欢迎登录材料期刊网

材料期刊网

高级检索

高强高导Cu-Nb多芯复合材料是强度和导电率匹配得最好的合金之一,在脉冲磁体领域具有很大的应用潜力.从Cu-Nb复合材料的主要制备工艺、强化模型、强化机理、导电机理等方面综述了Cu-Nb复合材料的研究现状,同时提出今后Cu-Nb复合材料的研究重点及发展前景.

参考文献

[1] 邹立颖 .Cu-Nb金属基复合材料热变形本构关系的研究[D].东北大学,2012.
[2] Botcharova E;Freudenberger J;Schultz L .Mechanical and electrical properties of mechanically alloyed nanocrystalline Cu-Nb alloys[J].Acta materialia,2006(12):3333-3341.
[3] 刘瑞蕊,周海涛,周啸,陆德平,刘克明,彭谦之,彭勇,钟芳华.高强高导铜合金的研究现状及发展趋势[J].材料导报,2012(19):100-105.
[4] Dubois, J. B. .Cu/Nb Nanocomposite Wires Processed by Severe Plastic Deformation for Applications in High Pulsed Magnets: Effects of the Multi-Scale Microstructure on the Mechanical Properties[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2012(3):1-4.
[5] Xuan Zhang;Jianguo Wen;Pascal Bellon .Irradiation-induced selective precipitation in Cu-Nb-W alloys: An approach towards coarsening resistance[J].Acta materialia,2013(6):2004-2015.
[6] 王传军,宁远涛,张昆华,管伟明,耿永红,毕珺
[7] 陈小红,刘平,田保红,张毅,贾淑果,任凤章,井晓天.形变Cu-Cr原位复合材料中纤维相的热稳定性[J].中国有色金属学报,2009(02):328-333.
[8] Gao Haiyan;Wang Jun;Shu Da et al.Microstructure and strength of Cu-Fe-Ag in situ composites[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2007,452:368.
[9] 占国星,李明茂.高强高导Cu-Cr-Zr系合金的研究与应用进展[J].有色金属科学与工程,2012(01):13-17,48.
[10] Zhang H;Zhang H G;Li L X .Hot deformation behavior of Cu-Fe-P alloys during compression at elevated temperature[J].Journal of Materials Processing Technology,2009,209(06):2893.
[11] 刘克明,陆德平,周海涛,A.Atrens,邹晋,杨艳玲.形变Cu-Cr-Ag原位复合材料组织和性能[J].稀有金属材料与工程,2011(11):1931-1935.
[12] Zhang, L.;Li, Z.;Lei, Q.;Qiu, W.T.;Luo, H.T. .Hot deformation behavior of Cu-8.0Ni-1.8Si-0.15Mg alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2011(3):1641-1647.
[13] 梁明,卢亚锋,张平祥,李成山,闫果,陈自力,李金山.高强度高导电Cu-Nb微观复合材料的研究进展[J].材料导报,2009(17):75-79,84.
[14] 李贵茂,王恩刚,张林,左小伟,赫冀成.形变原位Cu-Ag复合材料的研究进展[J].材料导报,2010(05):80-84.
[15] 孙鲁飞 .集束拉拔技术制备Ag(Cu)基金属复合材料的研究[D].东北大学
[16] Bevk J;Harbison J P;Bell J D .Anomalous increase in strength of in situ formed Cu-Nb multifilamentary composites[J].Applied Physics,1978,49(12):6034.
[17] D. Raabe;S. Ohsaki;K. Hono .Mechanical alloying and amorphization in Cu-Nb-Ag in situ composite wires studied by transmission electron microscopy and atom probe tomography[J].Acta materialia,2009(17):5254-5263.
[18] 宁远涛,张晓辉,吴跃军.Cu-Ag合金原位纤维复合材料的应变强化效应[J].中国有色金属学报,2007(01):68-74.
[19] Liu J B;Zeng Y W et al.Crystal structure and morphology of a rare-earth compound in Cu-12wt% Ag[J].Journal of Alloys and Compounds,2009,468(1-2):74.
[20] 朱雪婷,孙勇,郭中正,吴大平,刘国涛.Cu-Nb复合材料的研究现状与展望[J].南方金属,2012(02):1-6.
[21] Thilly L;Lecouturier F;Coffe G et al.Recent progress in the development of ultra high strength "continuous" Cu/Nb and Cu/Ta conductors for non-destructuve pulsed fields higher than 80T[J].IEEE Transactions on Applied Superconductivity,2002,12(01):186.
[22] L. Thilly;P. O. Renault;V. Vidal;F. Lecouturier;S. Van Petegem;U. Stuhr;H. Van Swygenhoven .Plasticity of multiscale nanofilamentary Cu/Nb composite wires during in situ neutron diffraction: Codeformation and size effect[J].Applied physics letters,2006(19):191906-1-191906-3-0.
[23] Xu, X. .Heat Treatment Effect on the Magnetic Properties of Cu-Nb Micro-Composites[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2012(3):1-4.
[24] Liang Ming;Lu Yafeng;Xu Xiaoyan et al.Thermal stability of Cu-Nb micro-composites by bunding and drawing process[J].Appl Supercond IEEE Transact,2012,22(03):6001903.
[25] N. A. Mara;D. Bhattacharyya;P. Dickerson;R. G. Hoagland;A. Misra .Deformability of ultrahigh strength 5 nm Cu/Nb nanolayered composites[J].Applied physics letters,2008(23):231901-1-231901-3-0.
[26] Stamopoulos D;Pissas M;Sandim MJR;Sandim HRZ .Proximity induced superconductivity in bulk Cu-Nb composites: The influence of interface's structural quality[J].Physica, C. Superconductivity and its applications,2006(1):45-54.
