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    • 1. 发明专利
    • Plating method, plating apparatus and electroplated battery can
    • 电镀方法,电镀设备和电镀电池
    • JP2007277634A
    • 2007-10-25
    • JP2006105118
    • 2006-04-06
    • Fuji Hatsujo KkKida Seiko Kk冨士発條株式会社木田精工株式会社
    • SAKAMOTO KIYOSHIFUJII SHINJIFUJII HIROSHIOSAKO KENJIKIDA HIROFUMI
    • C25D21/10C25D7/00C25D7/04C25D17/08C25D17/12H01M2/02
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a plating method and a plating apparatus which can surely and uniformly plate the inside surface of even a thin, long, bottom-blind and cylindrical body so as to provide a battery can for a hybrid car in which a thick plated film is formed on its slender inside surface and even on the inside surface of its bottom surface .
      SOLUTION: One end of a holding tool 13 to be used also as a cathode is inserted into an object 10 to be plated from the side of an opening 10a thereof and brought into contact with the inside surface of the object 10 to be plated to hold the object 10 to be plated and the other end of the holding tool 13 is supported to be freely rotated to give a rotatory motion to one end of the holding tool 13. The object 10 to be plated is reciprocated between such a position A that the object 10 to be plated is immersed in a plating solution 14 while keeping the opening 10a upward and such a position B that the opening 10a of the object 10 to be plated is kept lower than the bottom 10b thereof on the outside of the plating solution 14. The object 10 to be plated is plated while repeating the work of immersing the object 10 to be plated in the plating solution 14 and the work of discharging the plating solution in the object 10 to be plated.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够可靠地均匀地平板化薄,长,底部和圆筒体的内表面的电镀方法和电镀装置,以便为混合动力汽车提供电池罐 其中在其细长的内表面以及其底表面的内表面上形成厚镀膜。 解决方案:也用作阴极的保持工具13的一端插入到要从其开口10a的侧面进行电镀的物体10中,并与物体10的内表面接触 电镀以保持要镀覆的物体10,并且保持工具13的另一端被支撑以自由旋转,以向保持工具13的一端进行旋转运动。被镀物体10在这样的位置之间往复运动 A,将要镀覆的物体10浸入电镀液14中,同时保持开口10a向上,并且将待镀物体10的开口10a保持低于其底部10b的位置B 镀覆对象物10,在重复将要镀覆的物体10浸渍在电镀液14中的工序以及将电镀液排出到被镀物体10中的工序的同时进行电镀。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Holder for holding article to be plated
    • 持有待售物品的持有人
    • JP2003073895A
    • 2003-03-12
    • JP2001267979
    • 2001-09-04
    • Kida Seiko Kk木田精工株式会社
    • OSAKO KENJIUEMATSU KENICHIKIDA TAKAFUMI
    • C25D17/08
    • PROBLEM TO BE SOLVED: To solve such a problem that a holder used for moving an article to be plated in a hung state from a rail in a continuous electroplating line, has less versatility with regard to a size (especially, sheet thickness) of the article to be plated.
      SOLUTION: This holder has a structure of holding the right and left vertical sides of the article W so as to be caught between a vertical-piece 16 and a pressing member 18, pressing the article W to the vertical-piece 16 with a spring 19 arranged in the pressing member 18, and pinching them, while keeping them in this state, with a clip tool 20 having a U-shape cross section from both outer sides in the direction of the sheet thickness. Then, the holder secures the versatility even to the articles W having the different sheet thicknesses, as a result of allowing the spring 19 to necessarily compress the article W according to the sheet thickness, through setting in of the clip tool 20.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题为了解决这样一个问题,即用于将连续电镀线中的悬挂状态的物品从轨道移动的保持器的尺寸(特别是片材厚度)的通用性较差, 待镀的物品 解决方案:该保持器具有将物品W的左右垂直方向保持在垂直件16和按压件18之间的结构,用弹簧19将物品W按压到垂直件16 设置在按压构件18中,并且在保持它们处于该状态的同时,夹紧它们,夹具20在片材厚度的方向上具有来自两个外侧的U形横截面。 然后,通过夹具20的设定,通过允许弹簧19根据片材厚度必然地压制物品W,因此,夹持器即使对具有不同片材厚度的物品W也能够保持通用性。
    • 4. 发明专利
    • Continuous electroplating system and rotary holder used for the same
    • 连续电镀系统和旋转支架使用
    • JP2003073894A
    • 2003-03-12
    • JP2001267978
    • 2001-09-04
    • Kida Seiko Kk木田精工株式会社
    • OSAKO KENJIUEMATSU KENICHIKIDA TAKAFUMI
    • C25D7/00C25D17/00C25D17/06C25D19/00H05K3/18
    • PROBLEM TO BE SOLVED: To solve such a problem that a conventional continuous electroplating system has needed a long space for the line when including the whole steps, because it has arranged with the whole tanks, so as to direct the longitudinal direction of all the tanks toward a moving direction of an article to be plated, which include not only a plating tank but also a pretreatment tank arranged in a pretreatment step and a post-treatment tank arranged in a post-treatment step.
