Abstract
In this work, we modified the topography of commercial titanium orthopedic screws using electrochemical anodization in a 0.4 wt% hydrofluoric acid solution to produce titanium dioxide nanotube layers. The morphology of the nanotube layers were characterized using scanning electron microscopy. The mechanical properties of the nanotube layers were investigated by screwing and unscrewing an anodized screw into several different types of human bone while the torsional force applied to the screwdriver was measured using a torque screwdriver. The range of torsional force applied to the screwdriver was between 5 and 80 cN m. Independent assessment of the mechanical properties of the same surfaces was performed on simple anodized titanium foils using a triboindenter. Results showed that the fabricated nanotube layers can resist mechanical stresses close to those found in clinical situations. © 2013 by ASME.
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CITATION STYLE
Descamps, S., Awitor, K. O., Raspal, V., Johnson, M. B., Bokalawela, R. S. P., Larson, P. R., & Doiron, C. F. (2013). Mechanical properties of nanotextured titanium orthopedic screws for clinical applications. Journal of Medical Devices, Transactions of the ASME, 7(2). https://doi.org/10.1115/1.4023705
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