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    • 1. 发明授权
    • Rolling method for a strip
    • 轧带方法
    • US08459074B2
    • 2013-06-11
    • US12519405
    • 2007-10-19
    • Wolfgang HoferMarkus Martini
    • Wolfgang HoferMarkus Martini
    • B21B37/58B21B37/72B21B37/48
    • B21B37/68B21B31/203B21B37/38B21B38/00B21B2269/04B21B2273/16B21B2273/18B21B2273/20
    • A strip has a strip head and a strip leg. It is rolled, beginning at the strip head, in a roll stand of a rolling device between an upper and a lower roller arrangement of the roll stand. It is monitored whether the strip foot reaches a switching point located, viewed in the rolling direction, in front of the roll stand. From the time the strip leg reaches the switching point, the roller arrangements are subjected to a bending force expanding the roller arrangements by means of an adjusting device, the force being at least as high as a minimal force. The minimal force is at least as high as a balancing force of the upper roller arrangement. The minimal force is determined as a function of the parameters of the strip and/or the operating parameters of the rolling device.
    • 条带有条带头和条状腿。 在轧辊机架的上辊和下轧辊装置之间的滚动装置的轧机机架中从带钢头开始滚轧。 在轧辊架前面是否监视条形脚是否到达位于滚动方向的切换点。 从带状腿到达切换点的时候,辊布置受到通过调节装置使辊布置膨胀的弯曲力,该力至少与极小的力一样高。 最小的力至少与上辊装置的平衡力一样高。 根据带材的参数和/或滚动装置的操作参数确定最小的力。
    • 2. 发明授权
    • Operating method for a multi-stand rolling mill train with strip thickness determination on the basis of the continuity equation
    • 基于连续性方程的带钢厚度测定的多台轧机列车的操作方法
    • US08186195B2
    • 2012-05-29
    • US12867782
    • 2009-02-10
    • Hans-Joachim Felkl
    • Hans-Joachim Felkl
    • B21B37/58
    • B21B37/16B21B37/165B21B38/04B21B2261/04B21B2273/20B21B2275/04B21B2275/06
    • A strip is fed a rolling stand of a multi-stand rolling mill with a known inlet thickness and exits with a strip thickness. Measurement parameters are determined that are characteristic of the inlet-side and outlet-side strip velocities. With the measurement parameters, the inlet-side and outlet-side strip velocities are determined with respect to the rolling stand. With the inlet thickness, the inlet-side and outlet-side strip velocities, the strip thickness is determined with respect to the rolling stand. Taking into account the determined strip thickness, further measures are taken. The measurement parameter for the inlet-side velocity is the roller peripheral velocity directly prior to the rolling stand. Alternatively or in addition, the measurement parameter for the outlet-side velocity is the roller peripheral velocity. The peripheral precession of the strip is modeled. The respective strip velocity is determined using the respective roller peripheral velocity and the peripheral strip precession in the respective rolling stand.
    • 将带材送入具有已知入口厚度的多台轧机的轧机机架,并以带材厚度退出。 确定入口侧和出口侧带速度的特征的测量参数。 使用测量参数,相对于轧制机架确定入口侧和出口侧带速度。 对于入口厚度,入口侧和出口侧带速度,条带厚度相对于轧制机架确定。 考虑到确定的带材厚度,采取进一步的措施。 入口侧速度的测量参数是直接在轧制机架之前的轧辊圆周速度。 或者或另外,出口侧速度的测量参数是辊的圆周速度。 对条带的外围进动进行建模。 使用相应的轧辊机架中的相应辊圆周速度和周边带进动来确定相应的带速度。
    • 3. 发明申请
    • OPERATING METHOD FOR A MULTI-STAND ROLLING MILL TRAIN WITH STRIP THICKNESS DETERMINATION ON THE BASIS OF THE CONTINUITY EQUATION
    • 基于连续方程的带状条纹厚度确定的多台轧制车间的操作方法
    • US20100326155A1
    • 2010-12-30
    • US12867782
    • 2009-02-10
    • Hans-Joachim Felkl
    • Hans-Joachim Felkl
    • B21B37/68
    • B21B37/16B21B37/165B21B38/04B21B2261/04B21B2273/20B21B2275/04B21B2275/06
    • A strip is fed a rolling stand of a multi-stand rolling mill with a known inlet thickness and exits with a strip thickness. Measurement parameters are determined that are characteristic of the inlet-side and outlet-side strip velocities. With the measurement parameters, the inlet-side and outlet-side strip velocities are determined with respect to the rolling stand. With the inlet thickness, the inlet-side and outlet-side strip velocities, the strip thickness is determined with respect to the rolling stand. Taking into account the determined strip thickness, further measures are taken. The measurement parameter for the inlet-side velocity is the roller peripheral velocity directly prior to the rolling stand. Alternatively or in addition, the measurement parameter for the outlet-side velocity is the roller peripheral velocity. The peripheral precession of the strip is modeled. The respective strip velocity is determined using the respective roller peripheral velocity and the peripheral strip precession in the respective rolling stand.
