欢迎登录材料期刊网

材料期刊网

高级检索

TiAl金属间化合物以其密度低、熔点高及高温强度较高而成为重要的结构材料,并应用于诸如汽车、飞机发动机部件.然而,其高温下抗氧化性能不足是亟待解决的关键问题之一.从TiAl高温氧化机理、添加合金元素作用以及表面技术的应用三个方面,论述了TiAl高温抗氧化研究进展.讨论了等离子渗Nb大幅度改善TiAl高温抗氧化性能的作用机制.

参考文献

[1] Garbke H J;Schiitze M.[J].Oxidation of Intermetallics,WILEY-VCH,1997
[2] Dettenwanger H;Schumann E;Ruhle M et al.[J].Oxidation of Metals,1997,50:255.
[3] Lang C;Schutze M .[J].Oxidation of Metals,1996,46(3-4):255.
[4] Becker S;Rahmel A;Schorr M et al.[J].Oxidation of Metals,1992,38(5-6):425.
[5] Zheng N;Quqdakkers W J;Gill A et al.[J].Oxidation of Metals,1995,44:477.
[6] Dettenwanger F et al.[J].Mat Res et Mater,1995,364:981.
[7] Rakowski J M et al.[J].Scripta Metallurgica et Materialia,1995,33:997.
[8] 曲恒磊,周廉,魏海荣.影响TiAl高温氧化的两个因素[J].材料工程,2000(01):3-6.
[9] Shida Y et al.[J].Materials Transactions,1993,34(03):236.
[10] Wagner C .[J].Electrochem,1959,63:772.
[11] Anda H;Shida Y .[J].Journal of the Japan Institute of Metals,1994,58:746.
[12] Shida Y;Kouzuki Y;Nagata T .[J].Journal of the Japan Institute of Metals,1997,61(12):1365.
[13] Anda H;Shida Y .[J].Journal of the Japan Institute of Metals,1994,58:754.
[14] Perkins R A;Chiang K T;Meier G H .[J].Scripta Metallurgica et Materialia,1987,21:1505.
[15] Kasahara K;Hashimoto K;Doi H et al.[J].Journal of the Japan Institute of Metals,1990,54:948.
[16] Maki K;Shioda M;Sayashi M et al.[J].Materials Science and Engineering,1992,A153:591.
[17] Shida Y;Anadn H .[J].Corrosion Science,1993,35:945.
[18] Taniguchi S;Juso H;Shibata T .[J].Materials Transactions,1996,37:245.
[19] Taniguchi S;Shibata T;Juso H et al.[J].Oxidation of Metals,1994,42:205.
[20] Kim B G;Kim G M;Kim C J .[J].Scripta Metallurgica et Materialia,1995,33(07):1117.
[21] Shida Y;Anada H .[J].Materials Transactions,1994,35(09):623.
[22] Shida Y;Anada H .[J].Oxidation of Metals,1996,45(1-2):197.
[23] Mckee D W;Huang S C .[J].Corrosion Science,1993,33:1899.
[24] Shibue K;Kumagai M;Kim H .[J].Journal of the Japan Institute of Metals,1992,56:1457.
[25] Taniguch S;Garbke H J;Shiitze M.[J].Oxidation of Intermetallics WILEY VCH,1997:65.
[26] 辛丽,李铁藩,李美栓,周龙江.氯对TiAl基合金高温氧化行为的影响[J].腐蚀科学与防护技术,1999(03):129-134.
[27] Meier G H;Garbke H J;Shiitze M.Oxidation of Intermetallics[M].WILEY-VCH,1997:36.
[28] 唐兆麟;王福会;吴维文 .[J].金属学报,1997,33(10):1328.
[29] Kobayashi E;Yoshihara M;Tanaka R .[J].Journal of the Japan Institute of Metals,1989,53:251.
[30] Taniguchi S;Shibata T;Murakami A .[J].Oxidation of Metals,1994,41:103.
[31] Taniguchi S;Shibata T;Murakami A et al.[J].Oxidation of Metals,1994,42:17.
[32] 唐兆麟;王福会;吴维文 .[J].金属学报,1998,34(10):1084.
[33] Kasahara K;Takeyama M .[J].Journal of the Japan Institute of Metals,1993,57:1288.
[34] Kasahara K;Takei A .[J].Journal of the Japan Institute of Metals,1993,57:544.
[35] Tang ZL.;Wu WT.;Wang FH. .Effect of MCrAlY overlay coatings on oxidation resistance of TiAl intermetallics[J].Surface & Coatings Technology,1998(3):248-252.
[36] Tang Z L;Wang F H;WU W T .[J].Surface and Coatings Technology,1998,110:57.
[37] Shimizu T;Iikubo T;Isobe S .[J].Materials and Engineering,1992,A153:602.
[38] Taniguchi S;Shibata T;Aasanuma N et al.[J].Oxidation of Metals,1993,39:457.
[39] Tang Z L;Wang F H;WU W T .[J].Oxidation of Metals,1997,48:511.
[40] Liu X;Yu Y;Zhen Z et al.[J].Surface and Coatings Technology,1991,46:227.
[41] Taniguchi S;Shibata T;Takeuchi K .[J].MATERIALS TRANSACTIONS,1991,32:299.
[42] Chen C C;Lin R Y .[J].Scripta Metallurgica et Materialia,1994,30:523.
[43] Haanappel V A C;Schmutzler H J;Stroosnijder M F.[A].The Mimerals,Metals · Materials Society,1997:129.
[44] Taniguchi S.;Shibata T. .Effect of Nb-Ion Implantation on the Oxidation Resistance of TiAl[J].Materials transactions,1996(5):998-1003.
[45] Mabuchi H;Asai T;Nakayama Y .[J].Scripta Metallurgica et Materialia,1989,23:685.
[46] Kim S;Park K;KimI et al.[J].Materials Science and Technology,1998,14:822.
[47] Kim S;Yoon Y;Kim H et al.[J].Materials Science and Technology,1998,14:435.
[48] 贺跃辉;黄伯云;曲选辉 等.[J].材料研究学报,1996,10(06):603.
[49] 郑传林 .博士学位论文[D].北京:北京科技大学,2001.
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%