Prediction of roll force and torque during hot flat rolling of En 2 steel

A. Fletcher, V. G. Gibson, J. Gonzáles
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引用次数: 5

Abstract

AbstractA comparison has been made between the experimentally determined values of roll force and torque produced during the hot rolling of an En 2 steel slab and those predicted by calculation. The latter were obtained using a fourth-order Runge–Kutta technique, originally developed by Alexander. An experimental programme was also carried out, to obtain values of the compressive flow stress, the coefficient of friction between slab and roll, and the temperature distribution in the material during rolling, to provide data for use in the roll-force calculations. The mean level of discrepancy obtained was 6·5% (standard deviation 17%) in the case of roll force and 8·7% (25%) in the case of roll torque, but most of these discrepancies can be accounted/or by uncertainties in the data used in the calculations. It is concluded, therefore, that this method of calculation could provide a realistic prediction of roll force and torque, provided the data used in the calculation are known sufficiently accurately.
en2钢热轧轧制轧制力和扭矩的预测
摘要:对en2钢板坯热轧过程中轧制力和扭矩的实验测定值与计算预测值进行了比较。后者是使用四阶龙格-库塔技术获得的,最初是由亚历山大开发的。为了得到轧制过程中的压流应力、板坯与轧辊之间的摩擦系数以及材料内部的温度分布,为轧制力计算提供了数据。在横摇力的情况下,得到的平均差异水平为6.5%(标准差为17%),在横摇扭矩的情况下,得到的平均差异水平为8.7%(25%),但这些差异中的大部分可以由计算中使用的数据中的不确定性来解释。因此,如果计算中使用的数据足够精确,则该计算方法可以提供真实的滚压力和扭矩预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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