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Articles

Deformation of copper and low stacking-fault energy, copperbase alloys

Pages 308-319 | Published online: 19 Jul 2013

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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.
Read now
T. N. Kim & A. J. Bourdillon. (1992) Influence of carbon on development of deformation microstructures in Hadfield steels. Materials Science and Technology 8:11, pages 1011-1022.
Read now
M.M. Rashid, G.T. Gray$suffix/text()$suffix/text() & S. Nemat-Nasser. (1992) Heterogeneous deformations in copper single crystals at high and low strain rates. Philosophical Magazine A 65:3, pages 707-735.
Read now
P. G. Caceres & R. D. Garwood. (1987) Development of rolling textures in Cu–Ni alloys. Materials Science and Technology 3:4, pages 275-284.
Read now
W. Österle, H. Wever & H. J. Bunge. (1983) Development of microstructure and texture of cold rolled α iron. Metal Science 17:7, pages 333-340.
Read now
W. H. Zimmer, S. S. Hecker, D. L. Rohr & L. E. Murr. (1983) Large strain plastic deformation of commercially pure nickel. Metal Science 17:4, pages 198-208.
Read now
J. O. Taylor, R. E. Smallman & B. J. Duggan. (1982) Microstructural studies of single crystals of copper–silica on annealing. Metal Science 16:9, pages 411-418.
Read now
P. T. Wakefield & M. Hatherly. (1981) Microstructure and texture of cold-rolled Cu-10Zn brass. Metal Science 15:3, pages 109-115.
Read now

Articles from other publishers (54)

