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    • 1. 发明专利
    • Anode casting apparatus for electrolysis, and temperature control method for anode mold therefor
    • 用于电解的阳极铸造设备及其阳极模具的温度控制方法
    • JP2012236206A
    • 2012-12-06
    • JP2011106087
    • 2011-05-11
    • Sumitomo Metal Mining Co Ltd住友金属鉱山株式会社
    • HOSHINO YOSUKEYAMAMOTO KEISUKETANABE AKIHIROTANI AKIHISATSUZUKI KOJI
    • B22D25/04
    • PROBLEM TO BE SOLVED: To perform adequate temperature control of an anode mold on a turn table for anode casting for electrolysis to properly cool the anode mold, so that the life of the anode mold is extended and an anode for electrolysis of a predetermined shape can be efficiently casted.SOLUTION: Before a mold release agent is sprayed by a mold release agent spray part 12 to an anode mold 2 from which an anode for electrolysis is peeled off by a stripping machine 11, temperature of the anode mold 2 is measured by a surface thermometer 21, and the anode mold 2 at temperature higher than prescribed temperature is detected by a detection processing part 22. In an anode casting process for electrolysis of the next time, by performing water-spray-cooling at a mold cooling part 23 to the anode mold 2 at temperature higher than the prescribed temperature immediately after the anode for electrolysis is peeled off by the stripping machine 11, the anode mold 2 is reliably cooled to the prescribed temperature to individually perform temperature control of each anode mold 2 on the turn table 1.
    • 要解决的问题:为了对用于电解的阳极铸造用的转台上的阳极模具进行适当的温度控制以适当地冷却阳极模具,使得阳极模具的寿命延长,并且用于电解的阳极 可以有效地铸造预定的形状。 解决方案:在脱模剂通过脱模剂喷射部件12喷涂到阳极模具2之前,通过剥离机11从其中剥离用于电解的阳极的阳极模具2,阳极模具2的温度通过 表面温度计21和温度高于规定温度的阳极模具2由检测处理部22检测。在下一次的电解用阳极铸造工序中,通过在模具冷却部23进行水喷雾冷却, 阳极模2在温度高于电解用阳极后的规定温度的情况下,由剥离机11剥离,将阳极模2可靠地冷却至规定温度,以分别对各阳极模2的转弯进行温度控制 表1.版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Mold for casting anode for electrolysis
    • 铸造阳极模具用于电解
    • JP2010005645A
    • 2010-01-14
    • JP2008166193
    • 2008-06-25
    • Sumitomo Metal Mining Co Ltd住友金属鉱山株式会社
    • MORITA KOSEIYAMAMOTO KEISUKETSUZUKI KOJI
    • B22D25/04
    • PROBLEM TO BE SOLVED: To provide a mold for a casting anode for electrolysis capable of suppressing the strain rate, and suppressing generation of flush or casting trim on an outer edge of the anode for electrolysis, and thin ear of the anode for electrolysis.
      SOLUTION: Two equidistance parallel line groups in which ridges extend obliquely to an outer frame part and are across each other are formed on the entire surface of a cast-in surface or a part thereof, and linear projecting parts of the height of 3-10 mm are provided thereon. Further, the ridges of the linear projecting parts form two equidistance parallel line groups which extend obliquely to the outer frame part and are across each other. Further, the linear projecting parts are formed in a vicinity of a center part at which molten crude copper is poured and in a part except a vicinity of a hole for bottom casting pin of the cast-in surface.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够抑制应变率的电解用浇铸阳极用模具,抑制用于电解用阳极的外缘的冲压或铸造件的产生,以及阳极的薄耳 电解。 解决方案:在铸造表面或其一部分的整个表面上形成有两个等距平行线组,其中脊部倾斜延伸到外框架部分并且彼此相对延伸,并且线形突出部分的高度 3-10毫米。 此外,线状突出部的脊部形成两个等距平行的线组,它们相对于外框部分倾斜地延伸并彼此相对。 此外,直线突出部分形成在浇铸熔融粗铜的中心部分附近以及铸造表面的底铸销孔附近的部分附近。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Repair method of copper furnace tuyere brick
    • 铜烤炉修理方法
    • JP2008215736A
    • 2008-09-18
    • JP2007055078
    • 2007-03-06
    • Sumitomo Metal Mining Co Ltd住友金属鉱山株式会社
    • TAKEBAYASHI MASARUYAMAMOTO KEISUKETSUZUKI KOJIMORI KAZUHIRO
    • F27D1/16
    • PROBLEM TO BE SOLVED: To provide a repair method of a tuyere brick capable of performing repair without re-piling up bricks when a residual thickness of the tuyere brick of the copper furnace reaches a prescribed thickness, and reducing the number of times of re-piling work.
