Fractal nature analysis in porous structured bio-ceramics
Autor: | Goran Lazovic, Vojislav V. Mitić, Po-Yu Chen, Ivana D. Ilic, Bojana M. Marković, Yueh-Ying Chou |
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Rok vydání: | 2021 |
Předmět: |
Scaffold
Materials science hydroxyapatite Statistical and Nonlinear Physics 02 engineering and technology 010402 general chemistry 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences Fractal dimension 0104 chemical sciences Fractal nature Fractal scaffolds fractals visual_art bioceramics visual_art.visual_art_medium Ceramic Composite material 0210 nano-technology Porosity |
Zdroj: | Modern Physics Letters B |
ISSN: | 1793-6640 0217-9849 |
DOI: | 10.1142/s0217984921503188 |
Popis: | Hydroxyapatite scaffold is a type of bio-ceramic. Its cellular design has similarities with the morphologies in nature. Therefore, it is very important to control the structure, especially the porosity, as one of the main features for bio-ceramics applications. According to some literature, freeze casting can form the shape of dendrites and remain a foam structure after ice sublimation. Ice nucleation became more heterogeneous with the aid of printing materials during freeze casting. This procedure can even improve the issue of crack formation. In this paper, we studied the mechanical properties of hydroxyapatite scaffold. We also analyzed the porosity by fractal nature characterization, and successfully reconstructed pore shape, which is important for predicting ceramic morphology. We applied SEM analysis on bio-ceramic samples, at four different magnifications for the same pore structure. This is important for fractal analysis and pores reconstruction. We calculated the fractal dimensions based on measurements. In this way, we completed the fractal characterization of porosity and confirmed possibilities for successful porous shapes reconstruction. In this paper, we confirmed, for the first time, that fractal nature can be successfully applied in the area of porous bio-ceramics. |
Databáze: | OpenAIRE |
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