High-Cycle Fatigue Behaviour of Ultrafine Grained 5052 Al Alloy Processed Through Cryo-Forging
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-05728-2_14
Reference37 articles.
1. Hansen N (2004) Hall-Petch relation and boundary strengthening. Scripta Mater 51(8):801–806
2. Cavaliere P (2009) Fatigue properties and crack behavior of ultra-fine and nanocrystalline pure metals. Int J Fatigue 31(10):1476–1489
3. Zhao YH, Liao XZ, Jin Z, Valiev RZ, Zhu YT (2004) Microstructures and mechanical properties of ultrafine grained 7075 Al alloy processed by ECAP and their evolutions during annealing. Acta Mater 52(15):4589–4599
4. Chang SY, Lee KS, Choi SH, Shin DH (2003) Effect of ECAP on microstructure and mechanical properties of a commercial 6061 Al alloy produced by powder metallurgy. J Alloy Compd 354(1):216–220
5. Zha M, Li Y, Mathiesen RH, Bjørge R, Roven HJ (2015) Microstructure evolution and mechanical behavior of a binary Al–7Mg alloy processed by equal-channel angular pressing. Acta Mater 84:42–54
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