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Articles

Strain hardening behaviour and its relationship to tensile mechanical properties of dual phase steel

Pages 1075-1081 | Published online: 18 Jul 2013

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H. Toda, T. Gouda & T. Kobayashi. (1998) Finite element analysis of observed high strengthening in composites with regularly segregated microstructures. Materials Science and Technology 14:9-10, pages 925-932.
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Xiang Luo, Zhenli Mi, Yanxin Wu, Yonggang Yang, Haitao Jiang & Kuanhui Hu. (2022) Effect of Austenitizing Temperature on the Work Hardening Behavior of Air-Hardening Steel LH800. Metals 12:6, pages 1026.
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Dan Wang, Xingfu Wang, Wen Wang & Xinfu Wang. (2022) Microstructure and mechanical properties of twinning induced plasticity steel prepared by optical floating zone method. Materials Science and Engineering: A 840, pages 142986.
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Dan Wang, Wen Wang, Yingjie Huang & Xinfu wang. (2021) An Investigation on Microstructures and Mechanical Properties of Twinning-Induced Plasticity Steels Prepared by Directional Solidification. Journal of Materials Engineering and Performance 31:4, pages 3326-3340.
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Mohamed Soliman & Heinz Palkowski. (2020) Strain Hardening Dependence on the Structure in Dual‐Phase Steels. steel research international 92:4, pages 2000518.
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Yongnan Chen, Zhicheng Wu, Gang Wu, Nan Wang, Qinyang Zhao & Jinheng Luo. (2021) Investigation on micromechanism of ferrite hardening after pre-straining with different strain rates of dual-phase steel. Materials Science and Engineering: A 802, pages 140657.
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Dan Wang, Kun Wang, Jianfeng Man, Jianzhong Yang & Fusheng Han. (2016) Mechanical Behavior and Microstructure Characteristics of Directionally Solidified TWIP Steel. Metallurgical and Materials Transactions A 47:7, pages 3423-3434.
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Chunhua Wei, Jing Zhang, Shanglu Yang, Wu Tao, Fengshun Wu & Weisheng Xia. (2015) Experiment-based regional characterization of HAZ mechanical properties for laser welding. The International Journal of Advanced Manufacturing Technology 78:9-12, pages 1629-1640.
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Ashkan Nouri, Hasan Saghafian & Shahram Kheirandish. (2010) Influence of volume fraction of martensite on the work hardening behaviour of two dual-phase steels with high and low silicon contents. International Journal of Materials Research 101:10, pages 1286-1292.
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Debdulal Das & Partha Protim Chattopadhyay. (2009) Influence of martensite morphology on the work-hardening behavior of high strength ferrite–martensite dual-phase steel. Journal of Materials Science 44:11, pages 2957-2965.
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I. Mejía, C. Maldonado, Josep Antonio Benito, Jordi Jorba & Antoni Roca. (2006) Determination of the Work Hardening Exponent by the Hollomon and Differential Crussard-Jaoul Analyses of Cold Drawn Ferrite-Pearlite Steels. Materials Science Forum 509, pages 37-42.
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Young Il Son, Young Kook Lee, Kyung-Tae Park, Chong Soo Lee & Dong Hyuk Shin. (2005) Ultrafine grained ferrite–martensite dual phase steels fabricated via equal channel angular pressing: Microstructure and tensile properties. Acta Materialia 53:11, pages 3125-3134.
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Shoujin Sun & Martin Pugh. (2002) Properties of thermomechanically processed dual-phase steels containing fibrous martensite. Materials Science and Engineering: A 335:1-2, pages 298-308.
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