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    • 1. 发明公开
    • Method for supervising a rolling mill, particularly for the on-line control of the rolling process in sendzimir-type mills
    • 一种用于监视轧机,特别是用于在森吉米尔轧机轧制过程的在线控制方法
    • EP0924002A2
    • 1999-06-23
    • EP98204277.2
    • 1998-12-17
    • ABB Sistemi Industriali SpA
    • De Felici, Andrea
    • B21B37/00
    • B21B37/00B21B13/147B21B2265/22
    • A method for supervising a rolling mill, particularly for the on-line control of the rolling process in Sendzimir-type mills, characterized in that it comprises the steps that consist in:

      interfacing the user with a mathematical model which is suitable to generate rolling schedules on the basis of parameters related to the type of material to be rolled and to the type of mill used, and periodically activating the mathematical model;
      supplying the mathematical model with the parameters required to determine a rolling schedule which is suitable for the material to be rolled;
      activating the various functions of the mathematical model according to the current rolling events; and
      managing the output information of the model in order to feed it back to a higher-level supervisor system which is suitable to control the rolling process.
    • 一种用于监控辊轧机,特别是用于在森吉米尔式粉碎机的轧制过程的在线控制方法,其特征做了它包括以下步骤没有包括在:接口在用户与一个数学模型中的所有其适合于产生滚动时间表 上的相关的材料的类型参数的基础上被卷起,并用研磨机的类型,并且周期性地激活所述数学模型; 供给与所需确定性矿的参数的数学模型的轧制制度所有其适合于被轧材料; 根据当前的滚动事件激活所述数学模型的各种功能; 并且为了管理模型的输出信息,以反馈给更高级别的监控系统中的所有这些是适合控制轧制过程。
    • 5. 发明公开
    • WALZVERFAHREN MIT OPTIMIERTER STRAIN PENETRATION
    • 具有改进的应变穿透轧制工艺
    • EP2480350A2
    • 2012-08-01
    • EP10760296.3
    • 2010-09-21
    • Siemens Aktiengesellschaft
    • SCHMIDT, Birger
    • B21B37/16
    • B21B37/16B21B1/32B21B2201/06B21B2261/04B21B2265/22
    • A flat rolling stock is first rolled in a rolling mill from an initial thickness (dA) to an intermediate thickness (dZ), a rolling blueprint then being inserted. Only then is the rolling stock rolled from the intermediate thickness (dZ) to the final thickness. In order to roll the rolling stock from the initial thickness (dA) to the intermediate thickness (dZ), a number of reduction stages is determined and the rolling stock is rolled in accordance with the determined number of reduction stages. Prior to rolling the rolling stock, a permissible thickness range (DB) within which the intermediate thickness (dZ) should lie is set using technological boundary conditions. The reduction stages are determined in that the intermediate thickness (dZ) is within the permissible thickness range (DB) and either the performance limits of the rolling mill are completely utilized in every reduction stage, or the performance limits of the rolling mill are not completely utilized in at least one of the reduction stages. However, in the event that the number of reduction stages were to be reduced by one, the intermediate thickness (dZ) would be outside of the permissible thickness range (DB), although the performance limits of the rolling mill would be completely utilized for all of the number of reduction stages that have been reduced by one.