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    • 1. 发明申请
    • CONTROL METHOD FOR A PROCESSING LINE FOR A STRETCHED ROLLING STOCK
    • 一种处理植物长切片的控制程序
    • WO2011036093A3
    • 2011-11-10
    • PCT/EP2010063663
    • 2010-09-17
    • SIEMENS AGKURZ MATTHIASWEINZIERL KLAUS
    • KURZ MATTHIASWEINZIERL KLAUS
    • B21B37/74B21B37/76
    • B21B37/74B21B37/76
    • The invention relates to a processing line for a stretched rolling stock (1), having an upstream and a downstream system component (2, 3) directly sequentially run through by the rolling stock (1). One each of the system components (2, 3) is implemented as a production line or as a system component different from the production line. A control device (10) has at least one final size provided thereto for segments (14) of the rolling stock (1) running through the treatment line, said size being derived from a desired end state (Z*) in each case, comprising the corresponding segment (14) of the rolling stock (1) after running through the downstream system component (3). The control device (10) implements at least one determinant (16, 20) of a setting parameter outputting a setting parameter (S, S') to a device (6, 15, 18, 21) affecting at least one state (Z) of at least one of the segments (14) of the rolling stock (1). The setting parameter (S, S') is output at a point in time at which the at least one segment (14) is present in the upstream line component (2). When determining the setting parameter (S, S'), the determinant (16, 20) of the setting parameter considers expected states of the at least one segment (14) of the rolling stock (1) as determined using a model, said states lying within a prognosis horizon (PH1 to PH5) of the corresponding setting parameter determinant (16, 20). The prognosis horizon (PH1 to PH5) is determined such that the setting parameter determinant (16, 20) considers at least one state predicting for the at least one segment (14) of the rolling stock (1) when determining the setting parameter (S, S') output thereby, said state being expected of the at least one segment (14) of the rolling stock (1) in the downstream system component (3).
    • 为细长的轧件(1)一种治疗系统具有上游和植物(2,3),它们由所述轧件(1)中直接连续遍历的下游部分。 取决于其中一个设备部件(2,3),设计为精轧机或作为除终轧线之外的设备的一部分。 通过使辊轧件的处理系统的控制装置(10),用于部分(14)(1)每一个都至少给定的最终尺寸,其中包括相应的期望的最终状态(Z *)的推导,其中轧件的相应部分(14)(1) (3)通过工厂的下游部分后应该有。 所述控制器(10)实现了机车车辆(1)影响装置(6,15,18,21),一个操纵变量的附接至所述部分中的至少一个(14)的状态(Z)中的至少一个的至少一个操纵变量确定器(16,20)( S,S')输出。 输出操作变量(S,S“)在位于工厂(2)的上游部分的时刻处的所述至少一个部分(14)发生。 在所考虑的操作变量(S,S“)的操作量决定的测定(16,20)基于模型的轧件的至少一个部分(14)的确定的预期状态(1)一个预测范围的各操作量决定的(PH1至PH5)内(16 ,20)。 预测范围(PH1至PH5)被确定为使得在从他的输出的判定投影的操作量决定(16,20)操作变量(S,S“)中的轧件的至少一个部分(14)中的至少一个(1)条件 (3)的下游部分中的机动车辆(1)的至少一部分(14)预期。
    • 3. 发明申请
    • METHOD FOR COOLING SHEET METAL BY MEANS OF A COOLING SECTION, COOLING SECTION AND CONTROL DEVICE FOR A COOLING SECTION
    • 冷却方法的纸张由冷却管,冷却和距离控制和/或调节装置用于冷却路线的装置
    • WO2011104103A3
    • 2012-01-19
    • PCT/EP2011051663
    • 2011-02-04
    • SIEMENS AGWEINZIERL KLAUS
    • WEINZIERL KLAUS
    • B21B37/76C21D1/667C21D11/00
    • B21B37/76B21B37/28B21B38/006B21B38/02B21B45/0218B21B2261/20B21B2263/04C21D1/667C21D9/46C21D11/005
    • The invention relates to a cooling section, to a control device for a cooling section, to a machine-readable program code, to a storage medium and to a method for cooling sheet metal (B) by means of a cooling section. The cooling section has a plurality of coolant dispensing devices (2) for cooling an upper sheet metal face and a plurality of coolant dispensing devices (2) for cooling a lower sheet metal face. By means of the cooling, a predefined target state of the sheet metal is achieved at a reference point at and/or after the exit from the cooling section, wherein coolant dispensing for a first and a second coolant dispensing device is determined, wherein the first and the second coolant dispensing devices are arranged opposite the sheet metal. Because the coolant dispensing for the first and second coolant dispensing devices (2) is determined on the basis of a predefined flow of heat to be dissipated from the sheet metal side (O, U) that faces the respective coolant dispensing device (2), wherein a temperature, in particular surface temperature (To, Tu), of the respective sheet metal side (O, U) is taken into account for the respective flow of heat to be dissipated, the flatness of plate that is produced can be increased further with a simultaneously high throughput of the plate rolling train.
