欢迎登录材料期刊网

材料期刊网

高级检索

采用粉末冶金法制备SiCp/2009Al复合材料热压锭,并对热压锭进行了热挤压,分析了热压态和挤压态复合材料的相组成和元素分布.结果表明:热压锭存在轻微的元素偏析,下部Cu和Mg含量略高于上部.热压态复合材料组成相主要为Al,SiC,Al2Cu和Mg2Si,另外还含有少量的Al7Cu2Fe和Mg的氧化物.经固溶处理后,Al2Cu和Mg2Si溶解,Cu在基体中均匀分布,但Mg仍偏聚于原始铝颗粒边界和SiC团聚处.挤压变形不改变复合材料的相组成,但使SiC分布更均匀并破碎了铝颗粒表面的氧化膜.挤压态复合材料经固溶处理后,Cu和Mg均在基体中均实现了均匀分布.

参考文献

[1] Lloyd D J.Int Mater Rev,1994; 39:1
[2] Geiger A L,Walker J A.JOM,1991; 43:8
[3] Hong S H,Chung K H.Mater Sci Eng,1995; A194:165
[4] Song M,He Y H.Mater Des,2010; 31:985
[5] Jin P,Xiao B L,Wang Q Z,Ma Z Y,Liu Y,Li S.Acta Metall Sin,2011:47:298(金鹏,肖伯律,王全兆,马宗义,刘越,李曙.金属学报,2011; 47:298)
[6] Jin P,Xiao B L,Wang Q Z,Ma Z Y,Liu Y,Li S.Mater Sci Eng,2011; A528:1504
[7] Ogel B,Gurbuz R.Mater Sci Eng,2001; A301:213
[8] Zhou J,Duszczyk J.J Mater Sci,1999; 34:545
[9] Liu Z Y,Wang Q Z,Xiao B L,Ma Z Y,Liu Y.Mater Sci Eng,2010; A527:5582
[10] Mondolfo L F.Aluminum Alloys:Structure and Properties,London:Butterworths,1976:1
[11] Kiourtsidis G E,Skoliano S M,Litsardakis G A.Mater Sci Eng,2004; A382:351
[12] Urena A,Martinez E E,Rodrigo P,Gil L.Compos Sci Technol,2004; 64:1843
[13] Li Y,Li P,Zhao G,Liu X T,Cui J Z.Mater Sci Eng,2005; A397:204
[14] Rodrigo P,Poza P,Utrilla V,Urena A.J Alloys Compd,2009; 479:451
[15] Mcleod A D,Gabryel C M.Metall Trans,1992; A23:1279
[16] Strangwood M,Hippsley C A,Lewandowski J J.Scr Metall Mater,1990; 24:1483
[17] Nutt S R,Carpenter R W.Mate Sci Eng,1985; 75:169
[18] Kimura A,Shibata M.Kondoh K,Takeda Y,KatayamaM,Kanie T,Takada H.Appl Phys Lett,1997; 70:3615
[19] Ma Z Y,Lu Y X,Luo M,Bi J.J Mater Sci Technol,1995;11:291
[20] Liu Z Y,Wang Q Z,Xiao B L,Ma Z Y,Liu Y.Acta MetallSin,2010; 46:1121(刘振宇,王全兆,肖伯律,马宗义,刘越.金属学报,2010; 46:1121)
[21] Gutin S S,Panov A A,Khlopin M I.Powder Metall Met Ceram,1972; 11:280
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%