## Abstract Selective laser sintering (SLS) is a manufacturing technique which enables the final product to be made directly and rapidly, without tooling or additional machining. For biomedical applications, SLS permits the fabrication of implants and scaffolds with complex geometry accurately and
Dynamic mechanical characterization of biodegradable composites of hydroxyapatite and polylactides
✍ Scribed by Nazhat, S. N. ;Kellomäki, M. ;Törmälä, P. ;Tanner, K. E. ;Bonfield, W.
- Publisher
- John Wiley and Sons
- Year
- 2001
- Tongue
- English
- Weight
- 161 KB
- Volume
- 58
- Category
- Article
- ISSN
- 0021-9304
- DOI
- 10.1002/jbm.1026
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✦ Synopsis
Abstract
The thermo‐mechanical analysis of some novel, totally bioactive, three‐component composite systems intended for the repair and augmentation of bone has been performed. The composites are composed of hydroxyapatite (HA), particulate reinforced biodegradable polylactic acid (PDLLA), with a second reinforcing phase of semi‐crystalline, unidirectional fibers of polylactic acid (PLLA) homopolymer. Dynamic mechanical analysis (DMA) applied small‐strain cyclic deformations to simulate physiological loading. The effect of the two fillers on the glass transition temperature of the matrix (T~g~__‐PDLLA) and on the viscoelastic parameters, storage modulus (E^I^), and tan δ were analyzed. Thermal characterization with differential scanning calorimetry (DSC) was compared to the DMA data. It was established that the addition of HA and/or PLLA fibers increased E^I^, both below and above T~g~‐PDLLA. The combination of both reinforcing agents was the most effective. The damping was reduced with the addition of HA alone and in combination with PLLA fibers. T~g~‐PDLLA was increased by the addition of HA, PLLA fibers, and the combination of the two reinforcing agents. The magnitude of the increase in T~g~‐__PDLLA was similar for both types of reinforcement. © 2001 John Wiley & Sons, Inc. J Biomed Mater Res (Appl Biomater) 58: 335–343, 2001
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