• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (4): 30-36.

• 论文 • 上一篇    下一篇

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轧辊粗糙度对不锈钢板带表面和工艺参数的影响

陈金山 李长生;曹勇   

  1. 东北大学轧制技术及连轧自动化国家重点实验室;宝钢不锈钢有限公司
  • 发布日期:2013-02-20

Effects of Roll Roughness on Surface and Process Parameters for Stainless-steel Strip

CHEN Jinshan;LI Changsheng;CAO Yong   

  1. State Key Laboratory of Rolling and Automation, Northeastern University Baosteel Stainless Steel Co., Ltd.
  • Published:2013-02-20

摘要: 不锈钢板带冷轧过程中,轧辊表面粗糙度对轧制工艺参数设定和表面质量控制有重要的影响。在实验室对SUS430不锈钢进行冷轧润滑试验,利用Quanta 600扫描电子显微镜、Zeiss-LSM 700光学显微镜和粗糙度仪等研究冷轧过程中轧辊表面粗糙度对带钢表面粗糙度、表面微观缺陷率、表面油膜厚度和轧制力的影响。结果表明,粗糙度为0.7 μm轧辊在低质量分数乳化液下对带钢表面改善较为明显,高质量分数乳化液下带钢粗糙度随轧辊粗糙度的增加而增加;降低轧辊粗糙度有利于减小表面缺陷率;随着轧辊粗糙度的增加,低质量分数乳化液下带钢表面油膜厚度呈现先增加后减小的趋势,高质量分数乳化液下采用粗糙度0.7 μm轧辊,油膜厚度最大;随着轧辊粗糙度的增加,高质量分数乳化液下轧制力逐渐增加,低质量分数乳化液下使用粗糙度0.8 μm轧辊,轧制力较小。

关键词: 不锈钢, 冷轧, 油膜, 轧辊表面粗糙度, 轧制力

Abstract: During stainless steel strip cold rolling, the roll surface roughness has important effect on setting up of process parameters and control of strip surface quality. In the laboratory, the lubrication experimental research on the effects on roll surface roughness of SUS430 stainless steel strip in cold rolling is carried out. The effects of roll surface roughness are investigated by using Quanta 600 SEM (Scanning electron microscopy), Zeiss-LSM 700 optical microscope and surface rough meter, including the root mean square (RMS) roughness of strip, the micro-defect rate of strip, the roll force and the oil film thickness on strip surface. The results show that with roll roughness 0.7 μm, it is obvious to improve the strip surface quality, at the low concentration of emulsion, and while the concentration of emulsion arising, the RMS roughness of strip is increased with roll roughness increasing. The strip micro-defect rate can be reduced through decreasing roll roughness. With roll roughness increasing, the important trend is found in specimens that the oil film thickness on strip surface increases first, and then decreases, at the low concentration of emulsion, and while the concentration of emulsion arising, the oil film thickness will be maximum, with roll roughness 0.7 μm. The roll force increases gradually with roll roughness increasing, at the high concentration of emulsion, and while the concentration of emulsion dropping, the roll force will be low with roll roughness 0.8 μm.

Key words: Cold rolling, Oil film, Roll force, Roll surface roughness, Stainless steel

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