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Production of Porous β-Type Ti-40Nb Alloy for Biomedical Applications: Comparison of Selective Laser Melting and Hot Pressing

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Publisher MDPI
Date 2017 Aug 10
PMID 28788418
Citations 13
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Abstract

We used selective laser melting (SLM) and hot pressing of mechanically-alloyed β-type Ti-40Nb powder to fabricate macroporous bulk specimens (solid cylinders). The total porosity, compressive strength, and compressive elastic modulus of the SLM-fabricated material were determined as 17% ± 1%, 968 ± 8 MPa, and 33 ± 2 GPa, respectively. The alloy's elastic modulus is comparable to that of healthy cancellous bone. The comparable results for the hot-pressed material were 3% ± 2%, 1400 ± 19 MPa, and 77 ± 3 GPa. This difference in mechanical properties results from different porosity and phase composition of the two alloys. Both SLM-fabricated and hot-pressed cylinders demonstrated good biocompatibility. The presented results suggest that the SLM-fabricated alloy may be preferable to the hot-pressed alloy for biomedical applications, such as the manufacture of load-bearing metallic components for total joint replacements.

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References
1.
Ho W, Ju C, Lin J . Structure and properties of cast binary Ti-Mo alloys. Biomaterials. 1999; 20(22):2115-22. DOI: 10.1016/s0142-9612(99)00114-3. View

2.
Zhuravleva K, Chivu A, Teresiak A, Scudino S, Calin M, Schultz L . Porous low modulus Ti40Nb compacts with electrodeposited hydroxyapatite coating for biomedical applications. Mater Sci Eng C Mater Biol Appl. 2013; 33(4):2280-7. DOI: 10.1016/j.msec.2013.01.049. View