4.7 Article

Biological and Corrosion Evaluation of In Situ Alloyed NiTi Fabricated through Laser Powder Bed Fusion (LPBF)

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出版社

MDPI
DOI: 10.3390/ijms222413209

关键词

nitinol (nickel titanium); NiTi; laser powder bed fusion (LBPF); corrosion; ion release; cytotoxicity; bacterial growth; in situ alloying

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  1. Faculty of Materials Science and Engineering, Warsaw University of Technology

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This study compared the corrosive and biological properties of NiTi alloy parts fabricated using pre-alloyed NiTi powder and in situ alloyed pure Ni and Ti powders. The in situ alloyed NiTi exhibited slightly lower corrosion resistance in phosphate buffered saline and a weaker passive layer compared to pre-alloyed NiTi. However, both types showed comparable cytotoxicity and biological properties. In conclusion, nitinol sintered using in situ alloyed pure Ni and Ti shows potential for biomedical applications.
In this work, NiTi alloy parts were fabricated using laser powder bed fusion (LBPF) from pre-alloyed NiTi powder and in situ alloyed pure Ni and Ti powders. Comparative research on the corrosive and biological properties of both studied materials was performed. Electrochemical corrosion tests were carried out in phosphate buffered saline at 37 degrees C, and the degradation rate of the materials was described based on Ni ion release measurements. Cytotoxicity, bacterial growth, and adhesion to the surface of the fabricated coupons were evaluated using L929 cells and spherical Escherichia coli (E. coli) bacteria, respectively. The in situ alloyed NiTi parts exhibit slightly lower corrosion resistance in phosphate buffered saline solution than pre-alloyed NiTi. Moreover, the passive layer formed on in situ alloyed NiTi is weaker than the one formed on the NiTi fabricated from pre-alloyed NiTi powder. Furthermore, in situ alloyed NiTi and NiTi made from pre-alloyed powders have comparable cytotoxicity and biological properties. Overall, the research has shown that nitinol sintered using in situ alloyed pure Ni and Ti is potentially useful for biomedical applications.

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