期刊文献+

SCR成形Al-1.5Mg-0.3Sc合金线材的组织与性能

Microstructure and Property of Al-1.5Mg-0.3Sc Alloy Formed by SCR Technology
下载PDF
导出
摘要 采用单辊搅拌冷却技术(SCR)制备Al-1.5Mg-0.3Sc(质量分数,%)合金线材,对比相同成分常规铸造工艺制备的合金,对SCR成形合金线材组织与性能进行了研究.结果表明:SCR成形Al-1.5Mg-0.3Sc合金的晶粒较常规铸造工艺制备合金的晶粒细小;常规铸造工艺制备的Al-1.5Mg-0.3Sc合金,金相试样腐蚀后,在合金晶界处出现黑色的、结构不规则的层片状、有弓形边界的Al3Sc沉淀物;SA合金线材520℃在线固溶、320℃时效3 h,抗拉强度为304 MPa,延伸率为18.9%,合金线材具有较高的强度和良好的塑性. The SCR(Shearing-Cooling-Rolling) and conventional casting technology were compared in the preparation of Al-1.5Mg-0.3Sc(wt%), with the effect of trace of Sc addition on the microstructure and property of Al-1.5Mg-0.3Sc(wt%) alloy wire formed by SCR technology investigated. The results showed that the grain of SCR-formed alloy wire is smaller than that of the alloy wire formed conventionally. The latter, after its specimen was metallographically etched, presents the back and irregular lamellar structure at its grain boundaries with some Al3Sc precipitates found at arc boundaries. But, the former, when its specimen was solid solution at 520℃ and aged at 320℃ for 3h, its tensile strength is 304 MPa with an elongation 18.9%. It revealed that the SCR-formed alloy wire has higher strength and plasticity.
出处 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2006年第3期284-287,共4页 Journal of Northeastern University(Natural Science)
基金 国家自然科学基金与上海宝钢集团联合资助项目(50274020)
关键词 AL-MG-SC合金 AL3SC 单辊搅拌冷却(SCR) 时效 力学性能 Al-Mg-Sc alloy Al3Sc Shearing-Cooling-Rolling (SCR) aging mechanical property
  • 相关文献

参考文献8

  • 1Lathabai S,Loyd P G.The effect of scandium on the microstructure,mechanical properties and weldability of a cast Al-Mg alloy[J].Acta Materialia,2002,50:4275-4292.
  • 2Davydov V G,Rostova T D,Zakharov V V,et al.Scientific principles of making an alloying addition of scandium to aluminum alloys[J].Materials Science and Engineering,2003,280(1):30-36.
  • 3Riddle Y W,Sanders T H.A study of coarsening,recrystallization,and morphology of microstructure in Al-Sc-(Zr)-Mg alloy[J].Metallurgical and Materials Transactions,2004,35A(1):341.
  • 4Vinogradov A,Washikita A,Kitagawa K,et al.Fatigue life of fine-grain Al-Mg-Sc alloys produced by equal-channel angular pressing[J].Materials Science and Engineering,2003,349A:318-326.
  • 5Hude K B,Norman A F.The effect of cooling rate on the morphology of primary Al3Sc intermetallic particles in Al-Sc alloys[J].Acta Mater,2001,49:1327-1337.
  • 6Nith T G,Kaibyshev R,Hsiung L M,et al.Subgrain formation and evolution during the deformation of an Al-Mg-Sc alloy at elevated temperatures[J].Scripta Materialia,1997,36(9):1011-1066.
  • 7Norman A F,Hyde K,Costello F,et al.Examination of the effect of Sc on 2000 and 7000 series aluminum alloy casting:for improvements in fusion welding[J].Materials Science and Engineering,2003,354A:188-198.
  • 8潘青林,尹志民,邹景霞,陈显明,张传福.微量Sc在Al-Mg合金中的作用[J].金属学报,2001,37(7):749-753. 被引量:46

二级参考文献4

共引文献45

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