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    • 64. 发明授权
    • Slag control shape release apparatus for molten metal vessels
    • 用于熔融金属容器的炉渣控制形状释放装置
    • US5645792A
    • 1997-07-08
    • US586967
    • 1996-01-16
    • Gary L. ForteDavid B. VinsonThomas Connors
    • Gary L. ForteDavid B. VinsonThomas Connors
    • B22D43/00B22D41/14
    • B22D43/002
    • A slag control shape is releasably mounted on a mounting member carried on a cover of a molten metal vessel. A movable member is carried on the cover and moved by an actuator into engagement with and moving the mounting member to move the mounting member to a position releasing the slag control shape for insertion into the molten metal vessel. The actuator is a fluid operated cylinder having an extensible piston rod which is engageable with the movable member to move the movable member into engagement with the mounting member. A valve actuated remotely from the cover supplies pressurized fluid to the cylinder to extend the piston rod. Alignment sensors are mounted on the cover and an actuator support to ensure that the cover is rotatably positioned on the molten metal vessel to align the actuator and movable members.
    • 渣控制形状可释放地安装在承载在熔融金属容器的盖上的安装构件上。 可动构件承载在盖上并由致动器移动以与安装构件接合并移动,以将安装构件移动到释放用于插入熔融金属容器的炉渣控制形状的位置。 致动器是具有可伸展活塞杆的流体操作的气缸,可伸缩的活塞杆可与可移动构件接合,以使可移动构件与安装构件接合。 从盖子远程启动的阀将加压流体提供给气缸以延伸活塞杆。 对准传感器安装在盖子和致动器支撑件上,以确保盖子可旋转地定位在熔融金属容器上以对准致动器和可移动构件。
    • 65. 发明授权
    • Tundish slag stopper with sealing rim
    • 中间包含密封圈的止渣器
    • US5382004A
    • 1995-01-17
    • US197510
    • 1994-02-16
    • Charles W. Connors, Sr.Madjid Soofi
    • Charles W. Connors, Sr.Madjid Soofi
    • B22D41/16B22D43/00
    • B22D43/004B22D41/16
    • A slag stopper assembly for use in a tundish vessel includes a chamber for reducing the flow of slag to the tundish drain and a stopper plunger for regulating the flow of liquid metal through the drain. The chamber includes a central opening for receiving the stopper plunger, and the stopper plunger is retractably movable relative to the chamber through the central opening. In accordance with the invention, a sealing rim is present on the stopper plunger, or on an inner wall of the chamber, or both, in order to reduce the retractable movement of the stopper plunger, reduce the amount of slag which enters the chamber as a result of such movement, and seal off the central opening of the chamber from the tundish drain when the stopper plunger is in a retracted position.
    • 用于中间包容器的炉渣塞组件包括用于减少炉渣流向中间包排水的室,以及用于通过排水管调节液态金属流的止动柱塞。 所述腔室包括用于接收止动器柱塞的中心开口,并且止动器柱塞可通过中心开口相对于腔室可收缩地移动。 根据本发明,为了减少止动柱塞的可伸缩运动,在止动器柱塞或腔室的内壁上或两者上都存在密封边缘,减少进入腔室的炉渣量,如 这种运动的结果,并且当止动器柱塞处于缩回位置时,密封中间包排水口的中心开口。
    • 69. 发明授权
    • Method and apparatus for the removal of slag from metallic melt bath in
a melting furnace
    • 用于从熔融炉中的金属熔池中除去炉渣的方法和装置
    • US5032177A
    • 1991-07-16
    • US554680
    • 1990-07-19
    • Hans-Otto JochemFranz Engelberg
    • Hans-Otto JochemFranz Engelberg
    • B22D43/00C22B9/02F27D3/15
    • F27D3/15C22B9/02Y02P10/234
    • By means of an electromagnetic stirrer there is produced in the melt within the melt chamber of the melting furnace a turbulent flow or pair of turbulent flows working in opposite directions and each having a substantially vertical turbulent flow axis. By means of this turbulent flow the upwardly floating slag is forced towards the outermost turbulent flow lines or regions and into an auxiliary chamber formed between a slag barricade and the furnace door. The melt can flow back from the auxiliary chamber into the melt chamber. The slag collected in the auxiliary chamber can be removed in predeterminate time intervals from the auxiliary chamber by means of a slag removal sliding or pusher element and disposed in an environmentally protective fashion in a slag container moved into position at the opened furnace door. The slag collected in the auxiliary chamber, upon opening of the furnace door, can be lifted upon a slag palette or platform with the aid of lifting or buoyant bodies above the lower edge of the furnace door opening.
    • 借助于电磁搅拌器,在熔化炉的熔体室内的熔体中产生湍流或一对湍流,其在相反的方向上工作,每一个具有基本垂直的湍流轴。 通过这种湍流,向上浮动的炉渣被迫朝向最外面的湍流流动线或区域并进入形成在炉渣路与炉门之间的辅助室中。 熔体可以从辅助室流回熔体室。 收集在辅助室中的炉渣可以以预定的时间间隔从辅助室中通过除渣滑动或推动元件去除,并以环境保护方式设置在移动到打开的炉门处的位置的炉渣容器中。 在炉门打开时收集在辅助室中的炉渣可借助于炉门开口下边缘上方的提升或浮力物体被提升到炉渣调色板或平台上。