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Selective laser sintering of hydroxyapatite/poly-caprolactone scaffolds

Eosoly, Szilvia, Brabazon, Dermot orcid logoORCID: 0000-0003-3214-6381, Lohfeld, Stefan and Looney, Lisa (2010) Selective laser sintering of hydroxyapatite/poly-caprolactone scaffolds. Acta Biomaterialia, 6 (7). pp. 2511-2517. ISSN 1878-7568

Abstract
Selective laser sintering (SLS) enables the fabrication of complex geometries with the intricate and controllable internal architecture required in the field of tissue engineering. In this study hydroxyapatite and poly- -caprolactone, considered suitable for hard tissue engineering purposes, were used in a weight ratio of 30:70. The quality of the fabricated parts is influenced by various process parameters. Among them Four parameters, namely laser fill power, outline laser power, scan spacing and part orientation, were identified as important. These parameters were investigated according to a central composite design and a model of the effects of these parameters on the accuracy and mechanical properties of the fabricated parts was developed. The dimensions of the fabricated parts were strongly dependent on the manufacturing direction and scan spacing. Repeatability analysis shows that the fabricated features can be well reproduced. However, there were deviations from the nominal dimensions, with the features being larger than those designed. The compressive modulus and yield strength of the fabricated microstructures with a designed relative density of 0.33 varied between 0.6 and 2.3 and 0.1 and 0.6 MPa, respectively. The mechanical behavior was strongly dependent on the manufacturing direction.
Metadata
Item Type:Article (Published)
Refereed:Yes
Uncontrolled Keywords:Selective laser sintering; Scaffold; Accuracy; Mechanical properties; Biodegradable
Subjects:Engineering > Materials
Engineering > Mechanical engineering
DCU Faculties and Centres:DCU Faculties and Schools > Faculty of Engineering and Computing > School of Mechanical and Manufacturing Engineering
Publisher:Elsevier
Official URL:http://dx.doi.org/10.1016/j.actbio.2009.07.018
Copyright Information:© 2010 Elsevier
Use License:This item is licensed under a Creative Commons Attribution-NonCommercial-Share Alike 3.0 License. View License
ID Code:20353
Deposited On:19 Dec 2014 12:02 by Fran Callaghan . Last Modified 21 Sep 2018 14:58
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