    • 将带材送入具有已知入口厚度的多台轧机的轧机机架,并以带材厚度退出。 确定入口侧和出口侧带速度的特征的测量参数。 使用测量参数,相对于轧制机架确定入口侧和出口侧带速度。 对于入口厚度,入口侧和出口侧带速度,条带厚度相对于轧制机架确定。 考虑到确定的带材厚度,采取进一步的措施。 入口侧速度的测量参数是直接在轧制机架之前的轧辊圆周速度。 或者或另外,出口侧速度的测量参数是辊的圆周速度。 对条带的外围进动进行建模。 使用相应的轧辊机架中的相应辊圆周速度和周边带进动来确定相应的带速度。
    • 5. 发明授权
    • Rolling data collecting method and system
    • 滚动数据采集方法和系统
    • US06230531B1
    • 2001-05-15
    • US09453712
    • 1999-12-03
    • Tomoyuki TezukaNoriyasu Okitani
    • Tomoyuki TezukaNoriyasu Okitani
    • B21B3700
    • B21B37/00B21B2273/20
    • The rolling data collecting system according to this invention collects rolling data of a rolled strip to be serially rolled through a tandem rolling mill, using the first rolling data measuring means installed at each roll stand and the second rolling data measuring means installed in the rolling line. The measuring point decision means decides a measuring point on a rolled strip which is used for measuring data by the first and second rolling data measuring means. The tracking means detects that the decided measuring point has reached each roll stand locating from the entry side of the tandem rolling mill and to the delivery side thereof, and the location of the second rolling data measuring means. Every time when the measuring point reaches each roll stand and the second rolling data measuring means, the rolling data collecting means collects the rolling data of the rolled strip or rolled strip measured by the first and second rolling data measuring means.
    • 根据本发明的轧制数据采集系统使用安装在每个轧辊架上的第一轧制数据测量装置和安装在轧制线中的第二轧制数据测量装置来收集通过串列轧机串联轧制的轧制带材的轧制数据 。 测量点决定装置决定用于由第一滚动数据测量装置和第二滚动数据测量装置测量数据的轧制带材上的测量点。 跟踪装置检测到确定的测量点已经到达从串列轧机的进入侧到其出口侧的每个轧辊架以及第二轧制数据测量装置的位置。 每当测量点到达每个轧辊架和第二轧制数据测量装置时,轧制数据采集装置收集由第一和第二轧制数据测量装置测量的轧制带材或轧制带材的轧制数据。
    • 6. 发明授权
    • Coiling temperature control method and system
    • 卷取温度控制方法和系统
    • US06225609B1
    • 2001-05-01
    • US09453398
    • 1999-12-03
    • Hiroyuki ImanariKozo YamahashiHideho Goudo
    • Hiroyuki ImanariKozo YamahashiHideho Goudo
    • H05B102
    • B21B37/76B21B2273/20C21D8/0226C21D9/573C21D11/005
    • To cool a strip rolled by a hot rolling mill using cooling banks installed on the run out table at the delivery side of the hot rolling mill, and to control the strip temperature in front of coiler to a preset target temperature, the strip is conceptually divided into segments or cooling units which have a length equal to the length of a single cooling bank, the temperatures of the segments are predicted, and the cooling banks are so controlled as to have the prediction temperatures coincide with preset target temperature. In this case, a feed-forward control of the cooling water flow rate in the cooling banks are made so that predictive temperatures on a real time basis of the temperatures of the cooling segments at the time when the segments are staying in the respective cooling banks coincide with the target temperatures.
    • 为了冷却由热轧机轧制的带材,使用安装在热轧机出口侧的出口台上的冷却组,并且将卷取机前面的带钢温度控制在预设目标温度,该带在概念上被划分 长度等于单个冷却组的长度的段或冷却单元,预测段的温度,并且控制冷却组以使预测温度与预设目标温度一致。 在这种情况下,冷却组中的冷却水流量的前馈控制被制成使得当段停留在各个冷却组中时实时地预测冷却段温度的预测温度 与目标温度一致。
    • 7. 发明授权
    • Apparatus for continuously rolling steel billets
    • 钢坯连续轧制设备
    • US06386420B2
    • 2002-05-14
    • US09848036
    • 2001-05-03
    • Giichi MatsuoSusumu OkawaKoji Okushima
    • Giichi MatsuoSusumu OkawaKoji Okushima
    • B23K3700
    • B21B37/005B21B1/18B21B15/0085B21B39/006B21B2273/20B21B2275/04B21B2275/06B23K11/04
    • A plurality of materials are rolled in an upstream stand. While the transfer speed of a succeeding material and the front end position thereof are detected, the transfer speed and the rear end position of a preceding material are detected by a measuring roll. The transfer speed of the succeeding material is controlled by adjusting at least the drive speed of the pinch rolls so that the front end of the succeeding material contacts the rear end of the preceding material at a specified position in a travelling welder. The rear end of the preceding material is joined with the front end of the succeeding material by flash-butt welding using the travelling welder to form a continuous material while letting the travelling welder move at a speed synchronous with the transfer speed of the continuous material. The welded portion on the continuous material is ground and/or cut to remove burrs therefrom. After removing the burrs, the continuous material is continuously rolled by a down-stream stand.
