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Articles

Influence of carbide thickness on impact transition temperature of ferritic steels

Pages 252-260 | Published online: 19 Jul 2013

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Barrie Mintz, Abdullah Qaban, Pritej Bendke & Sumsun Naher. (2020) The influence of a high aluminium addition on the strength and impact behaviour of hot-rolled Nb containing steels. Materials Science and Technology 36:2, pages 233-244.
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T. N. Baker. (2016) Microalloyed steels. Ironmaking & Steelmaking 43:4, pages 264-307.
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W. B. Morrison. (2009) Microalloy steels – the beginning. Materials Science and Technology 25:9, pages 1066-1073.
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B. Mintz, W. D. Gunawardana & H. Su. (2008) Influence of Al on strength and impact behaviour of hot rolled plain C–Mn steels. Materials Science and Technology 24:5, pages 601-606.
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B. Mintz, A. Williamson, H. Su & W. B. Morrison. (2007) Influence of nitride formers on strength and impact behaviour of hot rolled steel. Materials Science and Technology 23:1, pages 63-71.
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D. Bhattacharjee, C. L. Davis & J. F. Knott. (2003) Predictability of Charpy impact toughness in thermomechanically control rolled (TMCR) microalloyed steels. Ironmaking & Steelmaking 30:3, pages 249-255.
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R.C. Cochrane. (2001) Customer driven steel development: the future for structure–property relationships. Ironmaking & Steelmaking 28:2, pages 125-132.
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L. Skoufari-Themistou, D.N. Crowther & B. Mintz. (1999) Strength and impact behaviour of age hardenable copper containing steels. Materials Science and Technology 15:9, pages 1069-1079.
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B. Mintz, A. Nassar & K. Adejolu. (1997) Influence of grain boundary films of martensite on strength and impact behaviour of ferrite. Materials Science and Technology 13:4, pages 313-318.
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H. Xue & T. N. Baker. (1995) Mechanical properties of low carbon-vanadium microalloyed quenched and tempered steels vvith aluminium additions. Materials Science and Technology 11:9, pages 883-892.
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B. Mintz, S. Tajik & R. Vipond. (1994) Influence of microalloying additions on thickness of grain boundary carbides in ferrite–pearlite steels. Materials Science and Technology 10:2, pages 89-96.
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B. Mintz, S. Tajik, F. Kavishe & T. J. Baker. (1991) Influence of grain boundary carbide thickness and grain size on cleavage fracture strength and Charpy impact behaviour of steels. Materials Science and Technology 7:11, pages 1005-1009.
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A. Nassar, R. Vipond & B. Mintz. (1991) Influence of intercritical annealing on strength and impact behaviour of niobium containing steels. Materials Science and Technology 7:8, pages 699-706.
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J. Kolahi-Aval & B. Mintz. (1989) Influence of tempering on impact behaviour of normalized steels. Materials Science and Technology 5:5, pages 457-464.
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B. Mintz & P. Campbell. (1989) Growth of grain boundary carbides in C–Mn steels. Materials Science and Technology 5:2, pages 155-161.
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R. C. Cochrane, B. Mintz & J. L. Ward. (1989) Influence of prior microstructure on normalising response of C–Mn–Al–Nb steels. Materials Science and Technology 5:1, pages 20-28.
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B. Mintz & P. Campbell. (1987) Importance of carbide density in influencing grain boundary carbide thickness. Materials Science and Technology 3:10, pages 845-848.
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B. Mintz & J. Kolahi-Aval. (1986) Influence of grain boundary carbide density on impact behaviour of C–Mn–Nb–Al steels. Materials Science and Technology 2:10, pages 1046-1050.
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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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B. Mintz. (1984) Importance of k y (Hall-Petch slope) in determining strength of steels. Metals Technology 11:1, pages 265-272.
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Seokmin Hong, Ki-Deuk Min, Se-Mi Hyun, Jongmin Kim, Yo-Seob Lee, Hong-Deok Kim & Min-Chul Kim. (2021) Effect of cooling rate on mechanical properties of SA508 Gr.1A steels for main steam line piping in nuclear power plants. International Journal of Pressure Vessels and Piping 191, pages 104359.
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Irati Zurutuza, Nerea Isasti, Eric Detemple, Volker Schwinn, Hardy Mohrbacher & Pello Uranga. (2021) Toughness Property Control by Nb and Mo Additions in High-Strength Quenched and Tempered Boron Steels. Metals 11:1, pages 95.
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U. Mayo, N. Isasti, J.M. Rodriguez-Ibabe & P. Uranga. (2020) On the characterization procedure to quantify the contribution of microstructure on mechanical properties in intercritically deformed low carbon HSLA steels. Materials Science and Engineering: A 792, pages 139800.
