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Bainite transformation during continuous cooling of low carbon microalloyed steel

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Pages 296-301 | Published online: 19 Jul 2013

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Fei Huang, Jing Li & Ruoyu Zang. (2023) Effect of Ce on inclusion, microstructure and mechanical properties of Al-killed high-strength steel. Ironmaking & Steelmaking 50:7, pages 744-756.
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Arunim Ray. (2017) Niobium microalloying in rail steels. Materials Science and Technology 33:14, pages 1584-1600.
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Y. B. Guo, G. F. Sui, Y. C. Liu, Y. Chen & D. T. Zhang. (2015) Phase transformation mechanism of low-carbon high strength low alloy steel upon continuous cooling. Materials Research Innovations 19:sup8, pages S8-416-S8-422.
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I. A. Yakubtsov & J. D. Boyd. (2008) Effect of alloying on microstructure and mechanical properties of bainitic high strength plate steels. Materials Science and Technology 24:2, pages 221-227.
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Articles from other publishers (24)

L. A. Efimenko, O. E. Kapustin, A. A. Ramus’ & R. O. Ramus’. (2022) Aspects of Changing the Structure and Hardness of Metal of Heat-Affected Zone During Welding of Low-Carbon High-Strength Steels for Pipes with Increased Deformability. Metallurgist 66:7-8, pages 805-814.
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Wen-Ting Zhu, Jun-Jun Cui, Zhen-Ye Chen, Yang Zhao & Li-Qing Chen. (2021) Correlation of Microstructure Feature with Impact Fracture Behavior in a TMCP Processed High Strength Low Alloy Construction Steel. Acta Metallurgica Sinica (English Letters) 35:4, pages 527-536.
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Sen Lin, Ulrika Borggren, Andreas Stark, Annika Borgenstam, Wangzhong Mu & Peter Hedström. (2021) In-Situ High-Energy X-ray Diffraction Study of Austenite Decomposition During Rapid Cooling and Isothermal Holding in Two HSLA Steels. Metallurgical and Materials Transactions A 52:5, pages 1812-1825.
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Mohamed Soliman. (2020) Microstructural Control and Properties Optimization of Microalloyed Pipeline Steel. Metals 10:11, pages 1499.
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Xin-ping Xiao, Gen-hao Shi, Shu-ming Zhang, Yu-wei Gao, Qing-feng Wang & Fu-cheng Zhang. (2019) Effect of increased nitrogen content on continuous cooling transition of γ→α in hot-deformed low-C Mo–V–Ti steels. Journal of Iron and Steel Research International 26:7, pages 733-742.
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Max Menzel, Wolfgang Bleck, Anastasia Höhne, Gerhard Gevelmann, Andreas Tomitz, James Gibson & Sandra Korte‐Kerzel. (2019) Influence of Austenite Conditioning on the Mechanical Properties of a Microalloyed Bainitic Steel. steel research international 90:7.
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Huibin Wang, Feilong Wang, Genhao Shi, Yu Sun, Jiangcheng Liu, Qingfeng Wang & Fucheng Zhang. (2018) Effect of quenching temperature on microstructure and yield strength of Q-T-treated X100Q bainitic steel. Materials Research Express 5:6, pages 066509.
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H. Zhao, B. P. Wynne & E. J. Palmiere. (2017) Conditions for the occurrence of acicular ferrite transformation in HSLA steels. Journal of Materials Science 53:5, pages 3785-3804.
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H. Zhao & E. J. Palmiere. (2017) Effect of Austenite Deformation on the Microstructure Evolution and Grain Refinement Under Accelerated Cooling Conditions. Metallurgical and Materials Transactions A 48:7, pages 3389-3399.
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Yi Fan, Qian Wang, Hongwu Liu, Tongliang Wang, Qingfeng Wang & Fucheng Zhang. (2017) Effect of Controlled Cooling on Microstructure and Tensile Properties of Low C Nb-Ti-Containing HSLA Steel for Construction. Metals 7:1, pages 23.
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Bin Guo, Lei Fan, Qian Wang, Zhibin Fu, Qingfeng Wang & Fucheng Zhang. (2016) Effect of Finish Rolling Temperature on the Microstructure and Tensile Properties of Nb–Ti Microalloyed X90 Pipeline Steel. Metals 6:12, pages 323.
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Shuming Zhang, Ke Liu, He Chen, Xinping Xiao, Qingfeng Wang & Fucheng Zhang. (2016) Effect of increased N content on microstructure and tensile properties of low-C V-microalloyed steels. Materials Science and Engineering: A 651, pages 951-960.
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A.F. Mark, X. Wang, E. Essadiqi, J.D. Embury & J.D. Boyd. (2013) Development and characterisation of model TRIP steel microstructures. Materials Science and Engineering: A 576, pages 108-117.
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J.S. Kang, Jae-Bok Seol & C.G. Park. (2013) Three-dimensional characterization of bainitic microstructures in low-carbon high-strength low-alloy steel studied by electron backscatter diffraction. Materials Characterization 79, pages 110-121.
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S. H. Mousavi Anijdan & Steve Yue. (2011) The Effect of Cooling Rate, and Cool Deformation Through Strain-Induced Transformation, on Microstructural Evolution and Mechanical Properties of Microalloyed Steels. Metallurgical and Materials Transactions A 43:4, pages 1140-1162.
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M.H. Shaeri, H. Saghafian & S.G. Shabestari. (2012) Effect of heat treatment on microstructure and mechanical properties of Cr–Mo steels (FMU-226) used in mills liner. Materials & Design 34, pages 192-200.
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S.H. Mousavi Anijdan, Dimitry Sediako & Steve Yue. (2012) Optimization of flow stress in cool deformed Nb-microalloyed steel by combining strain induced transformation of retained austenite, cooling rate and heat treatment. Acta Materialia 60:3, pages 1221-1229.
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Xing Feng Mao, Kai Ming Wu, Lian Deng YaoZi Gang Li. (2011) Effect of Process Parameters on Microstructural Evolution and Grain Refinement in a Low Carbon High Strength Microalloyed Dual Phase Steel. Advanced Materials Research 284-286, pages 1244-1252.
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Igor Yakubtsov, Richard Zhang & Doug Boyd. (2011) Particularities of the formations of bainite and martensite/austenite phase in low carbon low alloy steels during continuous cooling. International Journal of Materials Research 102:5, pages 504-512.
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Junhua Kong, Lin Zheng, Lixin Wu, Xiaoguo Liu & Liwei Li. 2011. Advanced Steels. Advanced Steels 333 339 .
R.Y. Zhang & J.D. Boyd. (2010) Bainite Transformation in Deformed Austenite. Metallurgical and Materials Transactions A 41:6, pages 1448-1459.
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M. H. Shaeri, H. Saghafian & S. G. Shabestari. (2010) Effects of austempering and martempering processes on amount of retained austenite in Cr-Mo steels (FMU-226) used in mill liner. Journal of Iron and Steel Research International 17:2, pages 53-58.
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I.A. Yakubtsov, P. Poruks & J.D. Boyd. (2008) Microstructure and mechanical properties of bainitic low carbon high strength plate steels. Materials Science and Engineering: A 480:1-2, pages 109-116.
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S. Cai & J.D. Boyd. (2005) Mechanism of Microstructural Banding in Hot Rolled Microalloyed Steels. Materials Science Forum 500-501, pages 171-178.
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