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    • 7. 发明申请
    • Method for the Production of Hot-Rolled Steel Strip and Combined Casting and Rolling Plant for Carrying Out the Method
    • 生产热轧带钢和组合铸造轧制厂的方法
    • US20080276679A1
    • 2008-11-13
    • US12092905
    • 2006-11-03
    • Gerald EckerstorferGerald HohenbichlerJosef Maierl
    • Gerald EckerstorferGerald HohenbichlerJosef Maierl
    • B21B9/00B21B1/46
    • B21B13/22B21B1/463B21B9/00B21B15/005B21B45/004B21B2015/0014B21B2015/0057
    • A method for the production of a hot-rolled steel strip from a steel melt in a continuous manufacturing process, with an uninterrupted strip runthrough, comprising continuously casting a steel strand in a continuous casting mold of a continuous casting plant, roll-forming the cast steel strand in a first group of roll stands into a pre-rolled hot strip, further roll-forming the pre-rolled hot strip in a second group of roll stands into a hot-rolled steel strip, setting the pre-rolled hot strip to a rolling temperature between the first group of roll stands and the second group of roll stands in a temperature setting device, and winding of the hot-rolled steel strip into bundles or the division of the hot-rolled steel strip into sheets. In order to increase flexibility in the production of different steel qualities and to keep investment costs and operating costs low, descaling the pre-rolled hot strip immediately before its entry into the temperature setting device, holding the pre-rolled hot strip in a protective gas atmosphere in the temperature setting device, and after the pre-rolled hot strip runs through the temperature setting device, roll-forming the strip immediately thereafter in the second group of roll stands. Further, a combined casting and rolling plant for carrying out the method is disclosed.
    • 一种用于在连续制造过程中从钢熔体生产热轧钢带的方法,具有不间断的带材穿过,包括在连续铸造设备的连续铸造模具中连续铸造钢绞线,辊轧成型铸造 将第一组轧辊中的钢绞线放入预热的热轧带材中,将第二组辊轧机中的预轧热轧钢板进一步辊轧成热轧钢带,将预轧热轧带材设置为 在第一组辊架和第二组辊架之间的轧制温度在温度调节装置中,并且将热轧钢带卷绕成束或将热轧钢带分成板。 为了提高生产不同钢质的灵活性,保持投资成本和运行成本低,在进入温度调节装置之前,先将预热热带除锈,将预热的热轧带钢保持在保护气体中 温度调节装置中的气氛,并且在预先轧制的热轧带材穿过温度调节装置之后,立即在第二组辊架中滚轧成形条。 此外,公开了一种用于实施该方法的组合铸造和轧制设备。
    • 8. 发明授权
    • Two-roll casting device
    • 双辊铸造装置
    • US07156150B2
    • 2007-01-02
    • US10555564
    • 2004-04-22
    • Michael ZahediThomas StepanekGerald HohenbichlerFranz PlöckingerKarl Klima
    • Michael ZahediThomas StepanekGerald HohenbichlerFranz PlöckingerKarl Klima
    • B22D11/06B22D11/08
    • B22D11/0622B22D11/0697
    • A two-roll casting installation with two casting rolls which rotate in opposite directions about horizontal axes and forming a casting gap for forming and discharging a thin cast metal strip. A sealed housing which has a base and surrounds a conveying path for the metal strip which leaves the casting gap and which strip is from a vertical casting direction into an approximately horizontal conveying direction. Diverter devices divert the metal strip within the housing. A displaceable scrap collection container removes scrap and scale produced from the two-roll casting installation. To minimize the penetration of external air into the housing, the base of the housing, at least in a subregion, forms a collection trough for the scrap, which is part of an emptying device, and a displaceable scrap collection container is arranged in a receiving position below the emptying device.