      SOLUTION: This continuous electroplating system is provided by arranging the pretreatment tank 4 on an upstream side and the post-treatment tank 8 on a downstream side of the plating tank 6, so as to hold the article to be plated W while directing both the surfaces to the front and back in the moving direction, though arranging the plating tank 6 so as to hold the article W while directing both the surfaces in the right and left directions. Thereby, the system can shorten the length of the line and save and occupied area, because it has the pretreatment tank 4 and the post-treatment tank 8 so as to direct the longitudinal direction of the tanks toward a transverse direction to the moving direction of the article W.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了解决传统的连续电镀系统在包括整个步骤时需要较长的线路空间的问题,因为它与整个罐体一起布置,以便引导所有罐的纵向方向 朝向被镀物品的移动方向,其不仅包括电镀槽,而且包括布置在预处理步骤中的预处理槽和在后处理步骤中布置的后处理槽。 解决方案:该连续电镀系统是通过将预处理槽4设置在上游侧,将后处理槽8设置在镀槽6的下游侧,以便将两个表面 而是沿着移动方向向前和向后移动,尽管布置电镀槽6以便在两个表面沿左右方向引导的同时保持物品W。 因此,由于具有预处理槽4和后处理槽8,因此能够使箱体的长度方向朝向与槽的移动方向相反的横向方向 文章W.
    • 5. 发明专利
    • Method and equipment for barrel plating
    • 钢筋混凝土的方法与设备
    • JP2003013295A
    • 2003-01-15
    • JP2001199526
    • 2001-06-29
    • Kida Seiko Kk木田精工株式会社
    • OSAKO KENJIUEMATSU KENICHIKIDA TAKAFUMI
    • C25D17/16C25D17/20C25D17/24C25D21/06
    • PROBLEM TO BE SOLVED: To solve such a problem that a conventional barrel plating method needs a long plating time of 40-50 minutes, because it cannot have increased current density for a product to be plated, or has imposed strict limits on the density.
      SOLUTION: This method for barrel plating comprises directly discharging a plating liquid which has entered the barrel 3, to outside the plating tank 2 through a discharge path 23, instead of discharging it through the plating tank 2, consequently making an article W to be plated in the barrel 3 rigorously contact with a plating liquid L, and thereby increasing the current density for the article W. As a result, the plating time can be dramatically shortened.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题为了解决传统的滚镀方法需要40-50分钟的长电镀时间的问题,因为不能提高要镀覆的产品的电流密度,或对密度施加了严格的限制。 解决方案:这种滚镀方法包括通过排出路径23直接将进入筒体3的镀液直接排出到镀槽2的外部,而不是通过镀槽2排出,从而使物品W被镀 在筒3中与电镀液L严格接触,从而提高制品W的电流密度。结果,电镀时间可大大缩短。
    • 6. 发明专利
    • Electroconductive barrel and barrel plating equipment
    • 电焊条和棒焊设备
    • JP2003013294A
    • 2003-01-15
    • JP2001199527
    • 2001-06-29
    • Kida Seiko Kk木田精工株式会社
    • OSAKO KENJIUEMATSU KENICHIKIDA TAKAFUMI
    • C25D17/12C25D17/20
    • PROBLEM TO BE SOLVED: To solve such a problem that an operation for sorting out dummies from plated products has been drudgery and consumed much time, because a conventional barrel used for barrel plating has been made of resin.
