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    • 31. 发明申请
    • LITHIUM SECONDARY CELL ARRAY
    • 锂二次电池阵列
    • US20140220399A1
    • 2014-08-07
    • US14115715
    • 2012-04-24
    • Klaus EbertStefan Meyer
    • Klaus EbertStefan Meyer
    • H01M10/0587H01M10/052
    • H01M10/052H01M2/263H01M2/361H01M2/362H01M10/0587H01M10/613H01M10/643H01M10/654H01M10/6567
    • The invention relates to a lithium secondary cell array in a cylindrical design, comprising a winding mandrel and a winding packet, which contains foil-like coated strips and contacting strips that form the electric cell structure consisting of anode, cathode and separator. The cell array further comprises outer electrical connecting means that comprise pole caps. According to the invention, the winding mandrel consists of an insulating material and has a through-channel extending in the longitudinal axis direction. The winding mandrel is connected to an inner pole cap at each end, the pole caps likewise having a respective through-channel. In addition, one outer pole cap having a through-passage is respectively provided, which surrounds the winding packet circumferentially at leat in the edge region, wherein several radially arranged force-fit connecting means, each acting between the outer and the inner pole cap, are used to fix the winding packet and achieve the electrical contacting between the contacting strips and the outer pole cap.
    • 本发明涉及一种圆柱形设计的锂二次电池阵列,其包括卷绕心轴和缠绕包,其包含箔状涂覆条和接触条,所述条形成由阳极,阴极和分离器组成的电池结构。 电池阵列还包括包括极帽的外部电连接装置。 根据本发明,卷绕心轴由绝缘材料构成,并且具有沿纵轴方向延伸的通道。 绕组心轴在每一端连接到内极盖上,极帽同样具有相应的通道。 另外,具有贯通通道的一个外部极帽分别设置成在边缘区域周围围绕绕组,其中,各个作用在外部极帽和内部极帽之间的径向布置的力配合连接装置, 用于固定绕组,并实现接触条与外极盖之间的电接触。
    • 33. 发明授权
    • Rechargeable battery including a channel member
    • 可充电电池,包括通道构件
    • US08709630B2
    • 2014-04-29
    • US12805744
    • 2010-08-18
    • Yong-Sam KimSung-Bae Kim
    • Yong-Sam KimSung-Bae Kim
    • H01M2/12
    • H01M2/043H01M2/0473H01M2/1241H01M2/1252H01M2/1264H01M2/305H01M2/362
    • A rechargeable battery including an electrode assembly capable of being charged and discharged; a case accommodating the electrode assembly; a cap assembly, the cap assembly including a cap plate coupled to an opening of the case, and a vent member in the cap plate, the vent member being configured to open at a predetermined internal pressure, a terminal exposed to an outer side of the cap plate; a lower insulating member, the lower insulating member insulating the terminal and the cap plate at a lower side of the cap plate; and a channel member between the electrode assembly and the cap plate and forming a space, the channel member being fixed to the lower insulating member.
    • 一种可充电电池,包括能够充电和放电的电极组件; 容纳电极组件的壳体; 盖组件,帽组件包括联接到壳体的开口的盖板和盖板中的通气构件,排气构件构造成在预定的内部压力下打开,暴露于外壳的外侧的端子 盖板 下绝缘构件,所述下绝缘构件将所述端子和所述盖板在所述盖板的下侧绝缘; 以及在所述电极组件和所述盖板之间形成空隙的通道构件,所述通道构件固定到所述下绝缘构件。
    • 36. 发明申请
    • ELECTRICAL STORAGE DEVICE
    • 电气存储设备
    • US20130342168A1
    • 2013-12-26
    • US14003368
    • 2011-03-16
    • Motoyoshi OkumuraYoshifumi OtaMasahiko KuboYukiko Ibe
    • Motoyoshi OkumuraYoshifumi OtaMasahiko KuboYukiko Ibe
    • H02J7/00
    • H02J7/0029H01M2/1077H01M2/1205H01M2/1217H01M2/362H01M6/42H01M2220/20H02J7/0068
    • An electrical storage device includes a plurality of power-generating elements, a case, and a valve. The power-generating elements perform charge and discharge and are connected electrically in series. A plurality of housing sections each accommodate one of the plurality of power-generating elements and are disposed along a predetermined direction. A communication path switches from a closed state to an opened state depending on the internal pressure of the housing section. When the communication path is in the opened state, gas can be moved between two of the housing sections adjacent to each other in the predetermined direction. The valve is provided for a particular housing section and releases gas produced within the case to the outside of the case. The empty space other than the power-generating element is present in each of the housing sections, and the empty space in the particular housing section is the largest.
