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Original Research Papers

Influence of B and Ti on hot ductility of high Al and high Al, Nb containing TWIP steels

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Pages 1225-1232 | Received 28 Feb 2013, Accepted 03 Apr 2013, Published online: 18 Nov 2013

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Xiaogang Yang, Lifang Xie, Chaobin Lai & Diqiang Luo. (2021) Study on the mechanism of titanium improving the hot ductility of peritectic microalloyed steels in brittle zone III. International Journal of Cast Metals Research 34:3-6, pages 151-161.
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A. Qaban, B. Mintz, S. E. Kang & S. Naher. (2017) Hot ductility of high Al TWIP steels containing Nb and Nb-V. Materials Science and Technology 33:14, pages 1645-1656.
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S. E. Kang, J. R. Banerjee, A. Tuling & B. Mintz. (2014) Influence of P and N on hot ductility of high Al, boron containing TWIP steels. Materials Science and Technology 30:11, pages 1328-1335.
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P. Lan, L. Song, C. Du & J. Zhang. (2014) Analysis of solidification microstructure and hot ductility of Fe–22Mn–0·7C TWIP steel. Materials Science and Technology 30:11, pages 1297-1304.
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S. E. Kang, J. R. Banerjee, A. S. Tuling & B. Mintz. (2014) Influence of B on hot ductility of high Al, TWIP steels. Materials Science and Technology 30:4, pages 486-494.
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An-Fu Tian, Hai-Tao Liu & Yun-Hong Huang. (2023) Diffusion behavior of bismuth in eco-friendly Bi–S based free cutting steel at high temperature. Materials Express 13:4, pages 644-651.
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Ji-Yeon Jeong, Dae-Geun Hong & Chang-Hee Yim. (2022) Deep Learning to Predict Deterioration Region of Hot Ductility in High-Mn Steel by Using the Relationship between RA Behavior and Time-Temperature-Precipitation. Metals 12:10, pages 1689.
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T.T.T. Trang, Soo-Yeon Lee, Yoon-Uk Heo, Myeong-Hun Kang, Dong-Ho Lee, Jae Sang Lee & Chang Hee Yim. (2022) Improved hot ductility of an as-cast high Mn TWIP steel by direct implementation of an MnS-containing master alloy. Scripta Materialia 215, pages 114685.
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Barrie Mintz & Abdullah Qaban. (2022) The Influence of Precipitation, High Levels of Al, Si, P and a Small B Addition on the Hot Ductility of TWIP and TRIP Assisted Steels: A Critical Review. Metals 12:3, pages 502.
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Kun Dou, Qing Liu & You Zhou. (2021) Influence of boron addition on the hot ductility of medium carbon spring steel. Engineering Failure Analysis 129, pages 105696.
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Yaxu Zheng, Wei Shen, Liguang Zhu, Zhihong Guo, Qi Wang, Jie Feng, Yongliang Li, Ruifang Cao & Jiayi Wu. (2021) Effects of composition and strain rate on hot ductility of Cr–Mo-alloy steel in the two-phase region. High Temperature Materials and Processes 40:1, pages 228-240.
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Yadong Wang, Qiang Ren, Lifeng Zhang, Xiaogang Yang, Wen Yang, Ying Ren & Haijie Zhang. (2021) Formation and Control of Transverse Corner Cracks in the Continuous Casting Slab of a Microalloyed Steel. steel research international 92:6, pages 2000649.
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Lukas Borrmann, Dieter Senk, Bernhard Steenken & Joao Luiz Lopez Rezende. (2020) Influence of Cooling and Strain Rates on the Hot Ductility of High Manganese Steels Within the System Fe–Mn–Al–C. steel research international 92:2.
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A. E. Salas-Reyes, G. Altamirano-Guerrero, J. F. Chávez-Alcalá, A. Barba-Pingarrón, I. A. Figueroa, A. M. Bolarín-Miró, F. Sánchez-De Jesús, R. Deaquino-Lara & A. Salinas. (2020) Influence of Boron Content on the Solidification Structure, Magnetic Properties and Hot Mechanical Behavior in an Advanced As-Cast TWIP Steel. Metals 10:9, pages 1230.
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Antonio Enrique Salas Reyes, Gerardo Altamirano Guerrero, Jóse Fernando Flores Álvarez, José Federico Chávez Alcalá, Armando Salinas, Ignacio Alejandro Figueroa & Gabriel Lara Rodriguez. (2020) Influence of the as-cast and cold rolled microstructural conditions over corrosion resistance in an advanced TWIP steel microalloyed with boron. Journal of Materials Research and Technology 9:3, pages 4034-4043.
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. 2020. The Mechanisms of Metallurgical Failure. The Mechanisms of Metallurgical Failure 283 294 .
Yu-nan Wang. (2019) Solidification Structure, Non-metallic Inclusions and Hot Ductility of Continuously Cast High Manganese TWIP Steel Slab. ISIJ International 59:5, pages 872-879.
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Yong Yang, Tian-rui Li, Tao Jia & Zhao-dong Wang. (2018) A simple calculation model for thermodynamic equilibrium information between precipitation and matrix. Journal of Iron and Steel Research International 25:11, pages 1156-1162.
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Min Hyeok Kwon, Jin-Kyung Kim, Jian Bian, Hardy Mohrbacher, Taejin Song, Sung Kyu Kim & Bruno C. De Cooman. (2018) Solidification Microsegregation and Hot Ductility of Fe-Mn-C-Al-xNb TWIP Steels. Metallurgical and Materials Transactions A 49:11, pages 5509-5523.
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Yaxu Zheng, Fuming Wang, Changrong Li, Jin Cheng & Yongliang Li. (2018) Effect of compound addition of Nb-B on hot ductility of Cr-Mo alloy steel. Materials Science and Engineering: A 715, pages 194-204.
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Yu-Nan Wang, Jian Yang, Rui-Zhi Wang, Xiu-Ling Xin & Long-Yun Xu. (2016) Effects of Non-metallic Inclusions on Hot Ductility of High Manganese TWIP Steels Containing Different Aluminum Contents. Metallurgical and Materials Transactions B 47:3, pages 1697-1712.
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Peng Lan, Haiyan Tang & Jiaquan Zhang. (2016) Hot ductility of high alloy Fe–Mn–C austenite TWIP steel. Materials Science and Engineering: A 660, pages 127-138.
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I. Mejía, A.E. Salas-Reyes, A. Bedolla-Jacuinde, J. Calvo & J.M. Cabrera. (2014) Effect of Nb and Mo on the hot ductility behavior of a high-manganese austenitic Fe–21Mn–1.3Al–1.5Si–0.5C TWIP steel. Materials Science and Engineering: A 616, pages 229-239.
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A.E. Salas-Reyes, I. Mejía, A. Bedolla-Jacuinde, A. Boulaajaj, J. Calvo & J.M. Cabrera. (2014) Hot ductility behavior of high-Mn austenitic Fe–22Mn–1.5Al–1.5Si–0.45C TWIP steels microalloyed with Ti and V. Materials Science and Engineering: A 611, pages 77-89.
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