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    • 2. 发明授权
    • Water cooling device for wire
    • 电线水冷装置
    • US06474567B2
    • 2002-11-05
    • US09733007
    • 2000-12-08
    • Rüdiger GrimmelKarl KellerKlaus KüppersMeinert MeyerUwe Plociennik
    • Rüdiger GrimmelKarl KellerKlaus KüppersMeinert MeyerUwe Plociennik
    • B05B1500
    • B21B45/0224
    • A water cooling device for a controlled cooling of wire, small sections, and ribbed concrete wire guided along a wire rod guiding line out of the rolling heat has a support frame that is parallel-slidable or rotatable. Parallel, adjacently arranged cooling water pipelines are provided each having a different inner diameter and mounted on the support frame. Each cooling water pipeline has arranged thereat water boxes. The cooling water pipelines have cooling water pipes having an inner pipe diameter matching the inner diameter of the correlated cooling water pipeline. The cooling water pipes are arranged in the water boxes. Each cooling water pipeline has guide grooves positioned between the water boxes for connecting the cooling water pipes of each cooling water pipeline with one another. The cooling water pipelines are configured such that, by parallel-sliding or rotation of the support frame in a direction perpendicular to the wire rod guiding line, each cooling water pipeline is positionable in the wire rod guiding line so that the wire rod is guidable in all of the cooling wire pipes.
    • 用于受到冷却的水冷却装置,其具有可平行滑动或可旋转的支撑框架,所述水冷却装置用于控制冷却电线,小截面以及沿着线材引导线引导的肋状混凝土线。 平行地,相邻布置的冷却水管道被设置为各自具有不同的内径并且安装在支撑框架上。 每个冷却水管道都安置在水箱内。 冷却水管道具有与相关冷却水管道的内径相匹配的内管直径的冷却水管。 冷却水管布置在水箱内。 每个冷却水管道具有位于水箱之间的引导槽,用于将每个冷却水管道的冷却水管道彼此连接。 冷却水管道被构造成使得通过在垂直于线材引导线的方向上平行滑动或旋转支撑框架,每个冷却水管线可定位在线材引导线中,使得线材可导向 所有的冷却丝管。
    • 4. 发明授权
    • Method for the continuous casting of a metal strand
    • 连续铸造金属绞线的方法
    • US08205662B2
    • 2012-06-26
    • US12441417
    • 2007-08-16
    • Albrecht GirgensohnLothar SchapsUwe Plociennik
    • Albrecht GirgensohnLothar SchapsUwe Plociennik
    • B22D11/20B22D11/08
    • B22D11/208B22D11/08B22D11/081
    • The invention relates to a method for the continuous casting of a metal strand (1), in which the cast strand (1) leaves a die (2) vertically or arcuately downwards and is subsequently guided in a strand guide (3), wherein the strand guide (3) has a number of pairs of rollers (4), which define between them an adjustable roller nip (5), and wherein, at the start of casting, to close the die (2) in the downward direction, a piece of strand (6) is introduced into the die (2) and is followed by the cast strand (1). In order to improve the adjustment of the roller nip, the invention provides that the piece of strand (6), which is produced with a defined or calibrated thickness (d), is inserted between the respective pairs of rollers to calibrate and/or measure the roller nip (5).
    • 本发明涉及一种用于连续铸造金属股线(1)的方法,其中铸造线股(1)垂直或弓形向下离开模具(2),并随后在股线引导件(3)中引导,其中, 线束引导件(3)具有多对成对的辊(4),它们在它们之间限定可调节辊隙(5),并且其中,在铸造开始时,沿向下方向封闭模具(2), 股线(6)被引入模具(2)中,随后是铸造股线(1)。 为了改进辊隙的调整,本发明提供了用限定的或校准的厚度(d)生产的股线(6)被插入在相应的辊对之间以校准和/或测量 辊隙(5)。
    • 5. 发明申请
    • METHOD AND DEVICE FOR CONTROLLING THE SOLIDIFICATION OF A CAST STRAND IN A STRAND CASTING PLANT IN STARTUP OF THE INJECTION PROCESS
    • 用于控制注射过程启动过程中铸造厂的铸件的固化的方法和装置
    • US20110213486A1
    • 2011-09-01
    • US13127573
    • 2009-11-04
    • Uwe Plociennik
    • Uwe Plociennik
    • G06F19/00
    • B22D11/16
    • A method for casting a cast strand (4) in a continuous casting installation equipped with a process computer and having at least one casting machine, the process computer comprising a first software (2), which computes in real time and regulates the casting process, is characterized in that a second additional fast-computing software (1) in the process computer controls the casting process during the initial phase of a newly starting casting process or when there is a change in parameters of the cast strand to be cast during the ongoing process, in that the second software (1) processes currently gained data from the ongoing casting process and/or processes stored data from a database (8) and generates correction factors, with the help of which the second software (1) generates corrected target data for the casting process, until the time when the casting process is represented completely using the data calculated in real time, and the first software (2) regulates the casting process using only these data.