    • 一种双辊铸造装置,其具有两个铸辊,其围绕水平轴线以相反方向旋转并且形成用于形成和排出薄铸金属带的铸造间隙。 密封的壳体,其具有基部并且围绕用于金属带的输送路径,所述输送路径离开铸造间隙,并且哪个钢带从垂直铸造方向进入大致水平的输送方向。 转向装置将金属带转移到外壳内。 可移动的废料收集容器可以清除从双辊铸造设备生产的废料和标尺。 为了最小化外部空气渗透到壳体中,至少在一个次区域中,壳体的底部形成用于废料的收集槽,废料是排空装置的一部分,并且可移动的废料收集容器设置在接收器 在排空装置下方的位置。
    • 9. 发明申请
    • Process for the continuous production of a thin steel strip
    • 连续生产薄钢带的工艺
    • US20050205233A1
    • 2005-09-22
    • US11107948
    • 2005-04-15
    • Gerald Hohenbichler
    • Gerald Hohenbichler
    • B22D11/06B22D11/16
    • B22D11/0674B22D11/0622B22D11/0651B22D11/0697B22D11/16
    • A process for the continuous production of a thin steel strip, in which a steel melt from a melt reservoir is introduced onto one or more, in particular two, cooled shaping wall surfaces which move synchronously with a casting strip, in particular rotate in the form of casting rolls and at least partially solidifies at the shaping wall surface to form the casting strip. The steel melt, in terms of the crucial alloying constituents, contains less than 1% by weight of Ni and less than 1% by weight of Cr and less than 0.8% by weight, in particular less than 0.4% by weight, of C and at least 0.55% by weight of Mn. In the process, recesses are arranged on the shaping wall surface in a random pattern, distributed uniformly over the shaping wall surface, and the roll separating force (RSF) at the shaping wall surface is set to a value of between 5 and 150 N/mm, in particular between 5 and 100 N/mm.
    • 用于连续生产薄钢带的方法,其中来自熔体储存器的钢熔体被引入一个或多个特别是两个与铸造带同步移动的冷却成型壁表面,特别是以形式 的铸辊,并且在成形壁表面处至少部分地固化以形成铸造带。 根据关键合金成分,钢熔体含有小于1重量%的Ni和小于1重量%的Cr和小于0.8重量%,特别是小于0.4重量%的C和 至少0.55重量%的Mn。 在该过程中,凹陷以无规图案布置在成形壁表面上,均匀地分布在成形壁表面上,并且成形壁表面处的辊分离力(RSF)设定为5至150N / 特别是在5到100N / mm之间。
    • 10. 发明申请
    • Tun dish and method for production of a metal strip of high purity
    • 炖菜和生产高纯度金属条的方法
    • US20050067134A1
    • 2005-03-31
    • US10498797
    • 2002-12-04
    • Markus BrummayerGerald EckerstorferGerald HohenbichlerKarl Moerwald
    • Markus BrummayerGerald EckerstorferGerald HohenbichlerKarl Moerwald
    • B22D11/10B22D11/14B22D11/18B22D41/08
    • B22D11/147B22D11/10B22D41/08
    • To achieve the highest possible separation rate for foreign particles in a tundish combined, at the same time, with a minimized level of inclusions, the refractory-lined interior space of the tundish, as a function of an operating bath level (h), satisfies the condition that a dimensionless ratio (κ) of the refractory-lined surface area (Aref) to the filling volume (V) which is delimited by this refractory-lined surface area and the bath-level-dependent exposed surface area (ATop) and results from the relationship κ = A ref ( V ) 2 3 be between 3.83 and 4.39.
    • 为了实现中间包组合中的外来颗粒的最高分离速率,同时以最小程度的夹杂物,中间包的耐火材料内部空间作为操作浴液位(h)的函数满足 耐火材料衬里表面积(Aref)与填充体积(V)的无量纲比(kappa)由该耐火材料衬里表面积和浴层依赖暴露表面积(ATop)界定的条件和 关系的结果 1 kappa = A 参考 V 2 3 在3.83和4.39之间。