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    • 64. 发明授权
    • Organic electrolytic cell with a porous current collector
    • 具有多孔集电器的有机电解槽
    • US06740454B1
    • 2004-05-25
    • US09744687
    • 2001-01-29
    • Nobuo AndoMasaki YamaguchiYukinori Hato
    • Nobuo AndoMasaki YamaguchiYukinori Hato
    • H01M470
    • H01M10/052H01M4/137H01M4/60H01M4/745H01M4/80H01M10/058H01M10/44H01M2010/4292
    • An organic electrolytic cell having a positive electrode, a negative electrode, and an electrolyte comprising a solution of a lithium salt in an aprotic organic solvent, wherein a positive electrode collector and a negative electrode collector have pores that penetrate from the front surface to the back surface, a positive electrode active material and a negative electrode active material can reversibly carry lithium, and, when the lithium derived from the negative electrode or the positive electrode is in electrochemical contact with the lithium disposed opposite the negative electrode or the positive electrode, the whole or part of the lithium passes through at least one layer of the positive electrode or the negative electrode and is carried. The opposing area of the lithium is not larger than 40 % of the area of the negative electrode and the porosity of each current collector is not less than 1 % and not more than 30 %.
    • 一种具有正极,负极和电解质的有机电解质,其包含锂盐在非质子性有机溶剂中的溶液,其中正极集电体和负极集电体具有从前表面到后面穿透的孔 正极活性物质和负极活性物质可以可逆地携带锂,并且当来自负极或正极的锂与与负极或正极相对配置的锂电化学接触时, 锂的全部或部分通过正极或负极的至少一层并被承载。 锂的相对面积不大于负极面积的40%,每个集电器的孔隙率不小于1%且不大于30%。
    • 65. 发明授权
    • Hot-runner mold and injection molding method making use of the same
    • 热流道模具和注塑成型方法使用相同
    • US4212624A
    • 1980-07-15
    • US913295
    • 1978-06-07
    • Nobuo AndoIsao SatouKazuo Maehara
    • Nobuo AndoIsao SatouKazuo Maehara
    • B29C41/00B29C45/00B29C45/27B29C45/28B29C45/37B29F1/08
    • B29C45/2735B29C45/27B29C2045/2796
    • A mold suitable for use in simultaneous molding of a large number of articles at a time by hot-runner molding technique. The mold has a hot-runner block in which disposed are a plurality of gates through which the molten resin is delivered to the molding cavities formed in a cavity block which is usually kept at a low temperature. The gate area of the hot-runner block is kept in contact with the cavity block, for the safe deliver of the resin to the molding cavities, in the injection step and, therefore, is cooled by the cavity block. Consequently, when the injection is completed, the gate area has been cooled to such a low temperature as to cause a solidification of the resin in the gate area. The hot-runner block is then separated from the cavity block and brought into contact with a hot gate-temperature recovering block, so that the gates are heated to remelt the solidified resin, before the next batch of injection is performed, so as to recover the fluidity of the resin.
    • 一种模具,适用于通过热流道成型技术同时成型大量物品。 模具具有热流道块,其中设置有多个浇口,熔融树脂通过该浇口被输送到形成在通常保持在低温的空腔模块中的模腔中。 在注射步骤中,热流道块的浇口区域与空腔模块保持接触,以便将树脂安全地输送到模腔中,并因此被空腔模块冷却。 因此,当注入完成时,栅极区域已经被冷却到如此低的温度,从而导致浇口区域中的树脂凝固。 然后将热流道块与空腔块分离并与热门温度回收块接触,从而在进行下一批注射之前将浇口加热以重熔固化树脂,以便恢复 树脂的流动性。