[27] Heringhaus F;Raabe D .Recent advances in the manufacturing of copper-base composites[J].Process Techn,1996,59(04):370.
[28] U. HANGEN;D. RAABE .MODELLING OF THE YIELD STRENGTH OF A HEAVILY WIRE DRAWN Cu-20%Nb COMPOSITE BY USE OF A MODIFIED LINEAR RULE OF MIXTURES[J].Acta Metallurgica et Materialia,1995(11):4075-4082.
[29] Thilly L;Ludwing O;Veron M et al.High-strength materials:In-suit investigations of dislocation behaviour in Cu-Nb multifilamentary nanostructured composites[J].Philosophical Magazine,2002,82(05):929.
[30] J. Wang;R.G. Hoagland;J.P. Hirth .Atomistic modeling of the interaction of glide dislocations with "weak" interfaces[J].Acta materialia,2008(19):5685-5693.
[31] A.C. Lewis;D. van Heerden;C. Eberl .Creep deformation mechanisms in fine-grained niobium[J].Acta materialia,2008(13):3044-3052.
[32] 张蓓,张治国,李卫.高强高导铜合金强化技术研究进展[J].材料导报,2012(21):92-95.
[33] N. A. Mara;D. Bhattacharyya;P. Dickerson;R. G. Hoagland;A. Misra .Deformability of ultrahigh strength 5 nm Cu/Nb nanolayered composites[J].Applied physics letters,2008(23):231901-1-231901-3-0.
[34] Xu Xiaoyan;Lu Yafeng;Liang Ming et al.Annealing effects on the microstructure and mechanical properties of Cu-Nb microcomposites[J].Materials Science Forum,2013,745:164.
[35] Pantsyrny V I;Shikov A K;Vorobieva V E et al.High strength,high conductirity microcomposite Cu-Nb wires with cross sections in the range of 0.01-100 m2[J].IEEE Transact Appl Supercond,2008,18(02):617.
[36] Botcharova E;Freudenberger J;Gaganov A;Khlopkov K;Schultz L .Novel Cu-Nb-wires: Processing and characterisation[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1-2):261-268.
[37] Nayeb-Hashemi H;Vaziri A;Ziemer K .Wear resistance of Cu-18 vol.% Nb (P/M) composites[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2008(1/2):390-396.
[38] Hong SI.;Hill MA. .Mechanical and electrical properties of heavily drawn Cu-Nb microcomposites with various Nb contents[J].Journal of Materials Science,2002(6):1237-1245.
[39] V. Vidal;L. Thilly;S. Van Petegem .Plasticity of nanostructured Cu-Nb-based wires: Strengthening mechanisms revealed by in situ deformation under neutrons[J].Scripta materialia,2009(3):171-174.
[40] Rodrigues D;Rodrigues C A;Silveira E B et al.Properties and fiux pinningof Cu-Nb superconductors with nanometyicscale pinning centers[J].IEEE Transact Appl Supercond,2005,15(02):3390.
[41] 邓丽萍,杨晓芳,卢亚峰,梁明,刘庆.Cu/Nb微观复合线材中Cu沿径向的织构研究[J].电子显微学报,2011(04):399-402.
[42] Deng Liping;Yang Xiaofang;Han Ke et al.Microstructure and texture evolution of Cu-Nb composite wires[J].Materials Characterization,2013,81:124.
[43] 雷若姗,汪明朴,郭明星,李周,魏海根.机械合金化法制备Cu-Nb合金过程中的形变孪生特性[J].中国有色金属学报,2011(02):371-376.
[44] 赵伟 .强磁场对原位形变Cu-25%Ag复合材料组织及性能的影响[D].东北大学,2009.
[45] Characteristics of High Strength and High Conductivity Cu-Nb Micro-Composites[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2010(3):1619.
[46] Pantsyrnyi V.I. .Status and perspectives for microcomposite winding materials for high field pulsed magnets[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2002(1):1189-1194.
[47] 张金钰,张欣,牛佳佳,刘刚,张国君,孙军.Cu/X(X=Cr,Nb)纳米多层膜力/电学性能的尺度依赖性[J].金属学报,2011(10):1348-1354.
[48] Sandim M J R;Sandim H R Z;Betnardi H H et al.Annealing effects on the microstructure,electrical,and magnetic properties of jelly-rolled Cu-Nb composites wires[J].Superconductor Science and Technology,2005,18(01):37.
[49] Rajarshi Banerjee;Sangita Bose;Arda Genc;Pushan Ayyub .The microstructure and electrical transport properties of immiscible copper-niobium alloy thin films[J].Journal of Applied Physics,2008(3):033511-1-033511-7-0.
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%