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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 70, 2016 - Issue 9
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Original Articles

Macrosegregation modeling during direct-chill casting of aluminum alloy 7050

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Pages 939-963 | Received 30 Mar 2016, Accepted 23 Jun 2016, Published online: 22 Sep 2016

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

J. Coleman & M. J. M. Krane. (2020) Influence of liquid metal feeding on the flow and macrosegregation in DC casting. Materials Science and Technology 36:4, pages 393-402.
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Yunbo Wang, Matthew John M. Krane & Kevin P. Trumble. (2018) Transient thermal stress development in direct chill cast ingots with application of a wiper. International Journal of Cast Metals Research 31:4, pages 193-208.
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Kyle Fezi & Matthew John M. Krane. (2017) Influence of a wiper on transport phenomena in direct chill casting of aluminium alloy 7050. International Journal of Cast Metals Research 30:4, pages 191-200.
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Articles from other publishers (15)

Keisuke Kamiya & Takuya Yamamoto. 2023. Light Metals 2023. Light Metals 2023 989 996 .
Takuya Yamamoto, Keisuke Kamiya, Takashi Kubo, Masanori Tsunekawa & Sergey V. Komarov. (2022) Effect of Microstructural Parameters on Channel-Type Segregation Formation in DC Casting of Al–Mg Billet. JOM 74:12, pages 4864-4875.
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Wenchao Duan, Yiqiang Yang, Wenhong Liu, Zhiqiang Zhang & Jianzhong Cui. (2022) Modelling the fluid flow, solidification and segregation behavior in electromagnetic DC casting of magnesium alloy. Simulation Modelling Practice and Theory 115, pages 102460.
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Mark Jolly & Laurens Katgerman. (2022) Modelling of defects in aluminium cast products. Progress in Materials Science 123, pages 100824.
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Takuya Yamamoto, Keisuke Kamiya, Takashi Kubo, Masanori Tsunekawa & Sergey V. Komarov. (2021) Investigation on Three-Dimensional Morphology of Channel-Type Macrosegregation in DC Cast Al-Mg Billets Through Numerical Simulation. JOM 73:12, pages 3838-3847.
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Takuya Yamamoto, Keisuke Kamiya, Keita Fukawa, Shohei Yomogida, Takashi Kubo, Masanori Tsunekawa & Sergey V. Komarov. (2021) Numerical Prediction of Channel-Type Segregation Formation in DC Casting of Al–Mg Billet. Metallurgical and Materials Transactions B 52:6, pages 4046-4060.
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Chijioke P. Egole, Henry E. Mgbemere, Gbeminiyi M. Sobamowo & Ganiyu I. Lawal. (2021) Micro-macro model for the transient heat and fluid transport in solidification structure evolution during static casting processes. Materials Today Communications 28, pages 102613.
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Li Zhou, Yajun Luo, Zhenlin Zhang, Min He, Yinao Xu, Yulei Zhao, Sheng Liu, Lijun Dong & Zhifeng Zhang. (2021) Microstructures and Macrosegregation of Al–Zn–Mg–Cu Alloy Billet Prepared by Uniform Direct Chill Casting. Materials 14:4, pages 708.
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Chen Shi, Yongjun Wu, Daheng Mao & Gaofeng Fan. (2020) Effect of Ultrasonic Bending Vibration Introduced by the L-shaped Ultrasonic Rod on Solidification Structure and Segregation of Large 2A14 Ingots. Materials 13:3, pages 807.
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G.S. Bruno Lebon, Hu-Tian Li, Jayesh B. Patel, Hamid Assadi & Zhongyun Fan. (2020) Numerical modelling of melt-conditioned direct-chill casting. Applied Mathematical Modelling 77, pages 1310-1330.
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Jiahong Fu, John Coleman, Gregory Poole, Matthew John M. Krane & Amy Marconnet. (2019) Uncertainty Propagation Through a Simulation of Industrial High Pressure Die Casting. Journal of Heat Transfer 141:11.
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Qipeng Chen, Hongxiang Li & Houfa Shen. (2019) Transient Modeling of Grain Structure and Macrosegregation during Direct Chill Casting of Al-Cu Alloy. Processes 7:6, pages 333.
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Kyle Fezi & Matthew John M. Krane. (2018) Quantification of Input Uncertainty Propagation Through Models of Aluminum Alloy Direct Chill Casting. Metallurgical and Materials Transactions A 49:10, pages 4759-4770.
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Kyle Fezi & Matthew John M. Krane. (2017) Uncertainty Quantification in Modeling Metal Alloy Solidification. Journal of Heat Transfer 139:8.
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A. Plotkowski & M.J.M. Krane. (2017) The discrete nature of grain attachment models in simulations of equiaxed solidification. Applied Mathematical Modelling 47, pages 31-44.
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