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    • 2. 发明专利
    • METAL OXIDE HYDROGEN BATTERY
    • JPH05217606A
    • 1993-08-27
    • JP28622092
    • 1992-10-23
    • GLOBE UNION INC
    • KENESU AARU JIYOONZUPOORU JIEI KAPURERIAN
    • H01M12/08H01M2/22H01M10/30H01M10/34H01M10/50
    • PURPOSE: To reduce junk generated during the manufacture of the electrode plate of a cell module and to manufacture the plate at low cost by making the plate rectangular and to shorten a current path to reduce electric resistance for increased efficiency by locating the cell module at the center of a pressure container to prevent its radial movement. CONSTITUTION: An improved metal oxide hydrogen battery 1 includes an external pressure container 2 and a plurality of cell modules laminated in a horizontally standing in a row relationship in the container. Each of the cell modules has an approximately rectangular shape and includes a cathode and an anode which are located at the center of the cell module. Each of the cell modules is sealed inside a rigid plastic casing 15, and the casing is provided with a vent allowing the flow of gas but impermeable to the flow of a liquid electrolyte stored in the cell module. A heat transfer member 23 is placed between adjacent cell modules and includes an outer cylindrical flange 20 arranged in a heat-transmitting relation to the interior wall of the pressure container 2. The circumferential edge of each casing 15 is engaged with the inner surface of each flange 25 so that the cell module is located inside the container. An electric conductor extends in a sealed relation through the wall of the casing 15, connecting the terminal of the cell module to an electric circuit.
    • 3. 发明专利
    • JPS6037601B2
    • 1985-08-27
    • JP5212774
    • 1974-05-10
    • GLOBE UNION INC
    • KURIFUOODO JOSEFU PYUUKAITO
    • H01C7/00H01C1/00H01C7/06H01C17/065
    • 1459327 Resistor composition GLOBEUNION Inc 18 April 1974 [11 May 1973] 17064/74 Heading C1M A resistor composition comprises 1-10% by weight vanadium oxide and 1-30% by weight ruthenium dioxide, these oxides constituting an electrically conductive phase, and 50-98% by weight of a glass, the glass comprising 35- 45% by weight PbO, 15-25% by weight B 2 O 3 and 30-40% by weight SiO 2 , the balance of the glass, if any, consisting of other compatible constituents. The glass may also comprise 0-2% CaO and 0-2% Al 2 O 3 . The resistor composition optionally may also comprise, in the conductive phase, 1-15% by weight iridium dioxide, up to 10% by weight bismuth trioxide and/or up to 10% by weight Al 2 O 3 . The vanadium oxide is preferably V 2 O 5 , but V 2 O 3 may also be used. The resistor composition may be prepared from the resinates of Ru and Ir (if Ir is present) by: mixing the said resinates with the glass in frit form, vanadium oxide and (optional) Bi 2 O 3 and Al 2 O 3 ; heating to 300- 480‹ C. to remove organic material; calcining at 400-600‹ C. in air; reducing to a particle size of less than 20 Á; mixing with an organic vehicle (e.g. 2-ethyl-hexanol); screen-printing on to a ceramic insulating substrate (e.g. alumina); and firing at 850-950‹ C. Alternatively, the glass may be mixed directly with the appropriate oxides; mixed with 2-ethylhexanol; screen-printed on to the ceramic substrate; and fired at 850-950‹ C. The resistor produced exhibits a low temperature coefficient of resistivity.