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    • 1. 发明授权
    • Battery module
    • 电池模块
    • US07794875B2
    • 2010-09-14
    • US11567334
    • 2006-12-06
    • Junill YoonSeungjae YouHeekook YangJongmoon YoonJisang YuJohn E. Namgoong
    • Junill YoonSeungjae YouHeekook YangJongmoon YoonJisang YuJohn E. Namgoong
    • H01M2/02H01M2/04H01M2/08H01M6/42H01M6/46
    • H01M10/0436H01M2/0207H01M2/0404
    • Disclosed herein is a battery module including two battery cells, each of which has electrode terminals formed at upper and lower ends thereof. The battery module further includes a frame member, to which upper-end sealing parts, lower-end sealing parts, and one-side sealing parts of the battery cells are mounted, a metal sheathing member for covering the outer surfaces of the battery cells while the battery cells are mounted to the frame member, and caps (an upper-end cap and a lower-end cap) mounted to the upper and lower ends of the battery cells, respectively, which are covered by the metal sheathing member. According to the present invention, it is possible to minimize the weight and the size of the battery module while increasing the strength of the battery cells. Also, it is possible to easily mount the detecting means that detects the operation of the battery cells, and it is possible to effectively prevent the occurrence of short circuits during the assembly or the operation of the battery module. Furthermore, it is possible to easily perform the electric connection between the battery modules when manufacturing the medium- or large-sized battery module using the respective battery modules as unit bodies.
    • 这里公开了一种电池模块,其包括两个电池单元,每个电池单元在其上端和下端形成有电极端子。 电池模块还包括框架构件,安装有电池单元的上端密封部分,下端密封部分和单侧密封部分的框架构件,用于覆盖电池单元的外表面的金属护套构件 电池单元被安装到框架构件上,并且分别安装到由金属外壳构件覆盖的电池单元的上端和下端的盖(上端盖和下端盖)。 根据本发明,可以在增加电池单元的强度的同时最小化电池模块的重量和尺寸。 此外,可以容易地安装检测电池单元的操作的检测装置,并且可以有效地防止在组装或电池模块的操作期间发生短路。 此外,当使用相应的电池模块作为单位体制造中型或大型电池模块时,可以容易地执行电池模块之间的电连接。
    • 2. 发明授权
    • Secondary battery of novel structure and battery pack having the same
    • 新型结构的二次电池和具有相同的电池组
    • US08252452B2
    • 2012-08-28
    • US11446015
    • 2006-06-02
    • Junill YoonHeekook YangJisang YuJohn E. Namgoong
    • Junill YoonHeekook YangJisang YuJohn E. Namgoong
    • H01M2/00H01M6/42H01M6/46H01M6/00H01M10/00
    • H01M2/1061H01M2/021H01M2/0212H01M10/0413H01M10/0431
    • Disclosed herein are a secondary battery including an electrode assembly for charging and discharging mounted in a sheathing member including a metal layer and a resin layer, wherein the secondary battery further includes a secondary battery having a molding part of a predetermined thickness at least partially formed at the outside of a sheathing member, preferably, at a sealing region of the sheathing member, and a medium- or large-sized battery pack including the same. The molding part is formed at the outside of the sheathing member of the secondary battery. Consequently, the secondary battery according to the present invention has high mechanical strength, and therefore, it is possible to construct a battery pack without using addition members, such as cartridges. When the molding part is formed at the sealing region, which is weak, the molding part increases the mechanical strength and the sealing force of the secondary battery. Consequently, a battery pack including the secondary batteries as unit cells can be manufactured generally in a compact structure and with relatively small weight, and the assembly process of the battery pack is greatly simplified. The battery pack according to the present invention has high structural stability. Consequently, the battery pack can be preferably used as a power source for electric vehicles, hybrid electric vehicles, electric motorcycles, and electric bicycles.
    • 本文公开了一种二次电池,其包括安装在包括金属层和树脂层的护套构件中的用于充放电的电极组件,其中所述二次电池还包括具有预定厚度的模制部分的二次电池,所述模制部分至少部分地形成在 护套构件的外侧,优选地在护套构件的密封区域,以及包括该护套构件的中型或大型电池组。 成型部形成在二次电池的护套构件的外侧。 因此,根据本发明的二次电池具有高的机械强度,因此,可以不使用诸如墨盒的添加构件来构造电池组。 当模制部件形成在弱的密封区域时,模制部件增加了二次电池的机械强度和密封力。 因此,作为单元电池的二次电池的电池组件一般可以制造成一体,结构紧凑,重量轻,电池组件的组装工序大大简化。 根据本发明的电池组具有高结构稳定性。 因此,电池组可以优选用作电动汽车,混合电动车辆,电动摩托车和电动自行车的动力源。
    • 4. 发明申请
    • Secondary battery of novel structure and battery pack having the same
    • 新型结构的二次电池和具有相同的电池组
    • US20060286450A1
    • 2006-12-21
    • US11446015
    • 2006-06-02
    • Junill YoonHeekook YangJisang YuJohn Namgoong
    • Junill YoonHeekook YangJisang YuJohn Namgoong
    • H01M2/08H01M2/06
    • H01M2/1061H01M2/021H01M2/0212H01M10/0413H01M10/0431
    • Disclosed herein are a secondary battery including an electrode assembly for charging and discharging mounted in a sheathing member including a metal layer and a resin layer, wherein the secondary battery further includes a secondary battery having a molding part of a predetermined thickness at least partially formed at the outside of a sheathing member, preferably, at a sealing region of the sheathing member, and a medium- or large-sized battery pack including the same. The molding part is formed at the outside of the sheathing member of the secondary battery. Consequently, the secondary battery according to the present invention has high mechanical strength, and therefore, it is possible to construct a battery pack without using addition members, such as cartridges. When the molding part is formed at the sealing region, which is weak, the molding part increases the mechanical strength and the sealing force of the secondary battery. Consequently, a battery pack including the secondary batteries as unit cells can be manufactured generally in a compact structure and with relatively small weight, and the assembly process of the battery pack is greatly simplified. The battery pack according to the present invention has high structural stability. Consequently, the battery pack can be preferably used as a power source for electric vehicles, hybrid electric vehicles, electric motorcycles, and electric bicycles.
