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    • 3. 发明申请
    • SECONDARY BATTERY HAVING IMPROVED SAFETY BY DEFORMATION OF ELECTRODE ASSEMBLY-RECEIVING PORTION IN CASE
    • 通过电极组件接收部分变形形成改进安全的二次电池
    • US20100143787A1
    • 2010-06-10
    • US12513625
    • 2007-10-31
    • Hyun-Chul JungHyang Mok LeeByungjin ChoiJun Hwan JangJeongSam Son
    • Hyun-Chul JungHyang Mok LeeByungjin ChoiJun Hwan JangJeongSam Son
    • H01M6/12H01M4/02
    • H01M2/021H01M2/0275H01M2/0287H01M10/0525
    • Disclosed herein is a secondary battery constructed in a structure in which pluralities of electrode tabs, protruding from an electrode assembly, are connected to corresponding electrode leads, and the electrode assembly is mounted in a receiving part, wherein a battery case is multi-formed, such that the battery case presses the upper end of the electrode assembly by a predetermined width, thereby preventing the upward movement of the electrode assembly, mounted in the receiving part, at the upper end space region of the receiving part, where the electrode assembly is spaced apart from the upper end of the receiving part, for the connection between the electrode tabs and the corresponding electrode leads, during the repetitive charge and discharge of the battery. Consequently, it is possible to prevent the occurrence of a short circuit of the battery due to external impacts, such as the dropping of the battery, and to prevent the occurrence of an internal short circuit of the battery due to the expansion of the battery case caused by the repetitive charge and discharge of the battery, whereby the safety of the secondary battery is improved.
    • 这里公开了一种二次电池,其结构是将从电极组件突出的多个电极接头连接到相应的电极引线,并且将电极组件安装在接收部分中,其中电池壳体是多成形的, 使得电池壳将电极组件的上端按压预定的宽度,从而防止安装在接收部分中的电极组件向上移动在接收部分的上端空间区域,其中电极组件是 在电池的重复充电和放电期间,与接收部分的上端隔开,用于电极接头和相应的电极引线之间的连接。 因此,可以防止由于诸如电池掉落等外部冲击而引起的电池短路,并且防止由于电池壳体的膨胀引起的电池内部短路 由于电池的重复充电和放电引起的,从而提高了二次电池的安全性。
    • 4. 发明授权
    • Stack and folding-typed electrode assembly and method for preparation of the same
    • 堆叠折叠型电极组件及其制备方法
    • US08709642B2
    • 2014-04-29
    • US12667484
    • 2008-07-02
    • Kyong Won KangHyang Mok LeeByungjin ChoiEunyoung GohSung-Min HwangOh Young HyunChang bum AhnHyun-Chul JungWooyong Lee
    • Kyong Won KangHyang Mok LeeByungjin ChoiEunyoung GohSung-Min HwangOh Young HyunChang bum AhnHyun-Chul JungWooyong Lee
    • H01M10/04
    • H01M10/0436H01M6/46H01M10/0459H01M10/052H01M10/0583Y10T29/49108Y10T29/49112
    • Disclosed herein is a method of locating a plurality of full cells constructed in a cathode/separator/anode structure, as basic units, on a separator sheet having a continuous length, further locating a unit electrode or a bi-cell on the separator sheet, and winding the full cells and unit electrode or the bi-cell to continuously manufacture a stacking/folding type electrode assembly constructed in a structure in which anodes are located at the outermost electrodes forming the outside of the electrode assembly, respectively, wherein the method including a step of continuously supplying a cathode sheet, an anode sheet, a first separator sheet, and a second separator sheet, to manufacture the unit cells, successively arranging the unit cells on the second separator sheet from a first stage to an nth stage, and winding the unit cells, a step of arranging cathode tabs and anode tabs at the respective stages, while the cathode tabs and the anode tabs are opposite to each other, and arranging electrode tabs having the same polarity between the neighboring stages, while the electrode tabs are opposite to each other, such that the electrode tabs having the same polarity are located all together at predetermined positions of the wound electrode assembly, and a step of supplying electrodes the number of which is odd from two electrode sheets and electrodes the number of which is even from one electrode sheet.
