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    • 1. 发明专利
    • Method for removing residual slag from aluminum extruding die and apparatus therefor
    • 从铝挤出机及其设备中除去残留物的方法
    • JP2007196272A
    • 2007-08-09
    • JP2006019463
    • 2006-01-27
    • Kaimei Shindo KkOsaka Gas Co LtdOsaka Taika Renga Co Ltd大阪瓦斯株式会社大阪耐火煉瓦株式会社開明伸銅株式会社
    • TAKAMICHI SOICHIYAMAMOTO RYOSUKEMIURA TAKEO
    • B21C35/04B21C35/06
    • PROBLEM TO BE SOLVED: To provide a method for removing residual slag from an aluminum extruding die by which the residual slag is easily removed from the extruding die without requiring a great deal of time, processes and labors, and when heating sodium hydroxide, no gas nor sludge nor waste liquor are produced, and hence cost for treating them is not generated and environment is not adversely affected, and by which the residual slag of aluminum can be recoverd and reused without being discarded, and to provide an apparatus therefor. SOLUTION: By this method, the residual slag of aluminum or an aluminum alloy is separated and removed from the extruding die by heating the extruding die to which the residual slag of the aluminum or the aluminum alloy has been stuck up to 600-800°C by a heating means. The apparatus is provided with an approximately hermetically sealed heating chamber, the heating means for raising the temperature inside the heating chamber up to 600-800°C, a die arranging part for arranging the die inside the heating chamber and a residual slag recovering part for recovering the residual slag. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种从铝挤压模具中除去残渣的方法,通过该方法,可以容易地从挤出模具中除去残渣,而不需要大量的时间,工艺和劳动,并且当加热氢氧化钠 不会产生气体,污泥和废液,因此不会产生处理成本,环境不会受到不利影响,并且铝的残渣可以回收再利用而不被丢弃,并提供其设备 。 解决方案:通过这种方法,通过加热铝或铝合金的残渣达到600℃的挤出模具将铝或铝合金的残渣分离并除去, 800℃。 该装置设置有大致密封的加热室,用于将加热室内的温度升高至600-800℃的加热装置,用于在加热室内设置模具的模具排列部分和用于 回收残渣。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • セラミックチューブ式加熱炉
    • 陶瓷管式加热炉
    • JP2014209038A
    • 2014-11-06
    • JP2013085844
    • 2013-04-16
    • 大阪瓦斯株式会社Osaka Gas Co Ltd浅部工業株式会社Asabe Kogyo Kk
    • SHIMIZU YUKIOTAKAMICHI SOICHIASABE TETSUYA
    • F27B17/00F27B9/04F27B9/39F27D7/06
    • F27B17/00F27B9/04F27B9/39F27D7/06
    • 【課題】処理物の加熱を適正通り行わせるようにしながら、処理物の外表面の酸化スケールの生成を的確に防止することができるセラミックチューブ式加熱炉を提供する【解決手段】棒状で鋼製の複数の処理物Wを縦列状態で収納する処理物収納空間Kを内部に備える筒状に形成されたセラミックチューブ1が、一端側を処理物挿入口とし、かつ、他端側を処理物排出口3とする形態で、炉本体Hの内部に水平方向に沿う姿勢で配置され、酸化抑制ガス供給部Mから供給される酸化抑制ガスQを処理物収納空間Kに処理物排出口3を通して供給するガス供給体16が、セラミックチューブ1における処理物排出口3を形成する端部に密着させる状態で設けられ、ガス供給体16に、酸化抑制ガスQが内部を通流する多孔状のガス通流体18が、処理物収納空間Kからの輻射熱にて加熱される状態で設けられている。【選択図】図5
    • 要解决的问题:提供一种陶瓷管式加热炉,其可以在对被处理物的外表面进行适当加热的同时,精确地防止产生氧化皮,同时对被处理物进行加热。解决方案:一种圆柱形陶瓷管1,其中处理过的物体存储空间 形成串联状态的多个棒状钢处理对象物W的K以沿着水平方向的姿势设置在炉体H内,其形式为一端作为被处理体插入口, 另外,作为处理对象物排出口3,设置有从氧化抑制气体供给部M向被处理物体收纳空间K供给氧化抑制气体Q的气体供给体16, 同时与形成陶瓷管1的处理物体排出口3的端部紧密接触。多孔气体流动体18内部具有氧化吸收 同时气体Q流被安装在气体供应体16中,同时通过来自处理过的物体存储空间K的辐射热加热。
    • 7. 发明专利
    • heating furnace
    • 加热炉
    • JP2003329240A
