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主管单位 中华人民共和国
工业和信息化部
主办单位 中国材料研究学会
哈尔滨工业大学
主编 苑世剑 国际刊号ISSN 1005-0299 国内刊号CN 23-1345/TB

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引用本文:张博睿,王德斌,吴永鹏,余伟.SPHC带钢表面氧化皮结构及色差分析[J].材料科学与工艺,2022,30(3):51-57.DOI:10.11951/j.issn.1005-0299.20210211.
ZHANG Borui,WANG Debin,WU Yongpeng,YU Wei.Analysis of surface oxide scale structure and color difference of SPHC strip steel[J].Materials Science and Technology,2022,30(3):51-57.DOI:10.11951/j.issn.1005-0299.20210211.
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SPHC带钢表面氧化皮结构及色差分析
张博睿1, 王德斌1,吴永鹏2,余伟2
(1.宁波钢铁公司制造管理部,浙江 宁波 315800;2.北京科技大学 工程技术研究院,北京 100083)
摘要:
针对SPHC带钢开卷后中部和边部颜色差异的问题,通过对现场取样分析,利用扫描电镜(SEM)对存在表面色差的SPHC热轧带钢表面的氧化皮形貌、厚度、微观结构进行分析,测量了氧化皮平均厚度和共析组织比例,对比不同卷取温度对氧化皮的影响,分析了热轧带钢色差形成主要原因。结果表明:热轧带钢横向不同位置的表面粗糙度不同;卷取温度560和670 ℃时,带钢宽度方向上的氧化皮厚度相近,说明色差与氧化皮厚度没有直接关系;带钢宽度方向氧化铁皮的Fe3O4厚度和氧化皮粗糙度差异导致光的漫反射不同,造成其视觉上颜色差异。生产中,提高层流冷却过程中带钢横向温度均匀性,适当增大卷取张力以减小钢卷层间缝隙,有效改善了带钢表面氧化铁皮颜色差异现象。
关键词:  热轧带钢  色差  氧化皮  结构转变  粗糙度
DOI:10.11951/j.issn.1005-0299.20210211
分类号:TG142.1
文献标识码:A
基金项目:
Analysis of surface oxide scale structure and color difference of SPHC strip steel
ZHANG Borui1, WANG Debin1, WU Yongpeng2, YU Wei2
(1. Manufacturing Management Department, Ningbo Iron and Steel Co., Ltd., Ningbo 315800, China 2. Institute of Engineering Technology, University of Science and Technology Beijing, Beijing 100083, China)
Abstract:
In order to solve the problem of the color difference between the middle and edge of SPHC strip after uncoiling, the morphology, thickness, and microstructure of the oxide scale on the surface of SPHC hot rolled strip with surface color difference were analyzed by means of scanning electron microscope (SEM), and the average thickness and eutectoid structure ratio of the oxide scale were measured. The influence of different coiling temperature on oxide scale was compared, and the main causes of color difference of hot rolled steel strip were analyzed. Results show that the surface roughness of hot rolled steel strip was different at different positions in the transverse direction. When the coiling temperature was 560 and 670 ℃, the oxide thickness of strip in width direction was similar, indicating that there is no direct relationship between color difference and oxide thickness. The difference of Fe3O4 thickness and scale roughness of the oxide sheet in the width direction of the strip led to different light diffuse reflection, resulting in different visual color. In actual production, the transverse temperature uniformity of strip was improved during laminar cooling process, and the coiling tension was appropriately increased to reduce the gap between coil layers, which could effectively improve the color difference of oxide sheet on strip surface.
Key words:  hot rolled steel strip  color difference  oxide scale  structural transformation  roughness

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