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    • 1. 发明专利
    • Method and apparatus for correcting perpendicularity of anode
    • 用于校正阳极持续性的方法和装置
    • JP2012041612A
    • 2012-03-01
    • JP2010184893
    • 2010-08-20
    • Mesco IncPan Pacific Copper Co Ltdパンパシフィック・カッパー株式会社三井金属エンジニアリング株式会社
    • SHIMOKAWA KIMIHIROMATSUOKA KEIZOFUKUDA AKIRA
    • C25C7/02
    • PROBLEM TO BE SOLVED: To provide a method and apparatus for correcting the perpendicularity of an anode, by which the time required for correcting the perpendicularity is shortened by automatically performing an operation for correcting the perpendicularity of the anode.SOLUTION: The apparatus 1 for correcting the perpendicularity of an anode used for electrolytic refining of a metal (copper) includes: a perpendicularity measuring device 30 for measuring data related to the perpendicularity of the anode; and a lug perpendicular press 10 for correcting the angle of the rear surface of a lug part 2e suspended and supported in an electrolytic bath by pressing a lug receiving part 15 on which the lug part 2e of the anode is mounted. A control section 40 adjusts the angle of the lug receiving part 15 so that the lug part 2e may become an angle at which the perpendicularity is corrected by driving a pulse motor 21 of a driving mechanism 20 to rotate the lug receiving part 15 through a lever arm 16 on the basis of the measured data by the perpendicularity measuring device 30.
    • 要解决的问题:提供一种用于校正阳极的垂直度的方法和装置,由此通过自动执行用于校正阳极的垂直度的操作来缩短校正垂直度所需的时间。 解决方案:用于校正用于金属(铜)的电解精炼的阳极的垂直度的装置1包括:用于测量与阳极垂直度相关的数据的垂直度测量装置30; 以及用于通过按压安装有阳极的凸耳部分2e的凸耳接收部分15来校正悬挂和支撑在电解槽中的凸耳部分2e的后表面的角度的凸耳垂直压机10。 控制部分40调节凸耳接收部分15的角度,使得凸耳部分2e可以通过驱动驱动机构20的脉冲电动机21而变为通过驱动凸耳接收部分15的杠杆来校正垂直度的角度 基于由垂直度测量装置30测量的数据的臂16。版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • System and method of peeling off laminate article
    • 剥离层压制品的系统和方法
    • JP2012031496A
    • 2012-02-16
    • JP2010174294
    • 2010-08-03
    • Mesco IncPan Pacific Copper Co Ltdパンパシフィック・カッパー株式会社三井金属エンジニアリング株式会社
    • SHIMOKAWA KIMIHIROMATSUOKA KEIZOFUKUDA AKIRAKOSAKA TATSUSHI
    • C25C7/08C25C1/12
    • Y02P10/236
    • PROBLEM TO BE SOLVED: To provide a system and a method of peeling off a laminate article, capable of increasing an operating ratio and improving working efficiency in a normal production line.SOLUTION: A peeling-off system 1 peeling electrolytic copper off from a cathode plate of a laminate article generated by a planned outage or the like includes a first transfer machine 11, a discharge conveyor 15, a rejection conveyor 19, a laminate article peel-off machine 27, first and second transfer robots 21, 24, and the like, arranged in a lamination treatment zone A adjacent to the normal production line B. A laminate article 20 from a cleaning tank 10 reaches a peel-off unit 16 via the first transfer machine 11, the rejection conveyor 19, and the first transfer robot 21, wherein the electrolytic copper is peeled off from a stainless steel plate by the peel-off unit 16. The electrolytic copper is transferred to the discharge conveyor 15, and the stainless steel plate is transferred to an array conveyor 17 via the second transfer robot 24, a mother board rejection conveyor 23, and a second transfer machine 18.
    • 要解决的问题:提供一种剥离层压制品的系统和方法,其能够提高正常生产线中的操作率和提高工作效率。 解决方案:从计划中断等产生的层压制品的阴极板上剥离电解铜的剥离系统1包括第一转印机11,排出输送机15,拒收输送机19,层压板 物品剥离机27,第一和第二传送机器人21,24等,布置在与正常生产线B相邻的层压处理区域A.来自清洗槽10的层压制品20到达剥离单元 16,通过第一转印机11,拒收输送机19和第一转印机器人21,其中电解铜通过剥离单元16从不锈钢板上剥离。电解铜转移到排出输送机15 ,并且不锈钢板通过第二传送机器人24,母板排斥输送机23和第二转印机器18转移到阵列输送机17.版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Apparatus for and method of eliminating defective cathode plate
    • 消除有害阴极板的装置和方法
    • JP2010053381A
    • 2010-03-11
    • JP2008217802
    • 2008-08-27
    • Pan Pacific Copper Co Ltdパンパシフィック・カッパー株式会社
    • NARITA MAKOTOSHIMOKAWA KIMIHIROMATSUOKA KEIZOYUKIFUJI SEIJI
    • C25C7/02
    • PROBLEM TO BE SOLVED: To provide an apparatus for eliminating a defective cathode plate, which enhances the production efficiency in the whole recovery system of refined metal by preventing transportation troubles in a traverse conveyer or troubles in a stripping device caused by the defective cathode plate by mechanically eliminating the defective cathode plate, and to provide a method for eliminating the defective cathode plate.
