    • 1992-03-26
    • Shinji KawasakiShigenori ItoKiyoshi Okumura
    • Shinji KawasakiShigenori ItoKiyoshi Okumura
    • C04B41/88B05D1/00C23C4/18G01N27/407H01M8/02H01M8/12
    • G01N27/4075C23C4/18H01M4/9025H01M8/1246Y02E60/525Y02P70/56
    • A first method for manufacturing a solid oxide film having a highly densified solid oxide film having a small thickness and an improved electric conductivity; and a second method for manufacturing a solid oxide fuel cell in which a solid oxide film formed on an air electrode or a fuel electrode is manufactured by the first method. The solid oxide fuel cell according to the present invention is capable of generating a high power. The solid oxide film is formed on a substrate in such manner that a solid oxide material is sprayed on the substrate to form a sprayed solid oxide film thereon; Then a solution of metal compound including at least one metal selected from a group of manganese, iron, cobalt, nickel, copper and zinc is impregnated into the sprayed solid oxide film; and the sprayed solid oxide film is subjected to a heat treatment in order to increase an airtightness of the film. It may be possible to use a material for spraying, in which 1.about.10 parts by weight of an oxide of said metal is contained, instead of the impregnation, or to obtain a material for spraying by mixing the compound powder containing the metal and the solid oxide material in a spray gun via separately arranged powder supply devices.
    • 制造具有厚度小且电导率提高的高致密固体氧化物膜的固体氧化物膜的第一种方法; 以及通过第一种方法制造其中形成在空气电极或燃料电极上的固体氧化物膜的固体氧化物燃料电池的第二种方法。 根据本发明的固体氧化物型燃料电池能够产生高功率。 固体氧化物膜以这样的方式形成在基板上,即将固体氧化物材料喷涂在基板上以在其上形成喷射的固体氧化物膜; 然后将包含选自锰,铁,钴,镍,铜和锌中的至少一种金属的金属化合物溶液浸渍到喷涂的固体氧化物膜中; 并且对喷射的固体氧化物膜进行热处理以增加膜的气密性。 可以使用其中含有10重量份所述金属的氧化物而不是浸渍的喷涂材料,或者通过混合含有金属的化合物粉末和 通过单独布置的粉末供应装置在喷枪中固体氧化物材料。