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    • 2. 发明授权
    • Reversing cold rolling apparatus
    • 反转冷轧设备
    • US06237205B1
    • 2001-05-29
    • US09440717
    • 1999-11-16
    • Yoshitaka YoshimuraHiroyuki KaitoAkira Umetsu
    • Yoshitaka YoshimuraHiroyuki KaitoAkira Umetsu
    • B23P2300
    • B21C47/245B21B1/36B21B13/147B21B15/0085B21B2015/0057Y10T29/5197Y10T29/5198
    • Various conventional problems produced by the reason that the coil preparatory line and the reversing cold rolling line are independent of each other are to be solved by unifying the both lines without reducing efficiency of rolling operation. A reversing rolling apparatus according to the present invention includes a first and a second coiling-uncoiling units supported by a common frame, disposed between a reversing rolling mill for cold rolling steel strips and a joining unit for joining the trailing end portion of a preceding steel strip un-coiled by a uncoiling unit to the leading end portion of a following steel strip directly or via a dummy strip, or for joining dummy strips to end portions of a steel strip so that positions of both the coiling-uncoiling units are to be switchable.
    • 通过在线圈预备线和反转冷轧线彼此独立的原因产生的各种常规问题通过在不降低轧制操作的效率的情况下统一两条线来解决。 根据本发明的反转轧制装置包括:第一和第二卷取开卷单元,其被公共框架支撑,设置在用于冷轧钢带的反向轧制机和用于连接前钢的后端部分的接合单元 通过开卷单元将钢带直接或经由假条带未卷绕到随后的钢带的前端部,或者将假条带连接到钢带的端部部分,使得两个卷取 - 开卷单元的位置为 可切换
    • 8. 发明授权
    • Method for blowing gas from below into molten steel in refining vessel
    • 从精炼容器中将气体吹入钢水的方法
    • US4266970A
    • 1981-05-12
    • US103177
    • 1979-12-13
    • Shoji IwaokaHiroyuki KaitoShigeo AnzaiSusumu UshigomeYoshiaki WatanabeNobuyuki Mimura
    • Shoji IwaokaHiroyuki KaitoShigeo AnzaiSusumu UshigomeYoshiaki WatanabeNobuyuki Mimura
    • B22D1/00C21C5/34
    • B22D1/005
    • A method for blowing a gas from below into a molten steel in a refining vessel, which comprises: using a refining vessel including at least one gas blowing aperture provided in the bottom wall thereof and a frustoconical plug matching with said aperture, releasably inserted into said gas blowing aperture, which has a small-diameter bore having a diameter within the range of from 0.5 to 6.0 mm and a length within the range of from 60 to 700 mm; closing the top end of said bore of said plug opening into said vessel with a granular packing easily removable by the pressure of a gas blown, thereby ensuring prevention of a molten steel received in said vessel from penetrating into said bore during receiving said molten steel into said vessel; after receiving a molten steel into said vessel, blowing from below a gas having a pressure of over the static pressure of said received molten steel through said bore of said plug into said molten steel, thereby removing said packing to effect a prescribed gas blowing into said molten steel; and, after discontinuing said gas blowing, causing a portion of said molten steel in said vessel to penetrate by gravity into said bore of said plug to solidify said molten steel in said bore, thereby closing said bore to ensure prevention of said molten steel in said vessel from flowing out from said vessel.
    • 一种从精炼容器中将气体吹入钢水的方法,其特征在于,包括:使用精炼容器,该精炼容器包括设置在其底壁中的至少一个气体吹入口和与所述孔配合的截头圆锥形塞,可释放地插入所述 气体吹入孔具有直径在0.5至6.0mm范围内且长度在60至700mm范围内的小直径孔; 将所述塞子开口的所述孔的顶端封闭到所述容器中,其中颗粒状填料可通过吹入气体的压力容易地移除,从而确保在接收所述钢水期间防止容纳在所述容器中的钢水渗透到所述孔中 说船 在将钢水接收到所述容器中之后,通过所述塞子的所述孔将具有超过所述接收的钢水的静压力的压力的气体从下方吹入所述钢水中,从而除去所述填料,以使规定的气体吹入所述 钢水 并且在停止所述气体吹送之后,使所述容器中的所述钢水的一部分通过重力穿透所述塞的所述孔,以使所述孔中的所述钢水固化,从而关闭所述孔,以确保防止所述钢 容器从所述容器流出。