欢迎登录材料期刊网

材料期刊网

高级检索

综述了镁基非晶复合材料的制备,主要包括内生复合法和外加复合法;介绍了用这2种方法制得的镁基非晶复合材料的力学性能;讨论了其塑性变形机理,认为其综合力学性能得到很大改善的原因是在复合材料中的纳米相或第二相限制了剪切带的增殖和扩展.通过介绍其腐蚀性能发现,目前这方面的研究还较少,并介绍了镁基非晶复合材料目前的工程应用,提出将来的研究重点应是镁基非晶复合材料的制备和耐腐蚀性能.

参考文献

[1] J.C. Huang;J.P. Chu;J.S.C. Jang .Recent progress in metallic glasses in Taiwan[J].Intermetallics,2009(12):973-987.
[2] D.G. Pan;W.Y. Liu;H.F. Zhang .Mg-Cu-Ag-Gd-Ni bulk metallic glass with high mechanical strength[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2007(1/2):142-144.
[3] Geng J Y;Sun Y F;Wang L G et al.Effect of Al addition on formation and mechanical properties of Mg-Cu-Gd bulk metallic glass[J].Transactions of Nonferrous Metals Society of China,2007,17:907.
[4] Ma H;Xu J;Ma E .Mg-based bulk metallic glass compo-sites with plasticity and high strength[J].Applied Physics Letters,2003,83(14):2793.
[5] X. Hui;W. Dong;G.L. Chen .Formation, microstructure and properties of long-period order structure reinforced Mg-based bulk metallic glass composites[J].Acta materialia,2007(3):907-920.
[6] A. Gebert;V. Haehnel;E. S. Park;D. H. Kim;L. Schultz .Corrosion behaviour of Mg{sub}65Cu{sub}7.5Ni{sub}7.5 Ag{sub}5Zn{sub}5Gd{sub}5Y{sub}5 bulk metallic glass in aqueous environments[J].Electrochimica Acta,2008(8):3403-3411.
[7] 张扣山,司乃潮,陈振华,赵伟.镁基块体金属玻璃基复合材料研究[J].热加工工艺,2006(20):4-6.
[8] 惠希东,董伟,王美玲,刘雄军,于家伶,陈国良.超常塑性Mg77Cu12Zn5Y6块体金属玻璃基内生复合材料[J].科学通报,2006(02):224-229.
[9] Ma H.;Ma E.;Xu J. .A new Mg65Cu7.5Ni7.5Zn5Ag5Y10 bulk metallic glass with strong glass-forming ability[J].Journal of Materials Research,2003(10):2288-2291.
[10] Birgit Bartusch;Frank Schurack;Jurgen Eckert .High strength magnesium-based glass matrix composites[J].Materials transactions,2002(8):1979-1984.
[11] Park E S;Kyeong J S;Kim D H .Enhanced glass forming ability and plasticity in Mg-based bulk metallic glsses[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2006,142(03):5.
[12] Park E S;Kim D H .Formation of Mg-Cu-Ni-Ag-Zn-Y-Gd bulk glassy alloy by casting into cone-shaped copper mold in air atmosphere[J].Journal of Materials Research,2005,20(02):1465.
[13] 刘利召 .镁基非晶复合材料的制备与性能研究[D].郑州大学,2007.
[14] Park ES;Lee JY;Kim DH .Effect of Ag addition on the improvement of glass-forming ability and plasticity of Mg-Cu-Gd bulk metallic glass[J].Journal of Materials Research,2005(9):2379-2385.
[15] Yuan G Y;Qin C L;Inoue A .Mg-based bulk glassy alloys with high strength above 900MPa and plastic strain[J].Journal of Materials Research,2005,20(02):394.
[16] 耿家源 .Mg-Cu-Gd(-Al)块体非晶合金的形成能力及力学行为研究[D].郑州大学,2007.
[17] Soubeyroux J L;Puech S;Blandi J J .Effect of silver on the glass forming ability of MgCuGdY bulk metallic glasses[J].Journal of Alloys and Compounds,2009,483:107.