      SOLUTION: The barrel 3 is characterized by being made from an electroconductive material. Then, the barrel 3 itself can be used as a negative electrode for applying negative current to articles W charged in the barrel to be plated. It extremely increases the efficiency for the negative electrode to contact with the articles W to be plated, and consequently reduces or eliminates a quantity of the dummies which get mixed with the plated products W. Thereby, the barrel alleviates or eliminates the operation for sorting the dummies out from the plated products after plating, and dramatically increases the operation efficiency.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题为了解决由于用于滚镀的现有的滚筒已经由树脂制成的,因为从电镀产品中分选出来的工具已经磨损并消耗了很多时间的问题。 解决方案:枪管3的特征在于由导电材料制成。 然后,筒3本身可以用作负电极,用于将负电流施加到被电镀的筒体内的物品W。 这极大地提高了负极与要镀覆的制品W接触的效率,从而减少或消除了与电镀产品W混合的一定量的虚拟物。由此,筒减轻或消除了用于分选 电镀后,电镀产品出厂,大大提高了运行效率。
    • 7. 发明专利
    • WORK SUPPORTING DEVICE OF SURFACE TREATING DEVICE
    • JPH07188995A
    • 1995-07-25
    • JP33844793
    • 1993-12-28
    • KIDA SEIKO KK
    • OSAKO KENJI
    • C25D17/08
    • PURPOSE:To protect bearing fitting parts against a treating liquid by providing a clamping device of a cover for covering the part to be treated of a rotor with a power feeder to electrically connect this rotor to a transporting body. CONSTITUTION:The cover 110 is mounted at the rotor 3. The bottom end of the power feeder 160 comes into contact with the inside bottom 35 of a cylindrical part 33 in the upper part of the rotor 3 when the clamping device 120 is lowered from above the cover 110. Further, a sealing plate 182 comes into contact with the front surface of the cylindrical part 111 of the cover 110 when the clamping device 120 is lowered by overcoming the energizing force of springs 164, 165. The clamping device is pushed down until the fitting part 150 comes into contact with the cover 110, by which the cover 110 is clamped and fixed. The sealing plate 182 is energized downward by the spring 164, by which a hole 130 for power feeding of the cover 110 is closed. The rotor 3 is electrically connected to the transporting body 13 via the power feeder 160, a wiring cord 166, a hanging rod 141 and a connecting part 140. Since the transporting body 13 is connected to the anode of the surface treating device, the rotor 3 is connected to the anode.
    • 8. 发明专利
    • SURFACE COATING METHOD AND DEVICE
    • JPH06128791A
    • 1994-05-10
    • JP28025792
    • 1992-10-19
    • KIDA SEIKO KK
    • NISHIO TAKAOOSAKO KENJI
    • C25D7/00C25D11/00C25D17/00C25D21/04C25D21/10
    • PURPOSE:To easily form a uniform coating film on the inner surface of a recess without using a mask by dipping a material to be treated in a surface coating soln. with the opening of the recess of the material turned downward and agitating the material below the opening while jetting the soln. CONSTITUTION:The inside of the recess of a scroll rotor 1 is anodized. In this case, the rotor 1 is dipped in a processing soln. 27 in a treating tank 26 with the opening of the recess turned downward through a supporting member 28. Meanwhile, a bubble deposition preventive device 30 consisting of an electrode supporting member 32 made of an insulator and a passage 33 is arranged at the lower part of the tank 26. An electrode 31 of lead, etc., is stuck to the inner periphery of the member 32, and further a propeller 34a is pivoted as an agitating means. The soln. 27 is discharged from the tank 26 by a pump 29, jetted toward the recess of the rotor 1 through the passage 33 and agitated by the propeller 34a. A current is applied between the rotor 1 and electrode 31 under these conditions, and an oxide film is formed while preventing the deposition of bubbles in the recess.