期刊文献+

高锰TWIP钢拉伸时织构演变和孪生弱化织构的作用 被引量:6

Texture evolution and texture weakening by twinning in tensile-deformed high manganese TWIP steels
下载PDF
导出
摘要 研究室温下锰的质量分数分别为26%和30%的两种晶粒较粗大的TWIP钢拉断过程中织构的演变规律及孪生弱化〈111〉织构的作用。结果表明,TWIP钢拉伸时形成较强的〈111〉织构,也形成由〈111〉取向晶粒的不同孪晶产生的接近〈100〉的弱织构,从而孪生弱化了〈111〉拉伸织构。粗的奥氏体晶粒促进孪生,从而加速〈111〉织构的弱化。拉伸过程中〈111〉取向的晶粒有利于形变孪生,〈100〉取向的晶粒不利于孪生。锰含量较低的26Mn钢出现少量的形变诱发ε-M,由于ε-M主要从〈111〉取向的形变孪晶内形成,因此也出现择优取向,形成倾转的基面织构,弱化了〈111〉织构。 Texture evolution during tensile deformation and the weakening of 〈111〉 texture by twinning at room temperature were investigated in coarse-grained high manganese TWIP steels with 26% and 30% manganese,respectively.The results show that a dominant 〈111〉 texture develops during tensile deformation,and at the same time weak textures close to the 〈100〉 orientation are formed due to the twinning of 〈111〉 matrix grains,which weakens 〈111〉 texture.Coarse austenite grains facilitate twinning and thus accelerate 〈111〉 texture weakening.Besides,during tensile deformation austenite grains of 〈111〉 orientation are easy to twin,while grains of 〈100〉 orientation are difficult to twin.Small amount of ε-martensite is induced during tension in 26Mn steel of lower manganese content and it forms mainly within the twins in 〈111〉-oriented matrix.Therefore,it weakens 〈111〉 texture of matrix on the one hand and is also preferentially oriented producing a tilt basal microtexture on the other hand.
出处 《武汉科技大学学报》 CAS 2011年第6期424-431,共8页 Journal of Wuhan University of Science and Technology
基金 国家自然科学基金资助项目(50771019) 高等学校博士学科点专项科研基金资助项目(20090006110013)
关键词 高锰钢 拉伸变形 织构演变 孪生 high manganese steel tensile deformation texture evolution twinning
  • 相关文献

参考文献19

  • 1Grassel O, Kruger L, Frommeyer G, et al. High strength Fe- Mn- ( Al, Si) TRIP/TWlP steels devel- opment properties application[J]. International Journal of Plasticity,2000,16:1 391 -1 409.
  • 2DING Hua,TANG Zheng-You,LI Wei,WANG Mei,SONG Dan.Microstructures and Mechanical Properties of Fe-Mn-(Al, Si) TRIP/TWIP Steels[J].Journal of Iron and Steel Research(International),2006,13(6):66-70. 被引量:31
  • 3Hamada A S, Karjalainen L P, Somani M C. The influence of aluminum on hot deformation behavior and tensile properties of high-Mn TWIP steels[J]. Materials Science and Engineering A, 2007, 467(1 2) : 114-124.
  • 4Dini G, Najafizadeh A, Ueji R, et al. Improved ten- sile properties of partially recrystallized submicron grained TWlP steel[J]. Materials Letters, 2010, 64(1): 15 -18.
  • 5Huang B X, Wan X D, Rong Y H, et al. Mechani- cal behavior and martensitic transformation of an Fe-Mn-Si-Al-Nb alloy [J]. Materials Science and Engineering A, 2006, 438- 440: 306-311.
  • 6Zhen-li Mi Di Tang Hai-tao Jiang Yong-juan Dai Shen-sheng Li.Effects of annealing temperature on the microstructure and properties of the 25Mn-3Si-3Al TWIP steel[J].International Journal of Minerals,Metallurgy and Materials,2009,16(2):154-158. 被引量:14
  • 7Ueji R, Tsuehida N, Terada D, et al. Tensile prop- erties and twinning behavior of high manganese aus- tenitic steel with fine-grained structure[J]. Scripta Materialia, 2008, 59: 963-966.
  • 8Mujica L, Webera S, Pintob H, et al. Microstruc- ture and mechanical properties of laser-welded joints of TWIP and TRIP steels[J]. Materials Science and Engineering A, 2010, 527:2 071-2 078.
  • 9Dini G, Najafizadeh A, Monir-Vaghefi S M, et al. Predicting of mechanical properties of Fe-Mn-(Al, Si) TRIP/TWIP steels using neural network model- ing[J]. Computational Materials Science, 2009, 45 (4): 959-965.
  • 10Vercammen S, Blanpain B, De Cooman B C. Cold rolling behavior of an austenitic Fe-30Mn-3Si-3Al TWIP-steel: the importance of deformation twin- ning[J]. Acta Material, 2004, 52:2 005-2 012.

二级参考文献21

共引文献66

同被引文献74

引证文献6

二级引证文献26

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