| Literature DB >> 26478398 |
Sanjay Kumar Vajpai1, Choncharoen Sawangrat2, Osamu Yamaguchi3, Octav Paul Ciuca4, Kei Ameyama5.
Abstract
In the present work, Co-Cr-Mo alloy compacts with a unique bimodal microstructural design, harmonic structure design, were successfully prepared via a powder metallurgy route consisting of controlled mechanical milling of pre-alloyed powders followed by spark plasma sintering. The harmonic structured Co-Cr-Mo alloy with bimodal grain size distribution exhibited relatively higher strength together with higher ductility as compared to the coarse-grained specimens. The harmonic Co-Cr-Mo alloy exhibited a very complex deformation behavior wherein it was found that the higher strength and the high retained ductility are derived from fine-grained shell and coarse-grained core regions, respectively. Finally, it was observed that the peculiar spatial/topological arrangement of stronger fine-grained and ductile coarse-grained regions in the harmonic structure promotes uniformity of strain distribution, leading to improved mechanical properties by suppressing the localized plastic deformation during straining.Entities:
Keywords: Bimodal grain structure; Co-Cr-Mo alloy; Deformation mechanism; Harmonic structure; Powder metallurgy; Severe plastic deformation
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Year: 2015 PMID: 26478398 DOI: 10.1016/j.msec.2015.09.055
Source DB: PubMed Journal: Mater Sci Eng C Mater Biol Appl ISSN: 0928-4931 Impact factor: 7.328