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    • 2. 发明申请
    • APPARATUS FOR MAKING THIN HOT STRIP
    • 制造薄条的设备
    • US20120175076A1
    • 2012-07-12
    • US13388410
    • 2010-08-11
    • Juergen SeidelErnst WindhausMarkus ReifferscheidJuergen Mueller
    • Juergen SeidelErnst WindhausMarkus ReifferscheidJuergen Mueller
    • B22D11/12
    • B21B1/463B21B27/032B21B2267/24
    • The invention relates to an apparatus for making a thin hot strip (1) by roll casting in a continuous process, comprising a casting machine (2) in which first a thin slab (3) is cast, at least one rolling train (4, 5) downstream of the casting machine (2) and in which the thin slab (3) is rolled using the primary heat of the casting process, and a plurality of finish-rolling stands (7) that, relative to a travel direction (F) of the strip (1), are arranged in a downstream region (6) and that can roll the strip (1) with work rolls (8) to a final thickness. To improve the manufacture of a thin hot strip in the continuous process, the invention provides that the work rolls (8) of the finish-rolling stands (7) have a low-wear roll surface. Furthermore, the invention relates to a method of making a thin hot strip (1) by roll casting in a continuous process.
    • 本发明涉及一种通过连铸工艺制造薄热轧钢板(1)的装置,包括铸造机(2),其中首先铸造薄板坯(3),至少一个轧制机组(4) 5)在铸造机(2)的下游,并且使用铸造工艺的一次热轧制薄板坯(3),以及多个精轧机架(7),其相对于行进方向(F (1)的布置在下游区域(6)中,并且可以用工作辊(8)将带材(1)卷成最终厚度。 为了在连续方法中改进薄热轧钢带的制造,本发明提供了精轧机架(7)的工作辊(8)具有低磨损辊表面。 此外,本发明涉及通过在连续过程中的辊铸制造薄热轧带材(1)的方法。
    • 3. 发明申请
    • METHOD FOR THE PRODUCTION OF A STRIP MADE OF STEEL
    • 生产钢条的方法
    • US20100163205A1
    • 2010-07-01
    • US12733041
    • 2008-07-31
    • Jürgen SeidelErnst WindhausMarkus ReifferscheidJürgen Müller
    • Jürgen SeidelErnst WindhausMarkus ReifferscheidJürgen Müller
    • B22D11/16B22D11/06
    • B21B1/463B21B13/22B21B37/74B21B2261/20B21B2275/06C21D8/0226C21D11/005
    • The invention relates to a method for fabricating a steel strip (1), in which firstly a slab (3) is cast in a caster (2), with the slab (3) exiting the caster (2) at a casting speed (v) with a given slab thickness (H), with the slab (3) then being rolled to form a strip (1) in at least one rolling train (4, 5) having a number of rolling stands (6, 7) and the strip (1) having a final thickness (dE) downstream of the last rolling stand (6, 7). In order to maintain optimum processing conditions and be able to react to unexpected events, the invention provides the following method steps: a) providing a functional relationship in a machine controller (8) between the casting speed (v) or the mass flow as a product of casting speed and slab thickness (v×H) or as a product of strip speed and strip thickness and the strip temperature (T) downstream of the last rolling stand (7), which rolls the strip (1), for a different number (n) of active rolling stands (7) and different final thicknesses; b) determining or specifying the casting speed (v) or the mass flow (v×H) and feeding the determined value into the machine controller (8); c) determining the optimum number of active rolling stands (7) and the final thicknesses and thickness reductions which can be rolled with them in the rolling train using the functional profiles stored in accordance with step a) in the machine controller (8) in order to achieve a desired strip temperature (T) downstream of the last active rolling stand (7) at the given casting speed (v) or at the given mass flow (v×H); d) raising a number of rolling stands (7) in the rolling train (5) so that only the number of rolling stands (7) determined in accordance with step c) are active.
