A new kind of Mn Mo Nb Cu B bainite steel which satisfied mechanical demands of E690 offshore plate steel was designed. The effect of two processes thermomechanical control process (TMCP)+ tempering (T) and thermomechanical control process (TMCP) + reheating and quenching (RQ) + tempering (T) on microstructure and mechanical properties were studied by means of scan electron microscope (SEM), transmission electron micro- scope (TEM) and electron back scatter diffraction (EBSD). The results showed that optimal mechanical properties were available when tempering at 550 ℃ for both processes. The microstructure of the TMCP+T treated sample tempering in the range of 450 to 550 ℃ for 1 h did not change dramatically yet the lath in the TMCP+RQ+T trea- ted sample merged together and transformed into polygonal ferrite. At the same time, the sub-structure of grain bainite transformed from lath to cell shape to refine grains with tempering temperature mounting. Lots of sub-grain boundaries were located within bainite and adjacent bainite grain boundaries were high angle.
参考文献
[1] | 狄国标,刘振宇,刘相华,麻庆申.低碳海洋平台用钢E40-Z35的研制[J].东北大学学报(自然科学版),2009(11):1582-1585. |
[2] | 狄国标,刘振宇,麻庆申,刘相华,王国栋.自升式平台用厚板的低温韧性与Z向性能[J].钢铁研究学报,2010(07):51-55. |
[3] | Krishnadew M R .Strong Tough HSLA Steels via Processing and Heat Treating of Cu-Ni-Nb and Cu-Ti-B Composition[J].ASME Journal of Engineering Materials and Technology,1981,103(03):207. |
[4] | Yang J R;Huang C Y;Wang S C .The Development of Ultra- Low Carbon Bainitie Steels[J].Materials & Design,1992,13(06):335. |
[5] | 聂燚 |
[6] | Nishimura T .Effect of Co and Ni on the Corrosion Behavior of Low Alloy Steels in Wet/Dry Environments[J].Corrosion Science,2000,42:1611. |
[7] | Yakubtsov, IA;Boyd, JD .Effect of alloying on microstructure and mechanical properties of bainitic high strength plate steels[J].Materials Science and Technology,2008(2):221-227. |
[8] | WU Hui-bin;SHANG Cheng-jia;ZHAO Yun-tang et al.Effect of Tempering on Stability of Microstructure and Me chanieal Properties of Low Carbon Bainitic Steel[J].Iron & Steel,2005,40(03):62. |
[9] | SHANG Cheng-jia;WANG Xue-min;HE Xin-lai et al.Sta- bility of Ultra-Fine Microstructures During Tempering[J].Journal of University of Science and Technology Beijing,2001,8(03):119. |
[10] | Zhang X Z;Knott J F .Cleavage Fracture in Bainitic and Mar- tensitie Microstructures[J].Aeta Mater,1999,47(12):3483. |
[11] | Ming-Chun Zhao;Ke Yang;Yi-Yin Shan .Comparison on strength and toughness behaviors of microalloyed pipeline steels with acicular ferrite and ultrafine ferrite[J].Materials Letters,2003(9/10):1496-1500. |
[12] | Qiao Y;Argon A S .Cleavage Crack Resistance of High Angle Grain Boundaries in Fe 3%Si Alloy[J].Mechanics of Materials,2003,35:313. |
[13] | Sang Yong Shin;Hwang Byoungchul;Kim Sangho;eta] .Fracture Toughness Analysis in Transition Temperature Re- gion of API XT0 Pipeline Steels[J].Materials Science and Engineering,2006,429A(1/2):196. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%