PG-EAM - Programa de Pós-Graduação em Engenharia Aeronáutica e Mecânica
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Artigo 2026

Porous NiTi SMA superelastic bone staple manufactured by rapid investment casting: Microstructure, in vitro cytotoxicity evaluation, and mechanical behavior

Autores

Silva, Paulo César Sales da
Grassi, Estephanie Nobre Dantas
da Silva, Tadeu Castro
Fook, Marcus Vinicius Lia
Lima, Antonio Gilson Barbosa de
de Araújo, Carlos José

Materials Today Communications , vol. 50 , Article 114579

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Resumo

© 2025 The Authors.NiTi shape memory alloy (SMA) bone staples are functional devices that have the unique ability to exert continuous and dynamically active compression, aligning with the mechanobiological factors associated with bone healing. In this work, NiTi SMA alloys produced by electron beam melting were reprocessed to test the manufacturing of porous bone staples prototypes using the rapid investment casting (RIC) process. The results showed that the porous NiTi SMA bone staple exhibited superelasticity at body temperature (37 °C), reducing the compression force by up to 18 % compared to the dense staple, and thereby reducing the risk of stress shielding at the fracture site. Furthermore, we confirmed the presence of the protective passive TiO2 layer, ensuring cytocompatibility of the samples produced by the RIC process. Therefore, it was possible to demonstrate that RIC technology can be used to prototype porous NiTi SMA bone staples with thermomechanical strength and cytocompatibility, including the possibility of customization of the implant to a specific patient, and that this technology can be extended to other NiTi SMA implantable medical devices.

Palavras-chave

NiTi alloy Porous bone staple Rapid investment casting Shape memory alloy

Materials Science (all) (MATE) Mechanics of Materials (ENGI) Materials Chemistry (MATE)
: Scopus
Última atualização: 2026-08-20
: 2-s2.0-105026749525
PII: S2352492825030910