    • 本发明涉及一种用于制造钢带(1)的方法,其中首先将板坯(3)铸造在脚轮(2)中,其中板坯(3)以铸造速度(v)离开脚轮(2) )具有给定的板坯厚度(H),然后在具有多个轧机机架(6,7)的至少一个轧制机组(4,5)中轧制板坯(3)以形成带材(1),并且 带材(1)具有最后轧制机架(6,7)下游的最终厚度(dE)。 为了保持最佳的加工条件并能够对突发事件作出反应,本发明提供以下方法步骤:a)在铸造速度(v)或质量流量之间的机器控制器(8)中提供作为 铸造速度和板坯厚度(v×H)的产品,或作为带材速度和带材厚度的产品以及将带材(1)滚动的最后轧制机架(7)的下游的带材温度(T)不同 数量(n)活动轧机(7)和不同的最终厚度; b)确定或指定铸造速度(v)或质量流量(v×H)并将确定的值输送到机器控制器(8)中; c)使用根据机器控制器(8)中的步骤a)存储的功能轮廓来确定活动轧机机架(7)的最佳数量以及可以在轧制车间中用它们轧制的最终厚度和厚度减小量 以给定的浇铸速度(v)或给定质量流(v×H)在最后的活动轧制机架(7)下游获得期望的带材温度(T); d)在轧制系(5)中提升多台轧机机架(7),使得只有根据步骤c)确定的轧机机座数目是有效的。
    • 4. 发明授权
    • Metal-strip guiding apparatus
    • 金属条引导装置
    • US08256494B2
    • 2012-09-04
    • US13284875
    • 2011-10-29
    • Markus ReifferscheidJuergen Seidel
    • Markus ReifferscheidJuergen Seidel
    • B22D11/128
    • B22D11/128B22D11/1287
    • A continuous-casting unit produces a longitudinally extending and traveling strand having a solid shell and a liquid core. A strand-guiding apparatus has a plurality of longitudinally spaced section frames and respective pairs of roller assemblies carried on the frames and transversely flanking and bearing transversely on the strand. Each pair forms a gap through which the strand passes, and each roller assembly is formed by two aligned subrollers. A respective center is provided bearing between the subrollers of each roller assembly and bracing inner ends of the respective subrollers transversely against the respective frame. Respective outer rollers at outer ends of the subrollers of each roller assembly brace the respective outer ends transversely against the respective frame. The subrollers are shaped or supported on the respective frame such that in an unloaded condition the gap is transversely narrower at the center bearing than at the outer bearing.
    • 连续铸造单元产生具有固体壳和液芯的纵向延伸和行进的股线。 股线引导装置具有多个纵向隔开的部分框架和相应的成对的辊子组件,其承载在框架上并且横向地侧向并且横向地承载在股线上。 每一对形成缝合物通过该间隙,并且每个辊组件由两个对准的助推器形成。 相应的中心设置在每个辊组件的副推杆之间并且相应的副卷轴的支撑内端横向于相应的框架。 每个辊组件的副卷轴的外端处的各个外辊将相应的外端部横向地支撑在相应的框架上。 分条机在相应的框架上成形或支撑,使得在无负载状态下,中心轴承处的间隙在横向上比在外轴承处窄。
    • 5. 发明申请
    • METAL-STRIP GUIDING APPARATUS
    • 金属条指导装置
    • US20120043048A1
    • 2012-02-23
    • US13284875
    • 2011-10-29
    • Markus ReifferscheidJuergen Seidel
    • Markus ReifferscheidJuergen Seidel
    • B22D11/12
    • B22D11/128B22D11/1287
    • A continuous-casting unit produces a longitudinally extending and traveling strand having a solid shell and a liquid core. A strand-guiding apparatus has a plurality of longitudinally spaced section frames and respective pairs of roller assemblies carried on the frames and transversely flanking and bearing transversely on the strand. Each pair forms a gap through which the strand passes, and each roller assembly is formed by two aligned subrollers. A respective center is provided bearing between the subrollers of each roller assembly and bracing inner ends of the respective subrollers transversely against the respective frame. Respective outer rollers at outer ends of the subrollers of each roller assembly brace the respective outer ends transversely against the respective frame. The subrollers are shaped or supported on the respective frame such that in an unloaded condition the gap is transversely narrower at the center bearing than at the outer bearing.
    • 连续铸造单元产生具有固体壳和液芯的纵向延伸和行进的股线。 股线引导装置具有多个纵向隔开的部分框架和相应的成对的辊子组件,其承载在框架上并且横向地侧向并且横向地承载在股线上。 每一对形成缝合物通过该间隙,并且每个辊组件由两个对准的助推器形成。 相应的中心设置在每个辊组件的副推杆之间并且相应的副卷轴的支撑内端横向于相应的框架。 每个辊组件的副卷轴的外端处的各个外辊将相应的外端部横向地支撑在相应的框架上。 分条机在相应的框架上成形或支撑,使得在无负载状态下,中心轴承处的间隙在横向上比在外轴承处窄。
    • 6. 发明申请
    • STRAND GUIDING DEVICE AND METHOD FOR GUIDING A METAL STRIP
    • 用于引导金属条带的引导装置和方法
    • US20090314455A1
    • 2009-12-24
    • US12375542
    • 2007-08-15
    • Markus ReifferscheidJuergen Seidel
    • Markus ReifferscheidJuergen Seidel
    • B22D45/00B22D11/20
    • B22D11/128B22D11/1287
    • The invention relates to a strand guiding device and a method for guiding a metal strip, in particular a metal strip that has not yet solidified right through, in a continuous casting installation. Known strand guiding devices comprise a segment frame and at least one pair of opposing guiding rollers, between which the metal strip is guided. At least one of the guiding rollers takes the form of at least two part-rollers 122, 124 arranged next to each other. The part-rollers are mounted on the segment frame 110 by means of two outer bearings 132, 134 and at least one common intermediate bearing 133. To provide at least partial compensation for the segment frame 110 springing up or bending, caused indirectly by the ferrostatic pressure in the interior of the metal strip that is not yet solidified right through and occurring in particular in the region of the intermediate hearing 133 during the transport of the metal strip between the guiding rollers 120, three different means are proposed according to the invention, means which can also to used in combination will one another. These means are a bowing of the intermediately mounted guiding roller and/or a more yielding form of the outer bearings 132, 134 in comparison with the intermediate bearing 133 and/or a greater distance A1 between the segment frame 110 and the centre axis M of the part-rollers 122, 124 in the case of the intermediate bearing 133 in comparison with the outer bearings 132, 134.
