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    • 2. 发明授权
    • Heat exchanger
    • 热交换器
    • US5676202A
    • 1997-10-14
    • US547118
    • 1995-10-23
    • Koji AkashiNaoki HiroKenji NasakoTeruhiko ImotoKoichi NishimuraIkuo Yonezu
    • Koji AkashiNaoki HiroKenji NasakoTeruhiko ImotoKoichi NishimuraIkuo Yonezu
    • F28D20/00F28D15/00
    • F28D20/003Y02E60/142Y02E70/30
    • In a heat exchanger according to the present invention, there are provided a filling container having a first containing section containing a hydrogen-absorbing metal material for middle or high temperature, a second containing section containing a hydrogen-absorbing metal material for low temperature which is higher in equilibrium hydrogen pressure at the same temperature than the hydrogen-absorbing metal material for middle or high temperature, and a hydrogen passage for moving hydrogen between the first containing section and the second containing section; a guiding section having a heating section provided with heating means for heating the filling container, a heat radiating section provided with a heat exchanging section for radiating heat generated in the filling container outward, and a heat absorbing section provided with a heat exchanging section for cooling the outside by absorption of heat in the filling container; and moving means for moving the filling container back and forth in the guiding section, moving the first containing section back and forth between the heat radiating section and the heating section, and moving the second containing section back and forth between the heat absorbing section and the heat radiating section.
    • 在根据本发明的热交换器中,提供一种填充容器,该填充容器具有包含用于中或高温的吸氢金属材料的第一容纳部分,含有用于低温的吸氢金属材料的第二容纳部分, 在与中温或高温吸氢金属材料相同的温度下的平衡氢压高,在第一容纳部分和第二容纳部分之间移动氢气的氢通道; 具有加热部的引导部,该加热部设置有用于加热填充容器的加热装置,设置有用于将向外填充容器内产生的热量散热的热交换部的散热部,以及具有用于冷却的热交换部的吸热部 外部通过吸收填充容器中的热量; 以及移动装置,用于在引导部分中来回移动填充容器,使第一容纳部分在散热部分和加热部分之间来回移动,并且使第二容纳部分在吸热部分和 散热部分。
    • 6. 发明授权
    • Electrode for alkaline storage battery and method of manufacturing the same
    • 碱性蓄电池用电极及其制造方法
    • US06756152B2
    • 2004-06-29
    • US09813967
    • 2001-03-22
    • Tetsuyuki MurataTadashi IseTeruhiko ImotoYasuhiko Ikeda
    • Tetsuyuki MurataTadashi IseTeruhiko ImotoYasuhiko Ikeda
    • H01M462
    • H01M4/621H01M4/24H01M4/26H01M10/345H01M2004/021Y02E60/124Y02P70/54Y10T29/49115
    • An electrode for the alkaline storage battery includes a binding agent containing thermoplastic xylene-formaldehyde resin. Since the thermoplastic xylene-formaldehyde resin is non-aqueous, it is not dissolved into moisture in the air or the alkaline electrolyte within the battery. The electrode is prepared by immersing an active-material-applied or -filled electrode substrate in a solution in which the thermoplastic xylene-formaldehyde resin is dissolved; immersing it in an emulsion of the thermoplastic xylene-formaldehyde resin with an emulsifier; or applying or filling a slurry of the active material with an emulsion of the thermoplastic xylene-formaldehyde resin to or in the electrode substrate. The electrode retains the active material using a binding agent which has excellent adhesion to the active material and imparts high binding capacity of the active materials with one another.
    • 用于碱性蓄电池的电极包括含有热塑性二甲苯 - 甲醛树脂的粘合剂。 由于热塑性二甲苯 - 甲醛树脂是非水性的,它不会溶解在电池内的空气或碱性电解质中的水分中。 通过将活性材料施加或填充的电极基材浸渍在其中溶解热塑性二甲苯 - 甲醛树脂的溶液中来制备电极; 将其浸渍在具有乳化剂的热塑性二甲苯 - 甲醛树脂的乳液中; 或者用活性材料的浆料将热塑性二甲苯 - 甲醛树脂的乳液施加或填充到电极基底中或其中。 电极使用粘合剂保留活性材料,该粘合剂对活性材料具有优异的粘附性,并且使活性材料彼此之间具有高的结合能力。