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    • 32. 发明授权
    • Manufacturing method of active materials for the positive electrode in
alkaline storage batteries
    • 碱性蓄电池正极活性物质的制造方法
    • US6129902A
    • 2000-10-10
    • US17029
    • 1998-02-02
    • Hiroyuki SakamotoHidekatsu IzumiHirokazu KimiyaYoichi IzumiIsao Matsumoto
    • Hiroyuki SakamotoHidekatsu IzumiHirokazu KimiyaYoichi IzumiIsao Matsumoto
    • H01M4/52C01G49/00H01M4/36
    • H01M4/52
    • A process for producing positive electrode active material includes feeding an aqueous nickel salt solution, aqueous solutions of different kinds of metals, aqueous solution containing ammonium ions and aqueous alkali solution each independently and simultaneously into a reaction vessel such that the amount of alkali metal is 1.9-2.3 moles relative to 1 mole of the total amount of nickel and different kinds of metals and the amount of ammonium ions is 2 moles or more relative to 1 mole of the total amount of nickel and different kinds of metals, the pH in the vessel is 11-13, the temperature in the vessel is 30-60.degree. C. and the average residence time is 20-50 hours. Further, in the process step of continuously growing the complex metal oxide particles from the salts of a plurality of metal elements through a plurality of successive reaction-deposition stages, the compositions and/or the kinds of the salts of metal element groups used for forming the oxide in the reaction-deposition stages adjacent to each other are made to be different from each other.
    • 制造正极活性物质的方法包括将镍盐水溶液,不同种类金属的水溶液,含有铵离子的水溶液和碱水溶液各自独立同时投入到反应容器中,使得碱金属的量为1.9 相对于1摩尔镍的总量和不同种类的金属,相对于1摩尔镍和不同种类的金属,铵离子的量为2摩尔或更大,相对于1摩尔的-2.3摩尔,容器中的pH 为11-13,容器中的温度为30-60℃,平均停留时间为20-50小时。 此外,在通过多个连续反应沉积阶段从多个金属元素的盐连续生长复合金属氧化物颗粒的工艺步骤中,用于形成的金属元素基团的盐的组成和/或种类 使彼此相邻的反应沉积阶段中的氧化物彼此不同。
    • 34. 发明授权
    • Alkaline storage battery
    • 碱性蓄电池
    • US5346781A
    • 1994-09-13
    • US646012
    • 1991-01-28
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • H01M4/24H01M4/38H01M4/80H01M10/24
    • H01M4/242H01M4/383H01M4/808
    • Disclosed is an alkaline storage battery, in which the negative electrode is constituted by a hydrogen absorbing alloy capable of absorbing/desorbing hydrogen electrochemically, and a hydrophobic material is provided in the space between the surface of the negative electrode and the separator while a hydrophilic material is provided in the inside of the negative electrode, thereby properly secure both wetting property and surface hydrophobic property of the negative electrode against the alkaline electrolytic solution. Accordingly, a hydrogen gas generated in charging the battery can be absorbed by a vapor phase reaction in the hydrophobic portion in the surface of the negative electrode which is exposed to the vapor phase and can be absorbed electrochemically in the portion of the negative electrode which is wetted by the electrolytic solution, so that the inner pressure of the battery can be reduced to thereby make it possible to perform quick charging.
    • 公开了一种碱性蓄电池,其中负极由能够电化学吸收/解吸氢的吸氢合金构成,并且在负极表面和隔板之间的空间中设置疏水材料,同时亲水材料 设置在负极的内部,从而适当地确保负极的润湿性和表面疏水性相对于碱性电解液。 因此,在电池充电中产生的氢气可以通过暴露于气相的负极表面中的疏水部分中的气相反应吸收,并且可以在负极的部分电化学吸收 被电解液润湿,从而可以降低电池的内部压力,从而可以进行快速充电。
    • 35. 发明授权
    • Alkaline storage battery
    • 碱性蓄电池
    • US5250369A
    • 1993-10-05
    • US952146
    • 1992-09-28
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • Kohji YuasaMunehisa IkomaHiroshi KawanoOsamu TakahashiIsao Matsumoto
    • H01M4/24H01M4/38H01M4/80H01M10/52
    • H01M4/383H01M4/242H01M4/808
    • Disclosed is an alkaline storage battery, in which the negative electrode is constituted by a hydrogen absorbing alloy capable of absorbing/desorbing hydrogen electrochemically, and a hydrophobic material is provided in the space between the surface of the negative electrode and the separator while a hydrophilic material is provided in the inside of the negative electrode, thereby properly secure both wetting property and surface hydrophobic property of the negative electrode against the alkaline electrolytic solution. Accordingly, a hydrogen gas generated in charging the battery can be absorbed by a vapor phase reaction in the hydrophobic portion in the surface of the negative electrode which is exposed to the vapor phase and can be absorbed electrochemically in the Portion of the negative electrode which is wetted by the electrolytic solution, so that the inner pressure of the battery can be reduced to thereby make it possible to perform quick charging.
    • 公开了一种碱性蓄电池,其中负极由能够电化学吸收/解吸氢的吸氢合金构成,并且在负极表面和隔板之间的空间中设置疏水材料,同时亲水材料 设置在负极的内部,从而适当地确保负极的润湿性和表面疏水性相对于碱性电解液。 因此,在电池充电中产生的氢气可以通过在暴露于气相的负极表面的疏水部分中的气相反应吸收,并且可以在负极的部分中被电化学吸收 被电解液润湿,从而可以降低电池的内部压力,从而可以进行快速充电。
    • 40. 发明授权
    • Operator console for X-ray tomographs
    • X射线断层扫描仪的操作台
    • US4773086A
    • 1988-09-20
    • US117363
    • 1987-10-28
    • Kenjiro FujitaIsao Matsumoto
    • Kenjiro FujitaIsao Matsumoto
    • A61B6/03H05G1/30H05G1/00
    • H05G1/30
    • An operator console for an X-ray tomograph, has a variety of switches sequentially actuatable for scanning operation of the X-ray tomograph. Each switch is provided with an indicator means for indicating a controllable condition to give the operator a switch operating procedure, and also with an indicator means for indicating a selected condition to allow the operator to know a current setting at a glance. The number of operating steps for routine scanning operation can be reduced by providing capability for presetting scanning parameters for respective body areas to be scanned. The operator console can easily be operated without any errors even by a novice operator.
    • 用于X射线断层摄影机的操作员控制台具有能够扫描X-射线层析成像仪的扫描操作的各种开关。 每个开关设置有指示器装置,用于指示可操作的状态以给予操作者开关操作程序,并且还具有用于指示所选条件的指示器装置,以允许操作者一目了然地知道当前设置。 通过提供对要扫描的相应身体区域的扫描参数的预设能力,可以减少用于常规扫描操作的操作步骤的数量。 操作员控制台即使是由新手操作也能轻松操作,无任何错误。