ELECTRIC STORAGE MODULE, ELECTRIC STORAGE APPARATUS, AND AIR PASSAGE CONNECTION MEMBER
    492.
    发明申请
    ELECTRIC STORAGE MODULE, ELECTRIC STORAGE APPARATUS, AND AIR PASSAGE CONNECTION MEMBER 有权
    电动储存模块,蓄电装置和空气通风连接构件

    公开(公告)号:US20140302371A1

    公开(公告)日:2014-10-09

    申请号:US14242400

    申请日:2014-04-01

    Abstract: An electric storage module includes an electric storage device, an air passage formed along the electric storage device, a frame that holds the electric storage device, the frame having an opening that is formed on an outer surface thereof and is in communication with the air passage, and an air passage connection member that encloses the opening of the frame. An electric storage apparatus includes a plurality of electric storage modules, and air passages of adjacent electric storage modules are connected to each other by an air passage connection member.

    Abstract translation: 蓄电模块包括蓄电装置,沿着蓄电装置形成的空气通道,保持蓄电装置的框架,框架具有形成在其外表面上并与空气通道连通的开口 以及封闭框架的开口的空气通道连接构件。 一种蓄电装置,具有多个蓄电模块,相邻的蓄电模块的空气通路由空气通路连接构件相互连接。

    Battery Module
    493.
    发明申请
    Battery Module 有权
    电池模块

    公开(公告)号:US20140302364A1

    公开(公告)日:2014-10-09

    申请号:US14244791

    申请日:2014-04-03

    Abstract: A battery module has a cell unit including battery cells, a positive external terminal electrically connected to a positive side of the battery cells through a positive electro conductive member, and a negative external terminal electrically connected to a negative side of the battery cells. The positive electro conductive member extends a first surface which is one of surfaces of the cell unit. The negative electro conductive member extends of a second surface which is one of surfaces of the cell unit other than the first surface.

    Abstract translation: 电池模块具有包括电池单元的电池单元,通过正导电构件电连接到电池单元的正侧的正外部端子和电连接到电池单元的负侧的负外部端子。 正导电构件延伸作为电池单元的表面之一的第一表面。 负导电构件延伸第二表面,该第二表面是除了第一表面之外的单元单元的表面之一。

    ELECTRIC STORAGE DEVICE, ELECTRIC STORAGE SYSTEM, AND MANUFACTURING METHOD THEREOF
    495.
    发明申请
    ELECTRIC STORAGE DEVICE, ELECTRIC STORAGE SYSTEM, AND MANUFACTURING METHOD THEREOF 有权
    蓄电装置,蓄电系统及其制造方法

    公开(公告)号:US20140197796A1

    公开(公告)日:2014-07-17

    申请号:US14152948

    申请日:2014-01-10

    Abstract: An electric storage device includes: a rolled electrode assembly 10 formed by winding a positive electrode, a negative electrode, and a separator so as to have curved portions and linear portions; current collectors 7; and an electrolyte solution 3. A positive electrode substrate has at one end 10A an unformed portion 11E formed without a positive electrode mixture layer, and a negative electrode substrate has at the other end 10B an unformed portion 13E formed without a negative electrode mixture layer. The current collectors 7 are connected respectively to at least part of the linear portions in the unformed portion of the positive electrode at the one end 10A and that of the negative electrode at the other end 10B. The one end 10A in the positive electrode has a length greater than the winding length, and/or the other end 10B in the negative electrode has such a length.

    Abstract translation: 蓄电装置包括:卷绕电极组件10,其通过卷绕正电极,负电极和隔膜以形成弯曲部分和直线部分; 集电器7; 和电解质溶液3.正极基板的一端10A具有未形成正极合剂层的未成形部11E,在另一端10B具有未形成负极混合层的未成形部13E。 集电器7分别连接到正极的未形成部分的至少一部分的一端10A处,另一端10B处的负极的直线部分的至少一部分连接。 正极中的一端10A具有大于卷绕长度的长度,和/或负极中的另一端10B具有这样的长度。

    ALKALINE STORAGE BATTERY AND POSITIVE ELECTRODE MATERIAL FOR ALKALINE STORAGE BATTERY
    497.
    发明申请
    ALKALINE STORAGE BATTERY AND POSITIVE ELECTRODE MATERIAL FOR ALKALINE STORAGE BATTERY 审中-公开
    碱性电池储存电池和正极电极材料

    公开(公告)号:US20140093776A1

    公开(公告)日:2014-04-03

    申请号:US14036806

    申请日:2013-09-25

    Abstract: A positive electrode material for an alkaline storage battery includes: nickel hydroxide; and at least one of a Sr compound, a Ca compound, and a compound of at least one element selected from the group consisting of Y and lanthanide elements of atomic number 62 (Sm) to 71 (Lu). An A element as at least one element selected from the group consisting of Al, Ga, Mn, and Mo is held in solid solution in a crystallite of the nickel hydroxide. The content of the A element, [A]/([Ni]+[A]), is 5% or more and 16% or less (where [A] represents the molarity of the A element in the crystallite and [Ni] represents the molarity of Ni). The nickel hydroxide includes α-phase nickel hydroxide and β-phase nickel hydroxide.