      SOLUTION: A metallic pipe 9 is inserted from a tuyere 6 of the copper furnace, the furnace is rotated so that the tuyere 6 is positioned at a lower part of the furnace, and then a fireproof kneaded material 10 having a weight ratio of mortar:refractory powder of 1:1 to 3:1 is charged through the metallic pipe 9, thus the fireproof kneaded material 10 is filled in a damaged part of the brick 2, and sintered and solidified. An air supply opening 12 may be formed to supply the cooling air into the metallic pipe 9 for preventing temperature rise and seizing of the metallic pipe 9 before charging the fireproof kneaded material 10.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种当铜炉的风口砖的剩余厚度达到规定厚度时能够进行修理而不重新堆积砖的风口砖的修理方法,并且减少次数 的重组工作。 解决方案:从铜炉的风口6插入金属管9,使炉子旋转,使得风口6位于炉的下部,然后将具有重量比的耐火捏合材料10 的砂浆:通过金属管9填充1:1〜3:1的耐火材料粉末,将耐火混炼材料10填充到砖2的损坏部分中,烧结固化。 可以形成供气开口12,以将冷却空气供应到金属管9中,以防止在对防火捏合材料10充电之前金属管9的升温和卡死。版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • アノード鋳張り防止方法と、アノード鋳張り防止用のアノード鋳型乾燥用空気配管
    • 用于阳极喷雾预防的阳极喷雾模型的阳极冲洗预防方法和气动管道
    • JP2015047633A
    • 2015-03-16
    • JP2013183007
    • 2013-09-04
    • 住友金属鉱山株式会社Sumitomo Metal Mining Co Ltd
    • OHARA TAKUYANAKANO OSAMUMORI KAZUHIROTSUZUKI KOJI
    • B22D25/04B22C9/14B22D21/00
    • 【課題】メンテナンスの容易なアノード鋳張り防止用の鋳型乾燥用空気配管を用いたアノード鋳張り防止方法を提供する。【解決手段】銅製錬のアノード製造工程における空気によりアノード鋳型を乾燥して鋳張りを防止するアノード鋳張り防止方法であって、1対の腕部と、その1対の腕部を連結する胴体部からなるコの字型形状配管と、1対の腕部の先端に各々吹き出し孔を備え、且つ胴体部に設けられた少なくとも1ヶ所の空気受入用接続端から構成されるアノード鋳型乾燥用空気配管を用い、その吹き出し孔からの空気がアノード鋳型の鋳込面の側面壁に沿って流れて側面壁底部に堆積した離型剤にあたるように、アノード鋳型乾燥用空気配管を、その胴体部が鋳型の鋳込面頂部直上及び1対の腕部が側面壁の縁上に沿って取り付け、吹き出し孔から吹き出した空気により堆積した離型剤にあてることを特徴とする。【選択図】図5
    • 要解决的问题:提供一种使用气动管道进行阳极冲洗预防方法,用于干燥用于阳极冲洗的阳极冲洗防止易于维护。解决方案:一种阳极冲洗预防方法,用于通过在空气中干燥具有空气的阳极铸模来防止阳极冲洗 铜精炼的阳极制造工艺的特征在于,由一对臂部形成的U形管道和连接一对臂部的主体部分和用于干燥分别装有吹出孔的阳极铸模的气动管道 在一对臂部的前端部并且由设置在主体部的至少一个空气接收连接端构成,用于将用于干燥阳极铸模的气动管道与刚好位于铸造面顶部的主体部分 的铸模和沿着侧面壁的顶部附接的一对臂,使得来自吹出孔的空气撞击积聚在侧面壁bot上的脱模剂 通过沿着阳极铸模的铸造面的侧面瓦边延伸,从而撞击由吹出孔吹出的空气积聚的脱模剂。
    • 5. 发明专利
    • Level adjustment fixture of casting mold
    • 铸造模具水平调整件
    • JP2009045647A
    • 2009-03-05
    • JP2007213303
    • 2007-08-20
    • Sumitomo Metal Mining Co Ltd住友金属鉱山株式会社
    • TSUZUKI KOJIKUBO NAOKITAKEBAYASHI MASARUMURAKAMI MASATOSHI
    • B22D25/04B22D25/02
    • PROBLEM TO BE SOLVED: To provide a level adjustment fixture of a casting mold where the horizontality of a mold in an anode casting machine is stably maintained for uniformizing the thickness of an anode.
