INFLUENCE OF BENDING EFFORTS OF WORKING ROLLS ON WIDENING OF THE THIN STEEL STRIP DURING HOT ROLLING

T. Koinov, S. M. Bel’skii, Y. A. Mukhin, V. B. Chuprov
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Abstract

Based on the Jourdain variation principle, a mathematical model of the process of free widening in hot rolling of thin sheet metal is developed. The principle applies to rigid-plastic materials and for the cinematically admissible area of speeds. As a functional of the variational equation, sum of the powers of internal resistances, frictional forces, shear forces, front and back tension was used. When solving the Jourdain variational equation for the case of rolling with tension, the Ritz method was applied. The Jourdain variational equation was transformed into a system of homogeneous equations, the left side of each represented a derivative with respect to a varying parameter. Varying parameters were the exponent of the kinematic condition, general widening in the plastic deformation zone and the widening in its neutral section. The developed model allows to study the distribution of the widening on length of the deformation zone depending on the parameters of rolling process and sheet metal. To test the adequacy of the developed free-widening model, experimental studies were carried out on a two-roll cold rolling mill. Lead samples were rolled, the measured widening values of which coincided with the theoretical calculated with an accuracy of less than 10%. Cold rolling of lead samples simulates hot rolling. Theoretical analysis of the influence of tension on the process of free widening when applying tension is consistent with the practical results presented in the literature. It is shown that the unevenness of tensile stresses in the input and output sections of the deformation zone arising from the application of tension causes the appearance of additional powers in the power balance equation, leading to a decrease in magnitude of the widening. The resulting unevenness of the tensile stresses can be used to control magnitude of the widening in thin-sheet rolling. In turn, unevenness of the tensile stresses along the width of rolled strip can be increased or decreased by means of the bending forces of work rolls of the rolling stand. The article presents a scheme for controlling the value of the rolling band widening during hot rolling with the help of bending forces of work rolls.
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热轧过程中工作辊弯曲力对薄带钢加宽的影响
基于jourain变分原理,建立了薄板热轧自由加宽过程的数学模型。该原理适用于刚塑性材料和电影允许的速度范围。作为变分方程的泛函,采用内阻、摩擦力、剪力、前后张力的幂和。在求解带张力滚动的jourain变分方程时,采用了Ritz方法。Jourdain变分方程被转化为齐次方程组,每个方程的左侧表示对变化参数的导数。变化参数为运动条件的指数、塑性变形区的一般加宽和中性区加宽。建立的模型可以研究变形区宽度随轧制工艺参数和板料参数的分布。为了验证所建立的自由加宽模型的有效性,在一台二辊冷轧机上进行了试验研究。对铅试样进行轧制,测得的增宽值与理论计算值吻合,精度小于10%。铅样品的冷轧模拟了热轧。在施加张力时,张力对自由加宽过程影响的理论分析与文献中给出的实际结果一致。结果表明,由于拉伸作用引起的变形区输入和输出段拉应力的不均匀性,导致在功率平衡方程中出现额外的功率,导致加宽的幅度减小。由此产生的拉伸应力的不均匀性可以用来控制薄板轧制中加宽的大小。反过来,沿轧制带材宽度的拉伸应力的不均匀性可以通过轧制机架工作辊的弯曲力来增加或减少。本文提出了一种利用工作辊弯曲力控制热轧带钢加宽值的方案。
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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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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