期刊文献+

超低温轧制纳米孪晶Cu-Zn-Si合金的退火行为 被引量:4

Annealing Behaviors of Cu-Zn-Si Alloy with Nanotwins Prepared by Cryorolling
原文传递
导出
摘要 在超低温(液氮浸泡)下经多道次轧制制备了纳米孪晶Cu-Zn-Si合金,分析了轧制温度对Cu-Zn-Si合金力学性能和退火行为的影响。结果表明:合金在超低温轧制过程中形成大量厚度约为10 nm的超细孪晶,促进其硬度和强度提高;对超低温轧制的合金退火,更易于诱发再结晶、提高再结晶形核率;利用超低温轧制产生的纳米孪晶界和退火形成的亚微米晶粒,能使合金兼具优异的强度和塑性;经90%超低温轧制和280℃/5 h退火处理后,合金的抗拉强度达787 MPa,延伸率为14.3%。 The microstructure, mechanical properties and annealing behaviors of Cu-Zn-Si alloy subjected to cryorolling was investigated by transmission electron microscope, tensile tests and microhardness measurement. It is found that cryorolling encourages twinning and dislocation accumulation in Cu-Zn-Si alloy, enhancing the tensile strength and microhardness. Furthermore, cryorolling could provide more nucleation sites for static recrystallization than cold rolling does. After annealing, cryorolled samples own excellent combination of strength and ductility compared with cold rolled ones, due to the nanotwins generated by cryorolling and finer grains. A tensile strength of 787 MPa and an elongation to failure of 14.3% are obtained for Cu-Zn-Si alloy after cryorolling followed by annealing at 280 °C for 5 h.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2016年第5期1340-1344,共5页 Rare Metal Materials and Engineering
基金 国家自然科学基金(51174234)
关键词 铜合金 超低温轧制 退火 孪晶 再结晶 copper alloy cryorolling annealing twinning recrystallization
  • 相关文献

参考文献11

  • 1KangZhixin(康忠新),PengYonghui(彭勇辉),LaiXiaoming(赖晓明)et al.中国有色金属学报[J],2010,20(4):587.
  • 2Koch C C. Scripta Materialia[J], 2003, 49(7): 65.
  • 3Lu L, Shen Y, Chen X et al. Science[J], 2004, 304(5669): 422.
  • 4Pande C, Rath B, Imam M. Materials Science and Engineering A [J], 2004, 367( 1 ): 171.
  • 5Humphreys F J, Hatherly M. Recrystallization and Related Annealing Phenomena[M]. Oxford: Pergamon Press, 2004:35.
  • 6Wang Y M, Chen M W, Zhou F H et al. Nature[J], 2002, 419: 912.
  • 7Wang Y M, Ma E. Acta Materialia[J], 2004, 52 (6): 1699.
  • 8Carter C B, Ray I L F. Philosophical Magazine[J], 1997, 35(1): 189.
  • 9Shen Y F, Lu L, Lu Q H et al. Scripta Materialia[J], 2005, 52: 989.
  • 10温燕宁,肖来荣,张喜民,李威,郑英鹏,耿占吉.Cu-Zn-Al-Ni合金的组织与性能[J].中南大学学报(自然科学版),2011,42(4):922-927. 被引量:8

二级参考文献15

  • 1龚寿鹏.铜基弹性合金的开发与应用[J].有色金属加工,2005,34(2):33-35. 被引量:29
  • 2刘淳.铜基高弹性材料的研究[J].湖南冶金,1996,24(1):15-19. 被引量:5
  • 3夏顺龙,叶启仁,苗国霞.新型铜基弹性合金材料的试制[J].浙江冶金,1996(1):18-23. 被引量:6
  • 4李喜,任忠鸣,王晖,邓康,徐匡迪.强磁场下Al-Ni合金凝固初生相Al_3Ni的取向行为[J].中国有色金属学报,2006,16(3):476-481. 被引量:13
  • 5Aksoy M, Kuzucu V, Turhan H. A note on the effect of phosphorus on the microstructure and mechanical properties of leaded-tin bronze[J]. Journal of Materials Processing Technology, 2002, 124(12): 113-119.
  • 6Mapelli C, Venturini R. Dependence of the mechanical properties of an α/β brass on the microstructural features induced by hot extrusion[J]. Scripta Materiali, 2006, 54(6): 1169-1173.
  • 7Sayed S M, Ashour E A, Youssef G I. Effect of sulfide ions on the stress corrosion behaviour of Al-brass and Cu10Ni alloys in salt water[J]. Jonrnal of Materials Science, 2002, 37(11): 2267-2272.
  • 8Ravichandran R, Rajendran N. Electrochemical behavior of brass in artificial seawater: Effect of organic inhibitors[J]. Applied Surface Science, 2005 241(3/4): 449-458.
  • 9潘奇汉.H5铜基弹性合金的研制与应用.机械工程材料,1987,9(6):34-42.
  • 10蔡薇,饶克,李莉.H65黄铜带的晶粒细化与组织性能[J].特种铸造及有色合金,2007,27(9):728-730. 被引量:6

共引文献7

同被引文献38

引证文献4

二级引证文献4

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