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Original Articles

Microstructural aspects of rolling deformation in ultrafine-grained copper

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Pages 373-388 | Received 02 Jun 1997, Published online: 12 Aug 2009

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Read on this site (3)

S. P. Sundar Singh Sivam, R. Rajendran & N. Harshavardhana. (2023) An investigation of stored energy in uniaxial and biaxial directional rolling on mechanical properties and microstructure of pure copper. Mechanics Based Design of Structures and Machines 51:5, pages 2831-2843.
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Anna Morozova & Rustam Kaibyshev. (2017) Grain refinement and strengthening of a Cu–0.1Cr–0.06Zr alloy subjected to equal channel angular pressing. Philosophical Magazine 97:24, pages 2053-2076.
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A. Belyakov, T. Sakai, H. Miura & K. Tsuzaki. (2001) Grain refinement in copper under large strain deformation. Philosophical Magazine A 81:11, pages 2629-2643.
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Articles from other publishers (36)

S.P. Sundar Singh Sivam, R. Rajendran & N. Harshavardhana. (2022) Effect of cryo-rolling on mechanical properties and microstructure of pure copper. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 236:8, pages 1457-1463.
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Ahmed A. Tiamiyu, Edward L. Pang, Xi Chen, James M. LeBeau, Keith A. Nelson & Christopher A. Schuh. (2022) Nanotwinning-assisted dynamic recrystallization at high strains and strain rates. Nature Materials 21:7, pages 786-794.
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N. Harshavardhana, M. P. Gururajan & Prita Pant. (2019) Microstructure Engineering to Optimize Hardness and Conductivity in Electrolytic Tough Pitch Copper. Metallurgical and Materials Transactions A 50:8, pages 3566-3577.
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P. Král, J. Staněk, L. Kunčická, F. Seitl, L. Petrich, V. Schmidt, V. Beneš & V. Sklenička. (2019) Microstructure changes in HPT-processed copper occurring at room temperature. Materials Characterization 151, pages 602-611.
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M. Sarkari Khorrami & M. Kazeminezhad. (2018) Post Deformation at Room and Cryogenic Temperature Cooling Media on Severely Deformed 1050-Aluminum. Metals and Materials International 24:2, pages 401-414.
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M. R. Rokni, S. R. Nutt, C. A. Widener, V. K. Champagne & R. H. Hrabe. (2017) Review of Relationship Between Particle Deformation, Coating Microstructure, and Properties in High-Pressure Cold Spray. Journal of Thermal Spray Technology 26:6, pages 1308-1355.
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S.S. Cai, L.X. Sun & N.R. Tao. (2016) Weakening rolling texture in a nanotwinned copper. Materials Science and Engineering: A 670, pages 90-96.
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M.C.V. Vega, R.E. Bolmaro, M. Ferrante, V.L. Sordi & A.M. Kliauga. (2015) The influence of deformation path on strain characteristics of AA1050 aluminium processed by equal-channel angular pressing followed by rolling. Materials Science and Engineering: A 646, pages 154-162.
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Marina Odnobokova, Andrey Belyakov & Rustam Kaibyshev. (2015) Development of Nanocrystalline 304L Stainless Steel by Large Strain Cold Working. Metals 5:2, pages 656-668.
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O. Renk, A. Hohenwarter, S. Wurster & R. Pippan. (2014) Direct evidence for grain boundary motion as the dominant restoration mechanism in the steady-state regime of extremely cold-rolled copper. Acta Materialia 77, pages 401-410.
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Baozhuang Cai, Yan Long, Cuie Wen, Yulan Gong, Caiju Li, Jingmei Tao & Xinkun Zhu. (2014) Role of stacking fault energy and strain rate in strengthening of Cu and Cu–Al alloys. Journal of Materials Research 29:16, pages 1747-1754.
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Ruslan Z. Valiev, Alexander P. Zhilyaev & Terence G. Langdon. 2013. Bulk Nanostructured Materials. Bulk Nanostructured Materials 239 288 .
Adeline Albou, S. Raveendra, P. Karajagikar, Indradev Samajdar, Julian H. Driver & Claire Maurice. (2012) Direct Observations of Cube Nucleation from Intergranular Cube Segments in Cold Rolled Al-Mn. Materials Science Forum 715-716, pages 354-359.
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F. Yan, H.W. Zhang, N.R. Tao & K. Lu. (2011) Quantifying the Microstructures of Pure Cu Subjected to Dynamic Plastic Deformation at Cryogenic Temperature. Journal of Materials Science & Technology 27:8, pages 673-679.
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Igor V. Alexandrov. 2009. Bulk Nanostructured Materials. Bulk Nanostructured Materials 311 324 .
Stephane Ferrasse, V.M. Segal, Frank Alford, Janine Kardokus & Susan Strothers. (2008) Scale up and application of equal-channel angular extrusion for the electronics and aerospace industries. Materials Science and Engineering: A 493:1-2, pages 130-140.