      SOLUTION: The apparatus for eliminating a defective cathode plate includes: a detection bar 30 which is arranged on the front side of a stripping machines 107 for stripping refined metal electrodeposited on the surface of a cathode plate 1 and which detects that the cathode plate 1 is defective by being brought into contact with a projected part 41 of a detection dog 40 arranged beforehand at an upper part of a cross bar 4 of the cathode plate 1, which is determined as the defective cathode palate 1 in many cathode plates 1 pulled up from an electrolysis tank after completion of electrolytic refining; and a transfer device 20 which eliminates the detected defective cathode plate 1 by transferring it to a reject conveyer 26 and at the same time, transfers the cathode plates 1 except the defective cathode plate 1 to a traverse conveyer 105.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种消除有缺陷的阴极板的装置,其通过防止横向输送机中的运输故障或由于缺陷导致的剥离装置中的故障而提高整个精炼金属回收系统的生产效率 通过机械地去除有缺陷的阴极板的阴极板,并提供一种消除有缺陷的阴极板的方法。 解决方案:用于消除有缺陷的阴极板的装置包括:检测棒30,其布置在剥离机107的前侧,用于剥离电沉积在阴极板1的表面上的精制金属,并且检测阴极 板1通过与预先设置在阴极板1的横杆4的上部的检测爪40的突出部41相接触,阴极板1的横截杆4的多个阴极板1中被确定为有缺陷的阴极腭1 电解精炼完成后从电解池中拉出; 以及转移装置20,其通过将检测到的有缺陷的阴极板1转移到拒收输送器26,同时将除了有缺陷的阴极板1之外的阴极板1传送到横向输送器105来消除检测到的有缺陷的阴极板1.版权所有( C)2010,JPO&INPIT
    • 6. 发明专利
    • Method for producing electrolytic copper
    • 生产电解铜的方法
    • JP2014159626A
    • 2014-09-04
    • JP2013246621
    • 2013-11-28
    • Pan Pacific Copper Co Ltdパンパシフィック・カッパー株式会社
    • UENO AKIRASHIMOKAWA KIMIHIROWATANABE KUNIO
    • C25C1/12
    • Y02P10/236
    • PROBLEM TO BE SOLVED: To provide a method for producing electrolytic copper, with which surface smoothness of the electrolytic copper and suppression of rise of the S grade in the electrolytic copper are made compatible with each other, while maintaining suitable surface smoothness and preventing entrainment of thiourea in the electrolytic copper, even when copper is electrolytically refined in a state of high electric current density.SOLUTION: A concentration of thiourea in the vicinity of a supply part of an electrolytic liquid 10 is maintained to be within a predetermined range such that the concentration of thiourea in the electrolytic liquid 10 recovered from an electrolysis tank 11 in a waste liquid tank 12 is not less than a predetermined concentration, and thiourea and a chloride ion are continuously supplied to the electrolytic liquid 10 such that a concentration ratio of thiourea to the chloride ion in the electrolytic liquid 10 recovered in the waste liquid tank 12 is maintained to be within a predetermined range.
