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    • 2. 发明授权
    • Bipolar battery and method of making same
    • 双极电池及其制作方法
    • US5688615A
    • 1997-11-18
    • US553103
    • 1995-11-03
    • Edward N. MrotekWen-Hong Kao
    • Edward N. MrotekWen-Hong Kao
    • H01M2/08H01M8/02H01M10/18
    • H01M2/08H01M10/18H01M8/0273
    • A bipolar plate assembly includes a frame member having a center opening therethrough between parallel opposed surfaces, the opening being countersunk on one side of frame the member defining a mounting shoulder, and a bipolar element including a thin lead foil substrate having positive and negative active electrode material disposed on opposite surfaces, the bipolar element being mounted in the opening of the frame member with the marginal edge of the substrate located on the mounting shoulder and secured thereto by an adhesive resin, securing the bipolar element to said frame member, one or more such bipolar plate assemblies being stacked together between first and second terminal electrode assemblies to form a single or multi-element bipolar module having positive and negative terminals, and a plurality of the bipolar modules can be stacked together with their terminals electrically interconnected to form a multi-cell bipolar battery structure. Also disclosed is a method for making a substrate for a bipolar element for use in a bipolar battery, the method including plating a layer of lead onto the polymer fibers or particles using an electroless plating operation to form lead plated polymer particles, plating a thin layer of lead onto the lead plated polymer particles using an electrochemical process, and then forming the substrate by molding the lead coated polymer particles into a desired shape.
    • 双极板组件包括框架构件,所述框架构件具有在平行的相对表面之间穿过的中心开口,所述开口在框架的一侧上沉没,所述构件限定安装肩部,以及双极元件,其包括具有正和负极活性电极的薄铅箔衬底 设置在相对表面上的材料,双极元件安装在框架构件的开口中,其中基板的边缘位于安装台肩上,并通过粘合树脂固定到其上,将双极元件固定到所述框架构件上,一个或多个 这种双极板组件在第一和第二端子电极组件之间堆叠在一起以形成具有正端子和负极端子的单元件或多元件双极模块,并且多个双极模块可以堆叠在一起,其端子电互连以形成多个 电池双极电池结构。 还公开了一种用于制造用于双极型电池的双极性元件的基板的方法,该方法包括使用无电镀操作将铅层镀在聚合物纤维或颗粒上以形成镀铅聚合物颗粒,电镀薄层 使用电化学工艺将铅引入镀铅聚合物颗粒上,然后通过将引线涂覆的聚合物颗粒模制成所需的形状来形成基材。
    • 3. 发明授权
    • Split shell battery enclosure
    • 分体式电池外壳
    • US5536595A
    • 1996-07-16
    • US316289
    • 1994-09-30
    • Mark S. InkmannMichael T. ReherDavid W. Saari
    • Mark S. InkmannMichael T. ReherDavid W. Saari
    • B60R16/04H01M2/10H01M10/50
    • B60R16/04H01M2/1072H01M2/1094
    • A split-shell enclosure for a storage battery for motor vehicle includes identical first and second enclosure members which are dimensioned to fit around the battery, forming a shell structure, that is open at its top and bottom and partially encloses the battery on two sides and completely encloses the battery on the other two sides, forming a heat shield for protecting the battery from hot underhood temperatures, the enclosure members being adapted to snap together upon installation and to be held together by interlocking tongue and groove portions of mating sides of the enclosure members, upper portions of the enclosure members being disposed in juxtaposed relation with the handle brackets of the battery so that if the battery is lifted by the enclosure, the enclosure members will engage the handle brackets of the battery and the battery will effectively be lifted by its handle brackets and no load will be placed on the latches that hold the two sections of the enclosure together, and lower portions of the front and back walls of the enclosure being open to accommodate standard holddown mechanisms for the battery.
    • 用于机动车辆的蓄电池的分体外壳包括相同的第一和第二外壳构件,其尺寸适于围绕电池装配,形成外壳结构,其在其顶部和底部是敞开的,并且在两侧部分地包围电池, 完全将电池封闭在另外两侧,形成一个防护罩,用于保护电池不受热内底温度的影响,外壳部件适合于安装时卡扣在一起,并通过外壳的配合侧的互锁榫槽部分保持在一起 构件,外壳构件的上部与电池的手柄支架并置设置,使得如果电池被外壳提升,外壳构件将与电池的手柄支架接合,并且电池将有效地被提升 其手柄支架和无负载将被放置在将外壳的两个部分保持在一起的闩锁上 并且外壳的前壁和后壁的下部部分是敞开的,以适应电池的标准压紧机构。
    • 8. 发明授权
    • End block constructions for batteries
    • 电池端块结构
    • US5308718A
    • 1994-05-03
    • US5484
    • 1993-01-15
    • Phillip A. EidlerWayne W. BlazekJohn V. Berndt
    • Phillip A. EidlerWayne W. BlazekJohn V. Berndt
    • H01M2/02H01M2/30H01M8/02H01M10/02H01M2/00
    • H01M10/02H01M2/024H01M2/30
    • Improvements in the end block design for zinc/bromine batteries include modification of the end block configuration which previously has included rigid resin covers and end block plates with a honeycomb structure sandwiched therebetween. Such prior structures were used adjacent to terminal electrode frames. In the present invention, the terminal electrodes are preferably contained within the end plate, thereby eliminating two components used in prior zinc/bromine battery design and the end block itself is formed from two components by building a rib structure into the plate and cover and welding the two components together to join the ribs and form an integral and structurally sound unit. The end block configuration could be used for bipolar lead-acid batteries or other types of flowing or non-flowing batteries or capacitors.
    • 锌/溴电池的端块设计的改进包括先前已经包括刚性树脂覆盖物的端块结构的修改和其间夹有蜂窝结构的端块板。 这样的现有结构被用于邻近终端电极框架。 在本发明中,端子电极优选地包含在端板内,从而消除了在现有锌/溴电池设计中使用的两个部件,并且端部块本身由两个部件形成,所述两个部件通过将肋结构构造成板并覆盖和焊接 两个组件一起连接肋并形成整体和结构上完整的单元。 端块配置可用于双极铅酸电池或其他类型的流动或非流动电池或电容器。