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Articles

High strain rate superplastic flow stress and post-deformation mechanical properties of mechanically alloyed 2024 aluminium alloy reinforced with SiC particles

Pages 1039-1044 | Published online: 19 Jul 2013

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Genlian Fan, Haiyue Huang, Zhanqiu Tan, Dingbang Xiong, Qiang Guo, Makio Naito, Zhiqiang Li & Di Zhang. (2017) Grain refinement and superplastic behavior of carbon nanotube reinforced aluminum alloy composite processed by cold rolling. Materials Science and Engineering: A 708, pages 537-543.
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M. Ferry. 2005. The Deformation and Processing of Structural Materials. The Deformation and Processing of Structural Materials 203 251 .
S Lee, M Furukawa, Z Horita & T.G Langdon. (2003) Developing a superplastic forming capability in a commercial aluminum alloy without scandium or zirconium additions. Materials Science and Engineering: A 342:1-2, pages 294-301.
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Susumu ARAKAWA, Tomei HATAYAMA, Kazuhiro MATSUGI & Osamu YANAGISAWA. (2000) Effect of grain size on age-hardening behaviors of Al2O3 particle dispersed Al-4%Cu composites prepared by mechanical alloying.. Journal of Japan Institute of Light Metals 50:9, pages 430-434.
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Kenji Matsuki, Hajime Sugahara, Tetsuo Aida, Norio Takatsuji, Jun KusuiKazuhiko Yokoe. (1999) Effect of Microstructure Refinement on High Strain Rate Superplasticity in a PM 2024Al–Fe–Ni Alloy. Materials Transactions, JIM 40:8, pages 737-743.
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