    • 本文公开了一种二次电池,其包括安装在包括金属层和树脂层的护套构件中的用于充放电的电极组件,其中所述二次电池还包括具有预定厚度的模制部分的二次电池,所述模制部分至少部分地形成在 护套构件的外侧,优选地在护套构件的密封区域,以及包括该护套构件的中型或大型电池组。 成型部形成在二次电池的护套构件的外侧。 因此,根据本发明的二次电池具有高的机械强度,因此,可以不使用诸如墨盒的添加构件来构造电池组。 当模制部件形成在弱的密封区域时,模制部件增加了二次电池的机械强度和密封力。 因此,作为单元电池的二次电池的电池组件一般可以制造成一体,结构紧凑,重量轻,电池组件的组装工序大大简化。 根据本发明的电池组具有高结构稳定性。 因此,电池组可以优选用作电动汽车,混合电动车辆,电动摩托车和电动自行车的动力源。
    • 6. 发明授权
    • Three-dimensional electrode terminal for pouch-typed battery
    • 袋式电池三维电极端子
    • US07762855B2
    • 2010-07-27
    • US12401954
    • 2009-03-11
    • Junill YoonJaesung AhnHeekook YangJisang Yu
    • Junill YoonJaesung AhnHeekook YangJisang Yu
    • H01R4/28
    • H01M10/0436H01M2/30H01M10/0525H01M10/058
    • Disclosed herein is a three-dimensional electrode terminal of a battery having an electrode assembly mounted in a pouch-shaped case, wherein a part of the electrode terminal, which is exposed from the battery case, has a predetermined thickness, and has a perpendicular surface (a perpendicular end surface) formed on the end thereof. According to the present invention, it is possible to easily accomplish the connection between the electrode terminal and the electrically connecting member without modifying the shape of the electrode terminal, and it is possible to easily accomplish the connection for detecting the voltage, the current, and the temperature of the battery. Furthermore, the mechanical strength of the three-dimensional electrode terminal according to the present invention is higher than that of the conventional plate-shaped electrode terminal. Consequently, the stability of the three-dimensional electrode terminal is high in the state that the electrode terminal is electrically connected with the electrically connecting member, and the electrical connection is easily accomplished even in a small space, especially when batteries are stacked one on another with high density so as to manufacture a medium- or large-sized battery module.
    • 这里公开了一种电池的三维电极端子,其具有安装在袋状壳体中的电极组件,其中从电池壳体暴露的电极端子的一部分具有预定厚度,并且具有垂直表面 (垂直端面)。 根据本发明,可以在不改变电极端子的形状的情况下容易地实现电极端子与电气连接部件之间的连接,并且可以容易地实现用于检测电压,电流和 电池的温度。 而且,根据本发明的三维电极端子的机械强度高于传统的板状电极端子的机械强度。 因此,在电极端子与电连接部件电连接的状态下,三维电极端子的稳定性高,即使在较小的空间内也容易实现电连接,特别是当电池堆叠在一起时 具有高密度,以制造中型或大型电池模块。
    • 7. 发明授权
    • Three-dimensional electrode terminal for pouch-typed battery
    • 袋式电池三维电极端子
    • US07524216B2
    • 2009-04-28
    • US11430438
    • 2006-05-09
    • Junill YoonJaesung AhnHeekook YangJisang Yu
    • Junill YoonJaesung AhnHeekook YangJisang Yu
    • H01R4/28
    • H01M10/0436H01M2/30H01M10/0525H01M10/058
    • Disclosed herein is a three-dimensional electrode terminal of a battery having an electrode assembly mounted in a pouch-shaped case, wherein a part of the electrode terminal, which is exposed from the battery case, has a predetermined thickness, and has a perpendicular surface (a perpendicular end surface) formed on the end thereof. According to the present invention, it is possible to easily accomplish the connection between the electrode terminal and the electrically connecting member without modifying the shape of the electrode terminal, and it is possible to easily accomplish the connection for detecting the voltage, the current, and the temperature of the battery. Furthermore, the mechanical strength of the three-dimensional electrode terminal according to the present invention is higher than that of the conventional plate-shaped electrode terminal. Consequently, the stability of the three-dimensional electrode terminal is high in the state that the electrode terminal is electrically connected with the electrically connecting member, and the electrical connection is easily accomplished even in a small space, especially when batteries are stacked one on another with high density so as to manufacture a medium- or large-sized battery module.
    • 这里公开了一种电池的三维电极端子,其具有安装在袋状壳体中的电极组件,其中从电池壳体暴露的电极端子的一部分具有预定厚度,并且具有垂直表面 (垂直端面)。 根据本发明,可以在不改变电极端子的形状的情况下容易地实现电极端子与电气连接部件之间的连接,并且可以容易地实现用于检测电压,电流和 电池的温度。 而且,根据本发明的三维电极端子的机械强度高于传统的板状电极端子的机械强度。 因此,在电极端子与电连接部件电连接的状态下,三维电极端子的稳定性高,即使在较小的空间内也容易实现电连接,特别是当电池堆叠在一起时 具有高密度,以制造中型或大型电池模块。