Related Experiment Video
Updated: Jun 26, 2026

Iron Nanowire Fabrication by Nano-Porous Anodized Aluminum and its Characterization
Published on: October 6, 2019
Microstructure of surface and subsurface layers of a Ni-Ti shape memory microwire
H Tian1, D Schryvers, S Shabalovskaya
1EMAT, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium.
Abstract:
The microstructure of a 55 microm diameter, cold-worked Ni-Ti microwire is investigated by different transmission electron microscopy techniques. The surface consists of a few hundred nanometer thick oxide layer composed of TiO and TiO2 with a small fraction of inhomogeneously distributed Ni. The interior of the wire has a core-shell structure with primarily B2 grains in the 1 microm thick shell, and heavily twinned B19' martensite in the core. This core-shell structure can be explained by a concentration gradient of the alloying elements resulting in a structure separation due to the strong temperature dependence of the martensitic start temperature. Moreover, in between the B2 part of the metallic core-shell and the oxide layer, a Ni3Ti interfacial layer is detected.

