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    • 3. 发明申请
    • BATTERY PACK COMPRISING COMBINED TEMPERATURE-CONTROLLING SYSTEM
    • 电池组合包含组合温度控制系统
    • WO2007114615A1
    • 2007-10-11
    • PCT/KR2007/001588
    • 2007-03-31
    • LG CHEM, LTD.AHN, JaesungJUNG, Do YangNAMGOONG, John E.CHOI, SeungdonPARK, Sinyoung
    • AHN, JaesungJUNG, Do YangNAMGOONG, John E.CHOI, SeungdonPARK, Sinyoung
    • H01M2/10
    • H01M2/0277H01M2/1077H01M2/1094H01M10/613H01M10/617H01M10/625H01M10/647H01M10/6555H01M10/6557H01M10/6563H01M10/6566H01M10/659
    • Disclosed herein is a middle- or large-sized battery pack including a plurality of unit cells electrically connected with each other, wherein the battery pack is constructed in a structure in which a heat transfer medium flows through gaps defined between the unit cells for controlling the overall temperature of the battery pack to be within a predetermined temperature range for the optimum operation of the battery pack, and each unit cell is provided at the outer surface thereof, at which the heat transfer medium is brought into contact with each unit cell, with a layer containing a phase transformation material ('phase transformation layer') for minimizing individual temperature difference between the unit cells. The present invention has the effect of controlling the overall temperature of the battery pack and individually controlling the temperatures of unit cells constituting the battery pack. Also, the present invention has the effect of restraining the abrupt change in temperature of the unit cells, when the battery pack is not in operation or when the external environment abruptly changes, thereby preventing the degradation of the unit cells. Furthermore, the present invention has the effect of minimizing damage to the unit cells due to foreign matter when the foreign matter is brought into contact with the unit cells. In addition, the present invention has the effect of reducing the overall temperature difference of the battery pack and manufacturing a middle- or large-sized battery pack having a compact structure.
    • 这里公开了一种包括彼此电连接的多个单元电池的中型或大型电池组,其中电池组构造成其中传热介质流过限定在单元电池之间的间隙的结构,用于控制 电池组的总体温度在用于电池组的最佳操作的预定温度范围内,并且每个单电池设置在其传热介质与每个电池单元接触的外表面处, 包含相变材料(“相变层”)的层,用于使单元电池之间的单独温度差最小化。 本发明具有控制电池组的总体温度并分别控制构成电池组的单位电池的温度的效果。 此外,本发明具有抑制单元电池的温度突然变化的效果,当电池组不工作或外部环境突然变化时,能够防止单体电池的劣化。 此外,本发明具有使异物与单元电池接触时由于异物而对单元电池的损害最小化的效果。 此外,本发明具有降低电池组的总体温差并制造具有紧凑结构的中型或大型电池组的效果。
    • 9. 发明申请
    • MIDDLE AND LARGE-SIZED BATTERY PACK OF EXCELLENT COOLING EFFICIENCY
    • 中型和大型电池组优良冷却效率
    • WO2007097594A1
    • 2007-08-30
    • PCT/KR2007/000962
    • 2007-02-24
    • LG CHEM, LTD.YOON, JunillYOON, JongmoonAHN, Jaesung
    • YOON, JunillYOON, JongmoonAHN, Jaesung
    • H01M2/10
    • H01M10/46H01M2/1077H01M10/613H01M10/625H01M10/647H01M10/6557H01M10/6563H01M10/6566
    • Disclosed herein is a middle- or large-sized battery pack comprising a battery module including a plurality of unit modules horizontally stacked while each unit module is vertically erected on one side, the battery module being mounted in a sealed space of a housing member, wherein the housing member is provided at the upper or lower end of one side thereof with a coolant inlet port and at the lower or upper end of the opposite side thereof with a coolant outlet port, the battery module is mounted in the housing member such that the upper or lower end surface of the battery module is tilted toward the coolant inlet port by a predetermined angle, whereby a coolant introduced through the coolant inlet port in parallel with the battery module passes perpendicularly through the unit modules and is then discharged to the opposite side, and gaps (vertical flow channels) defined between the unit modules at the tilted upper or lower end surface of the battery module are arranged in parallel with the direction in which the coolant is introduced, whereby the cooling efficiency and the cooling uniformity of the battery pack are improved while the battery pack has a compact structure.
    • 这里公开了一种中型或大型电池组,其包括电池模块,其包括水平堆叠的多个单元模块,而每个单元模块在一侧垂直竖立,所述电池模块安装在壳体构件的密封空间中,其中 壳体部件在其一侧的上端或下端设置有冷却剂入口,并且在其相对侧的下端或上端具有冷却剂出口,电池模块安装在壳体构件中,使得 电池模块的上端或下端面朝向冷却剂入口倾斜预定角度,由此通过冷却剂入口与电池模块平行地引入的冷却剂垂直地穿过单元模块,然后排出到相对侧 ,并且在电池模块的倾斜的上端或下端表面处的单元模块之间限定的间隙(垂直流动通道)平行地布置 沿着导入冷却剂的方向,从而提高电池组的冷却效率和冷却均匀性,同时电池组具有紧凑的结构。