Superplasticity in Nanostructured Materials
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-58088-9_7
Reference32 articles.
1. Chan KC, Wang CL, Zhang KF (2004) Low temperature and high strain rate superplasticity of Ni-1 mass%SiC nanocomposite. Mater Trans 45(8):2558–2563. https://doi.org/10.2320/matertrans.45.2558
2. Chokshi AH (2020) Grain boundary processes in strengthening, weakening, and superplasticity. Adv Eng Mater 22:1900748. https://doi.org/10.1002/adem.201900748
3. Chuvil’deev VN, Shchavleva AV, Nokhrin AV et al (2010) Influence of the grain size and structural state of grain boundaries on the parameter of low-temperature and high-rate superplasticity of nanocrystalline and microcrystalline alloys. Phys Solid State 52:1098–1106. https://doi.org/10.1134/S1063783410050422
4. Chuvil’deev VN, Shadrina IS, Nokhrin AV, Kopylov VI, Bobrov AA, Gryaznov MY, Shotin SV, Tabachkova NY, Chegurov MK, Melekhin NV (2020) An investigation of thermal stability of structure and mechanical properties of Al-0.5Mg–Sc ultrafine-grained aluminum alloys. J Alloys Compd 831:154805. https://doi.org/10.1016/j.jallcom.2020.154805
5. Demirtas M, Purcek G (2019) Room temperature superplasticity in fine/ultrafine grained materials subjected to severe plastic deformation. Mater Trans 7:1159–1167. https://doi.org/10.2320/matertrans.MF201922
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