    • 一种铸造线(4)的铸造线(4)的铸造方法,该连铸铸造装置具有工艺计算机并具有至少一个铸造机,所述工艺计算机包括实时计算并调节铸造工艺的第一软件(2) 其特征在于,过程计算机中的第二附加快速计算软件(1)在新开始的铸造过程的初始阶段期间控制铸造过程,或者当在正在进行期间铸造铸件的参数变化时 过程中,第二软件(1)进程目前从正在进行的铸造过程获得数据和/或处理来自数据库(8)的存储数据,并产生校正因子,借助于第二软件(1)产生校正目标 用于铸造过程的数据,直到使用实时计算的数据完全表示铸造过程的时间,并且第一软件(2)调节铸造过程u 只唱这些数据。
    • 6. 发明申请
    • Water-cooling apparatus for wire/rod rolling mill
    • 线/棒轧机水冷装置
    • US20070138334A1
    • 2007-06-21
    • US11640013
    • 2006-12-15
    • Klaus KuppersUwe Plociennik
    • Klaus KuppersUwe Plociennik
    • B65H23/24G03B1/52
    • B21B45/0224
    • A water box for a wire-rolling mill has a lower support and a lower plate carried on the lower support, extending horizontally below a path of a wire moving in a travel direction, and formed with an upwardly open groove extending parallel to and open toward the path. An upper support carries an upper plate formed with a straight groove. Respective upper and lower guide bars seated in the grooves of the upper and lower plates are formed with respective straight channels open away from the respective plates. A hinge connected between the supports permits movement of the upper plate between a closed position closely juxtaposed with the lower plate and with the channels confronting each other and forming a passage surrounding the path and an open position spaced upward away from the lower plate. In the closed position the wire is transversely enclosed by the channels.
    • 用于轧钢机的水箱具有下支撑件和承载在下支撑件上的下板,水平地沿着沿行进方向移动的钢丝的路径延伸,并且形成有向上开口的槽,该槽向上延伸并且平行于并向着 路径。 上支撑件承载形成有直槽的上板。 安置在上板和下板的槽中的各个上和下导杆形成有相对于相应的板打开的相应的直通道。 连接在支撑件之间的铰链允许上板在与下板紧密并排的关闭位置与彼此面对的通道之间移动,并且形成围绕该路径的通道以及向下远离下板间隔开的打开位置。 在关闭位置,导线被通道横向封闭。
    • 8. 发明授权
    • Method and apparatus for continuous casting
    • 连铸方法及装置
    • US08522858B2
    • 2013-09-03
    • US13353511
    • 2012-01-19
    • Uwe PlociennikJens KempkenPeter JonenIngo SchusterTilmann Böcher
    • Uwe PlociennikJens KempkenPeter JonenIngo SchusterTilmann Böcher
    • B22D11/124
    • B22D11/225B22D11/141
    • A method for continuous casting from molten metal, where metal flows vertically downward from a mold and metal strip is then guided vertically downward along a vertical strand guide, cooling as it moves. The strip is deflected from the vertical direction to the horizontal direction. In the terminal area of the deflection of the strip into the horizontal direction or after the deflection into the horizontal direction, a mechanical deformation of the strip is carried out. The strip is cooled at a heat-transfer coefficient of 3,000 to 10,000 W/(m2 K) in a first section downstream of the mold and upstream of mechanical deformation of the strip. In a second section, downstream of the cooling, the strip surface is heated to a temperature above Ac3 or Ar3 by heat equalization in the strip. The mechanical deformation is subsequently carried out in a third section.
    • 从熔融金属连续铸造的方法,其中金属从模具和金属带垂直向下流动,然后沿着垂直线引导件垂直向下引导,当其移动时进行冷却。 条带从垂直方向偏转到水平方向。 在条带向水平方向偏转或在偏转到水平方向之后的终端区域中,进行带材的机械变形。 在模具下游的第一部分和条的机械变形的上游,条带以3,000至10,000W /(m 2 K)的传热系数冷却。 在第二部分,在冷却的下游,带材表面通过条带中的热平衡被加热到高于Ac 3或Ar 3的温度。 随后在第三部分中进行机械变形。