    • 多个材料在上游支架中滚动。 在检测到后续材料的传送速度和其前端位置的同时,通过测量辊检测前一材料的传送速度和后端位置。 通过至少调整夹送辊的驱动速度来控制后续材料的传送速度,使得后续材料的前端在行进焊机的指定位置处接触前一材料的后端。 前述材料的后端通过使用移动焊接机的对接焊接而与后续材料的前端连接以形成连续材料,同时让行进焊接机以与连续材料的传送速度同步的速度移动。 将连续材料上的焊接部分研磨和/或切割以除去毛边。 在除去毛刺之后,连续材料通过下游支架连续滚动。
    • 8. 发明申请
    • Apparatus for continuously rolling steel billets
    • 钢坯连续轧制设备
    • US20010015367A1
    • 2001-08-23
    • US09848036
    • 2001-05-03
    • NKK CORPORATION - Japanese Corporation
    • Giichi MatsuoSusumu OkawaKoji Okushima
    • B23K037/00B23K031/02B23Q015/00B21D039/00
    • B21B37/005B21B1/18B21B15/0085B21B39/006B21B2273/20B21B2275/04B21B2275/06B23K11/04
    • A plurality of materials are rolled in an upstream stand. While transfer speed of a succeeding material and the front end position thereof are detected, the transfer speed and the rear end position of a preceding material are detected by a measuring roll. The transfer speed of the succeeding material is controlled by adjusting at least the drive speed of the pinch rolls so as the front end of the succeeding material to contact with the rear end of the preceding material at a specified position in a travelling welder. the rear end of the preceding material is joined with the front end of the succeeding material by flash-butt welding using the travelling welder to form a continuous material while letting the travelling welder move at a speed synchronous with the transfer speed of the continuous material. The welded portion on the continuous material is ground and/or cut to remove burr therefrom. After removing the burr, the continuous material is continuously rolled by a down-stream stand, and apparatus for carrying out the above-described method.
    • 多个材料在上游支架中滚动。 当检测到后续材料的传送速度和其前端位置时,通过测量辊检测先前材料的传送速度和后端位置。 通过至少调整夹送辊的驱动速度来控制后续材料的传送速度,使得后续材料的前端在行进焊机的指定位置处与前一材料的后端接触。 前述材料的后端通过使用移动焊接机的对接焊接与后续材料的前端连接以形成连续材料,同时使行进焊接机以与连续材料的传送速度同步的速度移动。 连续材料上的焊接部分被研磨和/或切割,以从中除去毛刺。 在除去毛刺之后,连续材料通过下游支架连续卷起,以及用于执行上述方法的装置。
    • 10. 发明申请
    • ROLLING METHOD FOR A STRIP
    • 一条条的滚动方法
    • US20100031723A1
    • 2010-02-11
    • US12519405
    • 2007-10-19
    • Wolfgang HoferMarkus Martini
    • Wolfgang HoferMarkus Martini
    • B21B1/08
    • B21B37/68B21B31/203B21B37/38B21B38/00B21B2269/04B21B2273/16B21B2273/18B21B2273/20
    • A strip has a strip head and a strip leg. It is rolled, beginning at the strip head, in a roll stand of a rolling device between an upper and a lower roller arrangement of the roll stand. It is monitored whether the strip foot reaches a switching point located, viewed in the rolling direction, in front of the roll stand. From the time the strip leg reaches the switching point, the roller arrangements are subjected to a bending force expanding the roller arrangements by means of an adjusting device, the force being at least as high as a minimal force. The minimal force is at least as high as a balancing force of the upper roller arrangement. The minimal force is determined as a function of the parameters of the strip and/or the operating parameters of the rolling device.
    • 条带有条带头和条状腿。 在轧辊机架的上辊和下轧辊装置之间的滚动装置的轧机机架中从带钢头开始滚轧。 在轧辊架前面是否监视条形脚是否到达位于滚动方向的切换点。 从带状腿到达切换点的时候,辊布置受到通过调节装置使辊布置膨胀的弯曲力,该力至少与极小的力一样高。 最小的力至少与上辊装置的平衡力一样高。 根据带材的参数和/或滚动装置的操作参数确定最小的力。