Influence of carbon nanotube inclusions to electrical, thermal, physical and mechanical behaviors of carbon‑fiber‑reinforced ABS composites
(주)코리아스칼라
- 최초 등록일
- 2023.05.08
- 최종 저작일
- 2022.06
- 12페이지/ 어도비 PDF
- 가격 4,300원
* 본 문서는 배포용으로 복사 및 편집이 불가합니다.
서지정보
ㆍ발행기관 : 한국탄소학회
ㆍ수록지정보 : Carbon letters / 32권 / 4호
ㆍ저자명 : Alinda Oyku Akar, Umit Hakan Yildiz, Seha Tirkes, Umit Tayfun, Ferda Hacivelioglu
목차
Abstract
Graphical abstract
1 Introduction
2 Materials and methods
2.1 Materials
2.2 Fabrication of composites
2.3 Characterization methods
3 Results and discussions
3.1 Mechanical performance of composites
3.2 Wear resistance of composites
3.3 Thermo-mechanical behaviour of composites
3.4 Thermal resistance of composites
3.5 Melt-flow properties of composites
3.6 AFM studies of composites
3.7 Morphological characterization of composites
4 Conclusion
References
영어 초록
Acrylonitrile–butadiene–styrene (ABS) terpolymer was compounded with short carbon fiber (CF) and carbon nanotube (CNT) using a micro-extruder followed by the injection molding process. Composite samples were fabricated with loading ratios of 20 wt.% CF and 0.1, 0.5 and 1.0 wt.% of CNT. Mechanical, electrical, thermo-mechanical, thermal, melt-flow, and structural investigations of ABS-based composites were conducted by performing tensile, impact, hardness, and wear tests, conductive atomic force microscopy (AFM), dynamic mechanical analysis (DMA), thermal gravimetric analysis (TGA), melt flow rate test (MFR), scanning electron microscopy (SEM) characterization techniques, respectively. According to mechanical test data of resultant composites including tensile and impact test findings, CNT additions led to the remarkable increase in tensile strength and impact resistance for CF reinforced ABS composites. The formation of synergy between CNT nanoparticles and CF was confirmed by electrical conduction results. The conductive path in ABS/CF composite system was achieved by the incorporation of CNT with different loading levels. SEM micrographs of composites proved that CNT nanoparticles exhibited homogeneous dispersion into ABS matrix for lower loadings.
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