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    • 5. 发明授权
    • Process for filling electrochemical cells with electrolyte
    • 用电解质填充电化学电池的工艺
    • US5865860A
    • 1999-02-02
    • US879936
    • 1997-06-20
    • Frank M. Delnick
    • Frank M. Delnick
    • H01M6/48B41J2/01H01M2/36H01M4/04H01M6/00
    • H01M2/361B41J2/01H01M4/04Y10T29/49115
    • A process for manufacturing an electrochemical cell comprising the steps of providing an electrode and applying electrolyte to the electrode using an ink-jet printer. In the preferred embodiment of the present invention, an ink-jet printing process is utilized to print the electrolyte onto the surface of the electrodes and separators or the electrode/separator bilayers. The ink-jet printing accurately meters and uniformly distributes the electrolyte throughout the pore structure of the separator and the electrode without contaminating the cell gasket. Preferably, a drop-on-demand ink-jet printing head is used to facilitate the electrolyte printing process. The ink-jet printing head is electronically pulsed to form and eject the electrolyte droplets from a nozzle of printing-head. The volume and the distribution of each electrolyte droplet are accurately determined and controlled by varying the pulse width and the pulse frequency of the printing head.
    • 一种用于制造电化学电池的方法,包括以下步骤:使用喷墨打印机提供电极和将电解质施加到电极。 在本发明的优选实施例中,使用喷墨印刷方法将电解质印刷到电极和隔板或电极/分离器双层的表面上。 喷墨打印精确地计量并均匀地分布电解液遍及分离器和电极的孔结构,而不会污染电池垫片。 优选地,按需喷墨打印头用于促进电解质印刷过程。 喷墨打印头被电子脉冲以形成并从打印头的喷嘴喷出电解质液滴。 通过改变打印头的脉冲宽度和脉冲频率来精确地确定和控制每个电解质液滴的体积和分布。
    • 8. 发明授权
    • Electrode containing a polymeric binder material, method of formation thereof and electrochemical cell
    • 含有聚合物粘合剂材料的电极,其形成方法和电化学电池
    • US06316142B1
    • 2001-11-13
    • US09281922
    • 1999-03-31
    • Frank M. DelnickAlan IwamotoZhendong HuLiya Wang
    • Frank M. DelnickAlan IwamotoZhendong HuLiya Wang
    • H01M462
    • H01M4/622H01M4/0404H01M4/0435H01M4/621H01M4/625H01M10/052H01M10/054Y10T29/49112Y10T29/49115
    • Provided are methods of forming an electrode suitable for use in an electrochemical cell, and novel electrodes which can be formed therefrom. The methods involve the steps of: (a) forming an electrode slurry from components comprising a solvent, a polymeric binder material and a solid electrode material, wherein the polymeric binder material is formed by modifying a polyolefin with at least one unsaturated polycarboxylic acid or an anhydride of the acid, chlorinating the modified polyolefin and partially crosslinking carboxyl groups or acid anhydride groups on the chlorinated, modified polyolefin with an epoxy group of a compound which has at least two epoxy groups per molecule; (b) coating the electrode slurry on a substrate; and (c) evaporating the solvent. Also provided are electrochemical cells which include the inventive electrodes. The invention has particular applicability to the manufacture of nonaqueous electrochemical power supplies.
    • 提供了形成适用于电化学电池的电极的方法,以及可由其形成的新型电极。 所述方法包括以下步骤:(a)从包括溶剂,聚合物粘合剂材料和固体电极材料的组分形成电极浆料,其中所述聚合物粘合剂材料通过用至少一种不饱和多元羧酸或 酸的酸酐,氯化改性聚烯烃和氯化改性聚烯烃部分交联的羧基或酸酐基团,其中每个分子具有至少两个环氧基团的化合物的环氧基团; (b)将电极浆料涂覆在基材上; 和(c)蒸发溶剂。 还提供了包括本发明电极的电化学电池。 本发明特别适用于非水电化学电源的制造。