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Control Strategies for an Inline Cooling Device in Hot Strip Processing of Innovative Steel Materials

机译:创新钢材热带加工中的内联冷却装置控制策略

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Heat treatment of steel is used to adjust different microstructures and mechanical properties. The Quenching and Partitioning (Q&P) process or cyclic annealing for grain refinement lead to increased strength and ductility. Both approaches demand a strict temperature control and a close strip temperature tracking. A control strategy for optimal properties is developed. Herefore a one-stand laboratory scale hot rolling process line was equipped with a water cooling section. A detailed temperature control during the cooling process was established accounting for strip thickness and velocity, set point temperatures, and amount of water cooling. While industrial set points and parameters of closed-loop controllers are often empirical, the presented control system and strategies are investigated by MatLab-Simulink. The improved material properties were evaluated in annealing tests. The control system for the cooling track reduces the temperature gradient within the strip to 12 K. The simulation of the cooling track gives an optimal set point. As a prerequisite for a controlled design of time-temperature-cycles, it can be calculated for various process parameters. Grain sizes <5 靘 are achieved by cyclic annealing and accompanied by increased strength and ductility. The Q&P treatment produces tempered mar-tensite and retained austenite with improved mechanical properties.
机译:钢的热处理用于调节不同的微观结构和机械性能。淬火和分配(Q&P)工艺或晶粒细化的循环退火导致提高强度和延展性。两种方法都需要严格的温度控制和紧密条带温度跟踪。开发了一种用于最佳性质的控制策略。因此,一体式实验室秤热轧工艺线配备了水冷却部分。在冷却过程中进行详细的温度控制,建立了条带厚度和速度,设定点温度和水冷量的核算。虽然工业设定点和闭环控制器的参数通常是经验的,但是由Matlab-Simulink调查所呈现的控制系统和策略。在退火测试中评估改进的材料性能。用于冷却轨道的控制系统将条带内的温度梯度降低至12k。冷却轨道的模拟给出了最佳设定点。作为受控时间温度循环设计的先决条件,可以计算各种过程参数。晶粒尺寸<5‰通过循环退火实现并伴随着增加的强度和延展性。 Q&P处理产生钢化钢化型马丽底座和保留的奥氏体,具有改善的机械性能。

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