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冷轧钢表面形貌转移的实验研究

An Experimental Investigation of Steel Surface Topography Transfer by Cold Rolling.

作者信息

Xu Dong, Yang Quan, Wang Xiaochen, He Hainan, Sun Youzhao, Li Wenpei

机构信息

National Engineering Technology Research Center of Flat Rolling Equipment, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, Beijing 100083, China.

出版信息

Micromachines (Basel). 2020 Sep 30;11(10):916. doi: 10.3390/mi11100916.

Abstract

Automobile and household appliance panels require steel strips with extremely high-quality surfaces. Therefore, an in-depth study of the surface topography transfer of the steel strip during the rolling process is of considerable significance for improving product quality. In this study, the scale-invariant feature transform (SIFT) algorithm is used to realize the large-field stitching and the correspondence measurement of the surface topography of the roll and strip. The surface topography transfer mechanism and microconvex change law during cold rolling are revealed. Further analysis is conducted regarding the effects of different reduction rates and the initial surface topography of the roll on the formation of strip surface topography. Experimental results reveal that the furrow phenomenon occurs during the rolling process owing to the backward slip effect but is eliminated by the elastoplastic deformation of the matrix and the forward slip action. No furrow occurred along the width direction of the strip. With an increase in the rolling reduction rate, the transfer rate increases, and the strip surface topography is closer to the roll surface topography. Under the same rolling roughness condition and a small reduction rate (5%), the transfer degree increases remarkably with a rise in the reduction rate and increases slowly as the reduction rate continues to grow (from 7% to 10%). This study serves as a theoretical basis for the subsequent improvement of the surface quality of cold rolled strips.

摘要

汽车和家电面板需要具有极高表面质量的钢带。因此,深入研究钢带在轧制过程中的表面形貌传递对提高产品质量具有重要意义。本研究采用尺度不变特征变换(SIFT)算法实现轧辊和钢带表面形貌的大视场拼接和对应测量。揭示了冷轧过程中的表面形貌传递机制和微凸度变化规律。进一步分析了不同压下率和轧辊初始表面形貌对钢带表面形貌形成的影响。实验结果表明,轧制过程中由于后滑效应会出现沟槽现象,但基体的弹塑性变形和前滑作用会消除该现象。钢带宽度方向未出现沟槽。随着轧制压下率的增加,传递率增大,钢带表面形貌更接近轧辊表面形貌。在相同轧制粗糙度条件下且压下率较小时(5%),传递程度随压下率的增加显著增大,而当压下率继续增大(从7%到10%)时增加缓慢。本研究为后续改善冷轧带钢表面质量提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95ad/7601165/c79381fc7f06/micromachines-11-00916-g001.jpg

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