    • 本文公开了一种在具有连续长度的隔离片上定位作为基本单元的阴极/隔板/阳极结构中构成的多个全电池的方法,将单元电极或双电池进一步放置在隔板上, 并卷绕全部单元和单位电极或双电池以连续地制造堆叠/折叠型电极组件,其分别以阳极位于形成电极组件外侧的最外电极的结构中构成,其中包括 连续地供给阴极片,阳极片,第一隔板片和第二隔片片的步骤,以制造单元电池,从第一阶段到第n阶段将单元电池依次布置在第二隔板片上,以及 卷绕单元电池,在阴极片和阳极片彼此相对的同时在相应的阶段排列阴极片和阳极片的步骤, g电极片在相邻台阶之间具有相同的极性,同时电极片彼此相对,使得具有相同极性的电极片全部位于卷绕电极组件的预定位置处,并且提供电极 其数量从两个电极片和电极的数量是奇数的,电极的数量甚至是一个电极片。
    • 9. 发明申请
    • STACK AND FOLDING-TYPED ELECTRODE ASSEMBLY AND METHOD FOR PREPARATION OF THE SAME
    • 堆叠和折叠式电极组件及其制备方法
    • US20100279161A1
    • 2010-11-04
    • US12667484
    • 2008-07-02
    • Kyong Won KangHyang Mok LeeByungjin ChoiEunyoung GohSung-Min HwangOhYoung HyunChang bum AhnHyun-Chul JungWooyong Lee
    • Kyong Won KangHyang Mok LeeByungjin ChoiEunyoung GohSung-Min HwangOhYoung HyunChang bum AhnHyun-Chul JungWooyong Lee
    • H01M6/10H01M4/82
    • H01M10/0436H01M6/46H01M10/0459H01M10/052H01M10/0583Y10T29/49108Y10T29/49112
    • Disclosed herein is a method of locating a plurality of pull cells constructed in a cathode/separator/anode structure, as basic units, on a separator sheet having a continuous length, further locating a unit electrode or a bi-cell on the separator sheet, and winding the pull cells and unit electrode or the bi-cell to continuously manufacture a stacking/folding type electrode assembly constructed in a structure in which anodes are located at the outermost electrodes forming the outside of the electrode assembly, respectively, wherein the method including a step of continuously supplying a cathode sheet, an anode sheet, a first separator sheet, and a second separator sheet, to manufacture the unit cells, successively arranging the unit cells on the second separator sheet from a first stage to an n stage, and winding the unit cells, a step of arranging cathode tabs and anode tabs at the respective stages, while the cathode tabs and the anode tabs are opposite to each other, and arranging electrode tabs having the same polarity between the neighboring stages, while the electrode tabs are opposite to each other, such that the electrode tabs having the same polarity are located all together at predetermined positions of the wound electrode assembly, and a step of supplying electrodes the number of which is odd from two electrode sheets and electrodes the number of which is even from one electrode sheet.
    • 本文公开了一种将在阴极/隔板/阳极结构中构造的多个拉电池作为基本单元定位在具有连续长度的隔板上,将单元电极或双电池进一步放置在隔板上的方法, 以及卷绕拉电池和单元电极或双电池以连续地制造堆叠/折叠型电极组件,其分别以阳极位于形成电极组件外部的最外电极的结构中构成,其中包括 连续地供给阴极片,阳极片,第一隔片片和第二隔片片的步骤,制造单位电池,将第一隔离片的单位电池从第一阶段到第n阶段依次排列,以及 卷绕单元电池,在阴极接片和阳极接片彼此相对的同时在相应的阶段布置阴极接头和阳极接头的步骤,并且布置 电极片在相邻台阶之间具有相同的极性,同时电极片彼此相对,使得具有相同极性的电极片全部位于卷绕的电极组件的预定位置处,并且提供电极的步骤 其数量从两个电极片和电极的数量是奇数的,电极的数量甚至是一个电极片。
    • 10. 发明授权
    • Secondary battery having improved safety by deformation of electrode assembly-receiving portion in case
    • 二次电池在情况下通过电极组件接收部分的变形改善了安全性
    • US09209428B2
    • 2015-12-08
    • US12513625
    • 2007-10-31
    • Hyun-Chul JungHyang Mok LeeByungjin ChoiJun Hwan JangJeongSam Son
    • Hyun-Chul JungHyang Mok LeeByungjin ChoiJun Hwan JangJeongSam Son
    • H01M2/02H01M10/0525
    • H01M2/021H01M2/0275H01M2/0287H01M10/0525
    • Disclosed herein is a secondary battery constructed in a structure in which pluralities of electrode tabs, protruding from an electrode assembly, are connected to corresponding electrode leads, and the electrode assembly is mounted in a receiving part, wherein a battery case is multi-formed, such that the battery case presses the upper end of the electrode assembly by a predetermined width, thereby preventing the upward movement of the electrode assembly, mounted in the receiving part, at the upper end space region of the receiving part, where the electrode assembly is spaced apart from the upper end of the receiving part, for the connection between the electrode tabs and the corresponding electrode leads, during the repetitive charge and discharge of the battery. Consequently, it is possible to prevent the occurrence of a short circuit of the battery due to external impacts, such as the dropping of the battery, and to prevent the occurrence of an internal short circuit of the battery due to the expansion of the battery case caused by the repetitive charge and discharge of the battery, whereby the safety of the secondary battery is improved.
    • 这里公开了一种二次电池,其结构是将从电极组件突出的多个电极接头连接到相应的电极引线,并且将电极组件安装在接收部分中,其中电池壳体是多成形的, 使得电池壳将电极组件的上端按压预定的宽度,从而防止安装在接收部分中的电极组件向上移动在接收部分的上端空间区域,其中电极组件是 在电池的重复充电和放电期间,与接收部分的上端隔开,用于电极接头和相应的电极引线之间的连接。 因此,可以防止由于诸如电池掉落等外部冲击而引起的电池短路,并且防止由于电池壳体的膨胀引起的电池内部短路 由于电池的重复充电和放电引起的,从而提高了二次电池的安全性。