欢迎登录材料期刊网

材料期刊网

高级检索

本文研究了Mg的添加对Al-Cu-Li-Zn-Mn-Zr合金力学性能和微观时效组织的影响.实验结果表明,无论是T6处理还是T8处理,合金中添加Mg,在延伸率几乎不损失甚至稍有提高的基础上,明显提高了合金强度,加快了时效硬化速率,使峰值时效时间提前.透射电镜观察表明:加Mg的合金,T1相的析出数量明显增多,密度增大,且更细小弥散.随Mg含量的增加,这种趋势更明显.另外,在T6处理下添加Mg促进T1相的弥散析出作用更加明显,从而减少了T6和T8处理的强度差别.

参考文献

[1] E J Lavernia;N J Grand .[J].Journal of Materials Science,1987,22:321.
[2] 杨守杰,陆政,苏彬,戴圣龙,刘伯操,颜鸣皋.铝锂合金研究进展[J].材料工程,2001(05):44-47.
[3] D L GILMORE;E.A. STARKE, Jr .Trace element effects on precipitation processes and mechanical properties in A1-Cu-Li alloy[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1997,28:1399-1415.
[4] hoichi Hirosawa;Tatsuo Sato;Akihiko Kamio .Effects of Mg addition on the kinetics of low-temperture precipitation in Al-Li-Cu-Ag-Zr alloys[J].Materials Science and Engineering,1998,242:195-201.
[5] Itoh Q Cui;M. Kanno.Effects of a small addition of magnesium and silver on the precipitation of T1 phase in an A1-4% Cu-1.1% Li-0.2%Zr alloy[J].Materials Science and Engineering,1996:211,128-137.
[6] Polmear I J;Chester R J .Abnormal hardening in an Al-Cu-Mg alloy containing silver and lithium[J].Scripta Metallurgica et Materialia,1989,23:1213.
[7] 横田純一;度涉一;里逵雄;神尾彰彦 .[J].轻金属,1999,49(02):51.
[8] Ringer S P;Hono K;Polmear I J;Sakurai T .[J].Acta Materialia,1996,44(05):1883.
[9] Shoichi HIROSAWA;Tatsuo SATO .Atomistic behavior of microalloying elements in phase decomposition of Al based alloys[J].Materials Science Forum,2002(Pt.2):649-654.
[10] L F Mondolfo;Aluminum Alloy.Structure and Properties[M].
[11] 郑子樵;黄碧萍;尹登峰 .微量Ag和Mg在2195合金中的合金化作用[J].中南工业大学学报(自然科学版),1998,29(01):42-45.
[12] B.-P. Huang;Z.-Q.Zheng .Independent and combined roles of trace Mg and Ag additions in properties precipitation process and precipitation kinetics of Al-Cu-Li- (Mg)-(Ag)-Zr-Ti alloys[J].Acta materialia,1998(12):4381-4393.
[13] Noble B;Thompson G E .T1 (Al2CuLi) precipitation in aluminumcopper-lithium alloys[J].Journal of Metallurgy,1972,6:167.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%