综述了变形镁合金的种类、基本变形特性和优良性能,介绍了轧制、挤压、锻造、超塑成形等常用成形技术,探讨了变形镁合金晶粒细化的机理及常用方法如等径角挤压、形变热处理等,阐述了变形镁合金的研究现状、存在的问题,并指出了未来变形镁合金研究开发的方向.
参考文献
[1] | 胡亚民,夏华,孙智富.镁合金的塑性加工技术[J].锻压装备与制造技术,2004(05):61-66. |
[2] | 周海涛,马春江,曾小勤,丁文江.变形镁合金材料的研究进展[J].材料导报,2003(11):16-18,55. |
[3] | Erickson S C;King J F;Mellerud T .Conservring SF6 in magnesium melting operations[J].Foundry Management and Technology,1998,126(06):38. |
[4] | 刘正;张奎;曾小勤.镁基轻质合金理论基础及其应用[M].北京:机械工业出版社,2002 |
[5] | Cahn Rw;丁道云.非铁合金的结构与性能[M].北京:科学出版社,1999 |
[6] | 陈振华;严红革;陈吉华.镁合金[M].北京:化学工业出版社,2004 |
[7] | 王渠东,丁文江.镁合金及其成形技术的国内外动态与发展[J].世界科技研究与发展,2004(03):39-46. |
[8] | Mabuchi M;Nakamura M.Superplasticity in magnesium alloys[A].Wolfsburg,Germany,1998:91. |
[9] | Bussiba A;Artzy B;Shtechman A.Grain refinement of AZ31 and ZK60 Mg alloys-towards superplasticity studies[J].Materials Science and Engineering A,2001(302):56. |
[10] | Mohri T;Mabuchi M;Nakamura M.Microstructural evolution and superplasticity of rooled Mg-9Al-1Zn[J].Materials Science and Engineering A,2000(290):139. |
[11] | Kubota K;Mabuchi M;Higashi K.Review-processing and mechanical properties of fine-grained magnesium alloys[J].Materials Science,1999(34):2255. |
[12] | Metenier P;Gonzalez G;Ruano O A.Superplastic behaviour of fine-grained two-phase Mg-9wt% Li alloy[J].Materials Science and Engineering A,1990(125):195. |
[13] | Furukawa M;Horita Z;Langdon T G.Developing superplasticity at high strain rates through ECAP processing:Ultrafine Grained Materials Ⅱ)[A].,2002:459. |
[14] | 尉胤红,王渠东,刘满平,丁文江.镁合金超塑性的研究现状及发展趋势[J].材料导报,2002(09):20-23. |
[15] | Mukai T;Tsutsui H;Watanabe H et al.Experimental study of the mechanical properties at elevated temepratures in commercial Mg-Al-Zn alloys for superplastic forming[J].Key Engineering Materials,2000,171-174:337. |
[16] | Terence G. Langdon .Recent developments in high strain rate superplasticity[J].Materials transactions,1999(8):716-722. |
[17] | 尉胤红,王渠东,周海涛,朱燕萍,丁文江,Y.Chino,M.Mabuchi.轧制AZ91镁合金超塑性研究[J].高技术通讯,2002(09):52-55,51. |
[18] | 李锋,林立,童晓旻,刘正,陈立佳.镁合金及其复合材料超塑性的研究现状[J].铸造,2003(07):455-461. |
[19] | Mabuchi M;Iwasaki H;Higashi K .Lower temperature superplasticity of magnesium alloys processed by ECAE[J].Materials Science Forum,1997,243-245:547. |
[20] | Watanabe H;Mukai T;Kohzu M et al.Effect of temperature and grain size on the dominant diffusion process for superplastic flow in an Z61 magnesium alloy[J].Acta Materialia,1999,47(14):3753. |
[21] | Bacon D J;Vitek V .Atomic-scale modeling of dislocations and related properties in the hexagonal -close-packed metals[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2002,33:721. |
[22] | Kaibyshev O A;Pshenichniuk A I;Astanin A A .Superplasticity resulting from cooperative grain boundary sliding[J].Acta Materialia,1998,46:4911. |
[23] | 潘复生,张静,汪凌云,丁培道.变形镁合金研究最新进展及应用前景[C].2002年材料科学与工程新进展(2002年中国材料研讨会:论文专辑),2002:581-589. |
[24] | Han B Q;Dunand D C .Microstructure and mechanical properties of magnesium containing high volume fractions of yttria dispersoids[J].Materials Science and Engineering A,2000,277:297. |
[25] | Das S K;Chang C F.Magnesium alloys and their applications[M].Ger:Publ by DGM,Information sgesellschaft,1992:487. |
[26] | 张士宏,许沂,王忠堂,周文龙,莫立华.镁合金成形加工技术[J].世界科技研究与发展,2001(06):18-21. |
[27] | Valiev R Z;Kovzmkov A V;Mnlyukov R R .Structure and properties of altrafine-grained materials produced by severe plastic deformation[J].Materials Science and Engineering,1993,A168:141. |
[28] | Akihiro Yamashita;Zenji Horita;Terence G. Langdon .Improving the mechanical properties of magnesium and a magnesium alloy through severe plastic deformation[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2001(1/2):142-147. |
[29] | Yu Yoshida;Hideaki Yamada;Shigeharu Kamado .Microstructures and tensil properties of ECAE processed Mg-Al-Zn alloys[J].Japanese Journal of Institute of Light Metals(Japan),2001,51(10):556. |
[30] | Toshiji Mukai;Masashi Yamanoi;Hiroyuki Watanabe .Ductility enhancement in AZ31 magnesium alloy by controlling its grain structure[J].Scripta materialia,2001(1):89-94. |
[31] | Hiiroyuki Watanable;Toshiji Mukai;Koichi Ishikawa et al.Low temperature superplasticity of a fine -grained ZK60 magnesium alloys processed by equal-channel-angular extrusion[J].Scripta Materialia,2002,46(12):851. |
[32] | Valiev RZ.;Alexandrov IV.;Islamgaliev RK. .Bulk nanostructured materials from severe plastic deformation [Review][J].Progress in materials science,2000(2):103-189. |
[33] | Mukai T.;Watanabe H. .Grain Refinement of Commercial Magnesium Alloys for High-strain-rate-superplastic Forming[J].Materials Science Forum,2000(0):159-170. |
[34] | 张诗昌,段汉桥,蔡启舟,魏伯康,林汉同.镁合金的熔炼工艺现状及发展趋势[J].特种铸造及有色合金,2000(06):51-54. |
[35] | 陈刚,陈鼎,严红革.高性能镁合金的特种制备技术[J].轻合金加工技术,2003(06):40-45. |
[36] | 王渠东;丁文江 .轿车用阻燃镁合金的研制[J].材料导报,2000,14(zk):53. |
[37] | Mordike B L .Magnesium and magnesium alloys[J].Japanese Journal of Institute of Light Metals(Japan),2001,51(01):2. |
[38] | Kojima Y.; .Platform Science and Technology for Advanced Magnesium Alloys[J].Materials Science Forum,2000(0):3-18. |
[39] | 李元元,张卫文,刘英,陈维平,倪东惠.镁合金的发展动态和前景展望[J].特种铸造及有色合金,2004(01):14-17. |
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