Aman Gupta, Lalit Kaushik, Tae-Hyeon Yoo, Jin Woo Lee, Young-Kil Kim, Dongwon Lee, Yoon-Uk Heo & Shi-Hoon Choi. (2022) Unveiling the self-annealing phenomenon and texture evolution in room-temperature-rolled Cu-Fe-P alloy sheets. International Journal of Plasticity 159, pages 103473.
Crossref
A. Sendrowicz, A.O. Myhre, A.V. Danyuk & A. Vinogradov. (2022) Dislocation kinetics explains energy partitioning during strain hardening: Model and experimental validation by infrared thermography and acoustic emission. Materials Science and Engineering: A 856, pages 143969.
Crossref
Y.A. Sun, Z.P. Luo, X.Y. Li & K. Lu. (2022) Effects of stacking fault energy on deformation induced grain boundary relaxation in nanograined Cu alloys. Acta Materialia 239, pages 118256.
Crossref
Ryszard B. Pęcherski. 2022. Viscoplastic Flow in Solids Produced by Shear Banding. Viscoplastic Flow in Solids Produced by Shear Banding 11 36 .
X. He, Y. P. Ye & B. B. He. (2022) A review on the science of plastic deformation in laser-based additively manufactured steel. Journal of Materials Science 57:24, pages 10803-10835.
Crossref
Tatsuya Morikawa, Ryuta KurosakaMasaki Tanaka, Takeru Ichie & Ken-ichi Murakami. (2022) Grain Subdivision Mechanism For Constructing Lamellar Microstructure In Cold-Rolled Ultra-Low Carbon Steel. ISIJ International 62:2, pages 335-342.
Crossref
A. Vinogradov. (2021) A phenomenological model of deformation twinning kinetics. Materials Science and Engineering: A 803, pages 140700.
Crossref
Nicholas C. Ferreri, Reeju Pokharel, Veronica Livescu, Donald W. Brown, Marko Knezevic, Jun-Sang Park, Michael A. Torrez & George T. GrayIIIIII. (2020) Effects of heat treatment and build orientation on the evolution of ϵ and α′ martensite and strength during compressive loading of additively manufactured 304L stainless steel. Acta Materialia 195, pages 59-70.
Crossref
X.H. An, S.D. Wu, Z.G. Wang & Z.F. Zhang. (2019) Significance of stacking fault energy in bulk nanostructured materials: Insights from Cu and its binary alloys as model systems. Progress in Materials Science 101, pages 1-45.
Crossref
Sunkulp Goel, Nikhil Kumar, R. Jayaganthan, I.V. Singh & D. Srivastava. (2018) Role of shear localization in nanocrystallisation of zircaloy-2 processed by wire rolling at cryo temperature. Materials Science and Engineering: A 718, pages 111-122.
Crossref
. 2017. Recrystallization and Related Annealing Phenomena. Recrystallization and Related Annealing Phenomena 647 681 .
N. Hansen & C.Y. Barlow. 2014. Physical Metallurgy. Physical Metallurgy 1681 1764 .
G. F. Zhang, X. Sauvage, J. T. Wang, N. Gao & T. G. Langdon. (2013) Evolution of a martensitic structure in a Cu–Al alloy during processing by high-pressure torsion. Journal of Materials Science 48:13, pages 4613-4619.
Crossref
Mervyn S. PatersonMervyn S. Paterson. 2013. Materials Science for Structural Geology. Materials Science for Structural Geology 107 207 .
S. D. Wang, W. Li & Z. W. Han. (2011) Changes in work function from stacking faults in fcc metals. EPL (Europhysics Letters) 96:5, pages 56004.
Crossref
Y. Zhang, N.R. Tao & K. Lu. (2011) Effects of stacking fault energy, strain rate and temperature on microstructure and strength of nanostructured Cu–Al alloys subjected to plastic deformation. Acta Materialia 59:15, pages 6048-6058.
Crossref
P. Landau, G. Makov, R.Z. Shneck & A. Venkert. (2011) Universal strain–temperature dependence of dislocation structure evolution in face-centered-cubic metals. Acta Materialia 59:13, pages 5342-5350.
Crossref
X.H. An, Q.Y. Lin, S.D. Wu & Z.F. Zhang. (2010) Microstructural evolution and shear fracture of Cu–16at.% Al alloy induced by equal channel angular pressing. Materials Science and Engineering: A 527:16-17, pages 4510-4514.
Crossref
Xianghai An, Qingyun Lin, Shen Qu, Gang Yang, Shiding Wu & Zhe-Feng Zhang. (2011) Influence of stacking-fault energy on the accommodation of severe shear strain in Cu-Al alloys during equal-channel angular pressing. Journal of Materials Research 24:12, pages 3636-3646.
Crossref
S. Qu, X.H. An, H.J. Yang, C.X. Huang, G. Yang, Q.S. Zang, Z.G. Wang, S.D. Wu & Z.F. Zhang. (2009) Microstructural evolution and mechanical properties of Cu–Al alloys subjected to equal channel angular pressing. Acta Materialia 57:5, pages 1586-1601.
Crossref
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.
Crossref
Tatsuya MORIKAWA, Taku MORONAGA & Kenji HIGASHIDA. (2005) The Influence of Deformation Twinning on Yield Strength in Cold-rolled FCC Ferrous Alloy. Tetsu-to-Hagane 91:11, pages 834-838.
Crossref
A.D Korotaev, A.N Tyumentsev, Yu.P Pinzhin & G.E Remnev. (2004) Features of the morphology, defect substructure, and phase composition of metal and alloy surfaces upon high-power ion beam irradiation. Surface and Coatings Technology 185:1, pages 38-49.
Crossref
. 2004. Recrystallization and Related Annealing Phenomena. Recrystallization and Related Annealing Phenomena 557 615 .
K. H. Lee & S. I. Hong. (2011) Interfacial and twin boundary structures of nanostructured Cu–Ag filamentary composites. Journal of Materials Research 18:9, pages 2194-2202.
Crossref
P. B. Prangnell & J. R. Bowen. 2002. Ultrafine Grained Materials II. Ultrafine Grained Materials II 89 98 .
