回顾了Ti-Ni-Cu形状记忆合金快速凝固条带的研究进展.主要介绍了Ti-Ni-Cu合金条带的组织结构、晶化行为、织构和析出物、马氏体相变温度及其形状记忆特性.合金条带的铸态组织随工艺参数不同可在非晶-晶态之间变化;独特的析出物和织构影响其相变行为和形状记忆性能;条带具有良好的形状记忆效应和超弹性性能,与体材相比,其相变应变大而相变应力滞后小.总结了研究中存在的问题并展望了未来的研究方向.
参考文献
[1] | Wayman C M;During T W;Melton K N;St(o)ckel D.Engineering aspects of shape memory alloys[M].London:Butterworth-Heinemam Press,1990 |
[2] | Nam T H;Saburi T;Shimizu K .Cu-content dependence of shape memory characteristics in Ti-Ni-Cu alloys[J].Materials Transactions JIM,1990,31:959. |
[3] | Furuya Y;Matsumoto M;Kimura H S et al.Thermoelastic phase transformation of melt-spun Ti50Ni50-xCux(x=0%~20%at) ribbons[J].Materials Science and Engineering A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,1991,147:L7. |
[4] | Tang W.;Sandstrom R. .Experimental Investigation and Thermodynamic Calculation of the Ti-Ni-Cu Shape Memory Alloys[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2000(10):2423-2430. |
[5] | Mercier O;Melton K N .The substitution of Cu for Ni in NiTi shape memory alloys[J].METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,1979,10:387. |
[6] | Lo Y C;Wu S K;Horng H E .A study of B2(←→)B19(←→)B19' two-stage martensitic transformation in a Ti50 Ni40 Cu10 alloy[J].ACTA METALLURGICA ET MATERIALIA,1993,41:747. |
[7] | Miyazaki S;Mizukoshi K;Ueki T et al.Fatigue life of Ti50at% Ni and Ti40Ni10Cu (at%) shape memory alloy wires[J].Materials Science and Engineering A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,1999,273-275:658. |
[8] | Furuya Y;Matsumoto M;Kimura H et al.Thermo-mechanical phase transformation of rapidly quenched Ti-Ni-Cu ribbons[J].Materials Transactions JIM,1990,31:504. |
[9] | Dutkiewicz J;Czeppe T et al.Effect of titanium on structure and martensic transformation in rapidly solidified CuAl-Ni-Mn-Ti alloys[J].Materials Science and Engineering A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,1999,273-275:703. |
[10] | Kolomytsev V;Babanly M;Musienko R et al.Multicomponent TiNi-based shape memory alloys:General considerations and selection rules for an initial precursor amorphous state[J].J Phys Ⅳ,2001,11:457. |
[11] | Schloβmacher P;Boucharat N;R(o)sner H et al.Crystallization studies of amorphous melt-spun Ti50Ni25Cu25[J].J Phys Ⅳ,2003,112:731. |
[12] | Nam T H;Saburi T;Nakata Y et al.Shape memory characteristics and lattice deformation in Ti-Ni-Cu alloys[J].Materials Transactions JIM,1990,31:1050. |
[13] | Goryczka T;Ochin P .Microstructure,texture and shape memory effect in Ni25Ti50Cu25 ribbons and strips[J].Materials Science and Engineering A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2006,438-440:714. |
[14] | R. SANTAMARTA;E. CESARI;J. PONS .Shape Memory Properties of Ni-Ti Based Melt-Spun Ribbons[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2004(3):761-770. |
[15] | S.H. Chang;S.K. Wu;H. Kimura .Annealing effects on the crystallization and shape memory effect of Ti_(50)Ni_(25)Cu_(25) melt-spun ribbons[J].Intermetallics,2007(3):233-240. |
[16] | Kim Y W;Nam T H .The effect of the melt spinning processing parameters on the martensitic transformation in Ti50-Ni35 Cu15 shape memory alloys[J].Scripta Materialia,2004,51:653. |
[17] | Nam TH;Park SM;Kim TY;Kim YW .Microstructures and shape memory characteristics of Ti-25Ni-25Cu(at.%) alloy ribbons[J].Smart Materials & Structures,2005(5):S239-S244. |
[18] | Nam T H;Lee J H;Kim K W et al.The B2-B19-B19′transformation in a rapidly solidified Ti-45Ni-5Cu (at%) alloy[J].JOURNAL OF MATERIALS SCIENCE,2005,21:4925. |
[19] | Xie Z L;Van Humbeeck J;Liu Y et al.TEM study of Ti50Ni25Cu25 melt spun ribbons[J].Scripta Materialia,1997,37:363. |
