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    • 4. 发明申请
    • ELECTRODE TERMINAL CONNECTING MEMBER FOR BATTERY MODULE
    • 电极端子电极端子连接器
    • US20110091763A1
    • 2011-04-21
    • US12920644
    • 2009-03-07
    • Youngsun ParkHan Eun KimYonghan LeeJohn E. NamgoongSain ParkMasayuki Wakebe
    • Youngsun ParkHan Eun KimYonghan LeeJohn E. NamgoongSain ParkMasayuki Wakebe
    • H01M2/24
    • H01M10/0413H01M2/1077H01M2/206H01M2/347H01M6/46H01M10/0472
    • Disclosed herein is a conductive electrode terminal connecting member configured to electrically connect plate-shaped secondary battery cells (‘battery cells’) constituting a battery module to each other. The electrode terminal connecting member includes a left-wing connection part to which electrode terminals of left-side battery cells are connected so as to achieve electrical connection in series or in series and in parallel between the battery cells, and a right-wing connection part to which electrode terminals of right-side battery cells are connected so as to achieve electrical connection in series or in series and in parallel between the battery cells. The left-wing connection part is provided with slits through which the electrode terminals of the respective battery cells are inserted, and the right-wing connection part is provided with slits through which the electrode terminals of the respective battery cells are inserted. During electrical connection, the electrode terminals of the respective battery cells are inserted through the slits of the left- and right-wing connection parts, are bent such that the electrode terminals of the respective battery cells come into tight contact with the top of the electrode terminal connecting member, and then the electrode terminals of the respective battery cells are coupled to the electrode terminal connecting member by welding.
    • 这里公开了一种导电电极端子连接构件,其被构造成将构成电池模块的板状二次电池单元(“电池单元”)彼此电连接。 电极端子连接部件包括:左侧电池单元的电极端子与左侧电池单元连接的左侧连接部,以实现电池单元之间串联或串联并联的电连接;右侧连接部 右侧电池单元的电极端子连接到电池单元串联或串联并联的电连接。 左翼连接部分设置有各个电池单元的电极端子插入的狭缝,右翼连接部分设置有插入各个电池单元的电极端子的狭缝。 在电连接期间,各个电池单元的电极端子通过左右连接部分的狭缝插入,弯曲成使得各个电池单元的电极端子与电极的顶部紧密接触 端子连接构件,然后各个电池单元的电极端子通过焊接耦合到电极端子连接构件。
    • 6. 发明授权
    • Sealed type heat exchanging system of battery pack
    • 电池组密封式热交换系统
    • US07642003B2
    • 2010-01-05
    • US11555734
    • 2006-11-02
    • Jaesung AhnJongMin ParkDo Yang JungJohn E. Namgoong
    • Jaesung AhnJongMin ParkDo Yang JungJohn E. Namgoong
    • H01M10/50
    • H01M2/1016H01M2/1072H01M10/425H01M10/613H01M10/6551H01M10/6563H01M10/6566H01M10/6572H01M10/658
    • Disclosed herein is a heat exchange system that controls the temperature of a medium- or large-sized battery pack including a plurality of unit cells. The heat exchange system includes a sealed type housing surrounding the outer surface of the battery pack such that a predetermined flow channel, through which a heat exchange medium flows, is defined between the housing and the battery pack, a driving fan mounted in the housing for driving the heat exchange medium to flow, and a heat exchange unit mounted at one side of the housing for controlling the temperature of the heat exchange medium. In the heat exchange system according to the present invention, the heat exchange medium, for example, air is not introduced from the outside of the battery system, but is circulated in the battery system by the heat exchange unit. Consequently, the present invention has the effect of accomplishing the reduction in size of the battery system, reducing influences caused by external conditions, decreasing noise, and effectively controlling the optimum operating temperature of the battery pack.
