• CN:11-2187/TH
  • ISSN:0577-6686

›› 2012, Vol. 48 ›› Issue (2): 133-137.

• 论文 • 上一篇    下一篇

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热轧变形区润滑条件与板带钢表面质量关系试验研究

朱作鑫;孙建林;高雅;赵海兴   

  1. 北京科技大学材料科学与工程学院
  • 发布日期:2012-01-20

Experiment and Search of the Relationship between Hot-rolling Lubrication in Deforming Zone and Surface Quality of Steel Strip

ZHU Zuoxin;SUN Jianlin;GAO Ya;ZHAO Haixing   

  1. School of Material Science and Engineering, University of Science and Technology Beijing
  • Published:2012-01-20

摘要: 为研究热轧变形区润滑条件与轧后板带钢表面质量关系,对热轧变形区润滑机理进行计算分析,设计一种可移动式热轧工艺润滑装置,用于板带钢热轧工艺润滑试验。研究不同热轧变形区润滑条件对轧后板带钢表面粗糙度、氧化膜断面厚度、钢板酸洗后形貌的影响。结果表明:在热轧变形区内,当轧制速度大于2 m/s时,热轧油油滴在变形区的停留时间在0.07 s以内,远小于油滴着火延迟时间与油滴燃烧需要的时间之和,油水混合液来不及燃烧便已通过变形区,仍为传统的液态润滑形式;采用工艺润滑与无润滑相比,表面粗糙度降低40%左右,氧化膜厚度减少50%以上。通过3D显微镜进一步对酸洗后钢板表面进行观察分析,可以发现热轧变形区润滑能够明显减少钢板表面缺陷,使板带钢轧后表面轧制纹络清晰,表面质量得到显著改善。

关键词: 变形区, 表面质量, 热轧, 润滑机理

Abstract: In order to study the relationship between lubrication in deforming zone and surface quality of strip steel, deforming zone lubrication mechanism in hot-strip rolling is calculated and analyzed; and a special device which can be used in hot rolling process lubrication experiment is developed. The effects of different lubrication condition and the oxide film after rolled, surface roughness, morphology after pickling is studied. The results show that:when rolling speed is greater than 2 m/s,the hot-rolled droplets stay in deforming zone less than 0.07 s,far less than sum of burn time and ignition delay time, so there is not enough time for the mixture to burn, the oil-water mixture go through the deforming zone without burning. It is still the traditional liquid lubrication in deforming zone. The surface roughness reduced forty percent and oxide film thickness of lubrication reduced over fifty percent than those without lubrication. Further research on surface morphology after pickling through the 3D microscope shows that lubrication in deforming zone can reduce the surface defect of steel, make the rolling line clear and improve the surface quality obviously

Key words: Deforming zone, Hot-rolling, Lubrication mechanism, Surface quality

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