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Ironmaking & Steelmaking
Processes, Products and Applications
Volume 33, 2006 - Issue 1
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Articles

Influence of alloying elements on the thermal contraction of peritectic steels during initial solidification

Pages 52-56 | Published online: 18 Jul 2013

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P. Uranga, B. Lopez & J. M. Rodriguez-Ibabe. (2009) Role of carbon and nitrogen content on microstructural homogeneity in thin slab direct rolled microalloyed steels. Ironmaking & Steelmaking 36:3, pages 162-169.
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Articles from other publishers (21)

Fengkang Wang, Hang He, Wanlin Wang, Lei Zhang, Jiaxi Chen, Jiang Du & Jie Zeng. (2023) Effect of Mold Cooling Intensity on the Depression-Type Crack Formation and Mold Flux Infiltration During Continuous Casting Process. Metallurgical and Materials Transactions B 54:6, pages 2906-2914.
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Ghavam Azizi, Brian. G. Thomas & Mohsen Asle Zaeem. (2022) Prediction of Thermal Distortion during Steel Solidification. Metals 12:11, pages 1807.
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Guoliang Li, Cheng Ji & Miaoyong Zhu. (2021) Prediction of Internal Crack Initiation in Continuously Cast Blooms. Metallurgical and Materials Transactions B 52:2, pages 1164-1178.
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Qing-Qiang Ren, Tao Liu, Sung-Il Baik, Zugang Mao, Bruce W. Krakauer & David N. Seidman. (2021) The effects of alloying elements on the peritectic range of Fe–C–Mn–Si steels. Journal of Materials Science 56:10, pages 6448-6464.
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Ghavam Azizi, Brian G. Thomas & Mohsen Asle Zaeem. (2020) Review of Peritectic Solidification Mechanisms and Effects in Steel Casting. Metallurgical and Materials Transactions B 51:5, pages 1875-1903.
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Jun Li Guo, Guang Hua Wen, Ping Tang & Jiao Jiao Fu. (2020) Analysis of Peritectic Transformation Contraction of 304 Stainless Steel Using Surface Roughness. Materials Science Forum 1005, pages 10-17.
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Junli Guo & Guanghua Wen. (2019) Influence of Alloy Elements on Cracking in the Steel Ingot during Its Solidification. Metals 9:8, pages 836.
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Heng Cui, Kaitian Zhang, Zheng Wang, Bin Chen, Baisong Liu, Jing Qing & Zhijun Li. (2019) Formation of Surface Depression during Continuous Casting of High-Al TRIP Steel. Metals 9:2, pages 204.
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Dazhi Pu, Guanghua Wen, Dachao Fu, Ping Tang & Junli Guo. (2018) Study of the Effect of Carbon on the Contraction of Hypo-Peritectic Steels during Initial Solidification by Surface Roughness. Metals 8:12, pages 982.
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Junli Guo, Guanghua Wen, Dazhi Pu & Ping Tang. (2018) A Novel Approach for Evaluating the Contraction of Hypo-Peritectic Steels during Initial Solidification by Surface Roughness. Materials 11:4, pages 571.
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Peng Lan, Diem Ai Nguyen, Soo-Yeon Lee & Jung-Wook Cho. (2017) Heat transfer and solidification microstructure evolution of continuously cast steel by non-steady physical simulation. Metals and Materials International 23:3, pages 568-575.
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Qing-chun Li, Yong-feng Qi, Shu Xu, Chao Wang & Guo-wei Chang. (2014) Migration of δ/γ Interface in Low Carbon Steels during Continuous Cooling. Journal of Iron and Steel Research International 21:9, pages 855-861.
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Hossein Mehrara, Dmitry G. Eskin, Roumen H. Petrov, Mehdi Lalpoor & Laurens Katgerman. (2013) Linear Contraction Behavior of Low-Carbon, Low-Alloy Steels During and After Solidification Using Real-Time Measurements. Metallurgical and Materials Transactions A 45:3, pages 1445-1456.
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Matthew Rowan, Brian G. Thomas, Robert Pierer & Christian Bernhard. (2011) Measuring Mechanical Behavior of Steel During Solidification: Modeling the SSCC Test. Metallurgical and Materials Transactions B 42:4, pages 837-851.
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Matthew Rowan. 2011. Supplemental Proceedings. Supplemental Proceedings 287 294 .
Changli ZHANG, Michel Bellet, Manuel Bobadilla, Houfa SHEN & Baicheng LIU. (2011) FINITE ELEMENT MODELLING OF TENSILE TEST FOR MICRO--ALLOYED LOW CARBON STEEL AT HIGH TEMPERATURE. ACTA METALLURGICA SINICA 46:10, pages 1206-1214.
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C. Bernhard. (2009) Die Stranggießforschung am Lehrstuhl für Metallurgie: Entwicklung, Status und AusblickContinuous Casting Research at the Chair of Metallurgy: Past, Present and Future. BHM Berg- und Hüttenmännische Monatshefte 154:1, pages 20-26.
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. 2008. Casting. Casting 330 337 .
Christian Bernhard, Jürgen Reiter & Hubert Presslinger. (2008) A Model for Predicting the Austenite Grain Size at the Surface of Continuously-Cast Slabs. Metallurgical and Materials Transactions B 39:6, pages 885-895.
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J. Reiter, C. Bernhard & H. Presslinger. (2008) Austenite grain size in the continuous casting process: Metallographic methods and evaluation. Materials Characterization 59:6, pages 737-746.
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G. Gigacher, R. Pierer, J. Wiener & C. Bernhard. (2006) Metallurgical Aspects of Casting High-Manganese Steel Grades. Advanced Engineering Materials 8:11, pages 1096-1100.
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