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Hybrid modelling of the rolling force in a plate mill

机译:平板轧机轧制力的混合建模

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Different empirical and hybrid modelling techniques were evaluated in order to improve the modelling compared with the present situation in the plate rolling mill at Rautaruukki, Raahe. Logged data from the production were used to develop new models and to compare them with each other and with the present model. The data describe the chemical composition and various process parameters of the rolling process, including thermal, geometric and kinematic parameters. Various neural networks and multivariate models were evaluated in order to take non-linear effects into account. Hybrid methods use a combination of physically based models and empirical models. The simple physically based formula, force = area X yield strength factor, proved useful. A more advanced model solving von Karman's differential equation was evaluated as a stand-alone model and as part of a hybrid model. The measured force of the previous rolling pass was tested as an additional input variable. Various aspects of the different modelling techniques are discussed and compared. Simple but improved models are described as suitable candidates to replace the present on-line model.
机译:为了与在Raahe Rautaruukki的中厚板轧机中的现状相比,改进了建模方法,对不同的经验和混合建模技术进行了评估。来自生产的记录数据用于开发新模型,并将它们彼此以及与当前模型进行比较。数据描述了轧制过程的化学成分和各种过程参数,包括热,几何和运动学参数。为了考虑非线性影响,对各种神经网络和多元模型进行了评估。混合方法结合了基于物理的模型和经验模型。简单的基于物理的公式(力=面积X屈服强度因子)证明是有用的。求解冯·卡门微分方程的更高级模型被评估为独立模型和混合模型的一部分。将先前轧制道次的测得力作为附加输入变量进行测试。讨论并比较了不同建模技术的各个方面。简单但经过改进的模型被描述为替代当前在线模型的合适候选者。

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