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    • 2. 发明申请
    • Lithium secondary cell with high charge and discharge rate capability
    • 具有高充放电能力的锂二次电池
    • US20050233220A1
    • 2005-10-20
    • US11076556
    • 2005-03-09
    • Antoni GozdzAndrew ChuYet-Ming ChiangGilbert Riley
    • Antoni GozdzAndrew ChuYet-Ming ChiangGilbert Riley
    • H01M4/02H01M4/133H01M4/136H01M4/58H01M4/583H01M4/587H01M10/0525H01M10/0587H01M10/36H01M10/42H01M10/44
    • H01M10/0525H01M4/13H01M4/133H01M4/136H01M4/5825H01M4/583H01M4/587H01M10/0587H01M2004/021H01M2010/4292
    • A high capacity, high charge rate lithium secondary cell includes a high capacity lithium-containing positive electrode in electronic contact with a positive electrode current collector, said current collector in electrical connection with an external circuit, a high capacity negative electrode in electronic contact with a negative electrode current collector, said current collector in electrical connection with an external circuit, a separator positioned between and in ionic contact with the cathode and the anode, and an electrolyte in ionic contact with the positive and negative electrodes, wherein the total area specific impedance for the cell and the relative area specific impedances for the positive and negative electrodes are such that, during charging at greater than or equal to 4C, the negative electrode potential is above the potential of metallic lithium. The current capacity per unit area of the positive and negative electrodes each are at least 3 mA-h/cm2, the total area specific impedance for the cell is less than about 20 Ω-cm2, and the positive electrode has an area specific impedance r1 and the negative electrode has an area specific impedance r2, and wherein the ratio of r1 to r2 is at least about 10.
    • 高容量高电荷率锂二次电池包括与正极集电体电接触的高容量含锂正极,所述集电体与外部电路电连接,与 负极集电器,所述集电器与外部电路电连接,位于阴极和阳极之间并与阴极和阳极离子接触的分离器,以及与正极和负极离子接触的电解质,其中总面积比阻抗 对于电池和正极和负极的相对面积比阻抗使得在大于或等于4C的充电期间,负极电位高于金属锂的电位。 正极和负极每单位面积的电流容量至少为3mA-h / cm 2,电池的总面积比阻抗小于约20Ω·cm〜 2,并且正电极具有面积比阻抗r 1,并且负极具有面积比阻抗r 2 2,并且其中r < SUB> 1 至r 2 2是至少约10。
    • 7. 发明申请
    • Low impedance layered battery apparatus and method for making the same
    • 低阻抗层状电池装置及其制造方法
    • US20050277019A1
    • 2005-12-15
    • US11117157
    • 2005-04-28
    • Gilbert RileyJames Ribordy
    • Gilbert RileyJames Ribordy
    • H01M2/02H01M2/26H01M2/36H01M6/10H01M6/42H01M10/04H01M10/28H01M10/38H01M10/50
    • H01M6/10H01M2/26H01M2/263H01M2/361H01M6/42H01M10/04H01M10/0409H01M10/286H01M10/38H01M10/613H01M10/643H01M10/655H01M10/6551
    • An electrochemical storage device is described, and a method for making the same. In some aspects, a guidewire is co-wound with sheet or ribbon-like electrode materials so that contact is made between the guidewire and collector extensions of the electrode materials thereby forming an endcap with low impedance and high thermal sinking capabilities. In one embodiment, the storage device includes a negative electrode sheet have an edge which is substantially free of electrode active material, a positive electrode sheet have an edge which is substantially free of electrode active material, a first conductive guidewire disposed adjacent to the edge of the negative electrode sheet which is substantially free of electrode active material, and a second conductive guidewire disposed adjacent to the edge of the positive electrode sheet which is substantially free of electrode active material. The first conductive guidewire and the edge of the negative electrode sheet which is substantially free of electrode active material define a first electrode endcap and the second conductive guidewire and the edge of the positive electrode sheet which is substantially free of electrode active material define a second electrode endcap. The electrode endcaps are coupled to terminals of the storage device, which are capable of being connected to the terminals of an external circuit.
    • 描述了一种电化学存储装置及其制造方法。 在一些方面,导线与片状或带状电极材料共缠绕,使得在导丝和电极材料的集电体延伸部之间形成接触,从而形成具有低阻抗和高散热能力的端盖。 在一个实施例中,存储装置包括具有基本上不含电极活性材料的边缘的负极片,正电极片具有基本上不含电极活性材料的边缘,第一导电导线邻近 基本上不含电极活性物质的负极片,以及与基本上不含电极活性物质的正极片的边缘相邻配置的第二导电导线。 第一导电导线和基本上不含电极活性材料的负极片的边缘限定第一电极端盖和第二导电导线以及基本上不含电极活性材料的正电极片的边缘限定第二电极 endcap。 电极端盖耦合到能够连接到外部电路的端子的存储装置的端子。
    • 8. 发明申请
    • Processing of magnesium-boride superconductor wires
    • 镁硼化物超导体线的加工
    • US20050163644A1
    • 2005-07-28
    • US11030817
    • 2005-01-07
    • Cornelis ThiemeAlexander OttoGilbert RileyQi LiYibing Huang
    • Cornelis ThiemeAlexander OttoGilbert RileyQi LiYibing Huang
    • H01L39/14H01L39/24B22F7/04
    • H01L39/141H01L39/2487
    • A method of making a high density Mg—B superconducting article includes providing a packed powder sheath, said powder comprising a source of magnesium and boron, subjecting the packed powder sheath to a symmetric deformation, said deformation selected to elongate the packed powder sheath to form a wire while retaining the free flow of particles within the powder core, subjecting the wire to high reduction rolling, said high reduction rolling selected to reduce the wire thickness by 40 to 95% and heating the rolled article to improve the superconducting properties of the article. A superconducting article comprised of one or more elongated metal matrix regions containing one or more embedded elongated superconducting Mg—B regions running the full length of the article is disclosed, wherein the superconducting Mg—B regions have a density greater than 95% of the theoretical density, and a transition temperature in zero field of 30 K.
    • 一种制造高密度Mg-B超导体制品的方法包括提供一种填充粉末鞘,所述粉末包含镁和硼源,对填充的粉末鞘进行对称变形,所述变形被选择以延长填充的粉末鞘以形成 电线,同时保持颗粒在粉末芯内的自由流动,对钢丝进行高度还原轧制,选择所述高压下轧制以将钢丝厚度减少40至95%,并加热轧制制品以改善制品的超导性能 。 公开了一种由一个或多个细长的金属基质区域组成的超导体制品,该金属基质区域含有一个或多个在制品整个长度上的嵌入式细长超导Mg-B区域,其中超导Mg-B区域的密度大于理论值的95% 密度,零场中的转变温度为30K。