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    • 1. 发明授权
    • Apparatus for and method of measuring gas absorbing characteristics
    • 气体吸收特性测量装置及方法
    • US5591897A
    • 1997-01-07
    • US466045
    • 1995-06-06
    • Hiroshi NakamuraShin FujitaniYumiko NakamuraTakahiro YonesakiKoichi NishimuraTeruhiko ImotoIkuo Yonezu
    • Hiroshi NakamuraShin FujitaniYumiko NakamuraTakahiro YonesakiKoichi NishimuraTeruhiko ImotoIkuo Yonezu
    • G01N7/04F17C11/00G01N15/08
    • G01N15/0893Y02E60/321
    • The invention relates to an apparatus for measuring the gas absorbing and/or desorbing characteristics of a substance having a property to absorb a gas. The apparatus comprises a sample container for containing the substance, a gas storage connected to the sample container for storing the gas until a predetermined pressure is reached, a gas supply source for supplying the gas to the gas storage, a first valve provided on a line connecting the gas supply source to the gas storage, a second valve provided on the line between the first valve and the gas storage, and a third valve provided on a gas discharge line connected to the line between the first and second valves, the first to third valves being each a two-position valve having an open position and a closed position, the valves defining a region thereby surrounded and serving as a preliminary storage for temporarily holding the gas when the gas is supplied or discharged. The substance having the gas absorbing property is, for example, a hydrogen absorbing alloy, and the gas is hydrogen.
    • 本发明涉及一种用于测量具有吸收气体的物质的气体吸收和/或解吸特性的装置。 该装置包括用于容纳物质的样品容器,连接到用于储存气体的样品容器直到达到预定压力的气体存储器,用于将气体供应到气体存储器的气体供应源,设置在管线上的第一阀 将气体供应源连接到气体存储器,设置在第一阀和气体存储器之间的管线上的第二阀,以及设置在连接到第一和第二阀之间的管线上的气体排出管线上的第三阀,第一阀 第三阀分别是具有打开位置和关闭位置的两位置阀,所述阀限定了一个被包围的区域,并且用作在供应或排出气体时临时保持气体的预备存储器。 具有气体吸收性的物质例如是吸氢合金,气体是氢。
    • 7. 发明授权
    • Hydrogen absorbing alloy electrodes
    • 吸氢合金电极
    • US5876869A
    • 1999-03-02
    • US759419
    • 1996-12-05
    • Hiroshi NakamuraTeruhiko ImotoToshikazu YoshidaShin FujitaniIkuo Yonezu
    • Hiroshi NakamuraTeruhiko ImotoToshikazu YoshidaShin FujitaniIkuo Yonezu
    • H01M4/38
    • H01M4/383Y10S420/90
    • A hydrogen absorbing alloy electrode contains an alloy which comprises particles A of a first hydrogen absorbing alloy and particles B of a second hydrogen absorbing alloy of a composition different from the composition of the first alloy joined to the particles A, with a joint layer C formed at the resulting joint interfaces and having a new composition containing the component elements of the first and second alloys. In a specific embodiment, particles A of a first hydrogen absorbing alloy having a CaCu.sub.5 -type structure are joined to particles B of a second hydrogen absorbing alloy having a Zr--Ni Laves-phase structure. In another embodiment, particles A of a first hydrogen absorbing alloy having a CaCu.sub.5 -type structure are joined to particles B of a second hydrogen absorbing alloy having a CaCu.sub.5 -type structure and different form the first alloy in composition. In another embodiment, particles A of a first hydrogen absorbing alloy having a Zr--Ni Laves-phase structure are joined to particles B of a second hydrogen absorbing alloy having a Zr--Ni Laves-phase structure and different from the first alloy in composition.
    • 吸氢合金电极含有包含第一吸氢合金的粒子A和不同于与粒子A接合的第一合金的组成的第二吸氢合金的粒子B的合金,形成有接合层C 在所得的接合界面处并具有包含第一和第二合金的组分元素的新组合物。 在具体实施方案中,具有CaCu5型结构的第一储氢合金的颗粒A与具有Zr-Ni Laves相结构的第二储氢合金的颗粒B接合。 在另一个实施方案中,具有CaCu5型结构的第一储氢合金的颗粒A与CaCu5型结构的第二储氢合金的颗粒B接合,并且组成不同于第一合金。 在另一个实施方案中,具有Zr-Ni Laves相结构的第一储氢合金的颗粒A与具有Zr-Ni Laves相结构且与组成不同的第一合金的第二储氢合金的颗粒B接合。