大塑性变形技术能将金属材料的内部组织细化到亚微米乃至纳米级,从多方面改善金属材料的性能.简述了大塑性变形的原理与工艺,介绍了近年来出现的新型大塑性变形工艺.重点对大塑性变形工艺在国内外各个领域的应用现状进行了分类论述,包括生物医疗领域、储氢领域、电力交通领域等.最后指出了大塑性变形应用研究中存在的问题,并展望了大塑性变形的应用前景.
参考文献
[1] | Valiev R .Materials science - Nanomaterial advantage[J].Nature,2002(6910):887,889-0. |
[2] | Toth L S;Gu C F .Ultrafine-grain metals by severe plastic deformation[J].Materials Characterization,2014,92:1. |
[3] | Estrin Y;Vinogradov A .Extreme grain refinement by severe plastic deformation:A wealth of challenging science[J].ACTA MATERIALIA,2013,61:817. |
[4] | Azushima A;Kopp R;Korhonen A .Severe plastic deformation (SPD) processes for metals[J].CIRP Annals-Manufacturing Techn,2008,57:735. |
[5] | Langdon T G .Twenty-five years of ultrafine-grained materials:Achieving exceptional properties through grain refine ment[J].ACTA MATERIALIA,2013,61:7059. |
[6] | Kocich R;Macháeková A;Kun(c)ická L .Twist channel multi-angular pressing (TCMAP) as a new SPD process:Numerical and experimental study[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2014,612:455. |
[7] | Kamikawa N;Furuhara T .Accumulative channel-die compression bonding (ACCB):A new severe plastic deformation process to produce bulk nanostructured metals[J].J Mater Processing Techn,2013,213:1418. |
[8] | Babaei A;Mashhadi M M;Jafarzadeh H .Tube cyclic extrusion-compression (TCEC) as a novel severe plastic deformation method for cylindrical tubes[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2014,598:6. |
[9] | Jafarzadeh H;Abrinia K;Babaei A .Applicability of repetitive tube expansion and shrinking (RTES) as a novel SPD method for fabricating UFGed pure copper tubes[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2014,609:71. |
[10] | Serra, G.;Morais, L.;Elias, C.N.;Semenova, I.P.;Valiev, R.;Salimgareeva, G.;Pithon, M.;Lacerda, R. .Nanostructured severe plastic deformation processed titanium for orthodontic mini-implants[J].Materials science & engineering, C. Materials for Biogical applications,2013(7):4197-4202. |
[11] | RUSLAN Z. VALIEV;ILCHAT SABIROV;ALEXANDER P. ZHILYAEV .Bulk Nanostructured Metals for Innovative Applications[J].JOM,2012(10):1134-1142. |
[12] | Mishnaevsky L;Levashov E;Valiev R Z et al.Nanostructured titanium based materials for medical implants:Modeling and development[J].MATERIALS SCIENCE & ENGINEERING R-REPORTS,2014,81:1. |
[13] | Elias C N;Meyers M A;Valiev R Z et al.Ultrafine grained titanium for biomedical applications:An overview of performance[J].J Mater Res Techn,2013,2(4):340. |
[14] | Lin Z J;Wang L Q;Yeung K W K et al.The ultrafinegrained titanium and biomedical titanium alloys processed by severe plastic deformation (SPD)[J].SOJ Mater Sci Eng,2013(1):1. |
[15] | Wen M;Wen C;Hodgson P et al.Improvement of the biomedical properties of titanium using SMAT and thermal oxidation[J].Colloids Surf B:Biointerfaces,2014,116:658. |
[16] | Ruslan Z. Valiev;Terence G. Langdon .Principles of equal-channel angular pressing as a processing tool for grain refinement[J].Progress in materials science,2006(7):881-981. |
[17] | Azushima A;Kopp R;Korhonen A et al.Severe plastic deformation (SPD) processes for metals[J].CIRP AnnalsManufacturing Techn,2008,57:716. |
[18] | Corrosion and ion release behavior of ultra-fine grained bulk pure copper fabricated by ECAP in Hanks solution as potential biomaterial for contraception[J].Materials Letters,2010(4):524. |
[19] | 李雪,张伊放,齐卫宏,曹晓武,王渊,李浩华.纳米储氢合金[J].化学进展,2013(07):1122-1130. |
[20] | 郭炜,王渠东.大塑性变形制备超细晶储氢材料的研究进展[J].材料导报,2009(19):71-74. |
[21] | Barkhordarian G;Klassen T;Bormann R .Effect of Nb2O5 content on hydrogen reaction kinetics of Mg[J].Journal of Alloys and Compounds,2004,364(1):242. |
[22] | Edalati K;Yamamoto A;Horita Z et al.High-pressure torsion of pure magnesium:Evolution of mechanical properties,microstructures and hydrogen storage capacity with equivalent strain[J].Scripta Materialia,2011,64:880. |
[23] | Valiev R Z;Murashkin M Y;Sabirov I .A nanostructural design to produce high-strength Al alloys with enhanced electrical conductivity[J].Scripta Materialia,2014,76:13. |
[24] | Wei, K.X.;Wei, W.;Wang, F.;Du, Q.B.;Alexandrov, I.V.;Hu, J. .Microstructure, mechanical properties and electrical conductivity of industrial Cu-0.5%Cr alloy processed by severe plastic deformation[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2011(3):1478-1484. |
[25] | 刘轶伦.高速铁路新型铜镁接触线关键技术[J].铁道机车车辆,2014(02):112-115. |
[26] | Zhu C C;Ma A;Jiang J H et al.Effect of ECAP combined cold working on mechanical properties and electrical conduc tivity of Conform-produced Cu-Mg alloys[J].Journal of Alloys and Compounds,2014,582:135. |
[27] | Sabirov, I.;Murashkin, M.Y.;Valiev, R.Z..Nanostructured aluminium alloys produced by severe plastic deformation: New horizons in development[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2013:1-24. |
[28] | Ruslan Z. Valiev;Michael J. Zehetbauer;Yuri Estrin;Heinz Werner Hoppel;Yulia Ivanisenko;Horst Hahn;Gerhard Wilde;Hans J. Roven;Xavier Sauvage;Terence G. Langdon .The Innovation Potential of Bulk Nanostructured Materials[J].Advanced Engineering Materials,2007(7):527-533. |
[29] | Jin Y G;Baek H M;Hwang S K et al.Continuous high strength aluminum bolt manufacturing by the spring-loaded ECAP system[J].J Mater Processing Techn,2012,212:848. |
[30] | Kaibyshev OA;Safiullin RV;Lutfullin RY;Valiakhmetov OR;Galeyev RM;Dutta A;Raghu T;Saha GG .Advanced superplastic forming and diffusion bonding of titanium alloy[J].Materials Science and Technology: MST: A publication of the Institute of Metals,2006(3):343-348. |
[31] | Ferrasse, S;Segal, VM;Alford, F;Kardokus, J;Strothers, S .Scale up and application of equal-channel angular extrusion for the electronics and aerospace industries[J].Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing,2008(1/2):130-140. |
[32] | Qiao X G;Gao N;Moktadir Z et al.Fabrication of MEMS components using uitrafine-grained aluminium alloys[J].Journal of Micromechanics and Microengineering,2010,20(4):045029. |
[33] | 史庆南,王效琪,起华荣,王军丽,周蕾,刘兆华.大塑性变形(severeplasticdeformation,SPD)的研究现状[J].昆明理工大学学报(自然科学版),2012(02):23-38. |
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