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    • 9. 发明公开
    • Alkaline storage battery and a process for producing a hydrogen storage alloy therefor
    • 碱性蓄电池以及用于制造贮氢合金形成它的方法。
    • EP0591606A1
    • 1994-04-13
    • EP93104236.0
    • 1993-03-16
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Fujiwara, ShozoIzumi, YoichiMoriwaki, YoshioMatsumoto, Isao
    • H01M6/00H01M4/38
    • H01M4/383B22F9/04B22F2999/00Y10S420/90B22F1/0096
    • A hydrogen storage alloy particles comprising base particles consisting of hydrogen storage alloy particles and fine particles consisting of at least one of metals, alloys, hydrophobic resins, catalyst materials, metal oxides having a particle size smaller than that of the base particles where the fine particles are very firmly bonded to the base particles are employed as negative electrodes for alkaline storage batteries. The bonding of the fine particles to the base particles is performed by a surface treatment so-called mechanofusion process (one of mechanochemical reaction process) where the base particles and the fine particles are subjected therebetween predominantly to a mechanical energy, practically those derived from the compression and attrition forces simultaneously to emboss the surfaces of the base particles and to allow the fine particles to be extended and bonded firmly under pressure onto the surfaces of the base particles, thereby coating at least a part of the surfaces of the base particles with the fine particles.
    • 的储氢合金颗粒含有由储氢合金粒子的基体颗粒和细颗粒自由金属,合金,疏水性树脂,催化剂材料,金属氧化物具有颗粒大小比基颗粒,其中所述微粒的直径中的至少一个的 非常牢固地结合在基体颗粒被用作碱性蓄电池的负极。 细颗粒的基本颗粒物的键合是通过表面处理所谓的机械力处理(机械化学反应过程中的一个),其中基体颗粒和细颗粒主要之间进行有到机械能,实际上那些从派生演出 压缩和摩擦力同时压花基础颗粒的表面上,并允许微粒到基底颗粒的表面延伸并在压力下牢固地粘合,从而涂覆至少与所述基础颗粒的表面的一部分 细颗粒。