[18] Kinaka, M;Kato, H;Hasegawa, M;Inoue, A .High specific strength Mg-based bulk metallic glass matrix composite highly ductilized by Ti dispersoid[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):299-303.
[19] Jan Schroers;William L. Johnson .Ductile Bulk Metallic Glass[J].Physical review letters,2004(25):255506.1-255506.4.
[20] Kato H;Inoue A;Saida J .Influences of hydrostatic pressure during casting and Pd content on as-cast phase in Zr-Al-Ni-Cu-Pd bulk alloys[J].Applied physics letters,2004(12):2205-2207.
[21] Fan C;Li C F;Inoue A .Nanocrystalline composites with high strength obtained in Zr-Ti-Ni-Cu-Al bulk amorphous alloys[J].Applied Physics Letters,2000,77:46.
[22] Xing LQ.;Ramesh KT.;Li J.;Hufnagel TC.;Li Y. .Enhanced plastic strain in Zr-based bulk amorphous alloys - art. no. 180201[J].Physical Review.B.Condensed Matter,2001(18):0201-0.
[23] Das J;Loeser W;Kuehn U et al.High-strength Zr-Nb-(Cu,Ni,Al) composites with enhanced plasticity[J].Applied Physics Letters,2003,82:4690.
[24] Fan C;Ott R T;Hufnagel T C .Metallic glass matrix composite with precipitated ductile reinforcement[J].Applied Physics Letters,2002,81:1020.
[25] G. He;J. Eckert;W. Loser .Stability, phase transformation and deformation behavior of Ti-base metallic glass and composites[J].Acta materialia,2003(6):1621-1631.
[26] Chunling Qin;Wei Zhang;Hisamichi Kimura;Akihisa Inoue .Excellent Mechanical Properties of Cu-Hf-Ti-Ta Bulk Glassy Alloys Containing In-Situ Dendrite Ta-based BCC Phase[J].Materials transactions,2004(9):2936-2940.
[27] Hidemi Kato;Akihisa Inoue .Synthesis and Mechanical Properties of Bulk Amorphous Zr-Al-Ni-Cu Alloys Containing ZrC Particles[J].Materials transactions,1997(9):793-800.
[28] Tomoya Hirano;Hidemi Kato .Synthesis and Mechanical Properties of Zr_(55)Al_(10)Ni_5Cu_(30) Bulk Glass Composites Containing ZrC Particles Formed by the In-Situ Reaction[J].Materials transactions,2000(11):1454-1459.
[29] Soubeyroux J L;Puech S;Blandin J J .Synthesis of new Mg-based bulk metallic glasses with high glass forming ability[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2007,253:449.
[30] 王爱民;张海峰;李宏 等.一种多功能非晶复合材料制备设备[P].中国,200710157713.9,2009-04-29.
[31] Hui X;Dong W et al.Formation,microstructure and pro-perties of long-period order structure reinforced Mg-based bulk metallic glass composites[J].Acta Materialia,2007,55:907.
[32] Lee Jae-Chul;Kim Yu-Chan;Ahn Jae-Pyoung et al.Enhanced plastic in a bulk amorphous matrix composite:Macroscopic and microscopic viewpoint studies[J].Acta Materialia,2005,53:129.
[33] 徐映坤,徐坚.陶瓷颗粒增强Mg65Cu20Zn5Y10块体金属玻璃复合材料[J].金属学报,2004(07):726-730.
[34] 吴夏 .镁基非晶合金及其复合材料的制备与性能研究[D].重庆大学,2009.
[35] Jang J S C;Tseng C T;Chang L J et al.Thermoplastic forming properties and microreplication ability of a Mg-based bulk metallic glass[J].Advances in Engineering Materials,2008,10:1048.
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%