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Original Articles

Modeling of Hot Yield Stress Curves for Carbon Silicon Steel by Genetic Programming

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Pages 543-551 | Received 31 Mar 2004, Accepted 25 Aug 2004, Published online: 07 Feb 2007

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Read on this site (5)

S Datta & P P Chattopadhyay. (2013) Soft computing techniques in advancement of structural metals. International Materials Reviews 58:8, pages 475-504.
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M. Kovačič. (2009) Genetic Programming and Jominy Test Modeling. Materials and Manufacturing Processes 24:7-8, pages 806-808.
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R. C. Dimitriu, H. K. D. H. Bhadeshia, C. Fillon & C. Poloni. (2008) Strength of Ferritic Steels: Neural Networks and Genetic Programming. Materials and Manufacturing Processes 24:1, pages 10-15.
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N. Chakraborti. (2005) Genetic algorithms in these changing steel times. Ironmaking & Steelmaking 32:5, pages 401-404.
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Articles from other publishers (6)

Gabriel Kronberger, Evgeniya Kabliman, Johannes Kronsteiner & Michael Kommenda. (2022) Extending a physics-based constitutive model using genetic programming. Applications in Engineering Science 9, pages 100080.
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Fredrik Persson, Christopher Neil Hulme & Pär G. Jönsson. (2022) Particle morphology of water atomised iron‑carbon powders. Powder Technology 397, pages 116993.
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Miha Kovačič & Uroš Župerl. (2020) Genetic programming in the steelmaking industry. Genetic Programming and Evolvable Machines 21:1-2, pages 99-128.
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M. Spittel & T. Spittel. 2009. Metal Forming Data of Ferrous Alloys - deformation behaviour. Metal Forming Data of Ferrous Alloys - deformation behaviour 115 125 .
Xiao-Hong Wang, Yang-Dong Hu & Yu-Gang Li. (2008) Synthesis of nonsharp distillation sequences via genetic programming. Korean Journal of Chemical Engineering 25:3, pages 402-408.
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S. Tiwari & N. Chakraborti. (2006) Multi-objective optimization of a two-dimensional cutting problem using genetic algorithms. Journal of Materials Processing Technology 173:3, pages 384-393.
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