    • 本发明涉及一种冷却管线,一个控制和/或用于冷却段调节装置,一个机器可读的程序代码的存储介质和用于通过的冷却路径来冷却片材(B)的方法,所述冷却路径包括多个制冷剂排出装置(2)的用于冷却 金属片的顶部和多个制冷剂排出装置(2),用于冷却金属板的基础上,其特征在于,在基准点的片材的预定的目标状态和/或通过冷却而放电后获得从冷却区,其中在第一和第二冷却剂排出的冷却剂输送装置确定的 是其中所述第一和第二冷却剂排出装置相对于在相对侧上的板配置。 通过进行冷却剂排出的确定基于预定的热,第一和第二冷却剂排出装置(2)被耗散电流从相应的冷却剂排放的装置(2)的面向板侧(O,U),其中,对于每个热被移除流具有温度,特别是表面的温度(要,涂 )相应的板侧(O,U)被认为是,产生的重板的平坦性,可以进一步同时维持高吞吐量的盘磨机的增加。
    • 4. 发明申请
    • OPERATING METHOD FOR A COOLING SECTION HAVING CENTRALIZED DETECTION OF VALVE CHARACTERISTICS AND OBJECTS CORRESPONDING THERETO
    • 操作程序阀门特性及相应的对象的集中式收购的冷却TRACK
    • WO2009043668A8
    • 2009-05-28
    • PCT/EP2008061551
    • 2008-09-02
    • SIEMENS AGTHYSSENKRUPP STEEL AGFORSCH MARKUSBORGMANN UDOSCHMORS STEFANWEINZIERL KLAUS
    • FORSCH MARKUSBORGMANN UDOSCHMORS STEFANWEINZIERL KLAUS
    • B21B45/02
    • B21B45/0218B21B37/76B21B38/00B21B45/0233C21D1/667C21D9/573C21D11/005Y10T137/0318Y10T137/0324Y10T137/0363Y10T137/877Y10T137/87925
    • The invention relates to a cooling section having a plurality of coolant outlets (2), by means of which a coolant (4) can be applied to a rolling stock (3) passing through the cooling section (1) during the normal operation of the cooling section (1). The coolant outlets (2) are supplied with the coolant (4) via transmission lines (5) and a mutual main line (6), which the transmission lines (5) have in common. Individually opening and closing valves (7) are disposed in the transmission lines (5) such that the supply of coolant (4) to the coolant outlets (2) can be produced and interrupted by transmission line. An automation device (8) of the cooling section (1) opens and closes the valves (7) at valve-specific opening times and at valve-specific closing times during the normal operation of the cooling section (1) in order to apply coolant (4) to the rolling stock (3) in accordance with a quantitative target coolant course. During the determination of the valve-specific opening times, said automation device takes into consideration a respective valve-specific characteristic. In calibration operation of the cooling section (1), the respective valve-specific characteristic is initially determined at least for some of the valves (7) by opening and closing the respective valve (7), and detecting the chronological course of the quantitative coolant flow (Q) effected thereby by means of a measuring arrangement (12) disposed in the main line (6).