    • 本文公开了一种控制包括多个单元电池的中型或大型电池组的温度的热交换系统。 热交换系统包括围绕电池组的外表面的密封型壳体,使得在壳体和电池组之间限定热交换介质流动的预定流动通道,安装在壳体中的驱动风扇 驱动热交换介质流动,以及安装在壳体一侧的热交换单元,用于控制热交换介质的温度。 在根据本发明的热交换系统中,热交换介质例如空气不从电池系统的外部引入,而是通过热交换单元在电池系统中循环。 因此,本发明具有实现电池系统的尺寸减小的效果,减少由外部条件引起的影响,降低噪音,并有效地控制电池组的最佳工作温度。
    • 7. 发明申请
    • BATTERY MODULE
    • 电池模块
    • US20070184341A1
    • 2007-08-09
    • US11567334
    • 2006-12-06
    • Junill YOONSeungjae YOUHeekook YANGJongmoon YOONJisang YUJohn E. NAMGOONG
    • Junill YOONSeungjae YOUHeekook YANGJongmoon YOONJisang YUJohn E. NAMGOONG
    • H01M6/46H01M2/08
    • 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件,下端密封部件和单侧密封部件的框架构件,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。
    • 8. 发明申请
    • ELECTROLYTE FOR LITHIUM SECONDARY BATTERY OF IMPROVED LOW-TEMPERATURE PROPERTY AND SECONDARY BATTERY CONTAINING THE SAME
    • 电解质用于改进低温物质的锂二次电池和包含其的二次电池
    • US20070111106A1
    • 2007-05-17
    • US11559943
    • 2006-11-15
    • Bo Hyun KIMJisang YUSung-Woo KIMRa Young HWANGJohn E. NAMGOONG
    • Bo Hyun KIMJisang YUSung-Woo KIMRa Young HWANGJohn E. NAMGOONG
    • H01M10/40
    • H01M10/0568H01M4/131H01M4/133H01M4/505H01M4/525H01M4/587H01M2010/4292
    • Provided is a lithium secondary battery which uses a lithium manganese metal oxide as a cathode active material and a non-graphitic carbon material as an anode active material, and based on the total weight of the electrolyte, contains 0.1 to 20% by weight of a salt represented by Formula I in a lithium salt-containing non-aqueous electrolyte: R4X+YZn−  (I) wherein R, X, Y, Z and n are as defined in the specification. The lithium secondary battery of the present invention can improve low-temperature properties of the battery by increasing the lithium ion-electrode reactivity and decreasing the electrode-interface resistance, via the formation of a charge double layer at the cathode-anode interface upon charging/discharging of the battery at a low temperature, and therefore can be preferably used in medium/large battery systems such as power sources for electric vehicles (EVs) and hybrid electric vehicles (HEVs) requiring operation under severe conditions.
    • 提供了使用锂锰金属氧化物作为正极活性物质和非石墨碳材料作为负极活性物质的锂二次电池,并且基于电解质的总重量,含有0.1〜20重量%的 在含锂盐的非水电解质中由式I表示的盐:<?in-line-formula description =“In-line formula”end =“lead”→> R (I)<?in-line-formula description =“In-line Formulas”end =“tail”?>其中R X,Y,Z和n如说明书中所定义。 本发明的锂二次电池可以通过在充电/充电时在阴极 - 阳极界面处形成电荷双层来提高锂离子电极反应性和降低电极界面电阻,从而提高电池的低温性能, 因此可以优选用于需要在恶劣条件下操作的电动车辆(EV)和混合电动车辆(HEV)的动力源等中型/大型电池系统中。
    • 10. 发明授权
    • Battery module of novel structure
    • 电池模块的新颖结构
    • US08808908B2
    • 2014-08-19
    • US11564524
    • 2006-11-29
    • Seungjae YouSung-Woo KimJohn E. NamgoongJisang Yu
    • Seungjae YouSung-Woo KimJohn E. NamgoongJisang Yu
    • H01M2/24H01M2/26H01M2/10H01M2/08H01M2/02
    • H01M2/26H01M2/0287H01M2/08H01M2/1077Y02E60/12
    • A battery module has a plurality of batteries, each having an electrode assembly mounted in a battery case including a metal layer and a resin layer, as unit cells, are stacked one on another in the thickness direction, wherein the battery module is constructed such that electrode leads of each unit cell are bent and placed on an upper-end sealing part of each unit cell, through-holes for mechanical coupling and electrical connection are formed in the electrode leads and the sealing part such that the through-holes of the electrode leads communicate with the corresponding through-holes of the sealing part, respectively, and conductive coupling members are inserted through the through-holes of the unit cells. The battery module accomplished a maximum reduction in volume, increasing sealability of the sealing part, and easily accomplishing the electrical connection and the mechanical coupling between components.
    • 电池模块具有多个电池,每个电池具有安装在包括金属层和树脂层的电池壳体中的单元电池的电极组件沿厚度方向彼此堆叠,其中电池模块被构造成使得 每个单元电池的电极引线被弯曲并放置在每个单元电池的上端密封部分上,在电极引线和密封部分中形成用于机械耦合和电连接的通孔,使得电极的通孔 引线分别与密封部分的相应通孔连通,并且导电耦合构件插入通过单元电池的通孔。 电池模块实现了体积的最大减小,增加了密封部件的密封性,并且容易实现部件之间的电连接和机械耦合。