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    • 2. 发明申请
    • COOLING MEMBER HAVING IMPROVED COOLING EFFICIENCY, AND BATTERY MODULE INCLUDING SAME
    • 具有提高冷却效率的冷却部件,以及包括相同的电池模块
    • WO2012115351A2
    • 2012-08-30
    • PCT/KR2012000407
    • 2012-01-18
    • LG CHEMICAL LTDKIM MINJUNGLEE JIN KYUKANG DALMO
    • KIM MINJUNGLEE JIN KYUKANG DALMO
    • H01M10/50B60K11/00B60L11/18H01M2/02
    • H01M10/6567H01M2/1077H01M10/613H01M10/625H01M10/647H01M10/6555H01M10/6557H01M10/6568H01M2220/20
    • The present invention relates to a cooling member having improved cooling efficiency which is to be mounted above and/or under a battery module or battery pack in order to remove heat generated from battery cells during charging and discharging. The cooling member includes: a thermally conductive medium including terraced coupling plates, the lengths of which are mutually different, wherein a refrigerant passage is defined between the interfaces of the coupling plates; and a refrigerant pipe having a hollow structure through which refrigerant flows, the refrigerant pipe including a main pipe and at least one branch pipe vertically extending when the branch pipe is in communication with the main pipe, so as to communicate with the refrigerant passage of the thermally conductive medium. In one end of the refrigerant passage of the thermally conductive medium, a mounting groove having a shape corresponding to that of an outer surface of the branch pipe is defined in the plate, from among the plurality coupling plates, which has a relatively long length, and an auxiliary plate surrounding the outer surface of the branch pipe is mounted when the branch pipe is mounted on the mounting groove.
    • 本发明涉及一种具有提高冷却效率的冷却部件,其将被安装在电池模块或电池组件的上方和/或下方,以便在充电和放电期间去除由电池单体产生的热量。 冷却构件包括:导热介质,其包括梯形联接板,其长度彼此不同,其中在联接板的界面之间限定制冷剂通道; 以及具有制冷剂流过的中空结构的制冷剂管,所述制冷剂管包括主管和当所述分支管与所述主管连通时垂直延伸的至少一个分支管,以与所述制冷剂通道 导热介质。 在导热介质的制冷剂通路的一端,在板中形成具有与分支管的外表面相对应的形状的安装槽,从具有较长长度的多个联接板之中, 并且当分支管安装在安装槽上时,安装围绕分支管的外表面的辅助板。
    • 7. 发明申请
    • MAGNESIUM-BASED ALLOY PRODUCED USING A SILICON COMPOUND AND A CALCIUM COMPOUND AND METHOD FOR PRODUCING SAME
    • 使用硅化合物和钙化合物生产的基于镁的合金及其生产方法
    • WO2012161485A3
    • 2013-03-21
    • PCT/KR2012003967
    • 2012-05-18
    • KOREA IND TECH INSTKIM SHAE KYOON YOUNG OKLEE JIN KYUSEO JUNG HO
    • KIM SHAE KYOON YOUNG OKLEE JIN KYUSEO JUNG HO
    • C22C23/00
    • C22C1/06C22C23/00
    • The present invention relates to a magnesium-based alloy produced by adding a silicon compound and a calcium compound directly to molten magnesium or a molten magnesium alloy. The present invention also relates to a method for producing the magnesium-based alloy. More particularly, the silicon compound and the calcium compound are injected into the molten magnesium or molten magnesium alloy so as to induce a reduction reaction between said molten materials and said two compounds (the silicon compound and the calcium compound). The present invention also relates to a magnesium alloy and to a method for producing same, in which the silicon and the calcium produced by said reduction reaction are converted to an intermetallic compound in said molten materials simultaneously with said reduction reaction. The method for producing a magnesium-based alloy comprises the steps of: melting magnesium or a magnesium alloy into a liquid state; adding a silicon compound and a calcium compound to said molten magnesium or said molten magnesium alloy; removing oxygen from said silicon compound and said calcium compound through a reduction reaction between said molten materials and said compounds; and combining the silicon and calcium produced by said reduction reaction in said molten materials.
