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    • 1. 发明公开
    • 납축전지용 겔 전해질 주입 공정
    • 用于铅蓄电池的凝胶电解液的填充工艺
    • KR1020010027449A
    • 2001-04-06
    • KR1019990039195
    • 1999-09-14
    • 한국타이어월드와이드 주식회사
    • 진정우
    • H01M10/12
    • Y02E60/126
    • PURPOSE: A filling process for uniformly and quickly pouring a gelled electrolyte solution into a battery jar is provided which promotes productivity and prevents the performance lowering of a battery caused by a gelled electrolyte generated between electrodes and between a separation membrane and an electrode by air trapping. CONSTITUTION: This filling process comprises the steps of making the inside of a battery jar (1) vacuous by discharging air at the inside of a battery jar to the outside through an air discharge hole (6); pouring a gelled electrolyte solution into a gelled electrolyte filling hole (2); temporarily storing the poured electrolyte at an intermediate storage space (3) and pouring from the lower part of an electrode body to the upper part in the opposite direction of gravity through a gelled discharging hole (4); and discharging air at the inside of the battery jar to the outside through an air discharge hole and removing air confined in between laminated electrode bodies and air contained in gelled electrode it self.
    • 目的:提供均匀快速地将凝胶电解质溶液注入电池罐的填充方法,其促进生产率并且防止由电极之间产生的凝胶电解质和通过空气捕获在分离膜和电极之间产生的电池的性能降低 。 构成:该填充处理包括通过排出孔(6)将电池罐内部的空气排出到外部来使电池罐(1)的内部真空的步骤; 将凝胶电解质溶液倒入凝胶电解质填充孔(2)中; 将浇注的电解质临时存储在中间储存空间(3)处,并通过胶凝的排放孔(4)从相反的重力方向从电极体的下部倾倒到上部; 并且通过排气孔将电池罐内部的空气排出到外部,并且自动地去除被限制在层压电极体和包含在胶凝电极中的空气之间的空气。
    • 2. 发明授权
    • 리튬이온 폴리머전지의 제조방법
    • 制造锂离子聚合物二次电池的方法
    • KR100274097B1
    • 2000-12-15
    • KR1019980016871
    • 1998-05-12
    • 한국타이어월드와이드 주식회사
    • 진정우김규태
    • H01M10/05
    • H01M10/0525H01M10/0585
    • PURPOSE: A method for producing lithium ion polymer battery is provided for accomplishing simplicity of steps to allow mass-production process by comprising introducing the gel type polymer electrolyte after inserting the laminated electrode part in the cell pack. CONSTITUTION: The method for producing lithium ion polymer battery comprises the first step of forming multiple narrow insulation layers along the boundary between the untreated parts opposite the edge of the anode plate and cathode plate and the chemical coated parts; the second step of alternately piling up both of the plates to form the electrode laminate part(20); the third step of inserting the laminate part(20) into the cell pack(10) and welding the untreated part to the welding part(13) of the cell pack(10) to seal the pack; removing air from the pack to form vacuum state and introducing electrolyte into the inlet hole(12) of the cell pack(10).
