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    • 30. 发明授权
    • Systems for flow control in electroslag refining process
    • 电渣精炼工艺流量控制系统
    • US06250522B1
    • 2001-06-26
    • US08537966
    • 1995-10-02
    • William Thomas Carter, Jr.Mark Gilbert BenzRobert John ZabalaPaul Leonard DupreeBruce Alan Knudsen
    • William Thomas Carter, Jr.Mark Gilbert BenzRobert John ZabalaPaul Leonard DupreeBruce Alan Knudsen
    • B22D4108
    • B22D23/10
    • A system for controlling the flow rate of the stream from an electroslag refining apparatus is taught. The system includes the introduction of unrefined metal into an electroslag refining process in which the unrefined metal is first melted at the upper surface of the refining slag. The molten metal is refined as it passes through the molten slag. The refined metal is collected in a cold hearth apparatus having a skull of refined metal formed on the surface of the cold hearth for protecting the cold hearth from the leaching action of the refined molten metal. A cold finger bottom pour spout is formed at the bottom of the cold hearth to permit dispensing of molten refined metal from the cold hearth. The flow rate of molten metal through the cold finger apparatus is controlled by coordinating, among other parameters: the rate of melting of the unrefined metal; the hydrostatic head of molten metal and slag above the bottom pour cold finger orifice; the rate of induction heat supplied to the metal within the cold finger apparatus; the rate of heat removal from the metal within the cold finger apparatus through the cold finger apparatus itself and through adjacent gas cooling means; and by applying electromagnetic force to selectively speed up, slow down and/or interrupt the flow of metal through the cold finger apparatus via an electromagnetic orifice, preferably utilizing a processor, such as a computer.
    • 教导了一种用于控制来自电渣精炼装置的流的流量的系统。 该系统包括将未精制金属引入电渣精炼工艺中,其中未精制金属首先在精炼炉渣的上表面熔化。 当熔融金属通过熔渣时被精炼。 精制金属被收集在具有形成在冷柜的表面上的精制金属颅骨的冷炉床装置中,用于保护冷炉免受精炼熔融金属的浸出作用。 在冷底部的底部形成冷手指底部倒出口,以允许从冷底座分配熔融精炼金属。 通过冷指装置的熔融金属的流速,除了其他参数之外还通过配合来控制:未精制金属的熔化速率; 熔融金属的静水头和底部上方的炉渣倒入冷指孔; 提供给冷指装置内的金属的感应热的速率; 通过冷指装置本身和通过相邻的气体冷却装置从冷指装置中的金属排出的热量; 并且通过施加电磁力来选择性地加速,减慢和/或中断穿过冷指装置的金属流经由电磁孔,优选利用诸如计算机的处理器。