    • 要解决的问题:提供一种生产电解铜的方法,其中电解铜的表面平滑度和电解铜中S级的上升抑制彼此相容,同时保持适当的表面光滑度并防止夹带 即使在高电流密度的状态下对铜进行电解精炼,电解铜中也含有硫脲。溶液:将电解液10的供给部附近的硫脲浓度保持在规定范围内, 在废液槽12中从电解槽11回收的电解液10中的硫脲的浓度不低于预定浓度,并且将硫脲和氯离子连续地供给至电解液10,使得硫脲与 在废液罐12中回收的电解液10中的氯离子为主 被置于预定范围内。
    • 7. 发明专利
    • Method for producing electrolytic copper
    • 生产电解铜的方法
    • JP2014084496A
    • 2014-05-12
    • JP2012233997
    • 2012-10-23
    • Pan Pacific Copper Co Ltdパンパシフィック・カッパー株式会社
    • SHIMOKAWA KIMIHIROUENO AKIRASHIKADA KEI
    • C25C7/06C25C1/12
    • Y02P10/236
    • PROBLEM TO BE SOLVED: To provide a method for producing electrolytic copper, even after electrolysis over a long period, in which the defect in the peeling of electrolytic copper from the surface of a cathode electrode plate is hard to occur.SOLUTION: Regarding the method for producing electrolytic copper in which a cathode electrode plate 2 and an anode electrode plate 1 made of crude copper are immersed into an electrolytic tank 10 storing an electrolytic solution 5, and electrodeposited copper is deposited on the cathode electrode 2 by electrolysis, at least a part of the electrolytic solution 5 is sampled from the electrolytic tank 10 and is passed through a column 11 composed by the filling of a chelate resin, the electrolytic tank 10 is fed with a rear solution in which the respective ions of Sb and Bi produced by the electrolysis reaction are adsorbed on the chelate resin so as to be removed, then electrolysis is performed, also, upon the cleaning of the column 11, the feed of the electrolytic solution 5 from the electrolytic tank 10 is stopped, the Sb and Bi adsorbed on the chelate resin are eluted, and thereafter, moisture in the column 11 is removed.
    • 要解决的问题:为了提供一种生产电解铜的方法,即使在长时间电解之后,电解铜从阴极电极板的表面剥离的缺陷也难以发生。解决方案:关于该方法 为了生产电解铜,其中将由粗铜制成的阴极电极板2和阳极电极板1浸入存储电解溶液5的电解槽10中,并且电沉积铜通过电解沉积在阴极电极2上,至少 从电解槽10中取出电解液5的一部分,通过由填充螯合树脂构成的柱11,向电解槽10供给由Sb 将电解反应吸附在螯合树脂上以除去,然后进行电解,同时在清洗柱11时,进料t 来自电解槽10的电解液5停止,吸附在螯合树脂上的Sb和Bi被洗脱,之后除去柱11中的水分。
    • 8. 发明专利
    • Method for electrolytically refining copper
    • 电解精炼铜的方法
    • JP2011074463A
    • 2011-04-14
    • JP2009227739
    • 2009-09-30
    • Pan Pacific Copper Co Ltdパンパシフィック・カッパー株式会社
    • HASHIMOTO MORITOMOSHIMOKAWA KIMIHIROSUMIDA IKUNOBUNISHIDA KOJI
    • C25C1/12C25C7/06
    • Y02P10/236
    • PROBLEM TO BE SOLVED: To provide a method for electrolytically refining copper, which can remove a thin film (copper compound layer) that deposits on the surface of electrodeposited copper. SOLUTION: The method for electrolytically refining copper is directed for electrolytically refining copper by immersing the first electrode and the second electrode made from crude copper in an electrolytic tank which accommodates an electrolytic solution therein, and includes: the step (S1) of setting the first electrode 13 as a cathode and the second electrode 12 as an anode, and passing the first electric current between the first electrode 13 and the second electrode 12 to make an electrodeposited copper layer 6 deposit on the surface of the first electrode 13; the step (S2) of turning the first electric current off; the step (S3) of setting the first electrode 13 as the anode and the second electrode 12 as the cathode, after a predetermined period of time has passed after the first electric current has been turned off, and passing the second electric current between the first electrode 13 and the second electrode 12 to remove the copper compound layer formed on the electrodeposited copper layer 6 therefrom; and the step (S4) of setting the first electrode 13 as the cathode and the second electrode 12 as the anode, and passing the third electric current between the first electrode 13 and the second electrode 12 to make a re-electrodeposited copper layer 7 electrolytically deposit on the surface of the electrodeposited copper layer 6. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种电解精炼铜的方法,其可以去除沉积在电沉积铜表面上的薄膜(铜化合物层)。 解决方案:铜的电解精制方法是通过将由粗铜制成的第一电极和第二电极浸入容纳电解液的电解槽中而导入铜的电解精炼,包括:步骤(S1) 将第一电极13设为阴极,将第二电极12设为阳极,使第一电极13和第二电极12之间通过第一电流,使电沉积铜层6沉积在第一电极13的表面上; 转动第一电流的步骤(S2); 将第一电极13设为阳极,将第二电极12设定为阴极的步骤(S3)经过第一电流关闭后经过规定时间后,使第二电流通过第一电流 电极13和第二电极12,以从其上去除形成在电沉积铜层6上的铜化合物层; 以及将第一电极13设置为阴极,将第二电极12设为阳极的步骤(S4),并且使第三电流在第一电极13和第二电极12之间通过,以使电解沉积的铜层7电解 沉积在电沉积铜层6的表面上。版权所有(C)2011,JPO&INPIT