    • 目的:提供一种用于制造锂离子聚合物电池的方法,用于实现简单的步骤,以通过在将层叠的电极部件插入电池组中之后引入凝胶型聚合物电解质来进行批量生产。 构成:锂离子聚合物电池的制造方法包括:在与阳极板和阴极板的边缘相对的未处理部件与化学涂布部件之间的边界处形成多个窄绝缘层的第一步骤; 交替地堆叠两个板以形成电极层压体部分(20)的第二步骤; 将层压体部件(20)插入电池组件(10)并将未处理部件焊接到电池组件(10)的焊接部件(13)以密封组件的第三步骤; 从包装中除去空气以形成真空状态并将电解质引入电池组件(10)的入口孔(12)中。
    • 3. 发明公开
    • 리튬이온전지 제조장치
    • 锂离子电池制造设备
    • KR1019990085953A
    • 1999-12-15
    • KR1019980018671
    • 1998-05-23
    • 한국타이어월드와이드 주식회사
    • 김규태진정우
    • H01M2/10
    • 본 발명은 리튬이온전지를 제조하는 장치에 관한 것으로, 전극(6,7)의 전극면(6b,7b)을 전해질 코팅유닛(2)으로 이송하는 제1이송유닛(1)과, 전극(6,7)의 전극면(6b,7b)에 전해질(8)을 소정 두께로 코팅하는 전해질 코팅유닛(2), 다수의 삽입돌기(3g)가 형성된 벨트(3f)가 구비되어 무지부(6a,7a)에 삽입홀이 형성된 전극(6,7)이 벨트(3f)의 삽입돌기(3g)에 끼워진 상태로 공정진행방향을 따라 이송되도록 하는 제2이송유닛(3), 제2이송유닛(3)에 의해 이송된 코팅된 전극(6,7)이 적층플레이트(4c,4d)에 순차적으로 적층되도록 하는 전극적층유닛(4) 및, 적층플레이트(4c,4d)와 대향되는 위치에서 코팅된 전극(6,7)을 적층플레이트(4c,4d)로 이동시키면서 가압하는 가압유닛(4)을 갖추어 이루어진 구조로 되어, 전극에 전해질을 코팅하는 작업과, 코팅된 전극을 적층하는 작업이 연속� �서 자동적으로 수행되도록 된 것이다.
    • 4. 发明授权
    • 납축전지용 경량 기판의 제조방법
    • 铅蓄电池的光栅过程
    • KR100319391B1
    • 2002-01-05
    • KR1019990044000
    • 1999-10-12
    • 한국타이어월드와이드 주식회사
    • 김정헌진정우안진호
    • C23C2/08
    • 본발명은납축전지용경량기판의제조방법에관한것이고, 더욱상세하게는 Al, Cu, Fe, Ti 및 Ni 등의심재료로이루어진모기판을전처리하고, 이모기판표면에납 도금막을형성시킨후, 납용탕에담금질하여원하는두께의납 피복층을형성시키는방법에관한것이다. 본발명은납축전지용경량기판의제조방법에있어서, 모기판을납으로도금하는단계와납 도금된모기판을납용탕에담금질하는단계로이루어진것을특징으로하는납축전지용경량기판의제조방법인것이다. 이상에서설명한바와같이, 본발명에따라서제조된납축전지용경량기판은모기판의표면위에납를균일하게도금함으로써모기판과납과의접착성을향상시킬수 있으며, 납용탕에도금된기판을담금질하는후공정을거침으로써원하는두께의납층을형성시킴이가능하여, 부식에강하고활물질과의접착성이좋은납층을확보할수 있게된다. 따라서본 발명의납축전지용경량기판을사용함으로써높은기전력의장수명을갖는납축전지를제공하는것이가능하다.
    • 5. 发明授权
    • 리튬이온전지 제조장치
    • 锂离子电池的制造装置
    • KR100270261B1
    • 2000-10-16
    • KR1019980018671
    • 1998-05-23
    • 한국타이어월드와이드 주식회사
    • 김규태진정우
    • H01M2/10
    • PURPOSE: An apparatus for manufacturing a lithium ion battery is provided to coat successive (+)electrode and (-)electrodes with an electrolytic material, and alternately deposite the coated (+)(-) electrodes. CONSTITUTION: A first transport unit(1) transports the electrode surfaces(6b,7b) of electrodes(6,7) to a coating unit(2). An electrolytic coating unit(2) coats an electrolytic material(8) by a predetermined thickness on the electrode surfaces(6b,7b). A belt(3f) includes many insertion projections(3g). A second transport unit(3) transmits the electrodes inserted in the projection(3g) of the belt(3f) along a fabrication proceeding direction. The electrodes(6,7) are sequentially deposited on the deposition plates(4c,4d) by the second transport unit(3). A pressing unit(4) presses the electrodes(6,7) that moves to the deposition plates(4c,4d).
