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    • 4. 发明申请
    • Method and device for the continuous casting and direct deformation of a metal strand, especially a cast steel strand
    • 用于连续铸造和直接变形金属股线,特别是铸钢绞线的方法和装置
    • US20070023161A1
    • 2007-02-01
    • US11517997
    • 2006-09-07
    • Axel WeyerDirk LetzelHorst GartnerWilfried MilewskiAdolf Zajber
    • Axel WeyerDirk LetzelHorst GartnerWilfried MilewskiAdolf Zajber
    • B22D11/12B22D11/124
    • B22D11/124B22D11/1206B22D11/128B22D11/20B22D11/225
    • A method for the continuous casting and direct deformation of a metal strand, especially a cast steel strand, includes guiding the metal strand in a curved strand glide after the continuous casting mold, subjecting the strand to a secondary cooling with a liquid coolant, and preparing the strand in an automatically controlled way for the deformation pass at a uniform temperature field in the strand cross-section, such that the cast strand is cooled with a liquid coolant only in the longitudinal sections in which the cast strand is liquid in the cross-section. The temperature of the cast strand is equalized in a transition zone before, in, and/or after a bending-straightening unit by insulation of the exterior surface that is radiating heat, without the use of the liquid coolant, and is further equalized by heat radiation in zones until the temperature field consists of elliptical, horizontally oriented isotherms. The cast strand is deformed on a dynamically variable soft production line on the basis of the compressive strength measured by individual deforming rolls or roll segments, depending on the compressive force that can be locally applied.
    • 用于连续铸造和直接变形金属线材,特别是铸钢绞线的方法包括:在连续铸造模具之后,将金属线材引导成弯曲的线股滑动,使该股线用液体冷却剂进行二次冷却,并制备 以自动控制的方式对股线进行变形,在股线横截面中以均匀的温度场通过,使得铸造线材仅在液态冷却剂中被冷却,其中纵向部分中的铸造股线在其横截面中是液态的, 部分。 在不使用液体冷却剂的情况下,在弯曲矫正单元之前,之中和/或之后的过渡区域中通过隔热散热的外表面的过渡区域中的温度相等,并进一步通过热量平衡 区域辐射直到温度场由椭圆形水平取向的等温线组成。 基于由各个变形辊或辊段测量的压缩强度,根据可局部施加的压缩力,铸造股线在动态变化的软生产线上变形。
    • 7. 发明授权
    • Method and device for change of section of a billet of a continuous casting plant during continuous casting
    • 连续铸造期间连铸机坯段断面变化的方法和装置
    • US06712123B1
    • 2004-03-30
    • US09615097
    • 2000-07-13
    • Axel WeyerDirk LetzelReiner KülchenAdolf Zajber
    • Axel WeyerDirk LetzelReiner KülchenAdolf Zajber
    • B22D1120
    • B22D11/1281B22D11/1206
    • In a method for changing the section of a billet of a continuous casting plant during continuous casting, wherein opposed sides of the billet are in contact with oppositely positioned roll supports arranged below a continuous casting die, wherein the roll supports are comprised of segments having rolls, wherein adjoining ones of the segments of each roll support are connected to one another by a jointed connection and wherein each segment is configured to be adjustable independent of the other segments with respect to an angular position relative to the billet, and wherein in an initial position the segments of the roll supports are adjusted to a uniform billet section, a thickness reduction can be achieved by advancing sequentially in a direction of continuous casting the segments toward the billet by moving the jointed connections toward the billet in a controlled sequence of adjusting steps or a thickness increase can be achieved by moving sequentially in a direction of continuous casting the segments away from the billet by moving the jointed connections away from the billet in a controlled sequence of adjusting steps.
    • 在连续铸造期间改变连续铸造设备的坯料的截面的方法中,其中坯料的相对侧与布置在连续铸造模具下方的相对设置的辊支承件接触,其中辊支撑件由具有辊 ,其中每个辊支撑件的相邻节段通过接合连接彼此连接,并且其中每个节段被构造成相对于相对于坯料的角位置而与其他节段相关的可调节,并且其中在初始 将辊支撑件的节段调整到均匀的坯料部分的位置,可以通过以连续的方式沿着将节段朝向坯料连续铸造的方向前进顺序地按照受控制的调节步骤 或者可以通过在连续c的方向上依次移动来实现厚度增加 通过以受控制的调节步骤将接合的连接件远离坯料移动,使段远离坯料。
    • 8. 发明授权
    • Method and device for positioning at least one roll segment of a strand guiding unit against a strand
    • 用于将股线引导单元的至少一个辊段定位在股线上的方法和装置
    • US08205661B2
    • 2012-06-26
    • US12085416
    • 2006-10-19
    • Axel WeyerChristian StolpHans Esau Klassen
    • Axel WeyerChristian StolpHans Esau Klassen
    • B22D11/20B22D11/128
    • B22D11/1206B22D11/16B22D11/208
    • A method for adjusting a roll segment of a strand guide of a slab-casting installation against a strand, wherein the roll segment has an upper and a lower roll support that each have an adjusting element for adjusting the two roll supports relative to each other. The method includes individual control of the individual adjusting elements, wherein the actual profile of the strand, including the heights of the right and left lateral edges of the strand, is detected and compared with a set profile that includes a predetermined set height, which is the same for the right and left lateral edges, and the individual adjusting elements of the roll segment are individually controlled based on the control deviation that results from the comparison so that the actual profile is adapted to the set profile, including equalization of the heights of the right and left lateral edges of the strand.
