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Mechanical and Biological Characteristics of Reinforced 3D Printing Filament Composites with Agricultural By-product
- 김혜빈;
- 서유리;
- 장경제;
- 박상배;
- 선우훈;
- ... 임기택;
- 외 2명
초록
Scaffolds of cell substrates are biophysical platforms for cell attachment, proliferation, and differentiation. They ultimately play a leading-edge role in the regeneration of tissues. Recent studies have shown the potential of bioactive scaffolds (i.e., osteo-inductive) through 3D printing. In this study, rice bran-derived biocomposite was fabricated for fused deposition modeling (FDM)-based 3D printing as a potential bone-graft analogue. Rice bran by-product was blended with poly caprolactone (PCL), a synthetic commercial biodegradable polymer. An extruder with extrusion process molding was adopted to manufacture the newly blended “green material.” Processing conditions affected the performance of these blends. Bio-filament composite was characterized using field emission scanning electron microscopy (FE-SEM) and energy dispersive X-ray spectroscopy (EDX). Mechanical characterization of bio-filament composite was carried out to determine stress-strain and compressive strength. Biological behaviors of bio-filament composites were also investigated by assessing cell cytotoxicity and water contact angle. EDX results of bio-filament composites indicated the presence of organic compounds. These bio-filament composites were found to have higher tensile strength than conventional PCL filament. They exhibited positive response in cytotoxicity. Biological analysis revealed better compatibility of r-PCL with rice bran. Such rice bran blended bio-filament composite was found to have higher elongation and strength compared to control PCL.
키워드
- 제목
- Mechanical and Biological Characteristics of Reinforced 3D Printing Filament Composites with Agricultural By-product
- 저자
- 김혜빈; 서유리; 장경제; 박상배; 선우훈; 김진우; 김장호; 임기택
- 발행일
- 2017-08
- 유형
- Y
- 저널명
- 산업식품공학
- 권
- 21
- 호
- 3
- 페이지
- 233 ~ 241