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- W1549484610 abstract "This paper investigates the mechanical properties and microstructural evolution of consolidated -325 mesh and 130 nm Cu powders, which were related to the processing route. Equal channel angular extrusion process was used to consolidate micro and nano copper particles. The powder exhibited a promising combination of high ultimate tensile stress and ductility. The near-perfect elastoplasticity exhibited by -325 mesh consolidate during tensile test is explained by a combined effect of strain hardening accommodated by large grains in the bimodal structure and softening caused by the recovery mechanisms such as trapping of dislocations at grain boundaries. Premature failure occurred during tensile loading in 130 nm consolidated powder, but the fracture strength was still 730 MPa for a fracture strain of 1.2%. The study shows that equal channel angular extrusion (ECAE) consolidation of nanoparticles opens a new possibility for the study of mechanical behavior of bulk nanocrystalline materials." @default.
- W1549484610 created "2016-06-24" @default.
- W1549484610 creator A5067652840 @default.
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- W1549484610 date "2010-04-23" @default.
- W1549484610 modified "2023-09-27" @default.
- W1549484610 title "Nanostructured Bulk Cu Obtained by Consolidation of Cu Particles Using Equal Channel Angular Extrusion" @default.
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- W1549484610 doi "https://doi.org/10.1002/9781118984239.ch14" @default.
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