近来,通过原位复合技术制备出了高强度、高导电性的Cu-Nb、Cu-Ag线材,并开始用于高脉冲磁场实验。本文对多相结构铜合金原位复合技术以及Cu-Ag合金的组织结构、物理性能、电学性能和稳定性进行综述,并指出尚存在的不足。
High strength and high conductivity Cu-Nb and Cu-Ag wires have been developed by using the in-situ composite technique recently,and also used in pulsed high field magnets experimentlly.In this paper,the in-situ composite technique of multiphase copper alloy as well,the microstructure,physics properties and stability of Cu-Ag alloy are summarized,the shortcoming is pointed out too.
参考文献
[1] | Schneider-Muntau H J D C .laboratory electromagnets[J].Physic,1989,B155:3-9. |
[2] | Weggel R.J.;Holmes C.K. .The monohelix: (1) five years of operation at the FBNML and (2) finite element stress analyses[J].IEEE Transactions on Magnetics,1992(1):501-504. |
[3] | Nakagawa Y;Miura S;Hoshi A et al.Detailed analysis of a Bitter-type magnet[J].Japanese Journal of Applied Physics,1983,22:1020-1024. |
[4] | Sakai Y;Inoue K .Maeda H.New high-strength high-conductivity Cu-Ag alloy sheets[J].冶金材料学报,1995,43(04):1517-1522. |
[5] | Frommeyer G;Wassermann G .Microstructure and anomalous properties of in-situ produced silver-copper composites[J].Acta Materialia,1975,23:1353-1360. |
[6] | Zhang D L;Mihara K;Suzuki H G et al.Effect of the anount of cold working and aging on the ductility of a Cu-15%Cr-0.2% Ti in-situ composite[J].Materials Science and Engineering,1999,A266:99-108. |
[7] | Matissen D;Paaben D;Heringhaus F .Experimental investigation and modeling of the influence of microstructure of the resistive conductivity of a Cu-Ag-Nb in-situ composite[J].Acta Materialia,1999,47(05):1627-1634. |
[8] | Raabe D.;Mattissen D. .Experimental investigation and Ginzburg-Landau modeling of the microstructure dependence of superconductivity in Cu-Ag-Nb wires[J].Acta materialia,1999(3):769-777. |
[9] | Spitzig W A .Strengthening in heavily deformation processed Cu-20%Nb[J].Acta Materialia,1991,39(06):1085-1090. |
[10] | Sakai Y;Inoue K;Asano T et al.Development of high-strength high-conductivity Cu-Ag alloys for high-field pulsed magnet use[J].Applied Physics Letters,1991,59(23):2965-2967. |
[11] | Sakai Y;Scheider-Muntau H J .U1tra-high strength high conductivity Cu-Ag alloy wires[J].Acta Materialia,1997,45(03):1017-1023. |
[12] | Spitzig W A;Pelton A R;Laabs F C .Characterization of the strength and microstructure of heavily cold worked Cu-Nb composites[J].Acta Materialia,1987,35(10):2427-2442. |
[13] | S.I.Hong;M.A.Hill .Microstructural stability and mechanical response of Cu-Ag microcomposite wires[J].Acta materialia,1998(12):4111-4122. |
[14] | Verhoeven J D.In-situ composites prepared by solidification and mechanical techniques[J].Situ Composites IV:267-276. |
[15] | Han K;Sims JR;Campbell LJ;Schneider-Muntau HJ;Pantsyrnyi V.I. -;Shikov A;Nikulin A;Vorobieva A;Embury JD .The fabrication, properties and microstructure of Cu-Ag and Cu-Nb composite conductors[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1999(1):99-114. |
[16] | GO Y S;Spitzing W A .Strengthening in deformation-processed Cu-20%Fe composites[J].Journal of Materials Science,1991,26(01):163-171. |
[17] | Spitzig W A;Downing H L;Laabs F C et al.Strength and electrical conductivity of a deformation-processed Cu-5%Nb composite[J].Metallurgical and Materials Transactions,1993,A24:7-14. |
[18] | Jerman G A;Anderson I E;Verhoeven J D .Strength and electrical conductivity of deformation-processed Cu-15%Fe alloy produced by powder metallurgy techniques[J].Metallurgical and Materials Transactions,1993,24:35-42. |
[19] | Hong, SI;Hill, MA .Mechanical stability and electrical conductivity of Cu-Ag filamentary microcomposites[J].Materials Science & Engineering. A, Structural Materials: Properties, Microstructure and Processing,1999(1-2):151-158. |
[20] | Benghalem A;Morris D C .Microstructure and strength of wire-draw Cu-Ag filamentary composites[J].Acta Materialia,1997,45(01):397-406. |
[21] | 李永年.连续浇铸Cu-20Ag原位纤维复合材料组织与性能[A].北京:化学工业出版社,1999:55-58. |
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:
-
10%
-
20%
-
30%
-
40%
-
50%