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等径弯曲通道变形(equal channel angular processing,ECAP)是使材料经受强烈塑性变形的一种加工方法.本文介绍ECAP的国内外发展概况,对其方法和影响因素等做了概述,并对其应用前景做了进一步的展望.

参考文献

[1] Valiev RZ.;Alexandrov IV.;Islamgaliev RK. .Bulk nanostructured materials from severe plastic deformation [Review][J].Progress in materials science,2000(2):103-189.
[2] Segal V M;REZNIKOV V I;DROTYSHEVKIJ A E.Plastic working of metals by simple shear[J].Russian Metallurgy,1981(01):99-105.
[3] Toshiji Mukai;Masashi Yamanoi;Hiroyuki Watanabe .Ductility enhancement in AZ31 magnesium alloy by controlling its grain structure[J].Scripta materialia,2001(1):89-94.
[4] Valiev R Z;KORZNIKOV A V;MULYKLOV R R .Structure and properties of ultrafine-grained materials produced by severe plastic deformation[J].Materials Science and Engineering,1993,A168:141-148.
[5] Valiev R Z;KRASILNIKOV N A;TSENEV N K .Plastic deformation of alloys with submicron-grained structure[J].Materials Science and Engineering,1991,A137:35-40.
[6] 张郑,席明哲,王经涛.7475铝合金的ECAP组织细化研究[J].轻合金加工技术,2000(10):37-39,11.
[7] 吴世丁,李强,姜传斌,李广义,王中光.铜单晶ECAE过程的剪切特征[J].金属学报,2000(06):602-607.
[8] NEISHI K;HORITA Z;Langdon T G .Graiu refinement of pure nickel using equal-channel angular pressing[J].Materials Science and Engineering,2002,A325:54-58.
[9] Valiev R Z;KOZLOV E V;IVANOV Y F et al.Deformation behaviour of ultra-fine-grained copper[J].Acta Materialia,1994,42(07):2467-2475.
[10] Y.Iwahashi;Z.Horita;M.Nemoto .An investigation of microstructural evolution during equal-channel angular pressing[J].Acta materialia,1997(11):4733-4741.
[11] D.H.Shin;B.C.Kim .Microstructural Evolution in a Commercial Low Carbon Steel by Equal Channel Angular Pressing[J].Acta materialia,2000(9):2247-2255.
[12] DeLo D P;SEMIATIN S L .Finite-element modeling of nanisothermal equal-channel angnlar extrusion[J].Metallurgical and Materials Transactions,1999,30:1391-1402.
[13] Ruslan Z. Valiev;Dmitri A. Salimonenko;Nikolai K. Tsenev;Patrick B. Berbon;Terence G. Langdon .OBSERVATIONS OF HIGH STRAIN RATE SUPERPLASTICITY IN COMMERCIAL ALUMINUM ALLOYS WITH ULTRAFINE GRAIN SIZES[J].Scripta materialia,1997(12):1945-1950.
[14] Wang J;HORITA Z;FURUKAWA M et al.An investigation of ductility and microstructural evolution in an Al-3% Mg alloy with submicron grain size[J].Materials Research,1993,8(11):2810-2818.
[15] Furukawa M;MA Y;Horita Z.Fabrication and properties of a submicrometer-grained Zn-22% Al alloy[A].USA:AIME,1997:1875-1881.
[16] Valiev R Z .Structure and mechanical properties of ultrafine-grained metals[J].Materials Science and Engineering,1997,234-235:59-66.
[17] Semiatin S L;SEGAL V M;GOETZ R L et al.Workability of agama titanium aluminide alloy during equal channel angular extrusion[J].Scripta Materialia,1995,33(04):535-540.
[18] Valiev R Z;ISLAMGALIEV R K;KUZMINA N F et al.Strengthening and grain refinement in an Al- 6061 metal matrix composite through intense plastic straining[J].Scripta Materialia,1999,40:117-122.
[19] Terence G. Langdon;Minoru Furukawa;Minoru Nemoto;Zenji Horita .Using equal-channel angular pressing for refining grain size[J].JOM,2000(4):30-33.
[20] T. C. Lowe;R. Z. Valiev .Producing nanoscale microstructures through severe plastic deformation[J].JOM,2000(4):27-28.
[21] Nakashima K;HORITA Z;Nemoto M et al.Influence of channel angle on the development of ultrafine grains in equaI-channe[J].Acta Materialia,1998,46(05):1589-1599.
[22] Iwahashi Y;WANG J;Horita Z et al.Principle of equal-channel angular pressing for The processing of Ultrafine grained materiala[J].Scripta Materialia,1996,35(02):143-146.
[23] Akihiro Yamashita;Daisuke Yamaguchi;Zenji Horita;Terence G. Langdon .Influence of pressing temperature on microstructural development in equal-channel angular pressing[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(1):100-106.
[24] Furukawa M.;Horita Z.;Nemoto M.;Langdon TG.;Iwahashi Y. .The shearing characteristics associated with equal-channel angular pressing[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1998(2):328-332.
[25] Yoshinori iwahasgi .The process of grain refinement in equal-channel angular pressing[J].Acta materialia,1998(9):3317-3331.
[26] Iwahashi Y;HORITA Z;FURUKAWA M et al.Microstructural characteristics of ultrafine-grained aluminum produced using equal-channel angular pressing[J].Metallurgical and Materials Transactions,1998,A29(09):2245-2252.
[27] Berbon P B;FURUKAWA M;Horita Z et al.Influence of pressing speed on microstructural development in equal-channel angular pressing[J].Metallurgical and Materials Transactions,1999,A30(08):1989-1997.
[28] Iwahashi Y;HORITA Z;Nemoto M et al.Factors influencing the equilibrium grain size in equal-channel angular pressing: role of Mg additions to aluminum[J].Metallurgical and Materials Transactions,1998,A29(10):2503-2510.
[29] Vladimir V. Stolyarov;Y. Theodore Zhu;Igor V. Alexandrov;Terry C. Lowe;Ruslan Z. Valiev .Influence of ECAP routes on the microstructure and properties of pure Ti[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2001(1/2):59-67.
[30] Ferrasse S;SEGAL V M;Hartwig K T et al.Microstructural and properties of copper and aluminum alloy 3003 heavily worked by equal channel angular extrusion[J].Metallurgical and Materials Transactions,1997,A28(04):1047-1051.
[31] Markushev M V;BAMPTON C C;Murashkin M Y .Structure and properties of ultra-fine grained aluminium alloys produced by severe plastic deformation[J].Hardwick DA Mater Sci Eng,1997,A234:927-931.
[32] D.H. Shin;W -J Kim;W.Y. Choo .Grain refinement of a commercial 0.15%C steel by equal-channel angular pressing[J].Scripta materialia,1999(3):259-262.
[33] 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.
[34] Langdon TG;Berbon PB;Furukawa M;Horita Z;Nemoto M;Tsenev NK;Valiev RZ;Lee S .Developing superplastic properties in an aluminum alloy through severe plastic deformation[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1999(1):63-72.
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