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Articles

Structure and properties of low-carbon steel after deformation to high strains

Pages 233-237 | Published online: 18 Jul 2013

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M. S. Bingley & J. Nutting. (1998) Behaviour of low and medium carbon free cutting steels during deformation to large strains. Materials Science and Technology 14:2, pages 108-122.
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Y. S. Zhang & J. Nutting. (1986) High-strain deformation of dual-phase steel. Materials Science and Technology 2:6, pages 564-570.
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D. T. Gawne & G. M. H. Lewis. (1985) Strengthening mechanisms in high-strength microalloyed steels. Materials Science and Technology 1:3, pages 183-191.
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D. T. Gawne & G. M. H. Lewis. (1985) Strain hardening of high-strength steels. Materials Science and Technology 1:2, pages 128-135.
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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.
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S. Nourbakhsh & J. Nutting. (1982) Structure and properties of quenched and aged Cu–2Be after deformation to large strains. Metal Science 16:7, pages 323-331.
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P. T. Wakefield & M. Hatherly. (1981) Microstructure and texture of cold-rolled Cu-10Zn brass. Metal Science 15:3, pages 109-115.
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R. L. Aghan & J. Nutting. (1981) Structure and properties of free-cutting steels after deformation to high strains. Metals Technology 8:1, pages 41-45.
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Articles from other publishers (10)

Yitao Wang, Jianbo Li, Yunchang Xin, Changzheng Li, Yao Cheng, Xianhua Chen, Muhammad Rashad, Bin Liu & Yong Liu. (2019) Effect of Zener–Hollomon parameter on hot deformation behavior of CoCrFeMnNiC0.5 high entropy alloy. Materials Science and Engineering: A 768, pages 138483.
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Yehia M. HaddadYehia M. Haddad. 2000. Mechanical Behaviour of Engineering Materials. Mechanical Behaviour of Engineering Materials 11 51 .
Leonard E. Samuels. 1999. Light Microscopy of Carbon Steels. Light Microscopy of Carbon Steels 125 163 .
J.Gil Sevillano. (1986) Overview no. 50. Acta Metallurgica 34:8, pages 1473-1485.
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S. Nourbakhsh & D. Vujic. (1986) High strain plane-strain deformation of 70-30 brass in a channel die. Acta Metallurgica 34:6, pages 1083-1090.
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P.J. Jackson. (1985) Dislocation modelling of shear in f.c.c. crystals. Progress in Materials Science 29:1-2, pages 139-175.
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Kouichi KAWASAKIMunetsugu MATSUO. (1984) Deformation Structures as Nucleation Sites for Recrystallization. Tetsu-to-Hagane 70:15, pages 1808-1815.
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M. G. Stout & S. S. Hecker. 1983. Material Behavior Under High Stress and Ultrahigh Loading Rates. Material Behavior Under High Stress and Ultrahigh Loading Rates 39 60 .
E. �. Zasimchuk, E. N. Kaspruk & V. K. Kharchenko. (1982) Examination of the relationships governing the deformation and fracture of a polycrystalline molybdenum alloy in high-temperature cyclic creep. Report II. Changes in structure during creep. Strength of Materials 14:12, pages 1618-1624.
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O. N. Romaniv, E. A. Shur, A. N. Tkach, V. N. Simin'kovich & T. N. Kiseleva. (1981) The kinetics and mechanism of fatigue crack growth in iron. Soviet Materials Science 17:2, pages 158-166.
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