L.E. Murr, E.A. Trillo, A.A. Bujanda & N.E. Martinez. (2002) Comparison of residual microstructures associated with impact craters in fcc stainless steel and bcc iron targets: the microtwin versus microband issue. Acta Materialia 50:1, pages 121-131.
Crossref
Tatsuya Morikawa, Daihei Senba, Kenji Higashida & Ryuta Onodera. (1999) Micro Shear Bands in Cold-rolled Austenitic Stainless Steel. Materials Transactions, JIM 40:9, pages 891-894.
Crossref
J.C. Sanchez, L.E. Murr & K.P. Staudhammer. (1997) Effect of grain size and pressure on twinning and microbanding in oblique shock loading of copper rods. Acta Materialia 45:8, pages 3223-3235.
Crossref
M. Blicharski, S. Dymek & M. Wróbel. (1995) Inhomogeneities of microstructure evolved in metals under plastic deformation. Journal of Materials Processing Technology 53:1-2, pages 75-84.
Crossref
. 1995. Recrystallization and Related Annealing Phenomena. Recrystallization and Related Annealing Phenomena 449 488 .
C.S. Lee & B.J. Duggan. (1994) A dislocation avalanche theory of shear banding. Acta Metallurgica et Materialia 42:3, pages 857-860.
Crossref
C. J. Yu, J. C. ConwayJr.Jr., J. Hirsch, C. O. Ruud & K. J. Kozaczek. (1993) Application of nondestructive techniques for the prediction of elastic anistropy of a textured polycrystalline material. Journal of Nondestructive Evaluation 12:1, pages 79-95.
Crossref
Chin -Jye Yu, J. C. ConwayJrJr, C. O. Ruud & K. J. Kozaczek. (1992) Ultrasonic characterization of the effect of cold work and grain size in copper and 68:32 brass sheets. Journal of Materials Science 27:19, pages 5174-5180.
Crossref
D. Padmavardhani & Y.V.R.K. Prasad. (1992) Effect of zinc content on the processing map for hot working of α brass. Materials Science and Engineering: A 157:1, pages 43-51.
Crossref
D. Padmavardhani & Y. V. R. K. Prasad. (1991) Characterization of hot deformation behavior of brasses using processing maps: Part I. α Brass. Metallurgical Transactions A 22:12, pages 2985-2992.
Crossref
G.T. GrayIIIIII & J.C. Huang. (1991) Influence of repeated shock loading on the substructure evolution of 99.99 wt.% aluminum. Materials Science and Engineering: A 145:1, pages 21-35.
Crossref
Jan Kuśnierz. (1991) Reduced value of stress active in the shear bands. Scripta Metallurgica et Materialia 25:7, pages 1513-1518.
Crossref
D.A. Hughes & W.D. Nix. (1989) Strain hardening and substructural evolution in NiCo solid solutions at large strains. Materials Science and Engineering: A 122:2, pages 153-172.
Crossref
J.C. Huang & G.T. GrayIIIIII. (1989) Microband formation in shock-loaded and quasi-statically deformed metals. Acta Metallurgica 37:12, pages 3335-3347.
Crossref
Choong Jin Yang. (1989) Bend ductility of 70-30 alpha brass II: Correlation with tensile behavior. Materials Science and Engineering: A 112, pages 11-20.
Crossref
C. Donadille, R. Valle, P. Dervin & R. Penelle. (1989) Development of texture and microstructure during cold-rolling and annealing of F.C.C. alloys: Example of an austenitic stainless steel. Acta Metallurgica 37:6, pages 1547-1571.
Crossref
G.T. GrayIIIIII, P.S. Follansbee & C.E. Frantz. (1989) Effect of residual strain on the substructure development and mechanical response of shock-loaded copper. Materials Science and Engineering: A 111, pages 9-16.
Crossref
J.C. Huang & G.T. GrayIIIIII. (1988) Substructure evolution and deformation modes in shock-loaded niobium. Materials Science and Engineering: A 103:2, pages 241-255.
Crossref
Y. Nakayama & K. Morii. (1987) Microstructure and shear band formation in rolled single crystals of AlMg alloy. Acta Metallurgica 35:7, pages 1747-1755.
Crossref
A. Korbel, J.D. Embury, M. Hatherly, P.L. Martin & H.W. Erbsloh. (1986) Microstructural aspects of strain localization in AlMg alloys. Acta Metallurgica 34:10, pages 1999-2009.
Crossref
J. E. Bird, T. Pollock & S. K. Srivastava. (1986) Flow localization during plane strain punch stretching of a ferrite-austenite steel. Metallurgical Transactions A 17:9, pages 1537-1546.
Crossref
P.G. Caceres & R.D. Garwood. (2020) Micro Beam Orientation Determinations in Highly Deformed Cu - 12.5% Ni Alloy. Proceedings, annual meeting, Electron Microscopy Society of America 43, pages 352-353.
Crossref
C. Tome, G.R. Canova, U.F. Kocks, N. Christodoulou & J.J. Jonas. (1984) The relation between macroscopic and microscopic strain hardening in F.C.C. polycrystals. Acta Metallurgica 32:10, pages 1637-1653.
Crossref
K.P. Staudhammer, K.A. Johnson & B. Olinger. 1984. Shock Waves in Condensed Matter 1983. Shock Waves in Condensed Matter 1983 419 422 .
A. Korbel, F. Dobrzanski & M. Richert. (1983) Strain hardening of aluminium at high strains. Acta Metallurgica 31:2, pages 293-298.
Crossref
D.M. Turley & E.D. Doyle. (1982) The importance of surface characterization in surface treatment processes. Wear 81:1, pages 145-158.
Crossref
E.D. Doyle & D.M. Turley. 1982. Strength of Metals and Alloys (ICSMA 6). Strength of Metals and Alloys (ICSMA 6) 511 516 .
J. Hirsch & W. Dürrschnabel. (2004) Anisotropie bei Federbändern aus Kupferlegierungen. Materialwissenschaft und Werkstofftechnik 12:7, pages 256-262.
Crossref

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