Abstract
AbstractShape memory alloys (SMAs), such as Ni–Ti, are promising candidates for actuation and damping applications. Although processing of Ni–Ti bulk materials is challenging, well-established processing routes (i.e. casting, forging, wire drawing, laser cutting) enabled application in several niche applications, e.g. in the medical sector. Additive manufacturing, also referred to as 4D-printing in this case, is known to be highly interesting for the fabrication of SMAs in order to produce near-net-shaped actuators and dampers. The present study investigated the impact of electron beam powder bed fusion (PBF-EB/M) on the functional properties of C-rich Ni50.9Ti49.1 alloy. The results revealed a significant loss of Ni during PBF-EB/M processing. Process microstructure property relationships are discussed in view of the applied master alloy and powder processing route, i.e. vacuum induction-melting inert gas atomization (VIGA). Relatively high amounts of TiC, being already present in the master alloy and powder feedstock, are finely dispersed in the matrix upon PBF-EB/M. This leads to a local change in the chemical composition (depletion of Ti) and a pronounced shift of the transformation temperatures. Despite the high TiC content, superelastic testing revealed a good shape recovery and, thus, a negligible degradation in both, the as-built and the heat-treated state.
Publisher
Springer Science and Business Media LLC
Subject
Mechanics of Materials,General Materials Science
Reference45 articles.
1. Lagoudas DC (2008) Shape memory alloys. Springer, US, Boston, MA
2. Otsuka K (ed) (1999) Shape memory materials, 1st edn. Cambridge Univ. Press, Cambridge
3. Sehitoglu H, Patriarca L, Wu Y (2017) Shape memory strains and temperatures in the extreme. Curr Opin Solid State Mater Sci 21(2):113–120
4. Machado LG, Savi MA (2003) Medical applications of shape memory alloys. Braz J Med Biol Res 36(6):683–691
5. Pfeifer R, Müller CW, Hurschler C, Kaierle S, Wesling V, Haferkamp H (2013) Adaptable orthopedic shape memory implants. Procedia CIRP 5:253–258
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献