    • 2003-11-19
    • JP2002131839
    • 2002-05-07
    • Osaka Gas Co LtdShinko Tanzo Kk大阪瓦斯株式会社振興鍛造株式会社
    • TAKAMICHI SOICHIOSAKO MASAKIKIYOHIRA KAZUMAINOUE HITOSHIYOSHIDA KAZUSHIGE
    • F23L15/00F23L7/00F27D17/00
    • Y02E20/348
    • PROBLEM TO BE SOLVED: To provide a heating furnace capable of saving energy while coming down in price. SOLUTION: This heating furnace is provided with a burner 3 into which fuel and combustion air are supplied and burning the fuel in a furnace 2, and a oxygen containing gas supplying portion 4 that is concentration adjusting oxygen containing gas for adjusting oxygen concentration of the furnace 2 into the furnace 2. An exhaust path 5 discharging combustion exhaust gas in the furnace 2 is provided. Anti-combustion air heat exchanging portion Kf heat-exchanging the combustion air supplied to the burner 3 with the combustion exhaust gas discharged by the exhaust path 5 and preheating that, and a anti- concentration adjusting oxygen containing gas heat exchanging portion Kd heat-exchanging concentration adjusting oxygen containing gas supplied to the oxygen containing gas supplying portion 4 with the combustion exhaust gas discharged by the exhaust path 5 and preheating that, are provided. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种能够在降价的同时节约能源的加热炉。 解决方案:该加热炉设置有燃烧器3,供给燃料和燃烧空气并在燃烧炉2中燃烧燃料;以及含氧气体供给部分4,其是用于调节氧浓度的浓度调节氧气 炉子2放入炉子2中。设置排出炉2中排放燃烧废气的排气路径5。 防燃空气热交换部Kf将供给燃烧器3的燃烧空气与排气通路5排出的燃烧废气进行热交换,并进行预热,以及防氧化气体热交换部Kd热交换 将供给到含氧气体供给部4的浓度调节含氧气体与排气通路5排出的燃烧废气进行预热。 版权所有(C)2004,JPO
    • 8. 发明专利
    • Pusher-type heating device
    • 推式加热装置
    • JP2013204064A
    • 2013-10-07
    • JP2012071938
    • 2012-03-27
    • Osaka Gas Co Ltd大阪瓦斯株式会社Asabe Kogyo Kk浅部工業株式会社
    • TAKAMICHI SOICHISHIMIZU YUKIOASABE TETSUYA
    • C21D1/00F27B9/22
    • PROBLEM TO BE SOLVED: To provide a technology for realizing a compact pusher-type heating device and emptying a treatment part 4 by pushing and discharging the whole amount of a workpiece A from the treatment part 4 by a push rod 21, without using a mock object.SOLUTION: In a pusher-type heating device, a pushing mechanism 20 is equipped with: a flexible chain body 22 that is connected to the push rod 21 and adjusts the length of a push rod 21 to a length equal to or longer than the length in a pushing direction of a treatment part 4; a driving part 15 that slides the chain body 22 along the pushing direction; a guide part 12 that slidably supports the push rod 21 along the pushing direction and controls deflection of the flexible chain body 22; and a leading part 23 that leads the chain body 22 and is arranged at a position superimposed with the guide part 12 in the pushing direction. The pusher-type heating device is capable of performing full discharging operation for discharging the whole amount of a workpiece A from the front end of the treatment part 4 in a state in which supply of the untreated workpiece A is stopped.