      SOLUTION: The level adjustment fixture (17) of a casting mold is composed of: a rack (11) fixed to the lower structure of an anode casting machine; a fixed pin stand (13) mounted on the rack (11) and provided with an upward pin (18); a liner iron plate (14) for height adjustment having a hole (20) through which the pin (18) passes, and stacked on the fixed pin stand (13) in a state where the pin (18) is inserted into the hole (20); and a liner fix stand (15) having a hole (21) through which the pin (18) passes, mounted on the liner iron plate (14) in a state where the pin (18) is inserted into the hole (21), further provided with a mounting face (22) to be mounted with a mold (5) at the upper face, having a shape insertable into the rack (11), and inserted and fitted to the rack (11).
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种铸模的液位调节固定装置,其中稳定地保持阳极铸造机中的模具的水平度以使阳极的厚度均匀化。 解决方案:铸模的液位调节固定件(17)由固定到阳极铸造机的下部结构的齿条(11)组成; 安装在所述齿条(11)上并具有向上销(18)的固定销架(13); 用于高度调节的衬板铁板(14)具有孔(20),销(18)穿过孔,并且在销(18)插入孔中的状态下堆叠在固定销座(13)上 20); 以及在销(18)插入孔(21)的状态下,具有安装在衬板铁板(14)上的销(18)穿过的孔(21)的衬垫固定架(15) 还具有在上表面安装有模具(5)的安装面(22),具有插入到所述齿条(11)中的形状,并插入并安装到所述齿条(11)上。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Horizontal converter
    • 水平转换器
    • JP2014084510A
    • 2014-05-12
    • JP2012235767
    • 2012-10-25
    • Sumitomo Metal Mining Co Ltd住友金属鉱山株式会社
    • NAKANO OSAMUTSUZUKI KOJIMORI KAZUHIRO
    • C22B15/06
    • PROBLEM TO BE SOLVED: To provide a horizontal converter (PS converter) which is used in smelting of nonferrous metals and can suppress splash of molten metal from a charging hole when the volume of air blown from a tuyere is increased to a needed volume to increase the productivity.SOLUTION: A PS converter 10 comprises a cylindrical converter body 1 of an inside diameter of 1,400-2,100 mm arranged so that the direction of the central axis is horizontal, a plurality of tuyeres 3 for blowing of air for smelting formed in the side surface of the lower part of the converter body 1 in such a way as to penetrate the converter body 1 mutually in parallel and a charging hole 2 for charging a metal material formed in the side surface in the upper part of the converter body 1. The converter body 1 is arranged in a rollable way with the central axis as the rotation axis. When the converter body 1 is fixed in such a way that the penetration direction of the tuyeres 3 is horizontal, the horizontal distance between the center of the opening surface of the tuyeres 3 on the inside wall side of the converter body 1 and the lower end part 2a of the opening surface of the charging hole 2 on the inside wall side of the converter body 1 is 200 mm or longer.
