Microwires fabricated by glass-coated melt spinning

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Abstract

The glass-coated melt spinning method offers a route for the manufacture of metal filaments with a few micrometers in diameter in a single operation directly from the melt. Cobalt-based amorphous wires, Cu-15.0 atomic percent (at. %) Sn shape-memory wires, and Ni2MnGa (atomic percent) ferromagnetic wires were successfully produced by this method. The cobalt-based amorphous wire is flexible, and Cu-15.0 at. % Sn shape-memory wires have the tensile elongation of 14%. However, because of chemical reaction with glass and oxidation, it is hard to make Cu-Al-Ni shape-memory wires and Ni-Nb-Sn amorphous wires. Conditions for preparing these materials were summarized, and the differences of the solidification processes among glass-coated amorphous cobalt-based wires, Cu-15.0 at. % Sn shape-memory wires, and Ni2MnGa wires were analyzed and discussed. © 2013 AIP Publishing LLC.

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Zhao, Y. Y., Li, H., Hao, H. Y., Li, M., Zhang, Y., & Liaw, P. K. (2013). Microwires fabricated by glass-coated melt spinning. Review of Scientific Instruments, 84(7). https://doi.org/10.1063/1.4812331

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