    • 一种用于调节板坯铸造装置的股线引导件相对于股线的辊段的方法,其中所述辊段具有上辊和下轧辊支撑件,每个支承件具有用于相对于彼此调节所述两个辊支撑件的调节元件。 该方法包括个体调节元件的单独控制,其中包括股线的右侧和左侧边缘的高度的股线的实际轮廓被检测并与包括预定设定高度的设定曲线进行比较 对于右侧边缘和左侧边缘相同,并且基于由比较产生的控制偏差来单独控制滚动段的各个调节元件,使得实际轮廓适合于设定的轮廓,包括均匀的高度 股的右侧和左侧边缘。
    • 9. 发明申请
    • ELECTROMAGNETIC BRAKING DEVICE ON CONTINUOUS CASTING MOLDS
    • 连续铸造用电磁制动装置
    • US20110162817A1
    • 2011-07-07
    • US13054253
    • 2009-07-15
    • Norbert VoglJörn HoffmeisterAxel Weyer
    • Norbert VoglJörn HoffmeisterAxel Weyer
    • B22D27/02B22D11/10B22D11/00
    • B22D11/115
    • To bring about a direct effect on the fluid streams exiting the mould dip tube (2) of moulds in continuous casting moulds (1) of a continuous casting plant for casting liquid metals, in particular liquid steel materials for producing slab and thin slab products with format widths of 750 to 3500 mm and format thicknesses of 30 to 500 mm, said casting plant being equipped with an electromagnetic braking device for improving the product quality, it is proposed to dispose at least two poles (10) per mould broad side (3) symmetrically with respect to the perpendicular reference line (4) of the mould dip tube (2) such that the primary axes (12) of the poles' outlet cross section (11a) are aligned at a specific angle (α1 and α2) relative to the perpendicular reference line (4) of the mould dip tube (2).
    • 对于用于铸造液态金属的连续铸造设备(特别是用于生产板坯和薄板坯产品的液态钢材料)的连续铸造模具(1)中离开模具汲取管(2)的流体流直接产生影响, 格式宽度为750至3500mm,格式厚度为30至500mm,所述铸造厂配备有用于提高产品质量的电磁制动装置,建议每个模宽侧(3个)设置至少两个极(10) )相对于模具浸入管(2)的垂直参考线(4)对称,使得磁极出口横截面(11a)的主轴线(12)以特定角度(α1和α2)相对对准 到模具浸入管(2)的垂直参考线(4)。
    • 10. 发明申请
    • METHOD AND CONTROL DEVICE FOR CONTROLLING THE HEAT REMOVAL FROM A SIDE PLATE OF A MOLD
    • 用于控制从模具的侧板去除热的方法和控制装置
    • US20100044000A1
    • 2010-02-25
    • US12312014
    • 2007-10-24
    • Jürgen FriedrichAxel WeyerMatthew Korzi
    • Jürgen FriedrichAxel WeyerMatthew Korzi
    • B22D27/04B22C19/04
    • B22D11/22
    • The invention concerns a method and a control device for automatically controlling the heat dissipation {dot over (q)} in a mold 200 for casting metal. The heat dissipation of the side plate of a mold is automatically adjusted to a preset set point {dot over (q)}set by suitable variation of the volume flow rate {dot over (V)} of a coolant 300 through the side plate. In accordance with the invention, to avoid the necessity, when different molds are used, of adapting the control of the heat dissipation each time to different thicknesses or coatings of the side plates or to different settings of the side plates during the casting operation or during the casting of different grades of steel, the actual value for the heat dissipation {dot over (q)} during a steady-state casting operation is suitably computed on a current basis from, among other things, the difference in the temperature of the coolant 300 at the coolant outlet and the coolant inlet of the side plate 200 and material constants for the coolant.
    • 本发明涉及一种用于自动控制用于铸造金属的模具200中的散热{点(q)}的方法和控制装置。 模具的侧板的散热通过侧板通过冷却剂300的体积流速{dot over(V)}的适当变化而被自动调整到预设设定点{dot over(q)}。 根据本发明,为了避免在使用不同的模具时,每次将散热控制调整到侧板的不同厚度或涂层,或者在铸造操作期间或侧板的不同设置 在不同等级的钢的铸造中,在稳态铸造操作期间的散热实际值{dot over(q)}适当地基于当前的基础来计算冷却剂的温度差 300在冷却剂出口处和侧板200的冷却剂入口和冷却剂的材料常数。