[20] | R(o)sner H;Shelyakov A V;Glezer A M et al.On the origin of the two-stage behavior of the martensitic transformation of Ti50-Ni25Cu25 shape memory melt-spun ribbons[J].Materials Science and Engineering A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2001,307:188. |
[21] | R(o)sner H;Schloβmacher P;Shelyakov A V et al.The influence of coherent TiCu plate-like precipitates on the thermoelastic martensitic transformation in melt-spun Ti50 Ni25-Cu25 shape memory alloys[J].Acta Materialia,2001,49:1541. |
[22] | Santamarta R;Schryvers D;Twinned B C C .Spherical particles in a partially crystallized Ti50 Ni25 Cu25 melt-spun ribbon[J].Intermetallics,2004,12:341. |
[23] | Louzguine DV.;Inoue A. .Crystallization behavior of Ti50Ni25Cu25 amorphous alloy[J].Journal of Materials Science,2000(16):4159-4164. |
[24] | Vermaut P.;Litynska L.;Portier R.;Ochin P.;Dutkiewicz J. .The microstructure of melt spun Ti-Ni-Cu-Zr shape memory alloys[J].Materials Chemistry and Physics,2003(2/3):380-382. |
[25] | Hsu PY.;Ting JM. .Growth and characteristics of TiNiCu thin films[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2002(0):524-529. |
[26] | Rosner H;Glezer AM;Feit L;Schlossmacher P;Shelyakov AV .Study of an amorphous-crystalline structured Ti-25Ni-25Cu (at.%) shape memory alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1999(0):733-737. |
[27] | Santamarta R;Schryvers D .Effect of amorphous-crystalline interfaces on the martensitic transformation in Ti50Ni25Cu25[J].Scripta Materialia,2004,50:1423. |
[28] | Santamarta R;Schryvers D .Microstructure of a partially crystallised Ti50 Ni25 Cu25 melt-spun ribbon[J].Materials Transactions JIM,2003,44:1760. |
[29] | 徐祖耀;江伯鸿;杨大智.形状记忆材料[M].上海:上海交通大学出版社,2000:51. |
[30] | Cheng G P;Xie Z L;Liu Y .Transformation characteristics of annealed Ti50 Ni25 Cu25 melt spun ribbon[J].Journal of Alloys and Compounds,2006,415:182. |
[31] | Satto C;Ledda A;Potapov P et al.Phase transformations and precipitation in amorphous Ti50 Ni25 Cu25 ribbons[J].Intermetallics,2001,9:395. |
[32] | Inoue H;Ishio M;Takasugi T .Texture of TiNi shape memory alloy sheets produced by roll-bonding and solid phase reaction from elementary metals[J].Acta Materialia,2003,51:6373. |
[33] | Cheng G P;Xie Z L;Liu Y .Texture and shape memory property of annealed Ti50 Ni25 Cu25 ribbons[J].Materials Science and Engineering A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2006,425:268. |
[34] | Morgiel J.;Cesari E.;Pons J.;Pasko A.;Dutkiewicz J. .Microstructure and martensite transformation in aged Ti-25Ni-25Cu shape memory melt spun ribbons[J].Journal of Materials Science,2002(24):5319-5325. |
[35] | Quan JJ.;Wang WY.;Wang YM.;Li M.;Jin W.;Shan FL. .Precipitates and phase transformation in Ti-Ni-Cu shape memory alloy thin film[J].Journal of Materials Science Letters,2000(2):143-145. |
[36] | Chang G P;Xie Z L .Some results on shape memory properties of Ti50 Ni25 Cu25 melt-spun ribbons[J].Journal of Alloys and Compounds,2005,396:128. |
[37] | Nam T H;Kim J H;Kim T Y et al.Superelasticity of Ti-Ni-Cu alloy ribbons fabricated by melt spinning[J].Journal of Materials Science and Letters,2002,21:1851. |
[38] | Liu Y. .Mechanical and thermornechanical properties of a Ti50Ni25Cu25 melt spun ribbon[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2003(1/2):286-291. |
[39] | Saravanan V;Khantachawana A;Miyazaki S .Texture analysis and properties of rapidly solidified Ti52 Ni38 Cu10 shape memory alloy[J].Materials Transactions JIM,2004,45:208. |
[40] | Otsuka K;Ren X .Physical metallurgy of Ti-Ni-based shape memory alloys[J].Progress in Materials Science,2005,50:511. |
[41] | Sezonenko A;Kolomytsev V;Babanly M et al.Mechanical and functional properties of quarternary (Ti,Hf)(Ni,Cu)-based shape memory melt-spun ribbons[J].J Phys Ⅳ,2003,112:889. |
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