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    • 1. 发明申请
    • METHOD FOR SELECTING ELECTROCHEMICAL CELLS DURING THE PRODUCTION OF A BATTERY AND BATTERY COMPRISING ELECTROCHEMICAL CELLS
    • 在电池生产期间选择电化学电池的方法和包含电化学电池的电池
    • US20140212730A1
    • 2014-07-31
    • US14117709
    • 2012-05-02
    • Tim Schaefer
    • Tim Schaefer
    • H01M10/48H01M10/04
    • H01M10/0413H01M10/04H01M10/4207H01M10/482
    • The invention relates to a method for selecting electrochemical cells during the production of a battery that has a number of electrochemical cells, said method having the following steps: (S1) detecting the parameter data (DPar.) of an individual cell that is to be analysed; (S2) transmitting the detected parameter data (Dpar.) to a control unit; (S3) assigning the detected parameter data (DPar.) to the electrochemical cell; and (S4) determining for the electrochemical cell that has been allocated the parameter data if a predefined relationship exists between the parameter data (Dpar.) and predefined parameter values (WPar, Wpar.1, WPar.2, WPar.3. WPar 4, WPar.5) by means of the control unit. The method can further have the following steps: (S5a) feeding the electrochemical cell that has been assigned the parameter data (DPar.) to a first production line for producing a first type of battery, if in step (S4) the existence of a predefined relationship has been determined; or (S5b) feeding the electrochemical cell that has been assigned the parameter data (DPar.) to a second production line for producing a second type of battery, if in step (S4) the non-existence of a predefined relationship has been determined.
    • 本发明涉及一种在具有多个电化学电池的电池生产过程中选择电化学电池的方法,所述方法具有以下步骤:(S1)检测要存在的单个电池的参数数据(DPar。) 分析; (S2)将检测到的参数数据(Dpar。)发送到控制单元; (S3)将检测到的参数数据(DPar。)分配给电化学电池; 如果在参数数据(Dpar。)和预定义的参数值(WPar,Wpar.1,WPar.2,WPar.3,WPar4)之间存在预定义的关系,则确定已经分配了参数数据的电化学电池 ,WPar.5)通过控制单元。 该方法还可以具有以下步骤:(S5a)将已经分配了参数数据(DPar。)的电化学电池进给到用于产生第一类型电池的第一生产线,如果在步骤(S4)中存在 预定义关系已经确定; 或者(S5b)将已经被分配了参数数据(DPar。)的电化学电池供给到用于产生第二类型电池的第二生产线,如果在步骤(S4)中已经确定了不存在预定关系。
    • 2. 发明申请
    • HOUSING FOR ACCOMMODATING A FLAT ELECTROCHEMICAL CELL
    • 用于容纳平板电化学细胞的壳体
    • US20140030576A1
    • 2014-01-30
    • US13985441
    • 2012-02-02
    • Tim SchaeferChristian ZahnFelix Dunkel
    • Tim SchaeferChristian ZahnFelix Dunkel
    • H01M2/02
    • H01M2/0207H01M2/024H01M2/1061H01M2/1077H01M10/613H01M10/647H01M10/6554H01M10/6557H01M10/6567
    • The invention relates to a housing (1) for receiving at least one flat electrochemical cell (2), comprising two housing side walls (4) which are disposed substantially parallel to one another, wherein a flat cooling bracket (9) is disposed on at least one flat electrochemical cell (2). The flat cooling bracket (9) is preferably disposed substantially parallel to the flat electrochemical cell (2). The flat electrochemical cell (2) may also have a sealing seam (3) extending at least in some regions on the edge of said cell and, for each flat electrochemical cell (2) to be received, the housing side walls (4) disposed parallel to one another comprise, in the inner faces thereof that are facing one another, a pair of opposite notches (5) configured to receive the at least one sealing seam (3) of the respective flat electrochemical cell (2).
    • 本发明涉及一种用于容纳至少一个平坦的电化学电池(2)的壳体(1),包括两个彼此大致平行地设置的壳体侧壁(4),其中平面冷却支架(9)设置在 至少一个平的电化学电池(2)。 平坦的冷却支架(9)优选地设置成基本平行于平坦的电化学电池(2)。 平坦的电化学电池(2)还可以具有至少在所述电池的边缘上的一些区域中延伸的密封接缝(3),并且对于待接收的每个平坦的电化学电池(2),设置的壳体侧壁(4) 彼此平行的在其内表面中彼此面对的一对相对的凹口(5)构造成容纳相应的平坦电化学电池(2)的至少一个密封接缝(3)。
    • 7. 发明申请
    • SECONDARY BATTERY WITH A RAPID CHARGING CAPABILITY
    • 具有快速充电能力的二次电池
    • US20120169297A1
    • 2012-07-05
    • US13382399
    • 2010-06-22
    • Tim SchaeferAndreas Gutsch
    • Tim SchaeferAndreas Gutsch
    • H02J7/00
    • H01M2/16H01M2/1686H01M10/0525H01M10/4235H01M10/44H01M10/443
    • The invention relates to a secondary battery, in particular a lithium-ion secondary battery, which has a rapid charging capability. The secondary battery has at least one electrochemical cell and an electrical charge control system, wherein the electrochemical cell has at least two electrodes and at least one separator, wherein the charge control system is designed to monitor the process of charging the secondary battery such that, at least at times, it allows a relative charging current with a charging current value which, in particular, is at least 1 C, and wherein the separator has a coating which is composed of an ion-conducting material which has at least one inorganic component. The invention furthermore relates, in particular, to a lithium-ion secondary battery, to a charge control system for a secondary battery, to an electrochemical cell for a secondary battery, to an arrangement comprising at least one electrode and a separator for an electrochemical cell such as this, and to a method for carrying out a rapid charging process of a secondary battery.
    • 本发明涉及具有快速充电能力的二次电池,特别是锂离子二次电池。 所述二次电池具有至少一个电化学电池和电荷控制系统,其中所述电化学电池具有至少两个电极和至少一个分离器,其中所述充电控制系统被设计为监测对所述二次电池充电的过程, 至少有时,其允许具有特别是至少1C的充电电流值的相对充电电流,并且其中隔板具有由离子导电材料构成的涂层,所述离子导电材料具有至少一种无机成分 。 本发明还特别涉及一种锂离子二次电池,二次电池用充电控制系统,二次电池用电化学电池,至少包括一个用于电化学电池的电极和隔板的装置 以及用于进行二次电池的快速充电处理的方法。