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Barrie Mintz, Abdullah Qaban & Sumsun Naher. (2020) Further insights on compositional control and heat treatment for improving the impact behaviour of hot-rolled steels containing Nb and Al. Materials & Design 190, pages 108601.
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Hadi Torkamani, Shahram Raygan, Carlos Garcia Mateo, Jafar Rassizadehghani, Yahya Palizdar & David San-Martin. (2018) Contributions of Rare Earth Element (La,Ce) Addition to the Impact Toughness of Low Carbon Cast Niobium Microalloyed Steels. Metals and Materials International 24:4, pages 773-788.
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Tao Jia, Yanlei Zhou, Xiaoxiao Jia & Zhaodong Wang. (2016) Effects of Microstructure on CVN Impact Toughness in Thermomechanically Processed High Strength Microalloyed Steel. Metallurgical and Materials Transactions A 48:2, pages 685-696.
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Abdullah Qaban, Barrie Mintz & Sumsun Naher. Hot rolled high Al containing steels as a replacement for the control rolled high strength low alloy (HSLA) steels. Hot rolled high Al containing steels as a replacement for the control rolled high strength low alloy (HSLA) steels.
Nerea Isasti, Denis Jorge-Badiola, Mitra L. Taheri & Pello Uranga. (2014) Microstructural Features Controlling Mechanical Properties in Nb-Mo Microalloyed Steels. Part II: Impact Toughness. Metallurgical and Materials Transactions A 45:11, pages 4972-4982.
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Amaia Iza-Mendia & Isabel Gutiérrez. (2014) Microstructure-Mechanical Properties Relationships for Complex Microstructures in High Strength Steels. Materials Science Forum 783-786, pages 783-788.
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I. Gutiérrez. (2013) Effect of microstructure on the impact toughness of Nb-microalloyed steel: Generalisation of existing relations from ferrite–pearlite to high strength microstructures. Materials Science and Engineering: A 571, pages 57-67.
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Rachel Punch, Martin Strangwood & Claire Davis. (2012) Origin and Propagation of Splits in High-Strength Low-Alloy Strip Steel. Metallurgical and Materials Transactions A 43:12, pages 4622-4632.
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J. Du, M. Strangwood & C.L. Davis. (2012) Effect of TiN Particles and Grain Size on the Charpy Impact Transition Temperature in Steels. Journal of Materials Science & Technology 28:10, pages 878-888.
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R.C. Cochrane. 2012. Phase Transformations in Steels. Phase Transformations in Steels 153 212 .
Orlando León García, Roumen H. Petrov, Jin Ho Bae, Leo Kestens & Ki Bong Kang. (2006) Microstructure - Texture Related Toughness Anisotropy of API-X80 Pipeline Steel. Advanced Materials Research 15-17, pages 840-845.
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S. J. Wu, C. L. Davis, A. Shterenlikht & I. C. Howard. (2005) Modeling the ductile-brittle transition behavior in thermomechanically controlled rolled steels. Metallurgical and Materials Transactions A 36:4, pages 989-997.
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D. Bhattacharjee, J. F. Knott & C. L. Davis. (2004) Charpy-impact-toughness prediction using an “effective” grain size for thermomechanically controlled rolled microalloyed steels. Metallurgical and Materials Transactions A 35:1, pages 121-130.
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Tadashi Fukuda & Mitsuru Tanino. (1999) Effect of Morphology of Carbide and Nitride Precipitates on the Elongation of Fe-30 mass%Cr Alloys. Materials Transactions, JIM 40:12, pages 1396-1401.
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B. Mintz. (1997) The influence of martensite on the strength and impact behavior of steel. Metallurgical and Materials Transactions A 28:10, pages 2073-2084.
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H. Couque, R. J. Asaro, J. Duffy & S. H. Lee. (1988) Correlations of microstructure with dynamic and quasi-static fracture in a plain carbon steel. Metallurgical Transactions A 19:9, pages 2179-2206.
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B. Mintz & J. Kolahi-Aval. (1988) Intercritical annealing as a means of improving impact properties of plate steel. Metallurgical Transactions A 19:6, pages 1481-1490.
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N.J. Petch. (1987) The influence of some substitutional alloys on the cleavage of ferritic steels. Acta Metallurgica 35:8, pages 2027-2034.
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N.J. Petch. (1986) The influence of grain boundary carbide and grain size on the cleavage strength and impact transition temperature of steel. Acta Metallurgica 34:7, pages 1387-1393.
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B. Mintz & J. Kolahi-Aval. 1985. Strength of Metals and Alloys (ICSMA 7). Strength of Metals and Alloys (ICSMA 7) 207 212 .
B. Mintz. 1984. Fracture 84. Fracture 84 1247 1254 .
B. Mintz. 1982. Strength of Metals and Alloys (ICSMA 6). Strength of Metals and Alloys (ICSMA 6) 217 222 .

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