    Abstract translation: 碱性蓄电池用正极材料包括:氢氧化镍; 以及Sr化合物,Ca化合物和选自由原子序数62(Sm)〜71(Lu)的Y和镧系元素组成的组中的至少一种元素的化合物中的至少一种。 将选自Al,Ga,Mn和Mo中的至少一种元素的A元素保持在氢氧化镍微晶中的固溶体中。 A元素[A] /([Ni] + [A])的含量为5%以上且16%以下(其中[A]表示微晶中的A元素的摩尔浓度,[Ni] 表示Ni的摩尔浓度)。 氢氧化镍包括α相氢氧化镍和相 - 氢氧化镍。

    ELECTRIC STORAGE DEVICE, AND VEHICLE MOUNTED ELECTRIC STORAGE SYSTEM
    498.
    发明申请
    ELECTRIC STORAGE DEVICE, AND VEHICLE MOUNTED ELECTRIC STORAGE SYSTEM 有权
    电力存储装置和车辆安装电力储存系统

    公开(公告)号:US20140091760A1

    公开(公告)日:2014-04-03

    申请号:US14037729

    申请日:2013-09-26

    Abstract: Provided is an electric storage device provided with: a positive electrode including a positive electrode substrate and a positive electrode mixture layer, the positive electrode mixture layer being formed on the positive electrode substrate and containing a positive electrode active material; a negative electrode including a negative electrode substrate and a negative electrode mixture layer, the negative electrode mixture layer being formed on the negative electrode substrate and containing a negative electrode active material; and a separator disposed between the positive electrode and the negative electrode. In the electric storage device, the separator yields a triple value of standard deviation of local air resistance, as measured within a 5-mm diameter circle, of at least 20 seconds/10 cc but not more than 350 seconds/10 cc.

    Abstract translation: 提供一种蓄电装置,其具备:具有正极基板和正极合剂层的正极,正极合剂层形成在正极基板上,并含有正极活性物质; 包括负极基板和负极合剂层的负极,所述负极合剂层形成在所述负极基板上并含有负极活性物质; 以及设置在正极和负极之间的隔膜。 在蓄电装置中,分离器产生至少20秒/ 10cc但不超过350秒/ 10cc的在5mm直径圆内测量的局部空气阻力的标准偏差的三重值。

    Condition estimation device and method of generating open circuit voltage characteristic
    499.
    发明申请
    Condition estimation device and method of generating open circuit voltage characteristic 有权
    条件估算装置及产生开路电压特性的方法

    公开(公告)号:US20140084939A1

    公开(公告)日:2014-03-27

    申请号:US14024532

    申请日:2013-09-11

    Abstract: A condition estimation device includes a voltage measurement circuit, memory, and a controller. The voltage measurement circuit measures an open circuit voltage (OCV) of an electric storage device. The memory is configured to store first information on a correlation between a positive electrode potential and an electric storage capacity and second information on a correlation between a negative electrode potential and an electric storage capacity. The controller is configured to: measure an OCV under charge or discharge; calculate an electric storage capacity of the electric storage device having the OCV equal to a reference voltage; correct at least one of the first information and the second information such that a potential difference at the calculated capacity is equal to the reference voltage; and generate an OCV characteristic based on the first and the second information after the at least one of the first and the second information is corrected.

    Abstract translation: 条件估计装置包括电压测量电路,存储器和控制器。 电压测量电路测量蓄电装置的开路电压(OCV)。 存储器被配置为存储关于正极电位和蓄电容量之间的相关性的第一信息以及关于负极电位和蓄电容量之间的相关性的第二信息。 控制器配置为:在充电或放电下测量OCV; 计算具有等于参考电压的OCV的蓄电装置的蓄电容量; 校正所述第一信息和所述第二信息中的至少一个,使得所计算的容量的电位差等于所述参考电压; 并且在所述第一和第二信息中的至少一个被校正之后,基于所述第一和第二信息生成OCV特性。

    METHOD FOR PRODUCING ACTIVE MATERIAL FOR LITHIUM SECONDARY BATTERY AND METHOD OF USING LITIUM SECONDARY BATTERY
    500.
    发明申请
    METHOD FOR PRODUCING ACTIVE MATERIAL FOR LITHIUM SECONDARY BATTERY AND METHOD OF USING LITIUM SECONDARY BATTERY 审中-公开
    用于生产锂二次电池的活性材料的方法和使用锂二次电池的方法

    公开(公告)号:US20140059845A1

    公开(公告)日:2014-03-06

    申请号:US13629001

    申请日:2012-09-27

    Abstract: A lithium secondary battery is produced by employing a charging method where a positive electrode upon charging has a maximum achieved potential of 4.3 V (vs. Li/Li+) or lower. The lithium secondary battery contains an active material including a solid solution of a lithium transition metal composite oxide having an α-NaFeO2-type crystal structure. The solid solution has a diffraction peak observed near 20 to 30° in X-ray diffractometry using CuKα radiation for a monoclinic Li[Li1/3Mn2/3]O2-type before charge-discharge. The lithium secondary battery is charged to reach at least a region with substantially flat fluctuation of potential appearing in a positive electrode potential region exceeding 4.3 V (vs. Li/Li+) and 4.8 V (vs. Li/Li+) or lower. A dischargeable electric quantity in a potential region of 4.3 V (vs. Li/Li+) or lower is 177 mAh/g or higher.

    Abstract translation: 通过采用充电方法制造锂二次电池,其中充电时的正极的最大实现电位为4.3V(相对于Li / Li +)以下。 锂二次电池含有具有α-NaFeO 2型晶体结构的锂过渡金属复合氧化物的固溶体的活性物质。 固体溶液在使用CuKalpha辐射的X射线衍射法中观察到的衍射峰接近20〜30°,在单次Li / LiNi / LiNiO3 / LiNi2O3型充电 - 放电之前。 锂二次电池被充电至少达到在超过4.3V(相对于Li / Li +)和4.8V(相对于Li / Li +)以下的正电极电位区域中出现的具有基本平坦的电位变动的区域。 4.3V(相对于Li / Li +)以下的电位区域的可放电电量为177mAh / g以上。

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