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Method for producing metal steel alloys and / or iron alloys in hot and thick plate mills using optimized structure simulators, structure monitors and / or structure models

机译:使用优化的结构模拟器,结构监视器和/或结构模型在热厚板轧机中生产金属钢合金和/或铁合金的方法

摘要

In a method for controlling a metallurgical production plant by means of a microstructure model, which comprises a program which calculates at least one mechanical strength property of a product being produced, which program calculates the strength property on the basis of calculated metallurgical phase components of the microstructure of the produced product, wherein the metallurgical plant comprises a terminating cooling line, and wherein operating parameters for the metallurgical plant with adjustable output values, which are established at least partially in advance, are factored into the calculation of the mechanical strength property, the object of the method is to enable an advantageous adjustment of operating parameters in order to achieve desired mechanical strength properties in a product consisting of a metal steel and/or iron alloy. This object is achieved in that, as the operating parameters that are factored into the calculation of the strength property, the mass fraction of at least one alloy element that is present in the chemical composition of the metal steel and/or iron alloy being used, and at least one additional operating parameter, preferably a cooling rate which is set as part of a cooling process carried out after a rolling process, are detected, and an increase in the strength property in question of the produced product, said increase being achieved by modifying at least said additional operating parameter, is at least partially compensated for by reducing the mass fraction of one or more of the alloying elements of the metal steel and/or iron alloy being used.
机译:在一种通过微观结构模型来控制冶金生产设备的方法中,该方法包括计算至少一种所生产产品的机械强度特性的程序,该程序根据所计算出的合金相成分计算强度特性。所生产产品的微观结构,其中冶金设备包括终止冷却线,并且其中具有可调整的输出值的冶金设备的运行参数至少部分地预先确定,这些参数用于计算机械强度特性,该方法的目的是能够有利地调节操作参数,以便在由金属钢和/或铁合金组成的产品中获得期望的机械强度特性。达到该目的的原因在于,作为在强度特性的计算中考虑的工作参数,使用了存在于金属钢和/或铁合金的化学组​​成中的至少一种合金元素的质量分数,并检测至少一个附加的运行参数,优选为冷却速度,该冷却速度是在轧制过程之后进行的冷却过程中设置的,并提高了所生产产品的强度特性,所述提高通过以下方式实现:通过减小所使用的金属钢和/或铁合金的一种或多种合金元素的质量分数,至少部分地补偿了修改至少所述附加操作参数的改变。

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