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Design and Production of Continuously Gradient Macro/Microporous Calcium Phosphate (CaP) Scaffolds Using Ceramic/Camphene-Based 3D Extrusion

Authors
Ahn, Min-KyungMoon, Young-WookMaeng, Woo-YoulKoh, Young-HagKim, Hyoun-Ee
Issue Date
7월-2017
Publisher
MDPI
Keywords
additive manufacturing; extrusion; porous ceramics; biomedical applications
Citation
MATERIALS, v.10, no.7
Indexed
SCIE
SCOPUS
Journal Title
MATERIALS
Volume
10
Number
7
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/83023
DOI
10.3390/ma10070719
ISSN
1996-1944
Abstract
This study proposes a new type of calcium phosphate (CaP) scaffolds with a continuously gradient macro/microporous structure using the ceramic/camphene-based 3D extrusion process. Green filaments with a continuously gradient core/shell structure were successfully produced by extruding a bilayered feedrod comprised of a CaP/camphene mixture lower part and a pure camphene upper part. The extruded filaments were then deposited in a controlled manner to construct triangular prisms, followed by the assembly process for the production of CaP scaffolds with a gradient core/shell structure. In addition, a gradient microporous structure was created by heat-treating the green body at 43 degrees C to induce the overgrowth of camphene dendrites in the CaP/camphene walls. The produced CaP scaffold showed a highly macroporous structure within its inner core, where the size of macrochannels increased gradually with an increase in the distance from the outer shell, while relatively larger micropores were created in the outer shell.
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