期刊文献+

Mn-Mo-Nb-B低碳微合金钢的应变诱导析出 被引量:1

Strain-Induced Precipitation in Mn-Mo-Nb-B Low Carbon Microalloyed Steel
原文传递
导出
摘要 采用热模拟及透射电子显微镜结合纳米束能谱技术,研究了Mn-Mo-Nb-B系多元微合金钢奥氏体变形后等温过程中(松弛)的析出行为。实验结果表明:经变形后,在850℃和900℃保温过程中,Mn-Mo-Nb-B多元微合金钢析出颗粒尺寸在各个阶段均小于相同工艺下Nb-Ti钢中析出相的尺寸。统计结果显示,析出颗粒的尺寸均复合正态分布,并且峰位尺寸接近平均尺寸。析出相中Nb/Ti比随着松弛时间而增大。松弛阶段后期,Mo进入(Ti,Nb)(C,N)的晶格当中,其含量随着时间的延长而增加。 Thermo-simulation test, transmission electron microscopy(TEM) and nanobeam EDS technique were used to investigate the strain induced precipitation behavior during relaxation process after deformed austenite in Mn-Mo-Nb-B low carbon multi-microalloyed steel. The experiment results indicate that during isothermal holding at 850 ℃ and 900℃ after predeformation, the size of precipitates occurred in the Mn-Mo-Nb-B steel at the different stage are smaller than that happened in the only Nb and Ti-bearing microalloyed steel. The results of statistics show that the distribution of particle size corresponds to the normal one with the peak size approaching to the mean value. The ratio of Nb/Ti of precipitates increased with the relaxing time. After longer holding, Mo atoms would enter the lattice of (Nb,Ti)(C, N) precipitates and its concentration in the precipitates increased with the relaxation time prolonged.
出处 《钢铁研究学报》 CAS CSCD 北大核心 2010年第3期29-33,共5页 Journal of Iron and Steel Research
基金 河北省自然科学基金-钢铁联合研究基金资助(E2008001141)
关键词 Mn—Mo—Nb—B微合金钢 等温松弛 应变诱导析出 碳氮化物 Mn-Mo-Nb-B microalloyed steel relaxation strain-induced precipitation carbonitrides
  • 相关文献

参考文献13

  • 1Lee W B, Hong S G, Park C G, et al. Influence of Mo Precipitation Hardening in Hot Rolled HSLA Steels Containing Nb [J]. Scripta Mater,2000,43:319.
  • 2Hong S G, Kang K B, Park G G. Strain Induced Precipitation of Nb in Nb and Nb-Ti Microalloyed HSLA Steels [J].Scripta Materialia, 2002,46 : 163.
  • 3Craven A J, He K, Garvie L A, et al. Complex Heterogeneous Precipitation in Ti-Nb Microalloyed AI killed HSLA Steels- I , (Ti,Nb)(C,N) Particles[J]. Acta Mater,2000,48:3857.
  • 4苑少强,梁国俐,武会宾.低碳钢中微合金元素Nb,Mo在析出过程中的相互作用[J].材料热处理学报,2007,28(B08):339-342. 被引量:8
  • 5Poths R M, Higginson R L, Palmiere E J. Complex Precipitation Behavior in a Microalloyed Plate Steel [J]. Scripta Mater, 2001,44:147.
  • 6Akben M G, Bacrox B, Jonas J J. Effect of V and Mo Addition on High Temperature Recovery, Recrystallization and Precipitation Behavior of Niobium-Based Microalloyed Steels [J]. Acta Metall,1983,31:161.
  • 7杨善武,贺信莱,陈梦谪,党紫九,柯俊,陈钰珊,郑磊.铌硼微合金钢高温应变诱导析出行为[J].材料科学与工程,1994,12(2):49-53. 被引量:20
  • 8王昭东,曲锦波,刘相华,王国栋.松弛法研究微合金钢碳氮化物的应变诱导析出行为[J].金属学报,2000,36(6):618-621. 被引量:48
  • 9Akben M G, BacrolxX B, Onas J J. Effect of Vonadium and Molybdenum Addition on High Temperature Recovery, Recrystallization and Precipitation Behavior of Niobium-Based Mi croalloyed steels [J]. Acta metal, 1983,31 : 165.
  • 10Poths R M, Higginson R L, Palmiere E J. Complex Precipitation Behavior in a Microalloyed Plate Steel [J]. Sepita Mater,2001,44:147.

二级参考文献9

共引文献72

同被引文献9

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部