    • 要解决的问题:提供一种用于实现紧凑型推动式加热装置的技术,并且通过推杆21从处理部分4推压和排出整个量的工件A而排出处理部分4,而不使用模拟 物体。解决方案:在推动式加热装置中,推动机构20配备有:柔性链条主体22,其连接到推杆21并将推杆21的长度调节到等于或大于 处理部4的推压方向的长度; 驱动部15,其沿着推动方向滑动链体22; 引导部分12,其沿推动方向可滑动地支撑推杆21并控制柔性链体22的偏转; 以及引导部23,其引导链体22,并且布置在与引导部12重叠的位置处于推动方向。 推进式加热装置能够在停止未处理工件A的供给的状态下,从处理部4的前端排出整个工件A的全部排出动作。
    • 9. 发明专利
    • Vacuum distillation equipment
    • JP2004141726A
    • 2004-05-20
    • JP2002307280
    • 2002-10-22
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • MAEDA AKIOTAKAMICHI SOICHIOGAWA KIYOTOKASHU EIJI
    • B01D3/10
    • PROBLEM TO BE SOLVED: To provide a vacuum distillation equipment capable of achieving a reduction in the load related to maintenance and the enhancement of durability in a such a case that an acidic or alkaline treatment liquid to be destilled is set as a treatment object.
      SOLUTION: The vacuum distillation equipment is provided with a distillation vessel equipped with a heater H, which heats a treatment liquid to be distilled by the supply of a heating medium in the state of insertion in the distillation vessel, a suction means for applying sucking action to the vapor discharge passage connected to the distillation vessel to reduce the pressure in the distillation vessel and a condenser for liquefying the vapor flowing through the vapor discharge passage. The heater H is equipped with a bottomed cylindrical ceramic main body part 15 of which the leading end is closed and the heating medium return pipe 16 inserted in the main body part and constituted so as to supply the heating medium into the ceramic main body part 15 from its base end to discharge the same to the outside through the heating medium return pipe 16.
      COPYRIGHT: (C)2004,JPO
    • 10. 发明专利
    • Continuous annealing furnace equipped with alternate regeneration burner
    • 连续再生燃烧器连续退火炉
    • JP2006274432A
    • 2006-10-12
    • JP2005099628
    • 2005-03-30
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • WASA TAKAHIROTAKAMICHI SOICHI
    • C21D1/52C21D1/26C21D9/08F27B9/24F27D7/06
    • PROBLEM TO BE SOLVED: To provide a continuous annealing furnace equipped with alternate regeneration burners in which the intrusion of the outside air from an inlet to the inside of the furnace can be suppressed.
      SOLUTION: The continuous annealing furnace is constituted by forming the inlet 11 and an outlet 12 in the furnace 1, and installing a conveyor 3 for conveying a material 2 to be annealed from the inlet 11 to the inside of the furnace 1 and conveying the material from the outlet 12 to the outside of the furnace 1 to the furnace. The furnace 1 is internally equipped with the alternate regeneration burners 4 which comprise the paired burner 4a and 4b and perform evacuation with the other burner 4b (or 4a) during combustion with one burner 4a (or 4b). In the furnace 1, the vertical length h
      2 of the inlet 11 is formed to be nearly the same height as the height h
      1 of the material 2 to be annealed or a little longer than that.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种配备有替代再生燃烧器的连续退火炉,其中可以抑制外部空气从炉内入口到内部的侵入。

      解决方案:连续退火炉通过在炉1中形成入口11和出口12构成,并且安装用于将从进口11输送到炉1内部的待退火材料2的输送机3,以及 将材料从出口12输送到炉子1的外部到炉子。 炉1内部配备有替代的再生燃烧器4,其包括成对的燃烧器4a和4b,并在与一个燃烧器4a(或4b)燃烧期间用另一燃烧器4b(或4a)进行排气。 在炉1中,入口11的垂直长度h 2 形成为与要退火的材料2的高度h 1 几乎相同的高度,或 比这更长。 版权所有(C)2007,JPO&INPIT