    • 要解决的问题:提供一种用于冶炼有色金属的水平转换器(PS转换器),并且当从风口吹出的空气的体积增加到所需的体积以增加时,可以抑制熔融金属从充电孔的飞溅 生产率。解决方案:PS转换器10包括内径为1,400-2,100mm的圆柱形转换器主体1,其布置成使得中心轴线的方向是水平的,多个用于吹制熔融空气的风口3形成在 转换器主体1的下部的侧面以相互平行的方式贯通转换器主体1,以及用于对形成在转换器主体1的上部的侧面的金属材料进行充电的充电孔2。 转换体1以中心轴为旋转轴的方式配置。 当转子体1被固定成风嘴3的穿透方向为水平方向时,转子体1的内壁侧的风口3的开口表面的中心与下端之间的水平距离 转换器主体1的内壁侧的充电孔2的开口面的部分2a为200mm以上。
    • 8. 发明专利
    • Method and device for casting anode for copper electrolysis
    • 用于铸造阳极的铜电解方法和装置
    • JP2012183556A
    • 2012-09-27
    • JP2011048348
    • 2011-03-04
    • Sumitomo Metal Mining Co Ltd住友金属鉱山株式会社
    • TANABE AKIHIROYAMAMOTO KEISUKEHOSHINO YOSUKETANI AKIHISATSUZUKI KOJI
    • B22D25/04B22C3/00
    • PROBLEM TO BE SOLVED: To provide a method and a device for casting an anode for copper electrolysis in which the deviation of cooling speed within a copper anode in the central part and the peripheral part of a mold is relaxed upon casting the anode, the cracks of the peripheral part in the anode is suppressed, further, flash is not deteriorated, and cost is low as well.SOLUTION: The method for casting the anode for copper electrolysis is characterized in that, when the anode for copper electrolysis having a pair of ear parts for drooping on both the sides of the top part in the body is cast by the mold on an intermittently rotatively moving turn table, a releasing agent having thermal conductivity higher than that of barium sulfate is sprayed over the central part of the mold, and a releasing agent having thermal conductivity lower than the releasing agent having high thermal conductivity is sprayed over the peripheral part of the mold.
    • 要解决的问题:提供一种用于铸造铜电解阳极的方法和装置,其中铸造阳极时在模具的中心部分和周边部分的铜阳极内的冷却速度的偏差被松弛 ,阳极中的周边部分的裂纹被抑制,闪光不会劣化,成本也低。 解决方案:用于铜电解的阳极的浇铸方法的特征在于,当具有用于在主体的顶部两侧下垂的一对耳部的铜电解阳极通过模具浇铸时 间歇地旋转的转台,具有比硫酸钡高的导热性的脱模剂喷射到模具的中心部分,并且具有低于具有高导热性的脱模剂的导热率的脱模剂喷射在外围 部分模具。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Method for treating scrap
    • 处理刮刀的方法
    • JP2011184759A
    • 2011-09-22
    • JP2010052563
    • 2010-03-10
    • Sumitomo Metal Mining Co Ltd住友金属鉱山株式会社
    • NAKANO OSAMUMORI KAZUHIROTSUZUKI KOJITANI AKIHISAKASHU HIROHISA
    • C22B7/00B09B3/00C22B1/00C22B15/06
    • Y02P10/214Y02P10/234Y02W30/78Y02W30/822
    • PROBLEM TO BE SOLVED: To provide a method which treats scrap within a waiting time of a refining furnace to recover valuable metal. SOLUTION: In the method for treating scrap using a melting furnace 1 within a waiting time from the exhaust of a melt to the receiving of the following melt, inflammable scraps 2 including one or more kinds selected from the group consisting of woods, papers, wastes, oil-fitted scraps and rubbers are charged to the refining furnace 1, and thereafter, incombustible scraps 3 including one or more kinds selected from the group consisting of vinyl chloride resins, waste catalysts, filter cloths, water-containing cakes and print circuit boards are charged so as to be superposed on the inflammable scraps 2. The charging amount of the incombustible scraps 3 is preferably controlled to ≤3/20 of the charging amount of the inflammable scraps 2 on a mass basis. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种在精炼炉的等待时间内处理废料以回收有价值的金属的方法。 解决方案:在从熔融物排气到接收下列熔体的等待时间内使用熔化炉1处理废料的方法中,包括选自木材, 将纸,废料,装有油的废料和橡胶装入精炼炉1,然后装入包括选自氯乙烯树脂,废催化剂,滤布,含水蛋糕中的一种或多种的不燃性废料3, 打印电路板被充电以便重叠在可燃废料2上。不燃性废料3的装料量优选以质量基础控制在可燃废料2的装料量的≤3/ 20。 版权所有(C)2011,JPO&INPIT