通过对不同成分焊接试板进行力学性能测试、金相组织分析及热影响区第二相粒子透射电镜观察,研究了Ni,Ti两个关键合金元素对09MnNiDR钢热影响区韧性的影响规律,从而达到改善热影响区低温韧性的目的.结果表明:通过增加Ni含量改善热影响区韧性的效果不明显且成本较高,而通过将Ti质量分数由0.016%增加到0.021%~0.026%,可在不增加Ni含量的前提下使热影响区冲击韧性显著改善;Ti元素改善09MnNiDR钢热影响区韧性的机制是随着Ti含量增加高熔点第二相粒子的数量增加、尺寸细化、热稳定性提高,从而达到提高第二相粒子抑制热影响区晶粒长大,减小热影响区宽度的作用,进而改善热影响区韧性.
参考文献
[1] | 王占英,孙长山,马轶群,梁建明,马卫国.09MnNiDR低温压力容器的焊接工艺[J].焊接技术,2004(04):61-62. |
[2] | 王厚军.09MnNiDR钢2万m3丙烷低温储罐的焊接[J].石油工程建设,2002(05):37-40. |
[3] | 王元华.09MnNiDR钢的焊接[J].甘肃科技,2007(08):67-68,61. |
[4] | Hannerz N E;Jonsson-Holmquist B M.Influence of Vanadium on the Heat-Affected-Zone Properties of Mild Steel[J].Metal Science Journal,1974(08):228. |
[5] | Qinglei JIANG;Yajiang LI;Juan WANG .Microstructural Characteristics and Prediction of Austenite Grain Size in Heat Affected Zone of High Strength Low Alloy Steel[J].ISIJ International,2011(2):269-273. |
[6] | Y.LI;D.N.CROWTHER;M.J.W.GREEN .The Effect of Vanadium and Niobium on the Properties and Microstructure of the Intercritically Reheated Coarse Grained Heat Affected Zone in Low Carbon Microalloyed Steels[J].ISIJ International,2001(1):46-55. |
[7] | Liao F C;Liu S;Olson D L.Weldability of Nitrogen-Enhanced HSLA Steels[A].Michigan:The American Society of Mechanical Engineers,1993:231. |
[8] | M. HAMADA;Y. FUKADA;Y. KOMIZO .Microstructure and precipitation behavior in heat affected zone of C-Mn microalloyed steel containing Nb, V and Ti[J].ISIJ International,1995(10):1196-1202. |
[9] | El-Fawakhry K A;Mekkawy M F;Mishreky M L .Characterization of Precipitates in Vanadium and Titanium Microalloyed Steels[J].ISU International,1991,31(09):1020. |
[10] | 雍岐龙.钢铁材料中的第二相[M].北京:冶金工业出版社,2006 |
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