改进连续宽幅热轧机精整组功率的计算方法

Q4 Materials Science
I. D. Pospelov, R. R. Nechaev
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引用次数: 0

摘要

摘 要 为了确定轧机精整组带钢热轧过程的功率,在计算变形区弹性区域具体功的方法基础上,补充考虑了速度对带钢和工作辊接触摩擦系数的影响。首次获得了可靠的回归方程,用于确定谢韦尔钢铁股份公司 2000 型热轧精整机组支承辊和工作辊接触的轧制摩擦臂系数,从而可以确定用于克服轧制摩擦本身和旋转空转支承辊的功率消耗。考虑到特定的技术因素,使用增强法计算功率的最大误差为 11.9%,平均误差为 5.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Improving the Methodology for Calculating the Finishing Group Power of a Continuous Wide-Strip Hot Rolling Mill

Improving the Methodology for Calculating the Finishing Group Power of a Continuous Wide-Strip Hot Rolling Mill

Abstract

To determine the power of a process of hot rolling of strips in the mill’ finishing group, the methodology for calculating specific work in the elastic areas of deformation zone is supplemented by accounting the influence of speed on the contact friction coefficient of a strip and work rolls. For the first time, a reliable regression equation has been obtained to determine the rolling friction arm coefficient in the contact of support and working rolls of the hot rolling mill 2000 finishing group of Severstal PJSC, which makes it possible to determine the power consumption spent on overcoming the rolling friction itself and rotating the idle support rolls. Maximum error in calculating power using the augmented method, taking into account the specified technology factors, was 11.9%, the average was 5.5%.

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来源期刊
Steel in Translation
Steel in Translation Materials Science-Materials Science (all)
CiteScore
0.60
自引率
0.00%
发文量
81
期刊介绍: Steel in Translation  is a journal that represents a selection of translated articles from two Russian metallurgical journals: Stal’  and Izvestiya Vysshikh Uchebnykh Zavedenii. Chernaya Metallurgiya . Steel in Translation  covers new developments in blast furnaces, steelmaking, rolled products, tubes, and metal manufacturing as well as unconventional methods of metallurgy and conservation of resources. Papers in materials science and relevant commercial applications make up a considerable portion of the journal’s contents. There is an emphasis on metal quality and cost effectiveness of metal production and treatment.
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