    • 本发明涉及通过将硅化合物和钙化合物直接添加到熔融镁或熔融镁合金中而制备的镁基合金。 本发明还涉及镁基合金的制造方法。 更具体地,将硅化合物和钙化合物注入熔融镁或熔融镁合金中,以引起所述熔融材料与所述两种化合物(硅化合物和钙化合物)之间的还原反应。 本发明还涉及镁合金及其制造方法,其中通过所述还原反应产生的硅和钙在所述还原反应中与所述熔融材料中的金属间化合物一起转化。 镁合金的制造方法包括以下步骤:将镁或镁合金熔融成液态; 向所述熔融镁或所述熔融镁合金中添加硅化合物和钙化合物; 通过所述熔融材料和所述化合物之间的还原反应从所述硅化合物和所述钙化合物中除去氧气; 以及将由所述还原反应产生的硅和钙组合在所述熔融材料中。
    • 8. 发明申请
    • BATTERY PACK HAVING EXCELLENT STRUCTURAL RELIABILITY
    • 具有优异结构可靠性的电池组
    • WO2012157966A2
    • 2012-11-22
    • PCT/KR2012003872
    • 2012-05-17
    • LG CHEMICAL LTDLEE BUMHYUNSHIN YONG SHIKLEE JIN KYUYOON JONG MOONCHOO YEONSEOK
    • LEE BUMHYUNSHIN YONG SHIKLEE JIN KYUYOON JONG MOONCHOO YEONSEOK
    • B60K1/04B60K2001/0416B60L11/18B60L11/1877H01M2/1077H01M2/1083H01M10/0525Y02E60/122Y02T10/7011
    • The present invention provides a battery pack comprising: a battery module array body having two or more rows of inverted battery modules arranged therein, the battery modules which are formed by battery cells or unit modules having two or more battery cells equipped therein being laminated in the direction of the side surface on the basis of an electrode device of the battery cells; a front support member and a rear support member which are a pair of side support members, each supporting the front and the rear of the battery module array body while closely contacting the outermost battery modules of the battery module array body; a lower support member coupled to the lower end of the side support members, and supporting the lower end of the battery module array body; and mounting members coupled to the upper end of the battery module array body and connected to an external device so that the upper portion of the battery pack is mounted on the external device.
    • 本发明提供一种电池组,其特征在于,具备:电池模块阵列体,其具有配置在其中的两行以上的反向电池模块,由电池单体形成的电池模块或其中配备有两个以上的电池单体的单元模块, 基于电池单元的电极装置的侧表面的方向; 前支撑构件和后支撑构件,它们是一对侧支撑构件,每个侧支撑构件在电池模块阵列体的最外侧电池模块紧密接触的同时支撑电池模块阵列体的前后; 耦合到所述侧支撑构件的下端的下支撑构件,并且支撑所述电池模块阵列体的下端; 以及安装构件,其联接到电池模块阵列体的上端并连接到外部装置,使得电池组的上部安装在外部装置上。
    • 10. 发明申请
    • NANO-SIZED MELANIN PARTICLES AND METHOD OF PRODUCING SAME
    • 纳米大小的梅兰妮粒子及其制造方法
    • WO2011049406A9
    • 2011-11-10
    • PCT/KR2010007288
    • 2010-10-22
    • SNU R&DB FOUNDATIONLEE JIN KYUJU KUK YOUN
    • LEE JIN KYUJU KUK YOUN
    • C08J3/12C08H1/06
    • A61K8/72A61K8/02A61K2800/413A61Q19/00C08G61/124C08G2261/3221C08G2261/3241C08G2261/43C08G2261/72Y10T428/2982
    • The present invention provides nano-sized particles of melanin, and the method for formation of the melanin particles comprises the following steps: adding a base to a dopamine ·H+X - containing solution (where H+X - is an acid) and allowing an acid-base neutralization reaction; and forming nano-sized particles of melanin by controlling the addition of nucleic dopamine ·H+X - (a) to base (b) at a ratio of a : b = 1 : 0.1 ~ 1, and allow concurrent or consecutive formation of melanin by oxidation curing of the dopamine in air (polymerization). The manufacturing method according to the present invention can produce nano-sized melanin particles in a short period of time. Furthermore, the nano-sized melanin particles made according to the present invention are distinctive from conventional solvents containing dispersions of natural melanin and synthetic melanin, and have excellent application in various fields.
    • 本发明提供纳米尺寸的黑色素颗粒,并且形成黑色素颗粒的方法包括以下步骤:向含多巴胺·H + X的溶液(其中H + X - 是酸)中加入碱并允许 酸碱中和反应; 并通过以a:b = 1:0.1〜1的比例控制核酸多巴胺·H + X - (a)与碱(b)的加入形成纳米尺寸的黑色素颗粒,并允许同时或连续形成黑色素 通过氧化固化空气中的多巴胺(聚合)。 根据本发明的制造方法可以在短时间内生产纳米尺寸的黑色素颗粒。 此外,根据本发明制备的纳米尺寸的黑色素颗粒与含有天然黑色素和合成黑色素的分散体的常规溶剂不同,并且在各种领域具有优异的应用。