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REFERENCE YIELD STRENGTH CALCULATED BY ROLLING FORCE MODEL

机译:通过轧制力模型计算的参考屈服强度

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Rolling force model is very important during the rolling process. The accuracy of the model not only affect the formulation of rolling process, the equipment designing, but also involve with the thickness precision of the product. SIMS formula is adopted to establish the rolling force model. The parameters of the model are obtained by using the fitting method[1]. After that, the factors of the formula affected the rolling force are analyzed, the result shows that the steel rolling temperature is the key influence factors of rolling force, and it indicates that the key factor of the stability of rolling process is temperature. By the same time, the reference yield stress of different steel grades are calculated by using the regression method. The pipeline steel economical X90, deep seabed pipeline X70Mo, High-rise building steel Q420GJC, Bridge plate Q420qE, Ship plate EQ51, Saw steel 50Mn2V, High strength steel A514Gr.S is respectively calculated. The results indicate that no obvious difference about reference yield stress of each steel grade in the condition of high temperature. It suggests that the value of rolling foce is not very closely related with the steel grade when large reduction is taken at the stage of rough rolling, the main influence factor of the rolling force is temperature factor.
机译:轧制力模型在轧制过程中非常重要。模型的准确性不仅影响轧制过程的配方,设备设计,还涉及产品的厚度精度。采用SIMS公式来建立滚动力模型。通过使用拟合方法[1]获得模型的参数。之后,分析了影响滚动力的公式的因素,结果表明,钢轧温度是轧制力的关键影响因素,表明轧制工艺稳定性的关键因素是温度。同时,通过使用回归方法计算不同钢等级的参考屈服应力。管道钢经济型X90,深海管道X70MO,高层建筑钢Q420GJC,桥板Q420QE,船板EQ51,锯钢50MN2V,高强度钢A514GR.S分别计算。结果表明,在高温条件下,每个钢级的参考屈服应力没有明显差异。它表明,当在粗糙轧制阶段拍摄大量减少时,轧制FACE的值与钢级没有非常密切相关,滚动力的主要影响因素是温度因数。

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