Abstract
Manipulating the shape and distribution of strengthening units, e.g. particles, fibers, and precipitates, in a bulk metal, has been a widely applied strategy of tailoring their mechanical properties. Here, we report self-assembled patterns of Gd nano-fibers in Mg-Gd alloys for the purpose of improving their strength and deformability. 1-nm Gd nano-fibers, with a (c)-rod shape, are formed and hexagonally patterned in association with Gd segregations along dislocations that nucleated during hot extrusion. Such Gd-fiber patterns are able to regulate the relative activities of slips and twinning, as a result, overcome the inherent limitations in strength and ductility of Mg alloys. This nano-fiber patterning approach could be an effective method to engineer hexagonal metals.
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CITATION STYLE
Li, Y., Wang, J., Chen, K., Shao, M., Shen, Y., Jin, L., & Zhu, G. Z. (2016). Self-patterning Gd nano-fibers in Mg-Gd alloys. Scientific Reports, 6. https://doi.org/10.1038/srep38537
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