    • 本发明涉及一种在连续铸造设备中引导金属带材,特别是尚未固化的金属带材的引线引导装置和方法。 绞线引导装置包括一个分段框架和至少一对相对的导向辊,金属带之间被引导。 至少一个导向辊采取彼此相邻布置的至少两个部分辊122,124的形式。 部分辊通过两个外部轴承132,134和至少一个共同的中间轴承133安装在分段框架110上。为了对由分段框架110弹起或弯曲而进行的至少部分补偿,由间歇式 根据本发明,提出在金属带在导辊120之间输送金属带期间通过并特别在中间听力133的区域中尚未固化的金属带内部的压力,三种不同的装置, 也可以组合使用的手段。 与中间轴承133相比,这些装置是中间安装的引导辊的弯曲和/或更高屈曲形式的外部轴承132,134和/或分段框架110和中心轴线M之间的较大距离A1 在中间轴承133的情况下,与外轴承132,134相比,部分辊122,124。
    • 8. 发明授权
    • Method and device for controlling and/or maintaining the temperature of a melt, preferably of a steel melt during continuous casting
    • 用于在连续铸造期间控制和/或保持熔体,优选钢熔体的温度的方法和装置
    • US06474404B1
    • 2002-11-05
    • US09869739
    • 2001-10-15
    • Horst GrotheMarkus ReifferscheidRaimund BrücknerKarl Heinz Schmitt
    • Horst GrotheMarkus ReifferscheidRaimund BrücknerKarl Heinz Schmitt
    • B22D1116
    • B22D41/015B22D11/11B22D11/16B22D41/005
    • The invention relates to a method for controlling the temperature of a melt (10), preferably of a steel melt, in a distributing vessel (11), whereby the temperature of the melt is measured, the measured result is compared with a predetermined temperature range in the form of specified values, and as much heat is supplied or withdrawn from the melt such that the temperature remains inside said range. In order to control the melt temperature, a fireproof shaped part (20) which is closed on both sides and which is provided for accommodating a liquid cooled induction coil (1) is immersed in the melt (10). The transmission of heat is carried out by means of thermal conduction out of the wall of the shaped part (20) which is coupled to the induced electromagnetic field and/or by means of a direct coupling to the liquid melt (10). The shaped part (20) accommodates the induction coil (1) in an interhangeable manner while leaving cooling channels (9) open and is positioned from the outside by a manipulator (16) which can be lifted, lowered and tuned.
    • 本发明涉及一种用于在分配容器(11)中控制熔体(10)(优选钢熔体)的温度的方法,由此测量熔体的温度,将测量结果与预定温度范围 以规定值的形式,并且从熔体中提供或取出多少热量使得温度保持在所述范围内。 为了控制熔融温度,在熔融物(10)中浸渍在两侧封闭并且用于容纳液冷感应线圈(1)的防火成形部件(20)。 通过热耦合到感应电磁场和/或通过直接耦合到液体熔体(10)的成形部件(20)的壁进行热传导来进行热传递。 成形部件(20)以可互换的方式容纳感应线圈(1),同时留下冷却通道(9)打开并且通过可以被提升,降低和调谐的操纵器(16)从外部定位。
    • 9. 发明申请
    • EXTRUSION DIE
    • 挤出机
    • US20100059195A1
    • 2010-03-11
    • US12312095
    • 2007-10-18
    • Markus ReifferscheidAlbrecht Girgensohn
    • Markus ReifferscheidAlbrecht Girgensohn
    • B22D11/124
    • B22D11/055B22D11/059
    • A continuous casting mold includes mold plates which enclose the casting cross section and in which cooling channels extend. The mold plates are connectable to a water box by screw elements which are formed by fastening bolts having a threaded shank which is screwable into fastening threads located in the mold plate. To achieve a uniform cooling in a continuous casting mold, the fastening threads are arranged such that their center longitudinal axes extend between two adjacent coolant channels of the plurality of cooling channels. The diameter of each threaded bore hole of the fastening threads is greater than the distance between the two adjacent cooling channels, and each bore hole of the fastening threads ends at a distance from the floor of the plurality of cooling channels to define the screw-in depth of the fastening bolts.
    • 连续铸造模具包括封闭铸造横截面并且冷却通道延伸的模板。 模板可以通过螺钉元件连接到水箱,螺钉元件由具有螺纹柄的紧固螺栓形成,螺纹杆可旋拧到位于模板中的紧固螺纹中。 为了在连续铸造模具中实现均匀冷却,紧固螺纹被布置成使得它们的中心纵向轴线在多个冷却通道的两个相邻的冷却剂通道之间延伸。 紧固螺纹的每个螺纹钻孔的直径大于两个相邻的冷却通道之间的距离,并且紧固螺纹的每个钻孔在多个冷却通道的地板的一定距离处终止以限定螺旋 紧固螺栓的深度。