    • 目的:提供一种用于制造锂离子电池的装置,用电解材料涂覆连续(+)电极和( - )电极,并交替沉积涂覆的(+)( - )电极。 构成:第一输送单元(1)将电极(6,7)的电极表面(6b,7b)输送到涂覆单元(2)。 电解涂层单元(2)在电极表面(6b,7b)上涂覆预定厚度的电解质材料(8)。 带(3f)包括许多插入突起(3g)。 第二传送单元(3)沿着制造行进方向传送插入带(3f)的突起(3g)中的电极。 电极(6,7)由第二输送单元(3)依次沉积在沉积板(4c,4d)上。 按压单元(4)按压移动到沉积板(4c,4d)的电极(6,7)。
    • 6. 发明公开
    • 이극식 납축전지용 경량 기판의 제조방법
    • 用于制造双极铅酸电池的轻质基板的方法
    • KR1020010046218A
    • 2001-06-05
    • KR1019990049901
    • 1999-11-11
    • 한국타이어월드와이드 주식회사
    • 진정우허성혁
    • C23C2/08
    • C23C28/023C23C2/08C25D3/30C25D5/48
    • PURPOSE: A lightweight substrate for a bipolar lead acid battery is provided to improve adhesiveness between the substrate and the lead by plating lead on the surface of the substrate made of plastic material, and extend a long life cycle of the battery by post-treating of quenching the plated substrate into lead melt. CONSTITUTION: In a method for manufacturing a lightweight substrate for a bipolar lead acid battery, the method comprises the steps of plating a substrate made of plastic material with lead; and quenching the lead plated substrate into lead melt. A lead acid battery having an improved weight energy density and a long life cycle can be manufactured by using the lightweight substrate for a bipolar lead acid battery.
    • 目的:提供一种用于双极铅酸蓄电池的轻质衬底,以通过在塑料材料制成的衬底的表面上镀覆铅来提高衬底与铅之间的粘合性,并通过后处理延长电池的长寿命周期 将镀覆的基材淬火成铅熔体。 构成:在制造双极性铅酸蓄电池的轻质基板的方法中,该方法包括以下步骤:将由塑料材料制成的基板与铅电镀; 并将镀铅基板淬火成铅熔体。 可以通过使用用于双极铅酸电池的轻质基板来制造具有改善的重量能量密度和长寿命周期的铅酸电池。
    • 7. 发明公开
    • 납축전지용 경량 기판의 제조방법
    • 铅酸电池制造轻质基板的方法
    • KR1020010036827A
    • 2001-05-07
    • KR1019990044000
    • 1999-10-12
    • 한국타이어월드와이드 주식회사
    • 김정헌진정우안진호
    • C23C2/08
    • C23C2/08B05D3/002C23C2/02
    • PURPOSE: A method for manufacturing a light weight substrate for a lead acid battery is provided to improve adhesive property between a mother substrate and lead by uniformly plating lead on surface of the mother substrate, and secure a lead layer having strong corrosion resistance and high adhesive property with an active material by adding a post process of quenching the plated substrate into lead molten metal, thereby forming a lead layer having a desirable thickness. CONSTITUTION: The method comprises the steps of plating lead on a mother substrate, and quenching the lead plated mother substrate into lead molten metal in a method for manufacturing a light weight substrate for a lead acid battery, wherein a core material of the mother substrate is Al, Cu, Fe, Ti or Ni, the thickness of the lead plating layer is 0.1 to 30 microns, and a temperature of the lead molten metal is from 327 to 500 deg.C.
    • 目的:提供一种铅酸蓄电池轻质基板的制造方法,通过在母基板的表面均匀镀铅,提高母基板与引线之间的粘合性,确保耐腐蚀性强,粘接性高的铅层 通过添加将镀覆的基板淬火成铅熔融金属的后处理,从而形成具有期望厚度的引线层,从而具有活性材料的特性。 方法:该方法包括以下步骤:在母基板上镀铅,并在铅酸蓄电池的重量轻的基板的制造方法中使铅电镀母基板淬火成铅熔融金属,其中母基板的芯材为 Al,Cu,Fe,Ti或Ni,铅镀层的厚度为0.1〜30微米,铅熔融金属的温度为327〜500℃。