Artículo
Additive Manufacturing of Binary Ni–Ti Shape Memory Alloys Using Electron Beam Powder Bed Fusion: Functional Reversibility Through Minor Alloy Modification and Carbide Formation
Krooß, P.; Lauhoff, C.; Gustmann, T.; Gemming, T.; Sobrero, Cesar Enrique
; Ewald, F.; Brenne, F.; Arold, T.; Nematolahi, M.; Elahinia, M.; Thielsch, J.; Hufenbach, J.; Niendorf, T.
Fecha de publicación:
11/2022
Editorial:
Springer
Revista:
Shape Memory and Superelasticity
ISSN:
2199-384X
e-ISSN:
2199-3858
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Shape 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.
Palabras clave:
ADDITIVE MANUFACTURING
,
MICROSTRUCTURE
,
SHAPE MEMORY ALLOY
,
SUPERELASTICITY
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(IFIR)
Articulos de INST.DE FISICA DE ROSARIO (I)
Articulos de INST.DE FISICA DE ROSARIO (I)
Citación
Krooß, P.; Lauhoff, C.; Gustmann, T.; Gemming, T.; Sobrero, Cesar Enrique; et al.; Additive Manufacturing of Binary Ni–Ti Shape Memory Alloys Using Electron Beam Powder Bed Fusion: Functional Reversibility Through Minor Alloy Modification and Carbide Formation; Springer; Shape Memory and Superelasticity; 8; 4; 11-2022; 452-462
Compartir
Altmétricas