ISSN:1003-8620

CN:42-1243/TF

主管:中信泰富特钢集团股份有限公司

主办:大冶特殊钢有限公司

特殊钢 ›› 2009, Vol. 30 ›› Issue (3): 55-57.

• 组织和性能 • 上一篇    下一篇

控轧控冷工艺参数对X65管线钢显微组织的影响

宋海武1, 齐长发1, 艾星辉2, 臧振东1   

  1. 1唐山钢铁股份有限公司技术中心,唐山063016;
    2唐山科技职业技术学院冶金系,唐山063001
  • 收稿日期:2008-11-27 出版日期:2009-06-01 发布日期:2022-11-24
  • 作者简介:宋海武(1965-),男,硕士,高级工程师,钢材热加工工艺研究:

Effect of Controlled Rolling and Cooling Process Parameters on Microstructure of Pipeline Steel X65

Song Haiwu1 , Qi Changfa1 , Ai Xinghui2 , Zang Zhendong1   

  1. 1 Technical Center, Tangshan Iron and Steel Co Ltd, Tangshan 063016;
    2 Department of Metallurgy, Tangshan College of Professional Technology, Tangshan 063001
  • Received:2008-11-27 Published:2009-06-01 Online:2022-11-24

摘要: 应用Gleeble-3500热/力模拟试验机研究了轧后冷速(20~0.5℃/s)、卷取温度(630~500℃)、精轧初始温度(1 000~900℃)、末道次精轧温度(860~750℃)对X65管线钢(0.08%C、1.38%Mn、0.032%Nb、0.041%V、50×10-6N)显微组织的影响。结果表明,增加轧后冷却速度、减小950℃左右的压下量,降低终轧和卷取温度可细化板材组织。提出150 mm×1 700 mm板坯轧成7.1 mm成品板的轧制温度为:1 150~1 200℃加热,≤1 130℃粗轧至35 mm,950~1 020℃精轧,≤830℃终轧,≤580℃卷取,其产品力学性能满足标准要求。

关键词: X65管线钢, 控轧控冷, 工艺参数, 组织

Abstract: Effect of cooling rate after rolling (20 ~0. 5 °C /s) , initial pass temperature of finishing rolling ( 1 000 ~ 900 °C ) , last pass temperature of finishing rolling (860 ~750 °C ) and coiling temperature (630 ~ 500 °C  ) on niicrostnie- ture of pipeline steel X65 (0. 08% C, 1. 38% Mn, 0. 032% Nb, 0. 041 % V, 50 x 10-6 N ) has been studied by using Gleeble-3500 thermal-mechanical simulator. Results showed that with increasing cooling rate after rolling, decreasing reduction ratio at about 950  °C , decreasing finishing and coiling temperature, the microstructure of plate products was finer. The rolling temperature for 7. 1 mm finished plate rolled by 150 mm x 1 700 mm slab was proposed that 1 150 ~ 1 200 °C heating, rough rolling ≤1 130 °C to 35 mm, initial pass finishing rolling 950 ~ 1 020 °C , last pass finishing rolling ≤83O °C , and coiling ≤580 °C , and the mechanical properties of products met the requirement of standard.

Key words: Pipeline Steel X65, Controlling Rolling and Cooling, Process Parameters, Microstructure