    • 蓄电装置包括多个发电元件,壳体和阀。 发电元件进行充放电并串联电连接。 多个壳体部分各自容纳多个发电元件中的一个并且沿预定方向设置。 通信路径根据容纳部的内部压力从闭合状态切换到打开状态。 当通信路径处于打开状态时,气体可以在预定方向上彼此相邻的两个壳体部分之间移动。 阀被设置用于特定的壳体部分,并将壳体内产生的气体释放到壳体的外部。 除了发电元件之外的空的空间存在于每个壳体部分中,并且特定壳体部分中的空的空间是最大的。
    • 37. 发明申请
    • METHOD FOR PRODUCING AN ELECTRODE/SEPARATOR STACK INCLUDING FILLING WITH AN ELECTROLYTE FOR USE IN AN ELECTROCHEMICAL ENERGY STORAGE CELL
    • 用于生产电极/分离器堆叠的方法,其中包括用电解质在电化学能量存储单元中使用的电解液
    • US20130323584A1
    • 2013-12-05
    • US13990285
    • 2011-11-23
    • Tim SchaeferDieter Olpp
    • Tim SchaeferDieter Olpp
    • H01M2/36
    • H01M2/36H01M2/024H01M2/18H01M2/362H01M10/0413H01M10/0585Y10T29/49108
    • A method for producing an electrochemical energy storage cell, which has a stack 1 of sheets 2, in particular electrode and/or separator sheets 2, and a liquid electrolyte 4, has the following steps: producing interspaces between a large number of adjacent sheets 2 in the stack 1 (step S1), bringing the stack 1 into contact with the electrolyte 4 (step S2), removing the interspaces produced in step S1 between the large number of adjacent sheets 2 in the stack 1 (step S3). As a result, the electrolyte 4 can be distributed quickly and uniformly over the surfaces of the large number of sheets 2. In a particularly preferred embodiment of the method, step S1 has the following substeps: fixing a large number of sheets 2 in the stack 1 relative to one another at at least one point (step S1.1, optional), bending the stack 1, wherein the sheets 2 in the stack 1 are at least partially movable with respect to one another (step S1.2), fixing a large number of sheets 2 in the bent stack 1 relative to one another, with the result that the large number of sheets 2 are fixed in each case relative to one another at at least two points (step S1.3), returning the bent stack 1 to a shape which approximately corresponds to the initial shape of the stack 1, whilst maintaining the fixings from step S1.1 and/or S1.3 (step S1.4).
    • 具有片材2的叠层1,特别是电极和/或隔板2以及液体电解质4的电化学蓄电池的制造方法具有以下步骤:在多个相邻片材2之间产生间隙 在堆叠1(步骤S1)中,使堆叠体1与电解质4接触(步骤S2),去除叠层1中的大量相邻片材2之间的步骤S1中产生的间隙(步骤S3)。 结果,电解质4可以快速且均匀地分布在多个片材2的表面上。在该方法的特别优选的实施方案中,步骤S1具有以下子步骤:将大量片材2固定在叠层 (步骤S1.1,可选),弯曲堆叠1,其中堆叠1中的片材2可相对于彼此至少部分地移动(步骤S1.2),固定 弯曲的堆叠1中的大量片材2相对于彼此,结果是在至少两个点处相对于彼此固定大量片材2(步骤S1.3),从而使弯曲 堆叠1到大致对应于堆叠1的初始形状的形状,同时保持来自步骤S1.1和/或S1.3的固定(步骤S1.4)。
    • 40. 发明申请
    • VALVE PLUG
    • 阀门插头
    • US20120177962A1
    • 2012-07-12
    • US13496467
    • 2010-07-28
    • Peter StreuerIngo KochThorsten WerleEberhard Meissner
    • Peter StreuerIngo KochThorsten WerleEberhard Meissner
    • H01M10/52H01M2/12
    • H01M2/362H01M2/1229H01M10/06Y02E60/126Y02P70/54
    • The invention relates to a sealing plug arrangement (1, 2) for a battery, wherein the sealing plug arrangement comprises at least one plug part (1) and a plug retainer (2), and the plug retainer (2) has a hollow area (4) for accommodating at least one retaining section of the plug part (1), wherein the plug part (1) is designed to seal off at least one interior (73, 74) of the battery from the environment when the plug part is installed in the hollow area (4) of the plug retainer (2). Proceeding from this, an improved sealing plug arrangement is specified that can be realized at low cost and that is reliable. For this purpose, the plug retainer (2) comprises at least one flow channel (6) on the inside of the plug retainer in the hollow area (4), which flow channel extends at least along the area in which the plug part (1) is retained in the plug retainer (2) when the plug part is installed in the hollow area (4).
    • 本发明涉及一种用于电池的密封塞装置(1,2),其中密封塞装置包括至少一个插塞部分(1)和插头保持器(2),并且插头保持器(2)具有中空区域 (4),用于容纳所述插头部分(1)的至少一个保持部分,其中所述插头部分(1)被设计成当所述插头部分(1)为 安装在插头保持器(2)的中空区域(4)中。 因此,规定了能够以低成本实现的可靠的改进的密封塞装置。 为此目的,塞子保持器(2)包括位于中空区域(4)中的插塞保持器内部的至少一个流动通道(6),该流动通道至少沿着插塞部分(1)的区域延伸 )当插头部件安装在中空区域(4)中时被保持在插头保持器(2)中。