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Research Papers

Constitutive behaviour in as quenched Al–5Cu–0·4Mn alloy during hot deformation

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Pages 1320-1328 | Received 10 Aug 2014, Accepted 09 Oct 2014, Published online: 22 Oct 2014

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H. E. Hu & X. Y. Wang. (2017) A high-temperature deformation model based on dislocation movement for wrought aluminium alloys. Materials Science and Technology 33:6, pages 712-718.
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Articles from other publishers (5)

Siyu Zhou, Ke Wu, Guang Yang, Bin Wu, Lanyun Qin, Hao Wu & Chaoyue Yang. (2022) Microstructure and mechanical properties of wire arc additively manufactured 205A high strength aluminum alloy: The comparison of as-deposited and T6 heat-treated samples. Materials Characterization 189, pages 111990.
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Lei Luo, Liangshun Luo, Yanqing Su, Lin Su, Liang Wang, Ruirun Chen, Jingjie Guo & Hengzhi Fu. (2021) Reducing porosity and optimizing performance for Al-Cu-based alloys with large solidification intervals by coupling travelling magnetic fields with sequential solidification. Journal of Materials Science & Technology 79, pages 1-14.
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Ruichao Guo, Jianjun Wu & Yinxiang Ren. (2020) A modified Arrhenius model for as-quenched Al-Mg-Si alloy considering the effect of cooling rate. Engineering Computations 38:5, pages 2003-2023.
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Lei Luo, Liangshun Luo, Yanqing Su, Lin Su, Liang Wang, Jingjie Guo & Hengzhi Fu. (2021) Optimizing microstructure, shrinkage defects and mechanical performance of ZL205A alloys via coupling travelling magnetic fields with unidirectional solidification. Journal of Materials Science & Technology 74, pages 246-258.
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Lei Luo, Liangshun Luo, Robert O. Ritchie, Yanqing Su, Binbin Wang, Liang Wang, Ruirun Chen, Jingjie Guo & Hengzhi Fu. (2021) Optimizing the microstructures and mechanical properties of Al-Cu-based alloys with large solidification intervals by coupling travelling magnetic fields with sequential solidification. Journal of Materials Science & Technology 61, pages 100-113.
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