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热轧中厚板氧化铁皮控制技术 被引量:17

Control Techniques of Oxide Scales in Hot-Rolled Heavy and Medium Plates
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摘要 为了探究热轧中厚板氧化铁皮控制方法,分析了氧化铁皮的影响因素并提出相应的控制方法.试验及生产实践结果表明:降低Si和Mn含量,在成分中加入合金元素Gr可以有效抑制氧化铁皮;采用微正压、微氧化气氛快速加热对氧化铁皮有较好抑制作用;保证1 173℃以上的除鳞温度和合理除鳞设备参数,采用高温快轧、低温精轧的轧制节奏可以有效抑制中厚板氧化铁皮;轧制速度和压下率对氧化铁皮厚度和板面粗糙度有显著影响,压下率和轧制速度越大,氧化铁皮厚度和表面粗糙度越小. Formation mechanism of iron oxide scales in hot-rolled heavy and medium plates was analyzed to explore the control method of oxide scales.The experimental and industrial results showed that the lower Si and Mn contents,the addition of Gr,the rapid heating with slight positive pressure and partial-pressure oxidization atmosphere,the descaling temperature above 1 173 ℃ and the reasonable equipment parameters of descaler can inhibit the formation of iron oxide scales.Adopting reasonable rolling parameters,high-temperature fast rolling and low-temperature finish rolling can also effectively reduce oxide scales.Rolling speed and reduction ratio can significantly affect the oxide scale thickness and surface roughness.The thickness and surface roughness of oxide scale decrease with the increase of reduction rate and rolling speed.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2011年第7期960-963,980,共5页 Journal of Northeastern University(Natural Science)
基金 国家高技术研究发展计划项目(2007AA03Z504)
关键词 热轧中厚板 组织 氧化铁皮 缺陷 hot-rolled heavy and medium plate structure oxide scale defect
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参考文献10

  • 1Krzyzanowski M, Beynon J H. Oxide behaviour in hot rolling [C]//Metal Forming Science and Practice. Amsterdam: Elsevier, 2002 : 259 - 295. 被引量:1
  • 2Wolf M M. Scale formation and desealing in continuous casting and hot rolling [J ]. lronmaking and Steelmaking,2000(2):22-43. 被引量:1
  • 3Nijemeisland M, Dixon A G. CFD study of fluid flow and wall heat transfer in a fixed bed of spheres [ J ]. AICHE Journal, 2004,50(5) :906 - 921. 被引量:1
  • 4Sheasby J S, Boggs W E, Turkdogan E T. Scale growth on steels at 1 200 °C :rationale of rate and morpbology[J]. Met Sci, 1984,18:127- 136. 被引量:1
  • 5Surtchev I M, Forcey K S, Krastev V. High-temperature surface oxidation of low-carbon rimming steel[J]. Interface Anal, 2000,30:158 - 160. 被引量:1
  • 6E1 Baradie M A. A fuzzy logic model for machining data selection[J ]. Mach Tools Manufact, 1997, 37:1353 - 1372. 被引量:1
  • 7于洋,李庆亮,刘振宇.热轧带钢氧化铁皮生长过程数值模拟[J].钢铁,2008,43(1):55-57. 被引量:18
  • 8Okada H, Fukagawa T, Ishihara H. Prevention of red scale formation during hot rolling of steels[J ]. ISIJ International, 1995,35(7) :886 - 891. 被引量:1
  • 9Liu Z, Gao W A. Numerieal model to predict the kinetics of anisothennal oxidation of metals [ J ]. High Temperature Materials and Processes, 1998,17(4) :231 - 236. 被引量:1
  • 10Sun K H, Tieu A K, Jiang Z Y. High temperature oxide scale characteristics of low carbon steel in hot rolling [ J ]. Journal of Materials Processing Technology, 2004, 155/ 156:1307 - 1312. 被引量:1

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