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Y. Zhang, N.R. Tao & K. Lu. (2008) Mechanical properties and rolling behaviors of nano-grained copper with embedded nano-twin bundles. Acta Materialia 56:11, pages 2429-2440.
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C.‐X. Huang, S.‐D. Wu, S.‐X. Li & Z.‐F. Zhang. (2008) Strain Hardening Behavior of Ultrafine‐ Grained Cu by Analyzing the Tensile Stress‐Strain Curve. Advanced Engineering Materials 10:5, pages 434-438.
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Florian H. Dalla Torre, Azdiar A. Gazder, Elena V. Pereloma & Christopher H. J. Davies. (2007) Recent progress on the study of the microstructure and mechanical properties of ECAE copper. Journal of Materials Science 42:21, pages 9097-9111.
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Andrey Belyakov, Kaneaki Tsuzaki, Yuuji Kimura, Yoshisato Kimura & Yoshinao Mishima. (2007) Comparative study on microstructure evolution upon unidirectional and multidirectional cold working in an Fe–15%Cr ferritic alloy. Materials Science and Engineering: A 456:1-2, pages 323-331.
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Florian H. Dalla Torre, Azdiar A. Gazder, Elena V. Pereloma & Christopher H. J. Davies. (2007) Recent progress on the study of the microstructure and mechanical properties of ECAE copper. Journal of Materials Science 42:5, pages 1622-1637.
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Naoki Takata, Kousuke Yamada, Ken-ichi Ikeda, Fuyuki Yoshida, Hideharu Nakashima & Nobuhiro Tsuji. (2007) Change in Microstructure and Texture during Annealing of Pure Copper Heavily Deformed by Accumulative Roll Bonding. MATERIALS TRANSACTIONS 48:8, pages 2043-2048.
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Bernhard Obst, Rainer Nast, Gunter Kotzyba & Florian Wetscher. (2006) Cube textured tapes for use in YBa 2 Cu 3 O 7 –δ-coated conductor applications . International Journal of Materials Research 97:10, pages 1363-1371.
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A. Belyakov, Y. Kimura & K. Tsuzaki. (2006) Microstructure evolution in dual-phase stainless steel during severe deformation. Acta Materialia 54:9, pages 2521-2532.
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V.M. Segal. (2005) Deformation mode and plastic flow in ultra fine grained metals. Materials Science and Engineering: A 406:1-2, pages 205-216.
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D. Goran, Jean-Jacques Fundenberger, Satyam Suwas, Emmanuel Bouzy, László S. Tóth, Werner Skrotzki & Thierry Grosdidier. (2005) Heterogeneity of Deformation in Pure Ni Single Crystal of Cube Orientation Deformed by Equal Channel Angular Extrusion. Materials Science Forum 495-497, pages 833-838.
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D. Goran, Jean-Jacques Fundenberger, Satyam Suwas, Emmanuel Bouzy, László S. Tóth, Werner Skrotzki & Thierry Grosdidier. (2005) Pure Ni Single Crystal of Cube Orientation Deformed by Equal Channel Angular Extrusion. Solid State Phenomena 105, pages 333-338.
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S. Ferrasse, V.M. Segal & F. Alford. (2004) Texture evolution during equal channel angular extrusion (ECAE). Materials Science and Engineering: A 372:1-2, pages 235-244.
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S Ferrasse, V.M Segal & F Alford. (2004) Effect of additional processing on texture evolution of Al0.5Cu alloy processed by equal channel angular extrusion (ECAE). Materials Science and Engineering: A 372:1-2, pages 44-55.
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S Ferrasse, V.M Segal, S.R Kalidindi & F Alford. (2004) Texture evolution during equal channel angular extrusion. Materials Science and Engineering: A 368:1-2, pages 28-40.
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W.H. Huang, C.Y. Yu, P.W. Kao & C.P. Chang. (2004) The effect of strain path and temperature on the microstructure developed in copper processed by ECAE. Materials Science and Engineering: A 366:2, pages 221-228.
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G. Wang, S.D. Wu, L. Zuo, C. Esling, Z.G. Wang & G.Y. Li. (2003) Microstructure, texture, grain boundaries in recrystallization regions in pure Cu ECAE samples. Materials Science and Engineering: A 346:1-2, pages 83-90.
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Yinmin Wang, Tong Jiao & En Ma. (2003) Dynamic Processes for Nanostructure Development in Cu after Severe Cryogenic Rolling Deformation. MATERIALS TRANSACTIONS 44:10, pages 1926-1934.
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Koji Neishi, Zenji Horita & Terence G Langdon. (2002) Grain refinement of pure nickel using equal-channel angular pressing. Materials Science and Engineering: A 325:1-2, pages 54-58.
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Andrey Belyakov, Taku Sakai & Hiromi Miura. (2000) Fine-Grained Structure Formation in Austenitic Stainless Steel under Multiple Deformation at 0.5<I>T</I><SUB>m</SUB>. Materials Transactions, JIM 41:4, pages 476-484.
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A Belyakov, T Sakai, H Miura & R Kaibyshev. (2000) Substructures and internal stresses developed under warm severe deformation of austenitic stainless steel. Scripta Materialia 42:4, pages 319-325.
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