    • 的冷却部由有冷却装置运行轧材(3),其在所述冷却部分(1)的正常操作的具有多个冷却剂出口(2)的由装置(4)在被加载的冷却部(1)。 冷却剂出口(2)经由分支管线(5)和分支管线(5)共同的主管线(6)供应有冷却剂(4)。 在短截线(5)是分别可开闭地设置的阀(7),使得冷却剂出口(2)的与所述冷却剂(4)的供给是存根同样制造并中断。 冷却部的自动化装置(8)(1)打开和冷却部的正常操作期间关闭(1),所述阀(7),用于阀特定开启定时和具体阀关闭时间,以(3)根据与所述冷却装置的期望的定量冷却剂轮廓,以加压辊轧件(4) , 在确定阀门特定的打开时间和阀门特定的关闭时间时,它会考虑各自的阀门特定特性。 在冷却部的校准模式(1)是至少为一些阀(7)中,由通过的手段打开和关闭相应的阀(7)和检测所述冷却剂流量(Q)的由此引起的时间进程(在主导管6中的相应的特定的阀特性 )布置的测量装置(12)被确定。
    • 9. 发明申请
    • OPERATING METHOD FOR A PRODUCTION LINE WITH PREDICTION OF THE COMMAND SPEED
    • 操作程序对于一个完整的道路的预测传导速度
    • WO2011138067A3
    • 2011-12-29
    • PCT/EP2011053513
    • 2011-03-09
    • SIEMENS AGWEINZIERL KLAUS
    • WEINZIERL KLAUS
    • B21B37/74C21D11/00
    • B21B37/74B21B37/00B21B37/46B21B2261/20B21B2275/02B21B2275/04B21B2275/06C21D8/0226C21D11/00C21D11/005
    • At the latest at an instant, at which a first belt point (12) of a belt (2) is still situated in front of a production line (1), in each case an actual value (G) and a setpoint value (G*) are known to a control computer (8) for the first and a number of second and third belt points (12, 13, 13') of the belt (2). For each belt point (12, 13, 13'), the actual value (G) is characteristic of the actual energy content which the respective belt point (12, 13, 13') has at a location (xE) in front of the production line (1). For each belt point (12, 13, 13'), the setpoint value (G*) is characteristic of the setpoint energy content which the respective belt point (12, 13, 13') has at a location (xA) behind the production line (1). The second belt points (13) run after the first belt point (12) into the production line (1), and the third belt points (13') run in in front of the first belt point (12). Before the first belt point (12) runs into the production line (1), the control computer (8) determines in each case one command variable (L*) for the first belt point (12) and at least part of the second belt points (13) using a respective determining regulation. Using the respective command variable (L*), the control computer (8) determines in each case one command speed (vL) and operates the production line (1) at the respective command speed (vL) at the instant when the respective belt point (12, 13) runs into the production line (1). For the respective command variable (L*), its determining regulation involves the actual and setpoint values (G, G*) of the belt point (12, 13) which runs in each case into the production line (1) at this instant and the actual and setpoint values (G, G*) of at least one belt point (12, 13, 13') which has already entered the production line (1) at this instant.
    • 的控制计算机(8),在磁带的第一磁带点(12)位于一个精轧机组之前在该(2)的最新在时间(1)是,对于第一和多个第二和第三带束点(12,13 带的公知的13“)(2)每一个都具有实际的变量(G)和目标尺寸(G *)。 对于每个条点(12,13,13“)是用于实际能含量特性的实际变量(G),其中各条点(12,13,13”的位置处(XE)在精轧机组的前部)(1)。 对于每个条点(12,13,13 ')为所期望的能量含量特性的目标量(G *),其相应的带点(12,13,13' 在位置(x A)在精轧机组后面有)(1) , 第一带点(12)进入精轧机组之后运行第二条点(13)(1),第一带点(12)之前的第三条带点(13“)。 在(1)在每种情况下确定的第一磁带点(12)的条目之前的精轧机,控制计算机(8),用于所述第一条点(12)和至少所述第二条带的点(13)的基础上的相应的检测规定,引导变量(L *)的至少一部分。 在相应的命令变量(L *)的基础上被确定时,所述控制计算机(8),每一个都具有一个传导速度(VL)并操作精轧机组(1)在相应的带点的条目(12,13)进入精轧机组(1)与相应的时间 传导速度(VL)。 用于相应的命令变量(L *)进入的确定哪个过程的实际和期望的尺寸的(G,G *)当时在每种情况下进入精轧机组(1)进入带点(12,13)以及实际的和所需的尺寸(G,G的* )至少一种在这个时候在精轧机组已经(1)发生皮带点(12,13,13“)一个。